WO2024035063A1 - Electronic device, and method for providing charging station information - Google Patents

Electronic device, and method for providing charging station information Download PDF

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Publication number
WO2024035063A1
WO2024035063A1 PCT/KR2023/011657 KR2023011657W WO2024035063A1 WO 2024035063 A1 WO2024035063 A1 WO 2024035063A1 KR 2023011657 W KR2023011657 W KR 2023011657W WO 2024035063 A1 WO2024035063 A1 WO 2024035063A1
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WO
WIPO (PCT)
Prior art keywords
charging
group
processor
electronic device
charging station
Prior art date
Application number
PCT/KR2023/011657
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French (fr)
Korean (ko)
Inventor
이은일
Original Assignee
주식회사 아이나비시스템즈
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Priority claimed from KR1020230103135A external-priority patent/KR20240020694A/en
Application filed by 주식회사 아이나비시스템즈 filed Critical 주식회사 아이나비시스템즈
Publication of WO2024035063A1 publication Critical patent/WO2024035063A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
    • B60L58/00Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles
    • B60L58/10Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles for monitoring or controlling batteries
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • G01C21/36Input/output arrangements for on-board computers

Definitions

  • Various embodiments disclosed in this document are related to technology for providing electric vehicle charging information.
  • Electric vehicles use battery electricity instead of the gasoline energy of internal combustion engine vehicles, so the batteries must be charged regularly. Therefore, as electric vehicles increase, the number of electric vehicle charging stations is also increasing, leaving users with concerns about their choice.
  • electric vehicles have a long waiting time for users to charge their batteries, and if there are not fast charging stations or there are people waiting, the waiting time can be even longer. Therefore, users are using waiting time more efficiently by searching for and using nearby infrastructure (e.g. restaurants, coffee shops).
  • nearby infrastructure e.g. restaurants, coffee shops.
  • Various embodiments disclosed in this document can provide an electronic device that can provide information about an electric vehicle charging station in relation to infrastructure and a method of providing charging station information.
  • An electronic device provided in an electric vehicle includes a display; and a processor functionally connected to the display, wherein the processor checks a recommended charging section on a designated first route based on the driving distance of the electric vehicle, and checks charging stations adjacent to the confirmed recommended charging section, The confirmed charging stations are grouped according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations, a category list of infrastructure adjacent to the charging station within each group is checked, and the adjacent infrastructure is identified. Representative categories of and group-specific icons related to charging stations within each group may be output through the display in relation to the recommended charging section.
  • a method of providing charging station information by an electronic device includes the operation of checking a recommended charging section on a designated first route based on the driving distance of an electric vehicle; An operation of checking charging stations adjacent to the confirmed charging recommended section; Grouping the identified charging stations according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations; An operation to check the category of adjacent infrastructure for the charging station within each group; and displaying group-specific icons related to representative categories of the adjacent infrastructure and charging stations within each group.
  • information on electric vehicle charging stations may be provided in relation to adjacent infrastructure.
  • various effects that can be directly or indirectly identified through this document may be provided.
  • Figure 1 shows an implementation environment of an electronic device according to an embodiment.
  • Figure 2 shows a configuration diagram of an electronic device according to an embodiment.
  • Figure 3 is an example display of a recommended battery charging section according to an embodiment.
  • Figure 4 is an example of displaying icons for each group related to a charging station according to an embodiment.
  • 5 is an example of displaying group details related to a charging station according to one embodiment.
  • Figure 6 is an example diagram of providing group adjacent infrastructure information related to a charging station according to an embodiment.
  • Figure 7 is a flowchart of a method for providing charging station information according to an embodiment.
  • Figure 8 is a block diagram showing a computer system of a server device for providing overall charging station data according to an embodiment of the present invention.
  • Figure 1 shows an implementation environment of an electronic device according to an embodiment.
  • the electronic device 130 may receive electric vehicle charging station information by communicating with the server device 120.
  • the plurality of charging station devices 110 are devices provided at each electric vehicle charging station (hereinafter referred to as a 'charging station') and can be connected to the server device 120 through a designated communication channel.
  • the designated communication channel may include, for example, at least one of LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G, or 5G. However, it is not limited to this.
  • each charging station device 110 may transmit individual charging station information to the server device 120.
  • the individual charging station information may include, for example, at least one of the number of chargers provided at each charging station, type of charger (e.g., fast charger, slow charger), number of people waiting, or charging cost (e.g., discount information). there is.
  • the server device 120 may receive individual charging station information from each charging station device 110 through a designated communication channel.
  • the server device 120 may store the received individual charging station information in relation to the location information of each charging station.
  • the server device 120 may be, for example, at least one of a traffic information (eg, TPEG) providing device or a navigation service device.
  • TPEG traffic information
  • the server device 120 when the server device 120 receives a request from the electronic device 130, it may provide charging station information corresponding to the request. For example, when the server device 120 receives route information (eg, recommended charging section information) from the electronic device 130, the server device 120 may search for a charging station adjacent to the recommended charging section. The server device 120 may generate section charging station data including individual charging station information and related location information for all searched charging stations. The server device 120 may transmit the generated section charging station data to the electronic device 130.
  • route information eg, recommended charging section information
  • the server device 120 may generate section charging station data including individual charging station information and related location information for all searched charging stations.
  • the server device 120 may transmit the generated section charging station data to the electronic device 130.
  • the electronic device 130 may be a device that is provided (e.g., built-in or additionally installed) in an electric vehicle and can provide a route guidance service to a user.
  • the electronic device 130 may include, for example, at least one of a navigation device, a head mounted unit, a head-up display, and a user terminal on which a navigation app is installed.
  • the electronic device 130 may be built-in (e.g., built-in) in an electric vehicle, or may be provided to transmit and receive data with the electronic control unit of the electric vehicle, and may be connected wired/wireless to the electronic control unit.
  • the transmitted and received data may include at least one information of the distance that can be driven by the battery or the remaining amount of the battery.
  • the electronic device 130 may check a recommended charging section on the first route according to the remaining battery capacity. For example, the electronic device 130 may check the possible driving distance according to the remaining battery capacity and check whether the possible driving distance is less than or equal to the total driving distance of the first route. When the possible driving distance is less than the total driving distance of the first route, the electronic device 130 may determine a partial section near the destination of the first route as a recommended charging section.
  • the electronic device 130 when it confirms (or determines) a recommended charging section, it may transmit information on the recommended charging section to the server device 120.
  • the electronic device 130 may receive section charging station data including information on charging stations adjacent to the recommended charging section from the server device 120.
  • the information on the recommended charging section may include, for example, a list of link IDs included in the recommended charging section.
  • the section charging station data may include individual charging station information and related location information of charging stations adjacent to a charging recommended section within a first specified distance.
  • the first designated distance may be, for example, a distance of 5 km or less. If there is no adjacent charging station within the first designated distance, the first designated distance may be extended.
  • the electronic device 130 may use section charging station data to identify individual charging stations adjacent to a recommended charging section and group the individual charging stations according to their proximity to the recommended charging section. For example, the electronic device 130 may check the driving distance (e.g., shortest driving distance) from an individual charging station to a recommended charging section, and group individual charging stations according to the range to which the confirmed distance falls. The electronic device 130 may group individual charging stations according to the proximity between the individual charging stations. For example, the electronic device 130 may group charging stations that are relatively close in distance among individual charging stations.
  • the driving distance e.g., shortest driving distance
  • the electronic device 130 may check infrastructure (eg, point of interest (POI)) adjacent to a charging station within each group based on map data.
  • the electronic device 130 may classify the identified infrastructure into POI categories and determine at least one representative category for each individual group. For example, the electronic device 130 may determine at least one POI category as a representative category in the order of short walking distance to an individual charging station, relatively large number, or high user preference.
  • infrastructure eg, point of interest (POI)
  • POI point of interest
  • the electronic device 130 may output group-specific icons related to the representative category and charging stations within the group on the display in relation to the recommended charging section.
  • the electronic device 130 may output at least one group-related charging station information among the type of charger, number of people waiting, number of charging stations in the group, or representative transit travel time in further relation to the icon for each group.
  • the electronic device 130 may output a list of infrastructure categories included in the group on the display.
  • the electronic device 130 may provide detailed information about the selected category. The detailed information may include road travel distance between the charging station and the infrastructure, number of people waiting, and type of charger possessed.
  • the electronic device 130 may provide a driving route via a selected (or related to) charging station based on the user's selection of one of the infrastructure or the charging station.
  • the recommended charging section and some of the detailed information may be information that changes in real time. Accordingly, the electronic device 130 may update the recommended charging section and information related to the charging station when searching for the first route.
  • the electronic device 130 may display updated information on the route guidance screen - for example, on the right side of the driving route.
  • the server device 120 may broadcast charging station information to the electronic device 130 without a request.
  • server device 120 may periodically broadcast overall charging station data including all individual charging station information and associated location information collected by region.
  • the electronic device 130 may receive the broadcasted overall charging station data and process the entire charging station data (or regional charging station data) based on the location information of the charging station electric vehicle to generate section charging station data.
  • the electronic device 130 receives the entire charging station data (or regional charging station data) broadcast by the server device 120 and generates section charging station data based on the entire charging station data. This will be explained using a creation case as an example.
  • the electronic device 130 provides a group of charging stations adjacent to the recommended charging section of the vehicle driving route along with infrastructure information adjacent to the individual charging station (e.g., representative POI category) and walking distance therefor, It is possible to assist the user in selecting a charging station by considering the use of transit time as well as waiting time for charging.
  • infrastructure information adjacent to the individual charging station (e.g., representative POI category) and walking distance therefor.
  • Figure 2 shows a configuration diagram of an electronic device according to an embodiment.
  • the electronic device 130 may include an input device 131, a display 132, a communication module 133, a memory 134, and a processor 135.
  • the electronic device 130 may omit some components or may further include additional components.
  • the electronic device 130 may further include a battery (eg, 141) and control charging/discharging of the battery (eg, 141).
  • some of the components of the electronic device 130 may be combined to form a single entity, but the functions of the components before combination may be performed in the same manner.
  • some of the components of the electronic device 130 may be included in the first device and others may be included in the second device, and data may be transmitted and received between them through the communication module 133.
  • the input device 131 may receive user input using the electronic device 130.
  • the input device 131 may include at least one input detection circuit selected from, for example, a button, a touch screen, and a microphone.
  • the display 132 may visually output at least one data of symbols, numbers, or letters under the control of the processor 135.
  • the display 132 may include at least one output device selected from, for example, a liquid crystal display, OLED, a touch screen display, a head unit, a head-up display, or a three-dimensional display.
  • the communication module 133 establishes a communication channel or wireless communication channel between the electronic device 130 and another device (e.g., server device 120, vehicle control device 140), and performs communication through the established communication channel. Support is available.
  • the communication channel may include, for example, at least one of LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G, or 5G.
  • the communication channels include Wireless LAN, Wi-Fi, Bluetooth, Zigbee, Wi-Fi Direct (WFD), Ultrawideband (UWB), and Infrared Data Association (IrDA). , BLE (Bluetooth Low Energy), and NFC (Near Field Communication) may be included.
  • the communication channels may include V2X communication channels such as Vehicle to Vehicle (V2V), Vehicle to Infrastructure (V2I), Vehicle to Nomadic Device (V2N), and Vehicle to Pedestrian (V2P).
  • V2X communication channels such as Vehicle to Vehicle (V2V), Vehicle to Infrastructure (V2I), Vehicle to Nomadic Device (V2N), and Vehicle to Pedestrian (V2P).
  • the communication channel may include at least one vehicle network channel selected from CAN (controller area network) or MOST (media oriented systems transport).
  • the memory 134 may store various data used by at least one component (eg, processor 135) of the electronic device 130. Data may include, for example, input data or output data for software and instructions related thereto. For example, the memory 134 may store at least one instruction for providing electric vehicle charging station information. For example, the memory 134 may store at least one instruction for searching for a charging station adjacent to a recommended charging section and providing information on the searched charging station.
  • data may include, for example, input data or output data for software and instructions related thereto.
  • the memory 134 may store at least one instruction for providing electric vehicle charging station information.
  • the memory 134 may store at least one instruction for searching for a charging station adjacent to a recommended charging section and providing information on the searched charging station.
  • the memory 134 may store at least one instruction and map data for route search, route guidance, and transit route guidance.
  • the memory 134 may store at least one instruction for grouping charging stations according to proximity to vehicles, categorizing adjacent infrastructure, designating representative categories, or outputting icons for each group.
  • Memory 134 may include various types of volatile memory or non-volatile memory.
  • memory may include read only memory (ROM) and random access memory (RAM).
  • ROM read only memory
  • RAM random access memory
  • the memory may be located inside or outside the processor, and the memory 134 may be connected to the processor 135 through various known means.
  • the processor 135 may control at least one other component (eg, hardware or software component) of the electronic device 130 and may perform various data processing or calculations.
  • the processor 135 may include, for example, a central processing unit (CPU), a graphics processing unit (GPU), a microprocessor, an application processor, an application specific integrated circuit (ASIC), or a field programmable gate arrays (FPGA). )), and may have a plurality of cores.
  • the processor 135 when the processor 135 receives the overall (or regional) charging station data from the server device 120 through the communication module 133, the processor 135 stores the entire (or regional) charging station data in the memory 134. It can be saved in .
  • the processor 135 may check the driving distance using the battery 141 of the electric vehicle from the vehicle control unit 140 through the communication module 133.
  • the processor 135 may receive the driving distance from the head unit through the communication module 133.
  • the processor 135 may communicate with the battery control unit through the communication module 133 to receive the remaining battery capacity and calculate the possible driving distance based on the remaining battery capacity.
  • the processor 135 may calculate the driving distance from the remaining amount of the battery 141 by considering the real-time fuel consumption rate (eg, fuel efficiency) of the vehicle.
  • the processor 135 may search for the first route to the destination based on map data.
  • the processor 135 may display a summary map of the entire section of the discovered first route through the display 132.
  • the processor 135 may set the first path as a path for route guidance.
  • the processor 135 may check the recommended charging section on the first route based on the drivable distance of the electric vehicle (or the drivable distance according to the remaining amount of the battery 141). For example, the processor 135 may charge the distance from a first point of the driving range minus a second specified distance to a second point of the driving range minus a third designated distance (exceeding the second designated distance). You can decide on the recommended section.
  • the second designated distance [m] may be designated as a constant of 0 or more, for example.
  • the third designated distance [m] may be designated as a drivable distance corresponding to the remaining amount of the battery, which does not cause a memory phenomenon and does not significantly deteriorate subsequent charging performance even if the electric vehicle battery 141 is additionally charged. there is.
  • the processor 135 may display a charging recommended section only when the possible driving distance based on the remaining amount of the battery 141 is less than or equal to the total driving distance along the first route. If the remaining charge of the battery 141 is sufficient to drive the entire section of the first route, the processor 135 provides information on charging stations adjacent to the current driving section only when a charging station search request is made through the input device 131. can do. Alternatively, if the driving range does not include the recommended charging section, the processor 135 may not provide information on the recommended charging section and charging stations adjacent to the recommended charging section.
  • the processor 135 may display the recommended charging section in a color corresponding to the charging urgency. For example, when the processor 135 confirms the recommended charging section, it can check the charging urgency according to the remaining amount of the battery 141 and display at least the recommended charging section in a color corresponding to the charging urgency. An example in which the processor 135 displays a recommended charging section according to charging urgency will be described later with reference to FIG. 3 .
