WO2016192444A1 - 场景设置方法及终端 - Google Patents

场景设置方法及终端 Download PDF

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Publication number
WO2016192444A1
WO2016192444A1 PCT/CN2016/077199 CN2016077199W WO2016192444A1 WO 2016192444 A1 WO2016192444 A1 WO 2016192444A1 CN 2016077199 W CN2016077199 W CN 2016077199W WO 2016192444 A1 WO2016192444 A1 WO 2016192444A1
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WO
WIPO (PCT)
Prior art keywords
smart home
information
scene
home devices
setting
Prior art date
Application number
PCT/CN2016/077199
Other languages
English (en)
French (fr)
Inventor
郑少华
黎剑辉
张圳
朱一伟
罗海彬
湛浩
Original Assignee
丰唐物联技术(深圳)有限公司
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.)
Filing date
Publication date
Application filed by 丰唐物联技术(深圳)有限公司 filed Critical 丰唐物联技术(深圳)有限公司
Publication of WO2016192444A1 publication Critical patent/WO2016192444A1/zh

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2642Domotique, domestic, home control, automation, smart house
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Definitions

  • the present invention relates to the field of smart home technologies, and in particular, to a scenario setting method and a terminal.
  • a scene setting method and a terminal which are intended to continuously acquire information of at least two smart home devices through a contactless radio frequency identification sensing method, automatically enable a scene setting function, and create a smart home.
  • the information related scene settings of the device are convenient for the user to select, thereby reducing the user's operation flow.
  • an embodiment of the present invention provides a scenario setting method, where the method includes:
  • the non-contact radio frequency identification sensing mode includes at least: an NFC radio frequency identification sensing mode and an RFID radio frequency identification sensing mode.
  • the information about the smart home device includes: at least: ID information of the smart home device, and status information of the smart home device
  • the method further includes:
  • the information is created according to the acquired information of the at least two smart home devices, and the at least two smart homes are created.
  • the information related to the device settings including:
  • the information related to the at least two smart home devices is created according to the acquired information of the at least two smart home devices After the scene setting step, it also includes:
  • an embodiment of the present invention provides a scenario setting terminal, where the terminal includes:
  • acquiring device information unit configured to continuously acquire information of at least two smart home devices by using a contactless radio frequency identification sensing manner
  • a scenario setting unit configured to create, according to the acquired information of the at least two smart home devices, a scenario setting related to information of the at least two smart home devices, where the scenario settings are used to save according to the acquired The scene of the information setting of the at least two smart home devices.
  • the non-contact radio frequency identification sensing mode includes: an NFC radio frequency identification sensing mode, and an RFID radio frequency identification sensing mode.
  • the information about the smart home device includes: at least: ID information of the smart home device, status information of the smart home device, and intelligence Functional information of home equipment.
  • the acquiring the device information unit further includes:
  • the scene setting unit is enabled to automatically start after continuously acquiring information of two smart home devices The function set with the scene.
  • the creating a scenario setting unit includes:
  • a classification setting information unit configured to classify the acquired information of the at least two smart home devices according to a preset scene data storage mode
  • a sub-creation scene setting unit configured to create information related to the information of the at least two smart home devices based on a classification setting of the information of the at least two smart home devices in the predefined scene data storage mode Scene settings.
  • the terminal further includes:
  • the edit scene setting unit is configured to edit the scene setting when the scene setting does not meet the user requirement.
  • the embodiment of the present invention provides a scenario setting method and a terminal, which continuously acquires information of at least two smart home devices through a non-contact radio frequency identification sensing mode, automatically enables a scenario setting function, and follows the information of the smart home device according to the embodiment.
  • Pre-defined scene data storage mode classification setting based on the classification setting of the information of the smart home device in the predefined scene data storage mode, creating a scene setting related to the information of the smart home device, so as to facilitate the user to select , thereby reducing the user's operation process of setting the scene of the smart home device, and improving the user experience.
  • FIG. 1 is a flowchart of a scene setting method according to a first embodiment of the present invention
  • FIG. 2 is a structural diagram of a scene setting terminal according to a second embodiment of the present invention.
  • the terminals involved include, but are not limited to, any one of the following: a smart phone, a tablet computer, as long as any form of the inventive concept can be implemented.
  • the smart home device described in the embodiments of the present invention includes, but is not limited to, a smart home device, a smart access device, etc., as long as any specific form of the smart home device capable of implementing the ideas of the present invention can be implemented. .
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • Step S101 continuously acquiring at least two smart home devices by using a non-contact radio frequency identification sensing method The f ⁇ interest.
  • Step S102 Create, according to the acquired information of the at least two smart home devices, scenario settings related to information of the at least two smart home devices, where the scenario settings are used to save the at least according to the acquired A scene of information setting for two smart home devices.
  • the terminal having the function of reading and writing of the radio frequency identification tag and the smart home device embedded with the radio frequency identification tag chip are communicably connected through the non-contact type radio frequency identification sensing mode, so that the radio frequency identification tag is read and written.
  • the function terminal acquires the information of the smart home device embedded with the radio frequency identification tag chip in the identification running application, wherein the radio frequency identification tag may be an NFC (Near Field Communication) tag or an RFID (Radio Frequency Identification).
  • the non-contact radio frequency identification sensing method may be an NFC radio frequency identification sensing method or an RFID radio frequency identification sensing method.