  • the processor 135 when the processor 135 confirms the recommended charging section, it can check charging stations adjacent to the recommended charging section. For example, the processor 135 obtains (loads) overall (or regional) charging station data from the memory 134 and recommends a charging section based on the individual charging station locations included in the overall (or regional) charging station data. You can select charging stations adjacent to . For example, the processor 135 may select a charging station that is less than or equal to a first specified distance from each point of the recommended charging section among charging stations included in the entire charging station data. The first designated distance may be, for example, a distance of 5 km or less. If there is no adjacent charging station within the first designated distance, the first designated distance may be extended.
  • the processor 135 may group confirmed (e.g., selected) charging stations according to proximity to a recommended charging section or proximity between charging stations. For example, the processor 135 configures charging stations within a first distance range at each point of the recommended charging section into a first group, and groups charging stations within a second distance range (a range exceeding the first distance range) into a first group. It can be composed of 2 groups. For example, the processor 135 configures charging stations in a first range of 2.5 km or less from each point of the charging recommended section into a first group, and a second range of more than 2.5 km and less than 5 km from each point of the charging recommended section. The charging stations in can be organized into a second group. In this case, the first and second distance ranges may correspond to a distance range below the first specified distance, which is the upper limit distance for charging station identification (or selection) and grouping.
  • the processor 135 may classify the infrastructure adjacent to the charging station within each group by, for example, POI (point of interest) category and determine a representative category from the classified category list. For example, the processor 135 may determine as a representative category at least one POI category that is close to an individual charging station, at least one POI category according to user preference, or at least one POI category in order of number.
  • POI point of interest
  • the processor 135 may output representative categories of adjacent infrastructure and group-specific icons related to charging stations within each group through the display 132 in relation to the recommended charging section. For example, the processor 135 displays a circle-shaped group icon (e.g., icon) so as to overlap at least a portion of the recommended charging section or around the charging recommended section, and displays a circle-shaped group icon (e.g., icon) inside the circle-shaped group icon.
  • the representative category name of the adjacent infrastructure can be displayed.
  • the processor 135 may display icons for each group in a recommended charging section with a size and location corresponding to the charging station within each group.
  • the processor 135 may determine the size of the icon for each group to correspond to the number of charging stations in each group.
  • the processor 135 can calculate the shortest travel distance between individual charging stations in each group and the recommended charging section, and calculate the average of the shortest travel distances for each group.
  • the processor 135 displays icons for each group in a size corresponding to the number of charging stations for each group at a location spaced apart from the midpoint used to calculate the shortest travel distance for each group in the recommended charging section by the average value of the calculated shortest travel distance. You can.
  • a detailed example of how the processor 135 determines the display position and size of icons for each group will be described later with reference to FIG. 4 .
  • the processor 135 may display at least one group-related charging station information in conjunction with a group-specific icon for an electric vehicle charging station in addition to or instead of a representative category of adjacent infrastructure through the display 132. You can.
  • the group-related charging station information may include, for example, at least one group-related charging station information among the type of charger included in each group, the number of people waiting at the individual charging station, the number of charging stations, and the representative transit time or charging time for the individual charging station. there is.
  • the processor 135 may display detailed information related to individual charging stations included in the selected group.
  • FIG. 2 the detailed display of icons for each group by the processor 135 will be briefly described, and more specific examples will be described later with reference to FIGS. 4 to 6 .
  • the processor 135 may output a list of individual charging station icons and categories included in the selected group through the display 132.
  • the processor 135 may output the selected category list through the display 132.
  • the processor 135 may output at least one information of the optimal charging station for each infrastructure and the walking time for each infrastructure from the optimal charging station through the display 132.
  • the processor 135 may display charging station information and a category list corresponding to the selected individual charging station icon.
  • the processor 135 may provide charging station-related information (icons for each group) adjacent to the recommended charging section when searching for the first route, and then provide detailed information while driving. For example, when displaying a summary map of the entire section of the discovered first route through the display 132, the processor 135 may provide group-specific icons for electric vehicle charging stations along with a recommended charging section. Thereafter, the processor 135 monitors the update of individual charging station information based on section charging data and can confirm updated information (e.g., number of people waiting) among group-related charging station information.
  • the processor 135 may reconfirm the change in the recommended charging section by monitoring the change in the driving distance according to the remaining amount of the battery 141.
  • the processor 135 displays a group icon including charging stations adjacent to each section, a representative category of adjacent infrastructure, or group-related charging station information on the route guidance screen or separately from the route guidance screen. It can be output to the display 132.
  • the electronic device 130 may provide a driving route via a selected (or related to) charging station based on the user's selection of either adjacent infrastructure or an individual charging station.
  • the electronic device 130 includes a battery 141, and the processor 135 performs battery functions such as controlling charge/discharge of the battery 141 and calculating a possible driving distance based on the remaining amount of the battery 141. Control related to (141) can be performed.
  • the electronic device 130 groups charging stations adjacent to the recommended charging section among charging stations located on the vehicle's driving path and provides group-specific icons that can increase visibility according to group characteristics, thereby providing the user with a group-specific icon. can assist in charging the battery at the appropriate time.
  • the electronic device 130 not only displays the size and position of the icon for each group by adjusting it according to the characteristics of each group, but also displays various information about the charging station for each group (e.g., whether a fast charger is available, number of people waiting, By providing information (via transit time, surrounding infrastructure category, and road travel distance to infrastructure), we can help users select a charging station that suits their needs.
  • the electronic device 130 automatically searches for a route through a charging station in consideration of the possible driving distance when driving a long distance vehicle, and travels through the charging station according to the user's selection of the charging station or the charging station transit time for selecting the charging station. and charging time may be provided. Accordingly, the convenience of driving and charging electric vehicles can be improved.
  • the electronic device 130 may include vehicle driving information (e.g., possible driving distance), charging station infrastructure information (e.g., representative infrastructure, charging and transit time), and real-time traffic information (e.g., first route ), it is possible to support not only the selection of the optimal charging station but also search for the optimal route that takes into account charging time.
  • vehicle driving information e.g., possible driving distance
  • charging station infrastructure information e.g., representative infrastructure, charging and transit time
  • real-time traffic information e.g., first route
  • Figure 3 shows an example of displaying a recommended battery charging section according to an embodiment.
  • the processor 135 may display at least a charging recommended section in the driving route in a color corresponding to the charging urgency.
  • the processor 135 displays a summary map of the entire section of the first route from the starting point (or the current location of the vehicle) to the destination according to the remaining amount of the battery 141. Charging urgency can be displayed by color classification.
  • the processor 135 may display a section in which the battery 141 has sufficient remaining charge in green, and may display a section beyond the possible driving distance in red. Additionally, in the case of the recommended charging section, the processor 135 gradually changes the color from a mixture of green and yellow to a color mixed with yellow and red as the remaining amount of the battery 141 decreases, but gradually reduces the mixing ratio of yellow. It can be displayed.
  • the electronic device 130 can support the user to intuitively determine the need for charging by displaying the charging urgency in highly visible colors.
  • Figure 4 is an example diagram of displaying icons for each group according to an embodiment.
  • the processor 135 may display a circular group-specific icon (e.g., icon) inside which the number of charging stations, transit travel time, and representative category name are displayed.
  • a circular group-specific icon e.g., icon
  • the processor 135 determines the number of charging stations included in the group, 2, and the time it takes to drive to the destination via the first charging station included in the group with the least transit time.
  • Time (travel time) 1 hour 30 minutes, and representative category names included in the group e.g. restaurants, tourist attractions) can be displayed.
  • the processor 135 may determine the size of the icon for each group and the position to display the icon for each group according to the characteristics of the charging station within the group, and display the icon for each group at the determined size and position.
  • the processor 135 may determine the size of the icon for each group to correspond to the number of charging stations in each group, and display the icon for each group at the determined size. That is, the group icon indicated by a relatively large circle in FIG. 4 may include more charging stations than the group icon indicated by a relatively small circle.
  • the processor 135 may determine the display position of the icon for each group based on the distance (e.g., shortest travel distance) between individual charging stations and points in the recommended charging section. For example, the processor 135 determines the shortest travel distance between an individual charging station in each group and the recommended charging section, and the midpoint of the recommended charging section used to calculate the shortest travel distance in each group (e.g., the two-way point in FIG. 4 Icons for each group can be displayed at a location spaced apart from the bottom of the arrow by the average of the shortest travel distance for each group (e.g., at the top of the double-headed arrow in FIG. 4). That is, in FIG. 4, a group icon displayed relatively close to the recommended charging section may include charging stations closer than a group icon displayed relatively far away.
  • the distance e.g., shortest travel distance
  • the electronic device 130 not only displays the size and position of icons for each group by adjusting them according to the characteristics of each group, but also provides travel time at charging stations for each group and representative infrastructure categories for the user. It can be supported to intuitively select the desired charging station based on the icon displayed.
  • Figure 5 is an example of displaying group detailed information related to a charging station according to an embodiment.
  • the processor 135 displays (displays) individual charging station information included in the selected group in relation to the selected group icon. 132) can be output (displayed).
  • the processor 135 may display a circular individual charging station icon inside the selected group icon.
  • the processor 135 may display detailed information about the individual charging station in relation to the individual charging station icon - for example, around the individual charging station icon as shown in FIG. 5 .
  • the details of individual charging stations include, for example, the type of charger available (e.g., slow/fast charger available), the time required for charging and transit (charging + transit time), and the number of people waiting (e.g., 1 name waiting) may be included.
  • the processor 135 may display a list of infrastructure categories adjacent to the selected group on a separate screen in an area separate from the individual charging station icons. For example, the processor 135 may display a list of infrastructure categories adjacent to the selected group, such as restaurants, cafes, parks, and others, on a separate screen to the right of the selected group icon.
  • the electronic device 130 provides detailed information of individual charging stations, such as charging and transit driving times, availability of fast chargers, and number of people waiting, along with a list of adjacent infrastructure categories within each group, thereby providing user information.
  • the convenience and efficiency of selecting an electric vehicle charging station can be improved.
  • the time when a user actually enters an electric vehicle charging station may be a long time after searching for a charging station adjacent to the recommended charging section.
  • the processor 135 provides charging station-related information (e.g., icons for each group) adjacent to the recommended charging section when searching for the first route, and then, upon confirming that entering or driving in the recommended charging section, In relation to the route guidance screen, group icons related to charging stations adjacent to each driving section, representative categories of adjacent infrastructure, or group-related charging station information may be displayed on the display 132.
  • Figure 6 is an example diagram of providing group adjacent infrastructure information related to a charging station according to an embodiment.
  • the processor 135 may display the list of infrastructure included in the selected category on the display 132 in relation to individual charging stations in the group. there is. Like area 610, processor 135 can display the infrastructure list on a separate screen from the individual charging station icons.
  • the processor 135 may correlate individual infrastructure names and individual charging station icons by displaying the color (or shade) of the individual charging station icon next to the individual infrastructure name. Processor 135 may further indicate walking travel times from individual charging stations to optimal infrastructure.
  • the processor 135 may display a list of infrastructure adjacent to the selected individual charging station and a walking travel time from the individual charging station to the adjacent infrastructure.
  • the electronic device 130 can provide a list of adjacent infrastructures of charging stations in each group, as well as the charging station closest to each infrastructure and the walking distance to the charging station, so that the user can select an electric vehicle charging station. Convenience and efficiency can be improved.
  • Figure 7 shows a flowchart of a method for providing charging station information according to an embodiment.
  • the electronic device 130 may check a recommended charging section on the first route designated based on the driving distance of the electric vehicle. For example, if the possible driving distance exceeds the total driving distance of the first route, the electronic device 130 may not confirm the recommended charging section and perform subsequent operations.
  • the electronic device 130 may check charging stations adjacent to the identified recommended charging section. For example, the electronic device 130 may search for charging stations in the recommended charging section, for example, with a straight line distance within a first designated distance.
  • the electronic device 130 may group the identified charging stations according to at least one of proximity to a recommended charging section or proximity between charging stations. For example, the electronic device 130 groups charging stations with relatively close distances among the driving distances (e.g., shortest driving distance) and confirmed charging stations from individual charging stations to the recommended charging section, and groups charging stations with relatively close distances in the range to which the confirmed distance falls. Individual charging stations that are relatively close together can be grouped.
  • the driving distances e.g., shortest driving distance
  • the electronic device 130 may check the category of each group by classifying the infrastructure adjacent to the charging station within each group by category.
  • the electronic device 130 may output representative categories of adjacent infrastructure and group-specific icons related to charging stations within each group through the display in relation to the recommended charging section.
  • Figure 8 is a block diagram showing a computer system of the server device 120 for providing overall charging station data according to an embodiment of the present invention.
  • the computer system 1200 includes a processor 1210, a memory 1230, an input interface device 1250, an output interface device 1260, and a storage device 1240 that communicate through a bus 1270. It may include at least one of: Computer system 1200 may also include a communication device 1220 coupled to a network.
  • the processor 1210 may be a central processing unit (CPU) or a semiconductor device that executes instructions stored in the memory 1230 or the storage device 1240.
  • Memory 1230 and storage device 1240 may include various types of volatile or non-volatile storage media. For example, memory may include read only memory (ROM) and random access memory (RAM).
  • the memory may be located inside or outside the processor, and the memory may be connected to the processor through various known means.
  • Memory is various forms of volatile or non-volatile storage media, for example, memory may include read-only memory (ROM) or random access memory (RAM).
  • first, second, or first or second may be used simply to distinguish one element from another, and may be used to distinguish such elements in other respects, such as importance or order) is not limited.
  • One (e.g. first) component is said to be “coupled” or “connected” to another (e.g. second) component, with or without the terms “functionally” or “communicatively”. Where mentioned, it means that any of the components can be connected to the other components directly (e.g. wired), wirelessly, or through a third component.
  • module used in this document may include a unit implemented in hardware, software, or firmware, and may be used interchangeably with terms such as logic, logic block, component, or circuit, for example.
  • a module may be an integrated part or a minimum unit of the parts or a part thereof that performs one or more functions.
  • the module may be implemented in the form of an application-specific integrated circuit (ASIC).
  • ASIC application-specific integrated circuit
  • Various embodiments of the present document include one or more instructions stored in a storage medium (e.g., 134 in FIG. 2) (e.g., internal memory or external memory) that can be read by a machine (e.g., an electronic device). It may be implemented as containing software (e.g., a program). For example, a processor (e.g., processor 135) of a device (e.g., electronic device 130) may call at least one instruction among one or more instructions stored from a storage medium and execute it. This means that the device It enables operation to perform at least one function according to the at least one instruction called.
  • the one or more instructions may include code generated by a compiler or code executable by an interpreter.
  • a readable storage medium may be provided in the form of a non-transitory storage medium, where 'non-transitory' refers to a device in which the storage medium is tangible and a signal (e.g. electromagnetic wave). ), and this term does not distinguish between cases where data is semi-permanently stored in a storage medium and cases where data is stored temporarily.
  • 'non-transitory' refers to a device in which the storage medium is tangible and a signal (e.g. electromagnetic wave).
  • Computer program products are commodities and can be traded between sellers and buyers.
  • the computer program product may be distributed in the form of a machine-readable storage medium (e.g. compact disc read only memory (CD-ROM)) or via an application store (e.g. Play Store TM ) or on two user devices (e.g. It can be distributed (e.g. downloaded or uploaded) directly between smartphones) or online.
  • a machine-readable storage medium e.g. compact disc read only memory (CD-ROM)
  • an application store e.g. Play Store TM
  • two user devices e.g. It can be distributed (e.g. downloaded or uploaded) directly between smartphones) or online.
  • at least a portion of the computer program product may be at least temporarily stored or temporarily created in a machine-readable storage medium, such as the memory of a manufacturer's server, an application store's server, or a relay server.
  • Components according to various embodiments of this document may be implemented in the form of software or hardware such as a digital signal processor (DSP), field programmable gate array (FPGA), or application specific integrated circuit (ASIC), and perform certain roles. can do.
  • DSP digital signal processor
  • FPGA field programmable gate array
  • ASIC application specific integrated circuit
  • 'Components' are not limited to software or hardware, and each component may be configured to reside on an addressable storage medium or may be configured to run on one or more processors.
  • a component may include components such as software components, icon-oriented software components, class components, and task components, as well as processes, functions, properties, procedures, and subroutines. , may include segments of program code, drivers, firmware, microcode, circuitry, data, databases, data structures, tables, arrays, and variables.
  • each component (eg, module or program) of the above-described components may include a single entity or a plurality of entities.
  • one or more of the components or operations described above may be omitted, or one or more other components or operations may be added.
  • multiple components eg, modules or programs
  • the integrated component may perform one or more functions of each component of the plurality of components in the same or similar manner as those performed by the corresponding component of the plurality of components prior to the integration. .
  • operations performed by a module, program, or other component may be executed sequentially, in parallel, iteratively, or heuristically, or one or more of the operations may be executed in a different order, or omitted. Alternatively, one or more other operations may be added.

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Abstract

An electronic device provided in an electronic vehicle according to one embodiment disclosed herein comprises: a display; and a processor functionally connected to the display. The processor can: identify a charging recommended section on a designated first route on the basis of a travelable distance of the electronic vehicle; identify charging stations near the identified charging recommended section; group the identified charging stations according to proximity to the charging recommended section; check a list of categories of infrastructure near the charging stations within each group; and output group-specific icons related to a representative category of the nearby infrastructure and the charging stations within each group through the display in relation to the charging recommended section.

Description

전자 장치 및 충전소 정보 제공 방법How to provide electronic device and charging station information
본 연구는 산업통상자원부와 한국산업기술평가관리원이 지원하는 자율주행기술개발혁신사업(20014361)으로 수행된 연구결과입니다.This study is the result of research conducted under the Autonomous Driving Technology Development and Innovation Project (20014361) supported by the Ministry of Trade, Industry and Energy and the Korea Evaluation Institute of Industrial Technology.
본 문서에서 개시되는 다양한 실시 예들은, 전기차 충전 정보 제공 기술과 관련된다.Various embodiments disclosed in this document are related to technology for providing electric vehicle charging information.
환경규제의 강화와 에너지 비용 절감 추세에 따라 환경 친화적인 전기자동차(EV; electronic vehicle)에 대한 수요가 증가하고 있다. 전기 자동차는 내연기관 자동차의 휘발유 에너지 대신 배터리 전기를 사용하므로, 정기적으로 배터리를 충전해야 한다. 따라서, 전기차 증가에 따라 전기차 충전소도 점점 늘어나고 있어, 사용자는 그 선택에 대한 고민이 생겼다.Demand for environmentally friendly electric vehicles (EVs) is increasing due to strengthening environmental regulations and reducing energy costs. Electric vehicles use battery electricity instead of the gasoline energy of internal combustion engine vehicles, so the batteries must be charged regularly. Therefore, as electric vehicles increase, the number of electric vehicle charging stations is also increasing, leaving users with concerns about their choice.
더욱이, 전기차는 배터리 충전을 이용한 사용자의 대기 시간이 긴데, 고속 충전소가 아니거나 대기인원이 있는 경우에는 그 대기 시간은 더 길어질 수 있다. 따라서, 사용자들은 근접 인프라(예: 식당, 커피숍)를 검색 및 이용하여 대기 시간을 좀더 효율적으로 사용하고 있다. Moreover, electric vehicles have a long waiting time for users to charge their batteries, and if there are not fast charging stations or there are people waiting, the waiting time can be even longer. Therefore, users are using waiting time more efficiently by searching for and using nearby infrastructure (e.g. restaurants, coffee shops).
본 문서에 개시되는 다양한 실시 예들은 전기차 충전소의 정보를 인프라와 관련하여 제공할 수 있는 전자 장치 및 충전소 정보 제공 방법을 제공할 수 있다.Various embodiments disclosed in this document can provide an electronic device that can provide information about an electric vehicle charging station in relation to infrastructure and a method of providing charging station information.
본 문서에 개시되는 일 실시 예에 따른 전기차에 구비된 전자 장치는, 디스플레이; 및 상기 디스플레이에 기능적으로 연결된 프로세서를 포함하고, 상기 프로세서는, 전기차의 주행 가능 거리에 기반하여 지정된 제1 경로상의 충전 권장 구간을 확인하고, 상기 확인된 충전 권장 구간에 각기 인접한 충전소들을 확인하고, 상기 충전 권장 구간과의 인접도 또는 상기 확인된 충전소들 간의 인접도 중 적어도 하나의 인접도에 따라 상기 확인된 충전소들을 그룹화하고, 각 그룹 내 충전소에 인접한 인프라의 카테고리 목록을 확인하고, 상기 인접한 인프라의 대표 카테고리 및 상기 각 그룹 내 충전소에 관련된 그룹별 아이콘을 상기 충전 권장 구간과 관련하여 상기 디스플레이를 통해 출력할 수 있다.An electronic device provided in an electric vehicle according to an embodiment disclosed in this document includes a display; and a processor functionally connected to the display, wherein the processor checks a recommended charging section on a designated first route based on the driving distance of the electric vehicle, and checks charging stations adjacent to the confirmed recommended charging section, The confirmed charging stations are grouped according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations, a category list of infrastructure adjacent to the charging station within each group is checked, and the adjacent infrastructure is identified. Representative categories of and group-specific icons related to charging stations within each group may be output through the display in relation to the recommended charging section.
또한, 본 문서에 개시되는 일 실시 예에 따른 전자 장치에 의한 충전소 정보 제공 방법은, 전기차의 주행 가능 거리에 기반하여 지정된 제1 경로상의 충전 권장 구간을 확인하는 동작; 상기 확인된 충전 권장 구간에 각기 인접한 충전소들을 확인하는 동작; 상기 충전 권장 구간과의 인접도 또는 상기 확인된 충전소들 간의 인접도 중 적어도 하나의 인접도에 따라 상기 확인된 충전소들을 그룹화하는 동작; 각 그룹 내 충전소에 대한 인접한 인프라의 카테고리를 확인하는 동작; 및 상기 인접한 인프라의 대표 카테고리 및 상기 각 그룹 내 충전소에 관련된 그룹별 아이콘을 표시하는 동작을 포함할 수 있다.In addition, a method of providing charging station information by an electronic device according to an embodiment disclosed in this document includes the operation of checking a recommended charging section on a designated first route based on the driving distance of an electric vehicle; An operation of checking charging stations adjacent to the confirmed charging recommended section; Grouping the identified charging stations according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations; An operation to check the category of adjacent infrastructure for the charging station within each group; and displaying group-specific icons related to representative categories of the adjacent infrastructure and charging stations within each group.
본 문서에 개시되는 다양한 실시 예들에 따르면, 전기차 충전소의 정보를 인접 인프라와 관련하여 제공할 수 있다. 이 외에, 본 문서를 통해 직접적 또는 간접적으로 파악되는 다양한 효과들이 제공될 수 있다.According to various embodiments disclosed in this document, information on electric vehicle charging stations may be provided in relation to adjacent infrastructure. In addition, various effects that can be directly or indirectly identified through this document may be provided.
도 1은 일 실시예에 따른 전자 장치의 구현 환경을 나타낸다.Figure 1 shows an implementation environment of an electronic device according to an embodiment.
도 2는 일 실시예에 따른 전자 장치의 구성도를 나타낸다.Figure 2 shows a configuration diagram of an electronic device according to an embodiment.
도 3은 일 실시예에 따른 배터리 충전 권장 구간의 표시 예시도.Figure 3 is an example display of a recommended battery charging section according to an embodiment.
도 4는 일 실시예에 따른 충전소에 관련된 그룹별 아이콘 표시의 예시도.Figure 4 is an example of displaying icons for each group related to a charging station according to an embodiment.
도 5는 일 실시예에 따른 충전소에 관련된 그룹 세부 정보 표시의 예시도.5 is an example of displaying group details related to a charging station according to one embodiment.
도 6은 일 실시예에 따른 충전소에 관련된 그룹 인접 인프라 정보 제공의 예시도.Figure 6 is an example diagram of providing group adjacent infrastructure information related to a charging station according to an embodiment.
도 7은 일 실시예에 따른 충전소 정보 제공 방법의 흐름도.Figure 7 is a flowchart of a method for providing charging station information according to an embodiment.
도 8은 본 발명의 일 실시예에 따른 전체 충전소 데이터 제공을 위한 서버 장치의 컴퓨터 시스템을 나타낸 블록도이다.Figure 8 is a block diagram showing a computer system of a server device for providing overall charging station data according to an embodiment of the present invention.
도면의 설명과 관련하여, 동일 또는 유사한 구성요소에 대해서는 동일 또는 유사한 참조 부호가 사용될 수 있다.In relation to the description of the drawings, identical or similar reference numerals may be used for identical or similar components.
도 1은 일 실시예에 따른 전자 장치의 구현 환경을 나타낸다.Figure 1 shows an implementation environment of an electronic device according to an embodiment.
도 1을 참조하면, 일 실시예에 따른 전자 장치(130)는 서버 장치(120)와 통신하여 전기차 충전소 정보를 수신할 수 있다. Referring to FIG. 1, the electronic device 130 according to one embodiment may receive electric vehicle charging station information by communicating with the server device 120.
일 실시예에 따르면, 복수의 충전소 장치들(110)은 각 전기차 충전소(이하, '충전소'로 언급될 수 있음)들에 구비된 장치로서, 지정된 통신 채널을 통해 서버 장치(120)와 연결될 수 있다. 상기 지정된 통신 채널은 예를 들면, LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G 또는 5G 중 적어도 하나의 통신 채널을 포함할 수 있다. 하지만, 이에 한정되지 않는다.According to one embodiment, the plurality of charging station devices 110 are devices provided at each electric vehicle charging station (hereinafter referred to as a 'charging station') and can be connected to the server device 120 through a designated communication channel. there is. The designated communication channel may include, for example, at least one of LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G, or 5G. However, it is not limited to this.
일 실시예에 따르면, 각 충전소 장치들(110)은 개별 충전소 정보를 서버 장치(120)에 송신할 수 있다. 상기 개별 충전소 정보는 예를 들면, 각 충전소에 구비된 충전기 대수, 충전기 종류(예: 급속 충전기, 완속 충전기), 대기 인원, 또는 충전 비용(예: 할인정보) 중 적어도 하나의 정보를 포함할 수 있다.According to one embodiment, each charging station device 110 may transmit individual charging station information to the server device 120. The individual charging station information may include, for example, at least one of the number of chargers provided at each charging station, type of charger (e.g., fast charger, slow charger), number of people waiting, or charging cost (e.g., discount information). there is.
일 실시예에 따르면, 서버 장치(120)는 지정된 통신 채널을 통해 각 충전소 장치들(110)로부터 개별 충전소 정보를 수신할 수 있다. 서버 장치(120)는 수신된 개별 충전소 정보를 각 충전소의 위치 정보와 관련하여 저장할 수 있다. 서버 장치(120)는 예를 들면, 교통 정보(예: TPEG) 제공 장치 또는 내비게이션 서비스 장치 중 적어도 하나의 장치일 수 있다.According to one embodiment, the server device 120 may receive individual charging station information from each charging station device 110 through a designated communication channel. The server device 120 may store the received individual charging station information in relation to the location information of each charging station. The server device 120 may be, for example, at least one of a traffic information (eg, TPEG) providing device or a navigation service device.
일 실시예에 따르면, 서버 장치(120)는 전자 장치(130)의 요청을 수신하면, 해당 요청에 대응하는 충전소 정보를 제공할 수 있다. 예를 들어, 서버 장치(120)는 전자 장치(130)로부터 경로 정보(예: 충전 권장 구간 정보)를 수신하면, 충전 권장 구간에 인접한 충전소를 검색할 수 있다. 서버 장치(120)는 검색된 모든 충전소에 대한 개별 충전소 정보 및 관련 위치 정보를 포함하는 구간 충전소 데이터를 생성할 수 있다. 서버 장치(120)는 생성된 구간 충전소 데이터를 전자 장치(130)에 송신할 수 있다. According to one embodiment, when the server device 120 receives a request from the electronic device 130, it may provide charging station information corresponding to the request. For example, when the server device 120 receives route information (eg, recommended charging section information) from the electronic device 130, the server device 120 may search for a charging station adjacent to the recommended charging section. The server device 120 may generate section charging station data including individual charging station information and related location information for all searched charging stations. The server device 120 may transmit the generated section charging station data to the electronic device 130.
일 실시예에 따르면, 전자 장치(130)는 전기차에 구비(예: 내장 또는 추가 설치)되어, 사용자에게 경로 안내 서비스를 제공 가능한 장치일 수 있다. 전자 장치(130)는 예를 들면, 내비게이션 장치, 헤드 마운트 유닛, 헤드 업 디스플레이, 내비게이션 앱이 설치된 사용자 단말 중 적어도 하나의 장치를 포함할 수 있다. According to one embodiment, the electronic device 130 may be a device that is provided (e.g., built-in or additionally installed) in an electric vehicle and can provide a route guidance service to a user. The electronic device 130 may include, for example, at least one of a navigation device, a head mounted unit, a head-up display, and a user terminal on which a navigation app is installed.
일 실시예에 따르면, 전자 장치(130)는 전기차에 내장(예: built-in)되거나, 전기차의 전자 제어 유닛과 데이터를 송수신하도록 구비되어, 해당 전자 제어 유닛과 유/무선으로 연결될 수 있다. 이 경우, 상기 송수신되는 데이터는 배터리에 의해 주행 가능 거리 또는 배터리의 잔량 중 적어도 하나의 정보를 포함할 수 있다. According to one embodiment, the electronic device 130 may be built-in (e.g., built-in) in an electric vehicle, or may be provided to transmit and receive data with the electronic control unit of the electric vehicle, and may be connected wired/wireless to the electronic control unit. In this case, the transmitted and received data may include at least one information of the distance that can be driven by the battery or the remaining amount of the battery.
일 실시예에 따르면, 전자 장치(130)는 목적지에 이르는 제1 경로가 설정되면, 배터리의 잔량에 따른 제1 경로에서 충전 권장 구간을 확인할 수 있다. 예를 들어, 전자 장치(130)는 배터리의 잔량에 따른 주행 가능 거리를 확인하고, 주행 가능 거리가 제1 경로의 전체 주행 거리 이하인지를 확인할 수 있다. 주행 가능 거리가 제1 경로의 전체 주행 거리 이하인 경우에 전자 장치(130)는 제1 경로의 목적지 인근의 일부 구간을 충전 권장 구간으로 결정할 수 있다. According to one embodiment, when the first route to the destination is set, the electronic device 130 may check a recommended charging section on the first route according to the remaining battery capacity. For example, the electronic device 130 may check the possible driving distance according to the remaining battery capacity and check whether the possible driving distance is less than or equal to the total driving distance of the first route. When the possible driving distance is less than the total driving distance of the first route, the electronic device 130 may determine a partial section near the destination of the first route as a recommended charging section.
일 실시예에 따르면, 전자 장치(130)는 충전 권장 구간을 확인(또는 결정)하면, 충전 권장 구간의 정보를 서버 장치(120)에 송신할 수 있다. 전자 장치(130)는 그에 대한 응답으로 서버 장치(120)로부터 충전 권장 구간에 인접한 충전소 정보를 포함하는 구간 충전소 데이터를 수신할 수 있다. 상기 충전 권장 구간의 정보는 예를 들면, 충전 권장 구간에 포함된 링크 ID 목록을 포함할 수 있다. 상기 구간 충전소 데이터는 예를 들면, 충전 권장 구간에 제1 지정된 거리 이내로 인접한 충전소의 개별 충전소 정보 및 관련 위치 정보를 포함할 수 있다. 상기 제1 지정된 거리는 예를 들면, 5km 이하의 거리일 수 있다. 만약, 제1 지정된 거리 내로 인접한 충전소가 존재하지 않는 경우, 제1 지정된 거리는 연장될 수 있다. According to one embodiment, when the electronic device 130 confirms (or determines) a recommended charging section, it may transmit information on the recommended charging section to the server device 120. In response, the electronic device 130 may receive section charging station data including information on charging stations adjacent to the recommended charging section from the server device 120. The information on the recommended charging section may include, for example, a list of link IDs included in the recommended charging section. For example, the section charging station data may include individual charging station information and related location information of charging stations adjacent to a charging recommended section within a first specified distance. The first designated distance may be, for example, a distance of 5 km or less. If there is no adjacent charging station within the first designated distance, the first designated distance may be extended.
일 실시예에 따르면, 전자 장치(130)는 구간 충전소 데이터를 이용하여 충전 권장 구간에 인접한 개별 충전소를 확인하고, 개별 충전소를 충전 권장 구간과의 인접도에 따라 그룹화할 수 있다. 예를 들어, 전자 장치(130)는 개별 충전소에서 충전 권장 구간에 이르는 주행 거리(예: 최단 주행 거리)를 확인하고, 확인된 거리가 속하는 범위에 따라 개별 충전소들을 그룹화할 수 있다. 전자 장치(130)는 개별 충전소들 간의 인접도에 따라 개별 충전소들을 그룹화할 수 있다. 예를 들어, 전자 장치(130)는 개별 충전소들 중 상대적으로 거리가 가까운 충전소들을 그룹화할 수 있다.According to one embodiment, the electronic device 130 may use section charging station data to identify individual charging stations adjacent to a recommended charging section and group the individual charging stations according to their proximity to the recommended charging section. For example, the electronic device 130 may check the driving distance (e.g., shortest driving distance) from an individual charging station to a recommended charging section, and group individual charging stations according to the range to which the confirmed distance falls. The electronic device 130 may group individual charging stations according to the proximity between the individual charging stations. For example, the electronic device 130 may group charging stations that are relatively close in distance among individual charging stations.
일 실시예에 따르면, 전자 장치(130)는 지도 데이터에 기반하여 각 그룹 내 충전소와 인접한 인프라(예: POI(point of interest))를 확인할 수 있다. 전자 장치(130)는 확인된 인프라를 POI 카테고리 별로 분류하고, 개별 그룹에 대하여 각기 적어도 하나의 대표 카테고리를 결정할 수 있다. 예를 들어, 전자 장치(130)는 개별 충전소와의 도보 이동 거리가 가까운 순으로, 상대적으로 개수가 많은 순으로 또는 사용자 선호도가 높은 순으로 적어도 하나의 POI 카테고리를 대표 카테고리로 결정할 수 있다.According to one embodiment, the electronic device 130 may check infrastructure (eg, point of interest (POI)) adjacent to a charging station within each group based on map data. The electronic device 130 may classify the identified infrastructure into POI categories and determine at least one representative category for each individual group. For example, the electronic device 130 may determine at least one POI category as a representative category in the order of short walking distance to an individual charging station, relatively large number, or high user preference.
일 실시예에 따르면, 전자 장치(130)는 대표 카테고리 및 그룹 내 충전소와 관련된 그룹별 아이콘을 충전 권장 구간과 관련하여 디스플레이에 출력할 수 있다. 일 실시예에서, 전자 장치(130)는 충전기 종류, 대기 인원, 그룹 내 충전소 개수, 또는 대표 경유 주행 시간 중 적어도 하나의 그룹 관련 충전소 정보를 그룹별 아이콘과 더 관련하여 출력할 수 있다. According to one embodiment, the electronic device 130 may output group-specific icons related to the representative category and charging stations within the group on the display in relation to the recommended charging section. In one embodiment, the electronic device 130 may output at least one group-related charging station information among the type of charger, number of people waiting, number of charging stations in the group, or representative transit travel time in further relation to the icon for each group.
일 실시예에 따르면, 전자 장치(130)는 그룹별 아이콘 중 하나가 선택되면, 그룹에 포함된 인프라 카테고리 목록을 디스플레이에 출력할 수 있다. 전자 장치(130)는 카테고리 목록 중 하나가 선택되면 선택된 카테고리에 대한 세부 정보를 제공할 수 있다. 상기 세부 정보는 충전소로부터 인프라 간의 도로 이동 거리, 대기 인원, 보유 충전기 종류를 포함할 수 있다. According to one embodiment, when one of the icons for each group is selected, the electronic device 130 may output a list of infrastructure categories included in the group on the display. When one of the category lists is selected, the electronic device 130 may provide detailed information about the selected category. The detailed information may include road travel distance between the charging station and the infrastructure, number of people waiting, and type of charger possessed.
일 실시예에 따르면, 전자 장치(130)는 인프라 또는 충전소 중 하나를 통한 사용자 선택에 기반하여 선택(또는 관련)된 충전소에 대한 경유 주행 경로를 제공할 수 있다. According to one embodiment, the electronic device 130 may provide a driving route via a selected (or related to) charging station based on the user's selection of one of the infrastructure or the charging station.
상술한 실시예에 따르면, 충전 권장 구간 및 상기 세부 정보 중 일부 정보(예: 대기 인원)는 실시간으로 변동되는 정보일 수 있다. 따라서, 전자 장치(130)는 최초 경로 탐색 시에 충전 권장 구간 및 그에 관련된 충전소 관련 정보에 제공한 이후에 업데이트하여 제공할 수 있다. 전자 장치(130)는 업데이트된 정보를 경로 안내 화면에 - 예컨대, 주행 경로의 우측에 - 표시할 수 있다. According to the above-described embodiment, the recommended charging section and some of the detailed information (e.g., number of people waiting) may be information that changes in real time. Accordingly, the electronic device 130 may update the recommended charging section and information related to the charging station when searching for the first route. The electronic device 130 may display updated information on the route guidance screen - for example, on the right side of the driving route.
다양한 실시예에 따르면, 서버 장치(120)는 전자 장치(130)에 요청 없이, 충전소 정보를 방송할 수 있다. 예를 들어, 서버 장치(120)는 지역별로 수집된 모든 개별 충전소 정보 및 관련 위치 정보를 포함하는 전체 충전소 데이터를 주기적으로 방송할 수 있다. 이 경우, 전자 장치(130)가 방송된 전체 충전소 데이터를 수신하고, 충전소 전기차의 위치 정보에 기반하여 전체 충전소 데이터(또는, 지역별 충전소 데이터)를 가공하여 구간 충전소 데이터를 생성할 수 있다. 하지만, 이에 한정되지 않는다. 다만, 이하의 문서에서는 설명의 편의성을 위하여 전자 장치(130)가 서버 장치(120)에 의해 방송된 전체 충전소 데이터(또는, 지역별 충전소 데이터)를 수신하고, 전체 충전소 데이터에 기반하여 구간 충전소 데이터를 생성하는 경우를 예로 들어 설명한다. According to various embodiments, the server device 120 may broadcast charging station information to the electronic device 130 without a request. For example, server device 120 may periodically broadcast overall charging station data including all individual charging station information and associated location information collected by region. In this case, the electronic device 130 may receive the broadcasted overall charging station data and process the entire charging station data (or regional charging station data) based on the location information of the charging station electric vehicle to generate section charging station data. However, it is not limited to this. However, in the following document, for convenience of explanation, the electronic device 130 receives the entire charging station data (or regional charging station data) broadcast by the server device 120 and generates section charging station data based on the entire charging station data. This will be explained using a creation case as an example.
이와 같이, 일 실시예에 따른 전자 장치(130)는 차량 주행 경로의 충전 권장 구간에 인접한 충전소 그룹을 개별 충전소와 인접한 인프라 정보(예: 대표 POI 카테고리) 및 그에 대한 도보 이동 거리 등과 함께 제공하므로, 사용자로 하여금 경유 주행 시간은 물론 충전을 위한 대기 시간의 사용을 고려하여 충전소를 선택하도록 지원할 수 있다.In this way, the electronic device 130 according to one embodiment provides a group of charging stations adjacent to the recommended charging section of the vehicle driving route along with infrastructure information adjacent to the individual charging station (e.g., representative POI category) and walking distance therefor, It is possible to assist the user in selecting a charging station by considering the use of transit time as well as waiting time for charging.
도 2는 일 실시예에 따른 전자 장치의 구성도를 나타낸다.Figure 2 shows a configuration diagram of an electronic device according to an embodiment.
도 2를 참조하면, 일 실시예에 따른 전자 장치(130)는 입력 장치(131), 디스플레이(132), 통신 모듈(133), 메모리(134) 및 프로세서(135)를 포함할 수 있다. 일 실시 예에서, 전자 장치(130)는 일부 구성요소가 생략되거나, 추가적인 구성요소를 더 포함할 수 있다. 예를 들어, 전자 장치(130)는 배터리(예: 141)를 더 포함하고, 배터리(예: 141)의 충/방전을 제어할 수 있다. 또한, 전자 장치(130)의 구성요소들 중 일부가 결합되어 하나의 개체로 구성되되, 결합 이전의 해당 구성요소들의 기능을 동일하게 수행할 수 있다. 예를 들어, 전자 장치(130)의 구성요소들 중 일부는 제1 장치에 포함되고, 나머지는 제2 장치에 포함되어, 통신 모듈(133)을 통해 서로 간에 데이터를 송수신할 수 있다.Referring to FIG. 2 , the electronic device 130 according to one embodiment may include an input device 131, a display 132, a communication module 133, a memory 134, and a processor 135. In one embodiment, the electronic device 130 may omit some components or may further include additional components. For example, the electronic device 130 may further include a battery (eg, 141) and control charging/discharging of the battery (eg, 141). Additionally, some of the components of the electronic device 130 may be combined to form a single entity, but the functions of the components before combination may be performed in the same manner. For example, some of the components of the electronic device 130 may be included in the first device and others may be included in the second device, and data may be transmitted and received between them through the communication module 133.
입력 장치(131)는 전자 장치(130)을 사용하는 사용자 입력을 수신할 수 있다. 입력 장치(131)는 예를 들어, 버튼, 터치스크린, 마이크 중 적어도 하나의 입력 감지 회로를 포함할 수 있다.The input device 131 may receive user input using the electronic device 130. The input device 131 may include at least one input detection circuit selected from, for example, a button, a touch screen, and a microphone.
디스플레이(132)는 프로세서(135)의 제어에 따라 기호, 숫자 또는 문자 중 적어도 하나의 데이터를 시각적으로 출력할 수 있다. 디스플레이(132)는 예를 들면, 액정 디스플레이, OLED, 터치스크린 디스플레이, 헤드 유닛, 헤드 업 디스플레이, 또는 3차원 디스플레이 중 적어도 하나의 출력 장치를 포함할 수 있다.The display 132 may visually output at least one data of symbols, numbers, or letters under the control of the processor 135. The display 132 may include at least one output device selected from, for example, a liquid crystal display, OLED, a touch screen display, a head unit, a head-up display, or a three-dimensional display.
통신 모듈(133)은 전자 장치(130)와 다른 장치(예: 서버 장치(120), 차량 제어 장치(140)) 간의 통신 채널 또는 무선 통신 채널의 수립, 및 수립된 통신 채널을 통한 통신 수행을 지원할 수 있다. 상기 통신 채널은 예를 들어, LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G 또는 5G 중 적어도 하나의 통신 채널을 포함할 수 있다. 상기 통신 채널은 무선 랜(Wireless LAN), 와이파이(Wi-Fi), 블루투스(Bluetooth), 지그비(Zigbee), WFD(Wi-Fi Direct), UWB(Ultrawideband), 적외선 통신(IrDA; Infrared Data Association), BLE (Bluetooth Low Energy), NFC(Near Field Communication)와 같은 통신 방법을 포함할 수 있다. 상기 통신 채널은 V2V(Vehicle to Vehicle), V2I(Vehicle to Infrastructure), V2N(Vehicle to Nomadic Device), V2P(Vehicle to Pedestrian)와 같은 V2X 통신 채널을 포함할 수 있다. 상기 통신 채널은 CAN(controller area network), 또는 MOST(media oriented systems transport) 중 적어도 하나의 차량 네트워크 채널을 포함할 수 있다.The communication module 133 establishes a communication channel or wireless communication channel between the electronic device 130 and another device (e.g., server device 120, vehicle control device 140), and performs communication through the established communication channel. Support is available. The communication channel may include, for example, at least one of LAN, FTTH, xDSL, WiFi, Wibro, 3G, 4G, or 5G. The communication channels include Wireless LAN, Wi-Fi, Bluetooth, Zigbee, Wi-Fi Direct (WFD), Ultrawideband (UWB), and Infrared Data Association (IrDA). , BLE (Bluetooth Low Energy), and NFC (Near Field Communication) may be included. The communication channels may include V2X communication channels such as Vehicle to Vehicle (V2V), Vehicle to Infrastructure (V2I), Vehicle to Nomadic Device (V2N), and Vehicle to Pedestrian (V2P). The communication channel may include at least one vehicle network channel selected from CAN (controller area network) or MOST (media oriented systems transport).
메모리(134)는 전자 장치(130)의 적어도 하나의 구성요소(예: 프로세서(135))에 의해 사용되는 다양한 데이터를 저장할 수 있다. 데이터는 예를 들어, 소프트웨어 및 이와 관련된 명령에 대한 입력 데이터 또는 출력 데이터를 포함할 수 있다. 예를 들어, 메모리(134)는 전기차 충전소 정보 제공을 위한 적어도 하나의 인스트럭션을 저장할 수 있다. 예를 들어, 메모리(134)는 충전 권장 구간에 인접한 충전소 검색, 검색된 충전소 정보 제공을 위한 적어도 하나의 인스트럭션을 저장할 수 있다. The memory 134 may store various data used by at least one component (eg, processor 135) of the electronic device 130. Data may include, for example, input data or output data for software and instructions related thereto. For example, the memory 134 may store at least one instruction for providing electric vehicle charging station information. For example, the memory 134 may store at least one instruction for searching for a charging station adjacent to a recommended charging section and providing information on the searched charging station.
일 실시예에 따르면, 메모리(134)는 경로 탐색, 경로 안내 및 경유 경로 안내를 위한 적어도 하나의 인스트럭션 및 지도 데이터를 저장할 수 있다. 메모리(134)는 차량과의 인접도에 따른 충전소 그룹화, 인접 인프라에 대한 카테고리 분류, 대표 카테고리 지정, 또는 그룹별 아이콘 출력을 위한 적어도 하나의 인스트럭션을 저장할 수 있다. According to one embodiment, the memory 134 may store at least one instruction and map data for route search, route guidance, and transit route guidance. The memory 134 may store at least one instruction for grouping charging stations according to proximity to vehicles, categorizing adjacent infrastructure, designating representative categories, or outputting icons for each group.
메모리(134)는 다양한 형태의 휘발성 메모리 또는 비휘발성 메모리를 포함할 수 있다. 예를 들어, 메모리는 ROM(read only memory) 및 RAM(random access memory)를 포함할 수 있다. 본 기재의 실시예에서 메모리는 프로세서의 내부 또는 외부에 위치할 수 있고, 메모리(134)는 이미 알려진 다양한 수단을 통해 프로세서(135)와 연결될 수 있다. Memory 134 may include various types of volatile memory or non-volatile memory. For example, memory may include read only memory (ROM) and random access memory (RAM). In an embodiment of the present disclosure, the memory may be located inside or outside the processor, and the memory 134 may be connected to the processor 135 through various known means.
프로세서(135)는 전자 장치(130)의 적어도 하나의 다른 구성요소(예: 하드웨어 또는 소프트웨어 구성요소)를 제어할 수 있고, 다양한 데이터 처리 또는 연산을 수행할 수 있다. 프로세서(135)는 예를 들어, 중앙처리장치(CPU), 그래픽처리장치(GPU), 마이크로프로세서, 애플리케이션 프로세서(application processor), 주문형 반도체(ASIC(application specific integrated circuit), FPGA(field programmable gate arrays)) 중 적어도 하나를 포함할 수 있으며, 복수의 코어를 가질 수 있다.The processor 135 may control at least one other component (eg, hardware or software component) of the electronic device 130 and may perform various data processing or calculations. The processor 135 may include, for example, a central processing unit (CPU), a graphics processing unit (GPU), a microprocessor, an application processor, an application specific integrated circuit (ASIC), or a field programmable gate arrays (FPGA). )), and may have a plurality of cores.
일 실시예에 따르면, 프로세서(135)는 통신 모듈(133)을 통해 서버 장치(120)로부터의 전체(또는, 지역별) 충전소 데이터를 수신하면, 전체(또는, 지역별) 충전소 데이터를 메모리(134)에 저장할 수 있다.According to one embodiment, when the processor 135 receives the overall (or regional) charging station data from the server device 120 through the communication module 133, the processor 135 stores the entire (or regional) charging station data in the memory 134. It can be saved in .
일 실시예에 따르면, 프로세서(135)는 통신 모듈(133)을 통해 차량 제어 유닛(140)으로부터 전기차의 배터리(141)를 이용한 주행 가능 거리를 확인할 수 있다. 예를 들어, 프로세서(135)는 통신 모듈(133)을 통해 헤드 유닛으로부터 주행 가능 거리를 수신할 수 있다. 다른 예를 들어, 프로세서(135)는 통신 모듈(133)을 통해 배터리 제어 유닛과 통신하여 배터리 잔량을 수신하고, 배터리 잔량에 기반하여 주행 가능 거리를 산출할 수 있다. 프로세서(135)는 예를 들면, 차량의 실시간 연료 소모율(예: 연비)을 고려하여 배터리(141)의 잔량으로부터 주행 가능 거리를 산출할 수 있다.According to one embodiment, the processor 135 may check the driving distance using the battery 141 of the electric vehicle from the vehicle control unit 140 through the communication module 133. For example, the processor 135 may receive the driving distance from the head unit through the communication module 133. For another example, the processor 135 may communicate with the battery control unit through the communication module 133 to receive the remaining battery capacity and calculate the possible driving distance based on the remaining battery capacity. For example, the processor 135 may calculate the driving distance from the remaining amount of the battery 141 by considering the real-time fuel consumption rate (eg, fuel efficiency) of the vehicle.
일 실시예에 따르면, 프로세서(135)는 입력 장치(131)를 통해 목적지에 이르는 제1 경로의 탐색이 요청되면, 지도 데이터에 기반하여 목적지에 이르는 제1 경로를 탐색할 수 있다. 프로세서(135)는 탐색된 제1 경로의 전체 구간에 대한 요약 지도를 디스플레이(132)를 통해 표시할 수 있다. 일 실시예에 따르면, 프로세서(135)는 제1 경로의 탐색 후 입력 장치(131)를 통해 추가 입력 없이 지정된 시간이 경과하면, 제1 경로를 경로 안내를 위한 경로로 설정할 수 있다.According to one embodiment, when search for a first route to the destination is requested through the input device 131, the processor 135 may search for the first route to the destination based on map data. The processor 135 may display a summary map of the entire section of the discovered first route through the display 132. According to one embodiment, when a specified time elapses without additional input through the input device 131 after searching for the first path, the processor 135 may set the first path as a path for route guidance.
일 실시예에 따르면, 프로세서(135)는 전기차의 주행 가능 거리(또는, 배터리(141)의 잔량에 따른 주행 가능 거리)에 기반하여 제1 경로상의 충전 권장 구간을 확인할 수 있다. 예를 들어, 프로세서(135)는 주행 가능 거리에서 제2 지정된 거리를 뺀 제1 지점으로부터 주행 가능 거리에서 제3 지정된 거리(제2 지정된 거리를 초과함)를 뺀 제2 지점까지의 거리를 충전 권장 구간으로 결정할 수 있다. 상기 제2 지정된 거리[m]는 예컨대, 0 또는 그 이상의 상수로 지정될 수 있다. 상기 제3 지정된 거리[m]는 예컨대, 전기차 배터리(141)를 추가 충전하여도 이후의 충전 성능이 크게 저하되지 않는 - 메모리 현상을 일으키지 않는 - 배터리의 잔량에 대응하는 주행 가능 거리로 지정될 수 있다. According to one embodiment, the processor 135 may check the recommended charging section on the first route based on the drivable distance of the electric vehicle (or the drivable distance according to the remaining amount of the battery 141). For example, the processor 135 may charge the distance from a first point of the driving range minus a second specified distance to a second point of the driving range minus a third designated distance (exceeding the second designated distance). You can decide on the recommended section. The second designated distance [m] may be designated as a constant of 0 or more, for example. For example, the third designated distance [m] may be designated as a drivable distance corresponding to the remaining amount of the battery, which does not cause a memory phenomenon and does not significantly deteriorate subsequent charging performance even if the electric vehicle battery 141 is additionally charged. there is.
일 실시예에 따르면, 프로세서(135)는 배터리(141)의 잔량에 의한 주행 가능 거리가 제1 경로에 따른 전체 주행 거리 이하인 경우에만 충전 권장 구간을 표시할 수 있다. 만약, 배터리(141)의 잔량이 제1 경로의 전체 구간을 주행 가능한 정도로 충분하면, 프로세서(135)는 입력 장치(131)를 통한 충전소 검색 요청이 있는 경우에만 현재 주행 구간에 인접한 충전소 정보를 제공할 수 있다. 또는, 프로세서(135)는 주행 가능 거리에 충전 권장 구간이 포함되지 않는 경우, 충전 권장 구간 및 충전 권장 구간에 인접한 충전소 정보를 제공하지 않을 수 있다. According to one embodiment, the processor 135 may display a charging recommended section only when the possible driving distance based on the remaining amount of the battery 141 is less than or equal to the total driving distance along the first route. If the remaining charge of the battery 141 is sufficient to drive the entire section of the first route, the processor 135 provides information on charging stations adjacent to the current driving section only when a charging station search request is made through the input device 131. can do. Alternatively, if the driving range does not include the recommended charging section, the processor 135 may not provide information on the recommended charging section and charging stations adjacent to the recommended charging section.
일 실시예에 따르면, 프로세서(135)는 충전 권장 구간을 충전 긴급도에 대응하는 색상으로 표시할 수 있다. 예를 들어, 프로세서(135)는 충전 권장 구간을 확인한 때에 배터리(141)의 잔량에 따른 충전 긴급도를 확인하고, 적어도 충전 권장 구간을 상기 충전 긴급도에 대응하는 색상으로 표시할 수 있다. 프로세서(135)가 충전 긴급도에 따라 충전 권장 구간을 표시하는 예에 대해서는 도 3을 참조하여 후술한다.According to one embodiment, the processor 135 may display the recommended charging section in a color corresponding to the charging urgency. For example, when the processor 135 confirms the recommended charging section, it can check the charging urgency according to the remaining amount of the battery 141 and display at least the recommended charging section in a color corresponding to the charging urgency. An example in which the processor 135 displays a recommended charging section according to charging urgency will be described later with reference to FIG. 3 .
일 실시예에 따르면, 프로세서(135)는 충전 권장 구간을 확인하면, 충전 권장 구간에 인접한 충전소들을 확인할 수 있다. 예를 들어, 프로세서(135)는 메모리(134)로부터 전체(또는, 지역별) 충전소 데이터를 획득하고(불러오고), 전체(또는, 지역별) 충전소 데이터에 포함된 개별 충전소 위치에 기반하여 충전 권장 구간에 인접한 충전소들을 선별할 수 있다. 프로세서(135)는 예를 들어, 전체 충전소 데이터에 포함된 충전소들 중에서 충전 권장 구간의 각 지점에서 제1 지정된 거리 이하의 충전소를 선택할 수 있다. 상기 제1 지정된 거리는 예를 들면, 5km 이하의 거리일 수 있다. 만약, 제1 지정된 거리 내로 인접한 충전소가 존재하지 않는 경우, 제1 지정된 거리는 연장될 수 있다.According to one embodiment, when the processor 135 confirms the recommended charging section, it can check charging stations adjacent to the recommended charging section. For example, the processor 135 obtains (loads) overall (or regional) charging station data from the memory 134 and recommends a charging section based on the individual charging station locations included in the overall (or regional) charging station data. You can select charging stations adjacent to . For example, the processor 135 may select a charging station that is less than or equal to a first specified distance from each point of the recommended charging section among charging stations included in the entire charging station data. The first designated distance may be, for example, a distance of 5 km or less. If there is no adjacent charging station within the first designated distance, the first designated distance may be extended.
일 실시예에 따르면, 프로세서(135)는 확인(예: 선별)된 충전소들을 충전 권장 구간과의 인접도 또는 충전소 간의 인접도에 따라 그룹화할 수 있다. 예를 들어, 프로세서(135)는 충전 권장 구간의 각 지점에서 제1 거리 범위 내에 있는 충전소들을 제1 그룹으로 구성하고, 제2 거리 범위(제1 거리 범위를 초과하는 범위) 내에 있는 충전소들을 제2 그룹으로 구성할 수 있다. 프로세서(135)는 예를 들면, 충전 권장 구간의 각 지점에서 2.5km 이하의 제1 범위에 있는 충전소들을 제1 그룹으로 구성하고, 충전 권장 구간의 각 지점에서 2.5km 초과 5km 이하의 제2 범위에 있는 충전소들을 제2 그룹으로 구성할 수 있다. 이 경우, 제1 및 제2 거리 범위는 충전소 확인(또는 선별) 및 그룹화의 상한 거리인 제1 지정된 거리 이하의 거리 범위에 해당할 수 있다.According to one embodiment, the processor 135 may group confirmed (e.g., selected) charging stations according to proximity to a recommended charging section or proximity between charging stations. For example, the processor 135 configures charging stations within a first distance range at each point of the recommended charging section into a first group, and groups charging stations within a second distance range (a range exceeding the first distance range) into a first group. It can be composed of 2 groups. For example, the processor 135 configures charging stations in a first range of 2.5 km or less from each point of the charging recommended section into a first group, and a second range of more than 2.5 km and less than 5 km from each point of the charging recommended section. The charging stations in can be organized into a second group. In this case, the first and second distance ranges may correspond to a distance range below the first specified distance, which is the upper limit distance for charging station identification (or selection) and grouping.
일 실시예에 따르면, 프로세서(135)는 각 그룹 내 충전소에 인접한 인프라를 예컨대, POI(point of interest) 카테고리 별로 분류하고, 분류된 카테고리 목록 중 대표 카테고리를 결정할 수 있다. 예를 들어, 프로세서(135)는 개별 충전소와의 거리가 가까운 적어도 하나의 POI 카테고리, 사용자 선호도에 따른 적어도 하나의 POI 카테고리 또는 개수가 많은 순으로 적어도 하나의 POI 카테고리를 대표 카테고리로 결정할 수 있다.According to one embodiment, the processor 135 may classify the infrastructure adjacent to the charging station within each group by, for example, POI (point of interest) category and determine a representative category from the classified category list. For example, the processor 135 may determine as a representative category at least one POI category that is close to an individual charging station, at least one POI category according to user preference, or at least one POI category in order of number.
일 실시예에 따르면, 프로세서(135)는 인접 인프라의 대표 카테고리 및 각 그룹 내 충전소와 관련된 그룹별 아이콘을 충전 권장 구간과 관련하여 디스플레이(132)를 통해 출력할 수 있다. 예를 들어, 프로세서(135)는 충전 권장 구간의 적어도 일부와 중첩되도록 또는 충전 권장 구간의 주변에 원 형상의 그룹별 아이콘(예: 아이콘(icon))를 표시하고, 원 형상의 그룹별 아이콘 내부에 인접 인프리의 대표 카테고리 명칭을 표시할 수 있다.According to one embodiment, the processor 135 may output representative categories of adjacent infrastructure and group-specific icons related to charging stations within each group through the display 132 in relation to the recommended charging section. For example, the processor 135 displays a circle-shaped group icon (e.g., icon) so as to overlap at least a portion of the recommended charging section or around the charging recommended section, and displays a circle-shaped group icon (e.g., icon) inside the circle-shaped group icon. The representative category name of the adjacent infrastructure can be displayed.
일 실시예에 따르면, 프로세서(135)는 충전 권장 구간에서 각 그룹 내 충전소에 대응하는 크기와 위치로 그룹별 아이콘을 표시할 수 있다.According to one embodiment, the processor 135 may display icons for each group in a recommended charging section with a size and location corresponding to the charging station within each group.
예를 들어, 프로세서(135)는 각 그룹 내 충전소 개수에 대응하도록 그룹별 아이콘의 크기를 결정할 수 있다. 프로세서(135)는 각 그룹 내 개별 충전소와 충전 권장 구간 간의 최단 이동 거리를 산출하고, 그룹 별 최단 이동 거리의 평균치를 산출할 수 있다. 프로세서(135)는 충전 권장 구간 중 그룹별 최단 이동 거리의 산출에 사용된 중간 지점에서 상기 산출된 최단 이동 거리의 평균치만큼 이격된 위치에 그룹별 충전소 개수에 대응하는 크기로 그룹별 아이콘을 표시할 수 있다. 프로세서(135)가 그룹별 아이콘의 표시 위치 및 크기를 결정하는 세부 예에 대해서는 도 4를 참조하여 후술한다.For example, the processor 135 may determine the size of the icon for each group to correspond to the number of charging stations in each group. The processor 135 can calculate the shortest travel distance between individual charging stations in each group and the recommended charging section, and calculate the average of the shortest travel distances for each group. The processor 135 displays icons for each group in a size corresponding to the number of charging stations for each group at a location spaced apart from the midpoint used to calculate the shortest travel distance for each group in the recommended charging section by the average value of the calculated shortest travel distance. You can. A detailed example of how the processor 135 determines the display position and size of icons for each group will be described later with reference to FIG. 4 .
일 실시예에 따르면, 프로세서(135)는 인접 인프라의 대표 카테고리와 더불어 또는 대표 카테고리를 대신하여 적어도 하나의 그룹 관련 충전소 정보를 전기차 충전소에 대한 그룹별 아이콘과 관련하여 디스플레이(132)를 통해 표시할 수 있다. 상기 그룹 관련 충전소 정보는 예를 들면, 각 그룹에 포함된 충전기 종류, 개별 충전소의 대기 인원, 충전소 개수, 개별 충전소에 대한 대표 경유 주행 시간 또는 충전 시간 중 적어도 하나의 그룹 관련 충전소 정보를 포함할 수 있다. According to one embodiment, the processor 135 may display at least one group-related charging station information in conjunction with a group-specific icon for an electric vehicle charging station in addition to or instead of a representative category of adjacent infrastructure through the display 132. You can. The group-related charging station information may include, for example, at least one group-related charging station information among the type of charger included in each group, the number of people waiting at the individual charging station, the number of charging stations, and the representative transit time or charging time for the individual charging station. there is.
일 실시예에 따르면, 프로세서(135)는 그룹별 아이콘 중 어느 하나가 선택되면, 선택된 그룹에 포함된 개별 충전소와 관련된 세부 정보를 표시할 수 있다. According to one embodiment, when one of the icons for each group is selected, the processor 135 may display detailed information related to individual charging stations included in the selected group.
도 2에서는 프로세서(135)에 의한 그룹별 아이콘의 세부 내용 표시에 대해서 간략히 설명하고, 더 구체적인 예에 대해서는 도 4 내지 도 6를 후술한다.In FIG. 2 , the detailed display of icons for each group by the processor 135 will be briefly described, and more specific examples will be described later with reference to FIGS. 4 to 6 .
한 실시예에 따르면, 프로세서(135)는 입력 장치(131)를 통해 그룹별 아이콘 중 하나가 선택되면, 선택된 그룹에 포함된 개별 충전소 아이콘 및 카테고리 목록을 디스플레이(132)를 통해 출력할 수 있다.According to one embodiment, when one of the icons for each group is selected through the input device 131, the processor 135 may output a list of individual charging station icons and categories included in the selected group through the display 132.
한 실시예에 따르면, 프로세서(135)는 출력된 카테고리 목록 중 어느 하나의 카테고리가 선택되면, 선택된 카테고리 목록을 디스플레이(132)를 통해 출력할 수 있다.According to one embodiment, when one category is selected from the output category list, the processor 135 may output the selected category list through the display 132.
한 실시예에 따르면, 프로세서(135)는 각 인프라 별 최적 충전소 및 최적 충전소에서 각 인프라에 대한 도보 이동 시간 중 적어도 하나의 정보를 디스플레이(132)를 통해 출력할 수 있다. According to one embodiment, the processor 135 may output at least one information of the optimal charging station for each infrastructure and the walking time for each infrastructure from the optimal charging station through the display 132.
한 실시예에 따르면, 프로세서(135)는 개별 충전소 아이콘들 중 하나가 선택되면, 선택된 개별 충전소 아이콘에 대응하는 충전소 정보 및 카테고리 목록을 표시할 수 있다. According to one embodiment, when one of the individual charging station icons is selected, the processor 135 may display charging station information and a category list corresponding to the selected individual charging station icon.
한편, 사용자가 실제로 전기차 충전소에 진입하는 시간은 충전 권장 구간에 인접한 충전소를 검색하는 시간으로부터 많은 시간이 지난 시간일 수 있다. 이에, 일 실시예에 따른 프로세서(135)는 제1 경로 탐색시에 충전 권장 구간에 인접한 충전소 관련 정보(그룹별 아이콘)를 제공한후 세부 정보는 주행도중에 제공할 수 있다. 예를 들어, 프로세서(135)는 탐색된 제1 경로의 전체 구간에 대한 요약 지도를 디스플레이(132)를 통해 표시할 때 충전 권장 구간과 함께 전기차 충전소에 대한 그룹별 아이콘을 제공할 수 있다. 이후, 프로세서(135)는 구간 충전 데이터에 기반한 개별 충전소 정보의 업데이트를 모니터링함에 따라 그룹 관련 충전소 정보 중 업데이트된 정보(예: 대기 인원)를 확인할 수 있다. 프로세서(135)는 배터리(141)의 잔량에 따른 주행 가능 거리의 변화를 모니터링함에 따라 충전 권장 구간의 변화를 재확인할 수 있다. 프로세서(135)는 변화된 충전 권장 구간을 주행중인 것을 확인하면, 경로 안내 화면상에 또는 경로 안내 화면과 별개로 각 구간과 인접한 충전소들을 포함하는 그룹 아이콘, 인접한 인프라의 대표 카테고리 또는 그룹 관련 충전소 정보를 디스플레이(132)에 출력할 수 있다. Meanwhile, the time when a user actually enters an electric vehicle charging station may be a long time after searching for a charging station adjacent to the recommended charging section. Accordingly, the processor 135 according to one embodiment may provide charging station-related information (icons for each group) adjacent to the recommended charging section when searching for the first route, and then provide detailed information while driving. For example, when displaying a summary map of the entire section of the discovered first route through the display 132, the processor 135 may provide group-specific icons for electric vehicle charging stations along with a recommended charging section. Thereafter, the processor 135 monitors the update of individual charging station information based on section charging data and can confirm updated information (e.g., number of people waiting) among group-related charging station information. The processor 135 may reconfirm the change in the recommended charging section by monitoring the change in the driving distance according to the remaining amount of the battery 141. When the processor 135 confirms that a changed charging recommended section is being driven, the processor 135 displays a group icon including charging stations adjacent to each section, a representative category of adjacent infrastructure, or group-related charging station information on the route guidance screen or separately from the route guidance screen. It can be output to the display 132.
일 실시예에 따르면, 전자 장치(130)는 인접한 인프라 또는 개별 충전소 중 하나에 대한 사용자 선택에 기반하여 선택(또는 관련)된 충전소에 대한 경유 주행 경로를 제공할 수 있다. According to one embodiment, the electronic device 130 may provide a driving route via a selected (or related to) charging station based on the user's selection of either adjacent infrastructure or an individual charging station.
다양한 실시예에 따르면, 전자 장치(130)는 배터리(141)를 포함하고, 프로세서(135)는 배터리(141)의 충/방전 제어 및 배터리(141)의 잔량에 기반한 주행 가능 거리 산출과 같은 배터리(141)에 관련된 제어를 수행할 수 있다.According to various embodiments, the electronic device 130 includes a battery 141, and the processor 135 performs battery functions such as controlling charge/discharge of the battery 141 and calculating a possible driving distance based on the remaining amount of the battery 141. Control related to (141) can be performed.
이와 같이, 일 실시예에 따른 전자 장치(130)는 차량의 주행 경로 상에 위치한 충전소 중에서 충전 권장 구간에 인접한 충전소를 그룹화하고 그룹별 특성에 따라 시인성을 높일 수 있는 그룹별 아이콘으로 제공함에 따라 사용자가 적절한 시기에 배터리를 충전하도록 지원할 수 있다.In this way, the electronic device 130 according to one embodiment groups charging stations adjacent to the recommended charging section among charging stations located on the vehicle's driving path and provides group-specific icons that can increase visibility according to group characteristics, thereby providing the user with a group-specific icon. can assist in charging the battery at the appropriate time.
또한, 일 실시예에 따른 전자 장치(130)는 그룹별 특성에 따라 그룹별 아이콘의 크기와 위치를 조절하여 표시함은 물론, 그룹별 충전소의 다양한 정보(예: 급속 충전기 보유 여부, 대기 인원, 경유 주행 시간, 주변 인프라 카테고리, 인프라로의 도로 이동 거리)을 제공함에 따라 사용자가 필요에 맞는 충전소를 선택하도록 지원할 수 있다.In addition, the electronic device 130 according to one embodiment not only displays the size and position of the icon for each group by adjusting it according to the characteristics of each group, but also displays various information about the charging station for each group (e.g., whether a fast charger is available, number of people waiting, By providing information (via transit time, surrounding infrastructure category, and road travel distance to infrastructure), we can help users select a charging station that suits their needs.
뿐만 아니라, 일 실시예에 따른 전자 장치(130)는 차량의 장거리 주행 시 주행 가능 거리를 고려하여 자동으로 충전소를 경유하는 경로를 탐색하고, 사용자의 충전소 선택에 따라 또는 충전소 선택을 위한 충전소 경유 시간 및 충전 시간을 제공할 수 있다. 이에, 전기차 주행 및 충전의 편의성을 향상시킬 수 있다.In addition, the electronic device 130 according to one embodiment automatically searches for a route through a charging station in consideration of the possible driving distance when driving a long distance vehicle, and travels through the charging station according to the user's selection of the charging station or the charging station transit time for selecting the charging station. and charging time may be provided. Accordingly, the convenience of driving and charging electric vehicles can be improved.
더 나아가, 일 실시예에 따른 전자 장치(130)는 차량의 주행 정보(예: 주행 가능 거리), 충전소 인프라 정보(예: 대표 인프라, 충전 및 경유 시간) 및 실시간 교통 정보(예: 제1 경로)를 융합한 정보를 제공함에 따라 최적의 충전소 선택은 물론, 충전 시간까지 고려한 최적 경로 검색을 지원할 수 있다. Furthermore, the electronic device 130 according to one embodiment may include vehicle driving information (e.g., possible driving distance), charging station infrastructure information (e.g., representative infrastructure, charging and transit time), and real-time traffic information (e.g., first route ), it is possible to support not only the selection of the optimal charging station but also search for the optimal route that takes into account charging time.
도 3은 일 실시예에 따른 배터리 충전 권장 구간의 표시 예를 나타낸다.Figure 3 shows an example of displaying a recommended battery charging section according to an embodiment.
도 3을 참조하면, 일 실시예에 따른 프로세서(135)는 주행 경로에서 적어도 충전 권장 구간을 충전 긴급도에 대응하는 색상으로 표시할 수 있다. Referring to FIG. 3, the processor 135 according to one embodiment may display at least a charging recommended section in the driving route in a color corresponding to the charging urgency.
예를 들어, 프로세서(135)는 제1 경로가 지정된 후 출발지(또는, 차량의 현 위치)에서 목적지에 이르는 제1 경로의 전체 구간에 대한 요약 지도를 표시할 때에 배터리(141)의 잔량에 따른 충전 긴급도를 색상으로 구분하여 표시할 수 있다. For example, after the first route is designated, the processor 135 displays a summary map of the entire section of the first route from the starting point (or the current location of the vehicle) to the destination according to the remaining amount of the battery 141. Charging urgency can be displayed by color classification.
예를 들어, 프로세서(135)는 배터리(141)의 잔량이 충분한 구간은 녹색으로 표시하고, 주행 가능 거리 이후의 구간은 빨간색으로 표시할 수 있다. 또한, 프로세서(135)는 충전 권장 구간의 경우, 배터리(141)의 잔량이 적어질수록 녹색과 노란색을 혼합한 색상에서 점점 노란색과 빨간색을 혼합한 색상으로 변화시키되, 노란색의 혼합 비율을 점점 줄여서 표시할 수 있다.For example, the processor 135 may display a section in which the battery 141 has sufficient remaining charge in green, and may display a section beyond the possible driving distance in red. Additionally, in the case of the recommended charging section, the processor 135 gradually changes the color from a mixture of green and yellow to a color mixed with yellow and red as the remaining amount of the battery 141 decreases, but gradually reduces the mixing ratio of yellow. It can be displayed.
이와 같이, 일 실시예에 따른 전자 장치(130)는 충전 긴급도를 시인성이 높은 색상으로 구분 표시함에 따라 사용자가 충전 필요성을 직관적으로 파악하도록 지원할 수 있다.In this way, the electronic device 130 according to one embodiment can support the user to intuitively determine the need for charging by displaying the charging urgency in highly visible colors.
도 4는 일 실시예에 따른 그룹별 아이콘 표시의 예시도이다.Figure 4 is an example diagram of displaying icons for each group according to an embodiment.
도 4를 참조하면, 일 실시예에 따르면, 프로세서(135)는 그 내부에 충전소 개수, 경유 주행 시간 및 대표 카테고리 명칭이 표시되는 원형의 그룹별 아이콘(예: 아이콘(icon))를 표시할 수 있다. 예를 들어, 도 4의 확대된 원 내부의 글씨와 같이, 프로세서(135)는 그룹에 포함된 충전소 개수 2개, 그룹에 포함된 가장 경유 시간이 적은 제1 충전소를 경유하여 목적지까지 주행하는데 걸리는 시간(경유 주행 시간) 1시간 30분, 그룹에 포함된 대표 카테고리 명칭(예: 식당, 관광지)를 표시할 수 있다.Referring to FIG. 4, according to one embodiment, the processor 135 may display a circular group-specific icon (e.g., icon) inside which the number of charging stations, transit travel time, and representative category name are displayed. there is. For example, as shown in the text inside the enlarged circle in FIG. 4, the processor 135 determines the number of charging stations included in the group, 2, and the time it takes to drive to the destination via the first charging station included in the group with the least transit time. Time (travel time) 1 hour 30 minutes, and representative category names included in the group (e.g. restaurants, tourist attractions) can be displayed.
일 실시예에 따르면, 프로세서(135)는 그룹 내 충전소의 특성에 따라 그룹별 아이콘의 크기와 그룹별 아이콘을 표시할 위치를 결정하고, 결정된 크기와 위치에 그룹별 아이콘을 표시할 수 있다. According to one embodiment, the processor 135 may determine the size of the icon for each group and the position to display the icon for each group according to the characteristics of the charging station within the group, and display the icon for each group at the determined size and position.
한 실시예에 따르면, 프로세서(135)는 그룹별 내 충전소 개수에 대응하도록 그룹별 아이콘의 크기를 결정하고, 결정된 크기로 그룹별 아이콘을 표시할 수 있다. 즉, 도 4에서 상대적으로 큰 원으로 표시된 그룹 아이콘은 상대적으로 작은 원으로 표시된 그룹 아이콘 보다 더 많은 충전소들을 포함할 수 있다.According to one embodiment, the processor 135 may determine the size of the icon for each group to correspond to the number of charging stations in each group, and display the icon for each group at the determined size. That is, the group icon indicated by a relatively large circle in FIG. 4 may include more charging stations than the group icon indicated by a relatively small circle.
한 실시예에 따르면, 프로세서(135)는 개별 충전소와 권장 충전 구간의 지점들 간의 거리(예: 최단 이동 거리)에 기반하여 그룹별 아이콘의 표시 위치를 결정할 수 있다. 예를 들어, 프로세서(135)는 각 그룹 내 개별 충전소와 충전 권장 구간 간의 최단 이동 거리를 확인하고, 각 그룹에서 최단 이동 거리의 산출에 사용된 충전 권장 구간의 중간 지점(예: 도 4에서 양방향 화살표의 하단)으로부터 그룹 별 최단 이동 거리의 평균치만큼 이격된 위치(예: 도 4에서 양방향 화살표 상단)에 그룹별 아이콘을 표시할 수 있다. 즉, 도 4에서 상대적으로 충전 권장 구간과 가까이 표시된 그룹 아이콘은 상대적으로 멀리 표시된 그룹 아이콘 보다 가까운 충전소들을 포함할 수 있다.According to one embodiment, the processor 135 may determine the display position of the icon for each group based on the distance (e.g., shortest travel distance) between individual charging stations and points in the recommended charging section. For example, the processor 135 determines the shortest travel distance between an individual charging station in each group and the recommended charging section, and the midpoint of the recommended charging section used to calculate the shortest travel distance in each group (e.g., the two-way point in FIG. 4 Icons for each group can be displayed at a location spaced apart from the bottom of the arrow by the average of the shortest travel distance for each group (e.g., at the top of the double-headed arrow in FIG. 4). That is, in FIG. 4, a group icon displayed relatively close to the recommended charging section may include charging stations closer than a group icon displayed relatively far away.
이와 같이, 일 실시예에 따른 전자 장치(130)는 그룹별 특성에 따라 그룹별 아이콘의 크기와 위치를 조절하여 표시함은 물론, 그룹별 충전소의 경유 주행 시간, 대표 인프라 카테고리를 제공함에 따라 사용자가 표시된 아이콘 아이콘에 기반하여 직관적으로 원하는 충전소를 선택하도록 지원할 수 있다.In this way, the electronic device 130 according to one embodiment not only displays the size and position of icons for each group by adjusting them according to the characteristics of each group, but also provides travel time at charging stations for each group and representative infrastructure categories for the user. It can be supported to intuitively select the desired charging station based on the icon displayed.
도 5는 일 실시예에 따른 충전소에 관련된 그룹 세부 정보 표시의 예시도이다.Figure 5 is an example of displaying group detailed information related to a charging station according to an embodiment.
도 5를 참조하면, 일 실시예에 따르면 프로세서(135)는 입력 장치(131)를 통해 그룹별 아이콘 중 어느 하나가 선택되면, 선택된 그룹에 포함된 개별 충전소 정보를 선택된 그룹 아이콘과 관련하여 디스플레이(132)에 출력(표시)할 수 있다.Referring to FIG. 5, according to one embodiment, when one of the icons for each group is selected through the input device 131, the processor 135 displays (displays) individual charging station information included in the selected group in relation to the selected group icon. 132) can be output (displayed).
510 영역과 같이, 프로세서(135)는 선택된 그룹 아이콘의 내부에 원 형상의 개별 충전소 아이콘을 표시할 수 있다. 프로세서(135)는 개별 충전소 아이콘과 관련하여 - 예컨대, 도 5와 같이 개별 충전소 아이콘의 주변에 - 개별 충전소의 세부 정보를 표시할 수 있다. 도 5와 같이, 개별 충전소의 세부 정보는 예를 들면, 사용 가능한 충전기 종류(예: 완속/급속 충전기 사용 가능), 충전과 경유에 소요되는 시간(충전 + 경유 시간), 대기 인원(예: 1명 대기)를 포함할 수 있다. As in area 510, the processor 135 may display a circular individual charging station icon inside the selected group icon. The processor 135 may display detailed information about the individual charging station in relation to the individual charging station icon - for example, around the individual charging station icon as shown in FIG. 5 . As shown in Figure 5, the details of individual charging stations include, for example, the type of charger available (e.g., slow/fast charger available), the time required for charging and transit (charging + transit time), and the number of people waiting (e.g., 1 name waiting) may be included.
520 영역과 같이, 프로세서(135)는 상기 개별 충전소 아이콘들과 구분되는 영역에 선택된 그룹에 인접한 인프라 카테고리 목록을 별도의 화면으로 표시할 수 있다. 예를 들어, 프로세서(135)는 선택된 그룹 아이콘의 우측에 별도 화면으로 선택 그룹에 인접한 인프라 카테고리 목록인 식당, 카페, 공원, 기타를 표시할 수 있다.Like area 520, the processor 135 may display a list of infrastructure categories adjacent to the selected group on a separate screen in an area separate from the individual charging station icons. For example, the processor 135 may display a list of infrastructure categories adjacent to the selected group, such as restaurants, cafes, parks, and others, on a separate screen to the right of the selected group icon.
이와 같이, 일 실시예에 따른 전자 장치(130)는 각 그룹 내 인접 인프라 카테고리 목록과 함께 개별 충전소의 세부 정보 예컨대, 충전 및 경유 주행 시간, 급속 충전기 사용 가능 여부, 대기 인원을 제공함에 따라 사용자의 전기차 충전소 선택의 편의성과 효율성을 높일 수 있다.In this way, the electronic device 130 according to an embodiment provides detailed information of individual charging stations, such as charging and transit driving times, availability of fast chargers, and number of people waiting, along with a list of adjacent infrastructure categories within each group, thereby providing user information. The convenience and efficiency of selecting an electric vehicle charging station can be improved.
한편, 사용자가 실제로 전기차 충전소에 진입하는 시간은 충전 권장 구간에 인접한 충전소를 검색하는 시간으로부터 많은 시간이 지난 시간일 수 있다. 이에, 일 실시예에 따른 프로세서(135)는 제1 경로 탐색시에 충전 권장 구간에 인접한 충전소 관련 정보(예: 그룹별 아이콘)를 제공하고, 이후 충전 권장 구간에 진입 또는 주행하는 것을 확인하면, 경로 안내 화면과 관련하여 각 주행중인 구간과 인접한 충전소들에 관련된 그룹 아이콘, 인접한 인프라의 대표 카테고리 또는 그룹 관련 충전소 정보를 디스플레이(132)에 출력할 수 있다. Meanwhile, the time when a user actually enters an electric vehicle charging station may be a long time after searching for a charging station adjacent to the recommended charging section. Accordingly, the processor 135 according to one embodiment provides charging station-related information (e.g., icons for each group) adjacent to the recommended charging section when searching for the first route, and then, upon confirming that entering or driving in the recommended charging section, In relation to the route guidance screen, group icons related to charging stations adjacent to each driving section, representative categories of adjacent infrastructure, or group-related charging station information may be displayed on the display 132.
도 6은 일 실시예에 따른 충전소에 관련된 그룹 인접 인프라 정보 제공의 예시도이다.Figure 6 is an example diagram of providing group adjacent infrastructure information related to a charging station according to an embodiment.
도 6을 참조하면, 프로세서(135)는 그룹 내 충전소들에 인접한 인프라의 카테고리 목록 중 하나가 선택되면, 선택된 카테고리에 포함된 인프라 목록을 그룹 내 개별 충전소와 관련하여 디스플레이(132)에 표시할 수 있다. 영역 610과 같이, 프로세서(135)는 개별 충전소 아이콘과 별개의 화면으로 인프라 목록을 표시할 수 있다.Referring to FIG. 6, when one of the category lists of infrastructure adjacent to charging stations in the group is selected, the processor 135 may display the list of infrastructure included in the selected category on the display 132 in relation to individual charging stations in the group. there is. Like area 610, processor 135 can display the infrastructure list on a separate screen from the individual charging station icons.
620 영역과 같이, 프로세서(135)는 개별 인프라 명칭의 옆에 개별 충전소 아이콘의 색상(또는, 음영)을 나란히 표시함에 따라 개별 인프라 명칭 및 개별 충전소 아이콘을 상호 관련할 수 있다. 프로세서(135)는 개별 충전소로부터 최적의 인프라에 대한 도보 이동 시간을 더 표시할 수 있다.As with area 620, the processor 135 may correlate individual infrastructure names and individual charging station icons by displaying the color (or shade) of the individual charging station icon next to the individual infrastructure name. Processor 135 may further indicate walking travel times from individual charging stations to optimal infrastructure.
다양한 실시예에 따르면, 프로세서(135)는 개별 충전소 아이콘들 중 하나가 선택되면, 선택된 개별 충전소에 인접한 인프라 목록 및 개별 충전소로부터 인접 인프라에 대한 도보 이동 시간을 표시할 수 있다. According to various embodiments, when one of the individual charging station icons is selected, the processor 135 may display a list of infrastructure adjacent to the selected individual charging station and a walking travel time from the individual charging station to the adjacent infrastructure.
이와 같이, 일 실시예에 따른 전자 장치(130)는 각 그룹 내 충전소들의 인접 인프라 목록은 물론, 각 인프라로부터 가장 인접한 충전소 및 해당 충전소에 대한 도보 이동 거리를 제공할 수 있어, 사용자의 전기차 충전소 선택의 편의성과 효율성을 높일 수 있다.In this way, the electronic device 130 according to an embodiment can provide a list of adjacent infrastructures of charging stations in each group, as well as the charging station closest to each infrastructure and the walking distance to the charging station, so that the user can select an electric vehicle charging station. Convenience and efficiency can be improved.
도 7은 일 실시예에 따른 충전소 정보 제공 방법의 흐름도를 나타낸다.Figure 7 shows a flowchart of a method for providing charging station information according to an embodiment.
도 7을 참조하면, 동작 710에서, 전자 장치(130)는 전기차의 주행 가능 거리에 기반하여 지정된 제1 경로상의 충전 권장 구간을 확인할 수 있다. 예를 들어, 전자 장치(130)는 주행 가능 거리가 제1 경로의 전체 주행 거리를 초과하는 경우에는, 충전 권장 구간의 확인 및 이후 동작은 수행하지 않을 수 있다.Referring to FIG. 7 , in operation 710, the electronic device 130 may check a recommended charging section on the first route designated based on the driving distance of the electric vehicle. For example, if the possible driving distance exceeds the total driving distance of the first route, the electronic device 130 may not confirm the recommended charging section and perform subsequent operations.
동작 720에서, 전자 장치(130)는 확인된 충전 권장 구간에 각기 인접한 충전소들을 확인할 수 있다. 예를 들어, 전자 장치(130)는 충전 권장 구간에서 예컨대, 직선 거리가 제1 지정된 거리 내의 충전소들을 검색할 수 있다. In operation 720, the electronic device 130 may check charging stations adjacent to the identified recommended charging section. For example, the electronic device 130 may search for charging stations in the recommended charging section, for example, with a straight line distance within a first designated distance.
동작 730에서, 전자 장치(130)는 충전 권장 구간과의 인접도 또는 충전소들 간의 인접도 중 적어도 하나의 인접도에 따라 상기 확인된 충전소들을 그룹화할 수 있다. 예를 들어, 전자 장치(130)는 개별 충전소에서 충전 권장 구간에 이르는 주행 거리(예: 최단 주행 거리) 및 확인된 충전소들 중에서 상대적으로 거리가 가까운 충전소를 그룹화하고, 확인된 거리가 속하는 범위에서 상대적으로 거리가 가까운 개별 충전소들을 그룹화할 수 있다. In operation 730, the electronic device 130 may group the identified charging stations according to at least one of proximity to a recommended charging section or proximity between charging stations. For example, the electronic device 130 groups charging stations with relatively close distances among the driving distances (e.g., shortest driving distance) and confirmed charging stations from individual charging stations to the recommended charging section, and groups charging stations with relatively close distances in the range to which the confirmed distance falls. Individual charging stations that are relatively close together can be grouped.
동작 740에서, 전자 장치(130)는 각 그룹 내 충전소에 인접한 인프라를 카테고리 별로 분류함에 따라 상기 각 그룹의 카테고리를 확인할 수 있다.In operation 740, the electronic device 130 may check the category of each group by classifying the infrastructure adjacent to the charging station within each group by category.
동작 750에서, 전자 장치(130)는 인접한 인프라의 대표 카테고리 및 상기 각 그룹 내 충전소에 관련된 그룹별 아이콘을 상기 충전 권장 구간과 관련하여 디스플레이를 통해 출력할 수 있다. In operation 750, the electronic device 130 may output representative categories of adjacent infrastructure and group-specific icons related to charging stations within each group through the display in relation to the recommended charging section.
도 8은 본 발명의 일 실시예에 따른 전체 충전소 데이터 제공을 위한 서버 장치(120)의 컴퓨터 시스템을 나타낸 블록도이다.Figure 8 is a block diagram showing a computer system of the server device 120 for providing overall charging station data according to an embodiment of the present invention.
도 8을 참조하면, 컴퓨터 시스템(1200)은, 버스(1270)를 통해 통신하는 프로세서(1210), 메모리(1230), 입력 인터페이스 장치(1250), 출력 인터페이스 장치(1260) 및 저장 장치(1240) 중 적어도 하나를 포함할 수 있다. 컴퓨터 시스템(1200)은 또한 네트워크에 결합된 통신 장치(1220)를 더 포함할 수 있다. 프로세서(1210)는 중앙 처리 장치(central processing unit, CPU)이거나, 또는 메모리(1230) 또는 저장 장치(1240)에 저장된 명령을 실행하는 반도체 장치일 수 있다. 메모리(1230) 및 저장 장치(1240)는 다양한 형태의 휘발성 또는 비휘발성 저장 매체를 포함할 수 있다. 예를 들어, 메모리는 ROM(read only memory) 및 RAM(random access memory)를 포함할 수 있다. 본 기재의 실시예에서 메모리는 프로세서의 내부 또는 외부에 위치할 수 있고, 메모리는 이미 알려진 다양한 수단을 통해 프로세서와 연결될 수 있다. 메모리는 다양한 형태의 휘발성 또는 비휘발성 저장 매체이며, 예를 들어, 메모리는 읽기 전용 메모리(read-only memory, ROM) 또는 랜덤 액세스 메모리(random access memory, RAM)를 포함할 수 있다.Referring to FIG. 8, the computer system 1200 includes a processor 1210, a memory 1230, an input interface device 1250, an output interface device 1260, and a storage device 1240 that communicate through a bus 1270. It may include at least one of: Computer system 1200 may also include a communication device 1220 coupled to a network. The processor 1210 may be a central processing unit (CPU) or a semiconductor device that executes instructions stored in the memory 1230 or the storage device 1240. Memory 1230 and storage device 1240 may include various types of volatile or non-volatile storage media. For example, memory may include read only memory (ROM) and random access memory (RAM). In embodiments of the present disclosure, the memory may be located inside or outside the processor, and the memory may be connected to the processor through various known means. Memory is various forms of volatile or non-volatile storage media, for example, memory may include read-only memory (ROM) or random access memory (RAM).
본 문서의 다양한 실시예들 및 이에 사용된 용어들은 본 문서에 기재된 기술적 특징들을 특정한 실시예들로 한정하려는 것이 아니며, 해당 실시예의 다양한 변경, 균등물, 또는 대체물을 포함하는 것으로 이해되어야 한다. 도면의 설명과 관련하여, 유사한 또는 관련된 구성요소에 대해서는 유사한 참조 부호가 사용될 수 있다. 아이템에 대응하는 명사의 단수 형은 관련된 문맥상 명백하게 다르게 지시하지 않는 한, 상기 아이템 한 개 또는 복수 개를 포함할 수 있다. 본 문서에서, "A 또는 B", "A 및 B 중 적어도 하나",“A 또는 B 중 적어도 하나”, "A, B 또는 C", "A, B 및 C 중 적어도 하나” 및 “A, B, 또는 C 중 적어도 하나"와 같은 문구들 각각은 그 문구들 중 해당하는 문구에 함께 나열된 항목들 중 어느 하나, 또는 그들의 모든 가능한 조합을 포함할 수 있다. "제1", "제2", 또는 "첫째" 또는 "둘째"와 같은 용어들은 단순히 해당 구성요소를 다른 해당 구성요소와 구분하기 위해 사용될 수 있으며, 해당 구성요소들을 다른 측면(예: 중요성 또는 순서)에서 한정하지 않는다. 어떤(예: 제1) 구성요소가 다른(예: 제2) 구성요소에, “기능적으로” 또는 “통신적으로”라는 용어와 함께 또는 이런 용어 없이, “커플드” 또는 “커넥티드”라고 언급된 경우, 그것은 상기 어떤 구성요소가 상기 다른 구성요소에 직접적으로(예: 유선으로), 무선으로, 또는 제3 구성요소를 통하여 연결될 수 있다는 것을 의미한다.The various embodiments of this document and the terms used herein are not intended to limit the technical features described in this document to specific embodiments, and should be understood to include various changes, equivalents, or replacements of the embodiments. In connection with the description of the drawings, similar reference numbers may be used for similar or related components. The singular form of a noun corresponding to an item may include one or more of the above items, unless the relevant context clearly indicates otherwise. In this document: “A or B”, “at least one of A and B”, “at least one of A or B”, “A, B or C”, “at least one of A, B and C” and “A, Each of phrases such as “at least one of B, or C” may include any one of the items listed together in the corresponding phrase, or any possible combination thereof. Terms such as "first", "second", or "first" or "second" may be used simply to distinguish one element from another, and may be used to distinguish such elements in other respects, such as importance or order) is not limited. One (e.g. first) component is said to be “coupled” or “connected” to another (e.g. second) component, with or without the terms “functionally” or “communicatively”. Where mentioned, it means that any of the components can be connected to the other components directly (e.g. wired), wirelessly, or through a third component.
본 문서에서 사용된 용어 "모듈"은 하드웨어, 소프트웨어 또는 펌웨어로 구현된 유닛을 포함할 수 있으며, 예를 들면, 로직, 논리 블록, 부품, 또는 회로와 같은 용어와 상호 호환적으로 사용될 수 있다. 모듈은, 일체로 구성된 부품 또는 하나 또는 그 이상의 기능을 수행하는, 상기 부품의 최소 단위 또는 그 일부가 될 수 있다. 예를 들면, 일실시예에 따르면, 모듈은 ASIC(application-specific integrated circuit)의 형태로 구현될 수 있다.The term “module” used in this document may include a unit implemented in hardware, software, or firmware, and may be used interchangeably with terms such as logic, logic block, component, or circuit, for example. A module may be an integrated part or a minimum unit of the parts or a part thereof that performs one or more functions. For example, according to one embodiment, the module may be implemented in the form of an application-specific integrated circuit (ASIC).
본 문서의 다양한 실시예들은 기기(machine)(예: 전자 장치) 의해 읽을 수 있는 저장 매체(storage medium)(예: 도 2의 134)(예: 내장 메모리 또는 외장 메모리)에 저장된 하나 이상의 명령어들을 포함하는 소프트웨어(예: 프로그램)로서 구현될 수 있다. 예를 들면, 기기(예: 전자 장치(130))의 프로세서(예: 프로세서(135)는, 저장 매체로부터 저장된 하나 이상의 명령어들 중 적어도 하나의 명령을 호출하고, 그것을 실행할 수 있다. 이것은 기기가 상기 호출된 적어도 하나의 명령어에 따라 적어도 하나의 기능을 수행하도록 운영되는 것을 가능하게 한다. 상기 하나 이상의 명령어들은 컴파일러에 의해 생성된 코드 또는 인터프리터에 의해 실행될 수 있는 코드를 포함할 수 있다. 기기로 읽을 수 있는 저장매체는, 비일시적(non-transitory) 저장매체의 형태로 제공될 수 있다. 여기서, ‘비일시적’은 저장매체가 실재(tangible)하는 장치이고, 신호(signal)(예: 전자기파)를 포함하지 않는다는 것을 의미할 뿐이며, 이 용어는 데이터가 저장매체에 반영구적으로 저장되는 경우와 임시적으로 저장되는 경우를 구분하지 않는다.Various embodiments of the present document include one or more instructions stored in a storage medium (e.g., 134 in FIG. 2) (e.g., internal memory or external memory) that can be read by a machine (e.g., an electronic device). It may be implemented as containing software (e.g., a program). For example, a processor (e.g., processor 135) of a device (e.g., electronic device 130) may call at least one instruction among one or more instructions stored from a storage medium and execute it. This means that the device It enables operation to perform at least one function according to the at least one instruction called.The one or more instructions may include code generated by a compiler or code executable by an interpreter. A readable storage medium may be provided in the form of a non-transitory storage medium, where 'non-transitory' refers to a device in which the storage medium is tangible and a signal (e.g. electromagnetic wave). ), and this term does not distinguish between cases where data is semi-permanently stored in a storage medium and cases where data is stored temporarily.
일실시예에 따르면, 본 문서에 개시된 다양한 실시예들에 따른 방법은 컴퓨터 프로그램 제품(computer program product)에 포함되어 제공될 수 있다. 컴퓨터 프로그램 제품은 상품으로서 판매자 및 구매자 간에 거래될 수 있다. 컴퓨터 프로그램 제품은 기기로 읽을 수 있는 저장 매체(예: compact disc read only memory (CD-ROM))의 형태로 배포되거나, 또는 어플리케이션 스토어(예: 플레이 스토어TM)를 통해 또는 두개의 사용자 장치들(예: 스마트폰들) 간에 직접, 온라인으로 배포(예: 다운로드 또는 업로드)될 수 있다. 온라인 배포의 경우에, 컴퓨터 프로그램 제품의 적어도 일부는 제조사의 서버, 어플리케이션 스토어의 서버, 또는 중계 서버의 메모리와 같은 기기로 읽을 수 있는 저장 매체에 적어도 일시 저장되거나, 임시적으로 생성될 수 있다.According to one embodiment, methods according to various embodiments disclosed in this document may be provided and included in a computer program product. Computer program products are commodities and can be traded between sellers and buyers. The computer program product may be distributed in the form of a machine-readable storage medium (e.g. compact disc read only memory (CD-ROM)) or via an application store (e.g. Play Store TM ) or on two user devices (e.g. It can be distributed (e.g. downloaded or uploaded) directly between smartphones) or online. In the case of online distribution, at least a portion of the computer program product may be at least temporarily stored or temporarily created in a machine-readable storage medium, such as the memory of a manufacturer's server, an application store's server, or a relay server.
본 문서의 다양한 실시예에 따른 구성 요소들은 소프트웨어 또는 DSP(digital signal processor), FPGA(Field Programmable Gate Array) 또는 ASIC(Application Specific Integrated Circuit)와 같은 하드웨어 형태로 구현될 수 있으며, 소정의 역할들을 수행할 수 있다. '구성 요소들'은 소프트웨어 또는 하드웨어에 한정되는 의미는 아니며, 각 구성 요소는 어드레싱할 수 있는 저장 매체에 있도록 구성될 수도 있고 하나 또는 그 이상의 프로세서들을 재생시키도록 구성될 수도 있다. 일 예로서 구성 요소는 소프트웨어 구성 요소들, 아이콘지향 소프트웨어 구성 요소들, 클래스 구성 요소들 및 태스크 구성 요소들과 같은 구성 요소들과, 프로세스들, 함수들, 속성들, 프로시저들, 서브루틴들, 프로그램 코드의 세그먼트들, 드라이버들, 펌웨어, 마이크로 코드, 회로, 데이터, 데이터베이스, 데이터 구조들, 테이블들, 어레이들 및 변수들을 포함할 수 있다. Components according to various embodiments of this document may be implemented in the form of software or hardware such as a digital signal processor (DSP), field programmable gate array (FPGA), or application specific integrated circuit (ASIC), and perform certain roles. can do. 'Components' are not limited to software or hardware, and each component may be configured to reside on an addressable storage medium or may be configured to run on one or more processors. As an example, a component may include components such as software components, icon-oriented software components, class components, and task components, as well as processes, functions, properties, procedures, and subroutines. , may include segments of program code, drivers, firmware, microcode, circuitry, data, databases, data structures, tables, arrays, and variables.
다양한 실시예들에 따르면, 상기 기술한 구성요소들의 각각의 구성요소(예: 모듈 또는 프로그램)는 단수 또는 복수의 개체를 포함할 수 있다. 다양한 실시예들에 따르면, 전술한 해당 구성요소들 중 하나 이상의 구성요소들 또는 동작들이 생략되거나, 또는 하나 이상의 다른 구성요소들 또는 동작들이 추가될 수 있다. 대체적으로 또는 추가적으로, 복수의 구성요소들(예: 모듈 또는 프로그램)은 하나의 구성요소로 통합될 수 있다. 이런 경우, 통합된 구성요소는 상기 복수의 구성요소들 각각의 구성요소의 하나 이상의 기능들을 상기 통합 이전에 상기 복수의 구성요소들 중 해당 구성요소에 의해 수행되는 것과 동일 또는 유사하게 수행할 수 있다. 다양한 실시예들에 따르면, 모듈, 프로그램 또는 다른 구성요소에 의해 수행되는 동작들은 순차적으로, 병렬적으로, 반복적으로, 또는 휴리스틱하게 실행되거나, 상기 동작들 중 하나 이상이 다른 순서로 실행되거나, 생략되거나, 또는 하나 이상의 다른 동작들이 추가될 수 있다.According to various embodiments, each component (eg, module or program) of the above-described components may include a single entity or a plurality of entities. According to various embodiments, one or more of the components or operations described above may be omitted, or one or more other components or operations may be added. Alternatively or additionally, multiple components (eg, modules or programs) may be integrated into a single component. In this case, the integrated component may perform one or more functions of each component of the plurality of components in the same or similar manner as those performed by the corresponding component of the plurality of components prior to the integration. . According to various embodiments, operations performed by a module, program, or other component may be executed sequentially, in parallel, iteratively, or heuristically, or one or more of the operations may be executed in a different order, or omitted. Alternatively, one or more other operations may be added.

Claims (10)

  1. 전기차에 구비된 전자 장치에 있어서,In the electronic device provided in an electric vehicle,
    디스플레이; 및display; and
    상기 디스플레이에 기능적으로 연결된 프로세서를 포함하고, 상기 프로세서는,A processor functionally connected to the display, the processor comprising:
    전기차의 주행 가능 거리에 기반하여 지정된 제1 경로상의 충전 권장 구간을 확인하고,Confirm the recommended charging section on the designated first route based on the driving distance of the electric vehicle,
    상기 확인된 충전 권장 구간에 각기 인접한 충전소들을 확인하고,Check the charging stations adjacent to the recommended charging section identified above,
    상기 충전 권장 구간과의 인접도 또는 상기 확인된 충전소들 간의 인접도 중 적어도 하나의 인접도에 따라 상기 확인된 충전소들을 그룹화하고,Grouping the confirmed charging stations according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations,
    각 그룹 내 충전소에 인접한 인프라의 카테고리 목록을 확인하고,Check the list of categories of infrastructure adjacent to charging stations within each group,
    상기 인접한 인프라의 대표 카테고리 및 상기 각 그룹 내 충전소에 관련된 그룹별 아이콘을 상기 충전 권장 구간과 관련하여 상기 디스플레이를 통해 출력하는 것인 전자 장치.An electronic device that outputs representative categories of the adjacent infrastructure and group-specific icons related to charging stations within each group through the display in relation to the recommended charging section.
  2. 청구항 1에 있어서, 상기 프로세서는,The method of claim 1, wherein the processor:
    상기 각 그룹에 관련된 충전기 종류, 대기 인원, 충전소 개수, 대표 경유 주행 시간 또는 충전 시간 중 적어도 하나의 그룹 관련 충전소 정보와 상기 그룹별 아이콘을 더 관련하여 출력하는 전자 장치.An electronic device that outputs at least one group-related charging station information of charger type, waiting number of people, number of charging stations, representative transit travel time, or charging time related to each group, and icons for each group.
  3. 청구항 1에 있어서, In claim 1,
    입력 장치를 더 포함하고, 상기 프로세서는,Further comprising an input device, the processor comprising:
    상기 입력 장치를 통해 상기 그룹별 아이콘 중 하나가 선택되면, 상기 선택된 그룹에 포함된 카테고리 목록을 상기 디스플레이를 통해 출력하는 것인 전자 장치.An electronic device that, when one of the icons for each group is selected through the input device, outputs a list of categories included in the selected group through the display.
  4. 청구항 3에 있어서, 상기 프로세서는,The method of claim 3, wherein the processor:
    상기 카테고리 목록에서 어느 하나의 카테고리가 선택되면, 상기 선택된 카테고리에 포함된 인프라 목록을 상기 디스플레이를 통해 출력하는 것인 전자 장치.An electronic device that, when a category is selected from the category list, outputs a list of infrastructure included in the selected category through the display.
  5. 청구항 4에 있어서, 상기 프로세서는,The method of claim 4, wherein the processor:
    상기 인프라 목록과 함께 각 인프라 별 최적 충전소 및 상기 최적 충전소에서 각 인프라에 대한 도보 이동 시간 중 적어도 하나의 정보를 상기 디스플레이를 통해 출력하는 것인 전자 장치.An electronic device that outputs, through the display, at least one information of the optimal charging station for each infrastructure and the walking travel time for each infrastructure from the optimal charging station along with the list of infrastructures.
  6. 청구항 4에 있어서, 상기 프로세서는,The method of claim 4, wherein the processor:
    상기 인프라 목록 중 하나가 선택되면, 상기 선택된 인프라에서 최적 충전소를 경유하여 상기 목적지에 이르는 제2 경로 및 상기 선택된 인프라까지의 도로 이동 경로를 상기 디스플레이를 통해 출력하는 것인 전자 장치.When one of the infrastructure lists is selected, the electronic device outputs a second route from the selected infrastructure to the destination via an optimal charging station and a road travel route to the selected infrastructure through the display.
  7. 청구항 1에 있어서, 상기 프로세서는,The method of claim 1, wherein the processor:
    상기 확인된 충전 권장 구간 중 각 그룹과 근접한 부분에 상기 그룹별 정보를 출력하는 것인 전자 장치.An electronic device that outputs information for each group in a portion of the confirmed charging recommended section that is close to each group.
  8. 청구항 1에 있어서, 상기 프로세서는,The method of claim 1, wherein the processor:
    상기 전기차의 배터리 잔량에 따른 충전 긴급도를 확인하고, Check the charging urgency according to the remaining battery capacity of the electric vehicle,
    적어도 상기 충전 권장 구간을 상기 충전 긴급도에 대응하는 색상으로 표시하는 것인 전자 장치.An electronic device that displays at least the recommended charging section in a color corresponding to the charging urgency.
  9. 청구항 1에 있어서, 상기 프로세서는,The method of claim 1, wherein the processor:
    상기 각 그룹 내 충전소와의 도로 이동 거리가 짧은 순으로 또는 상기 각 그룹 내 상대적으로 개수가 많은 순으로 적어도 하나의 카테고리를 상기 대표 카테고리로 결정하는 것인 전자 장치.An electronic device that determines at least one category as the representative category in the order of a short road travel distance to a charging station within each group or in the order of a relatively large number within each group.
  10. 전자 장치에 의한 충전소 정보 제공 방법에 있어서,In a method of providing charging station information by an electronic device,
    전기차의 주행 가능 거리에 기반하여 지정된 제1 경로상의 충전 권장 구간을 확인하는 동작;An operation of checking a recommended charging section on a designated first route based on the driving distance of the electric vehicle;
    상기 확인된 충전 권장 구간에 각기 인접한 충전소들을 확인하는 동작;An operation of checking charging stations adjacent to the confirmed charging recommended section;
    상기 충전 권장 구간과의 인접도 또는 상기 확인된 충전소들 간의 인접도 중 적어도 하나의 인접도에 따라 상기 확인된 충전소들을 그룹화하는 동작;Grouping the identified charging stations according to at least one of proximity to the recommended charging section or proximity between the confirmed charging stations;
    각 그룹 내 충전소에 대한 인접한 인프라의 카테고리를 확인하는 동작; 및An operation to check the category of adjacent infrastructure for the charging station within each group; and
    상기 인접한 인프라의 대표 카테고리 및 상기 각 그룹 내 충전소에 관련된 그룹별 아이콘을 표시하는 동작An operation of displaying group-specific icons related to representative categories of the adjacent infrastructure and charging stations within each group.
    을 포함하는 충전소 정보 제공 방법.A method of providing charging station information including.
PCT/KR2023/011657 2022-08-08 2023-08-08 Electronic device, and method for providing charging station information WO2024035063A1 (en)

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JP2002148069A (en) * 2000-11-10 2002-05-22 Denso Corp Navigation system
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KR20180046036A (en) * 2016-10-27 2018-05-08 이해곤 Car nevigation system of check the location and battery charge of the other ev car
KR20190046287A (en) * 2017-10-26 2019-05-07 박용희 System and method of guiding optimum charging station using vehicle information and charging station information
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002148069A (en) * 2000-11-10 2002-05-22 Denso Corp Navigation system
JP2010286449A (en) * 2009-06-15 2010-12-24 Alpine Electronics Inc Navigation system, facility retrieval method, and facility retrieval program
KR20130067135A (en) * 2011-12-13 2013-06-21 삼성전자주식회사 System and method for providing navigation information based on operation mode
KR20180046036A (en) * 2016-10-27 2018-05-08 이해곤 Car nevigation system of check the location and battery charge of the other ev car
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