  • the terminal supporting the two-dimensional code and/or the barcode scanning function and the two-dimensional code and/or the barcode containing the information of the smart home device can also be communicably connected by the contactless identification sensing method, so that the terminal having the scanning recognition function is enabled.
  • the information of the smart home device of the barcode, wherein the non-contact recognition sensing mode may be a two-dimensional code recognition sensing method or a barcode recognition sensing method
  • the smart home device can also perform the communication connection through the Z-wave radio frequency identification sensing method, and obtain the information of the smart home device in the identification running application.
  • the embodiment of the present invention does not specifically limit the non-contact identification sensing mode, and adopts the NFC radio frequency identification sensing method.
  • the NFC radio frequency identification sensing mode is used as an example.
  • the terminal with the NFC radio frequency identification tag reading and writing function obtains the information of the smart home device embedded with the NFC radio frequency identification tag chip through the NFC radio frequency identification sensing method.
  • the information of the smart home device includes at least: ID information of the smart home device, status information of the smart home device, and function information of the smart home device, and the NFC radio frequency identification tag may include the ID information of the smart home device and the status of the smart home device.
  • the information, the function information of the smart home device, and the like may also include ID information of the smart home device, and obtain other information in the smart home system through the ID information, such as status information of the smart home device, function information of the smart home device, and the like.
  • the scenario since the terminal automatically enables the setting of the scenario after the information of the two smart home devices is continuously acquired, the scenario includes the working state of at least two smart home devices, in order to implement the smart
  • the smart home device in the embodiment of the present invention includes at least two, that is, information for acquiring at least two smart home devices.
  • the smart home device may be a smart TV, a smart air conditioner, or the like, or may be a smart camera, an intelligent access control, or the like.
  • the specific form of the smart home device is not specifically limited, as long as the present invention can be implemented. Any of the specific forms of the smart home device of the inventive concept can be used.
  • acquiring information of at least two smart home devices that is, acquiring ID information of at least two smart home devices, status information of the smart home device, and function information of the smart home device, wherein the ID information of the smart home device is used as the smart
  • the unique identifier of the home device may be a MAC address or a device serial number.
  • the ID information of the smart home device includes the type information of the smart home device, and the type of the smart home device may be known from the ID information of the smart home device.
  • the smart home equipment belongs to different types, and the function information is different.
  • the acquired status information is different.
  • the temperature sensor and the smart air conditioner belong to different types.
  • the function information is as follows: The temperature sensor can support detection.
  • the indoor temperature change function while the smart air conditioner can support the snoring/shutdown function, and is in a snoring state, the temperature can be set, etc., accordingly, the acquired state information of the temperature sensor can be warm
  • the degree value is 28 degrees
  • the status information of the smart air conditioner may be currently in a doze state
  • the set temperature is 26 degrees, etc.
  • the acquired status information, function information, and the like may be used as information of the smart home device in the scene setting, wherein This function information serves as the basis for subsequent user editing of the scene settings.
  • This function information serves as the basis for subsequent user editing of the scene settings.
  • the ID information of the smart home device is not specifically limited in the present invention.
  • the information of the smart home device may also include other information except the ID information of the smart home device, the status information of the smart home device, and the function information of the smart home device, such as a smart home device.
  • Location information, etc. which has a reference to creating a scene setting related to the information of the smart home device.
  • the method further includes: automatically acquiring the scene setting after continuously acquiring the information of the two smart home devices Features.
  • the terminal After continuously acquiring information of two smart home devices through the non-contact radio frequency identification sensing mode, the terminal automatically enables the function of the scene setting, and the acquired information of the smart home device sequentially appears on the terminal interface, where
  • the interval between the information of the at least two smart home devices that are continuously obtained is short, for example, the interval is 0.2 seconds.
  • the interval between the two is not specifically limited, as long as the idea of the present invention can be implemented.
  • a compartment can be used. It should be understood that when the information of the same smart home device is continuously obtained through the non-contact radio frequency identification sensing method, or the information of the smart home device is obtained through the contactless radio frequency identification sensing method, the information of the other smart home device is acquired.
  • the information of the smart home device is obtained again, and the information of the smart home device is displayed on the terminal interface, that is, the information is created according to the acquired information of the at least two smart home devices.
  • the information related scene setting of at least two smart home devices one record of the acquired information of the at least two smart home devices is saved.
  • the creating a scenario setting related to the information of the at least two smart home devices according to the obtained information of the at least two smart home devices includes:
  • the scene data storage mode refers to a mode in which the acquired information of the smart home device is parsed into structured data in the terminal, and the scene data storage mode may be predefined by the smart home App. It may also be pre-defined by the user in the application smart home App, and the predefined scene data storage mode is stored in the terminal equipped with the smart home App.
  • the data representation form of the classification is implemented, and the data expression form based on the classification is related to the information of the at least two smart home devices.
  • Scene setting that is, creating scene settings related to ID information of the at least two smart home devices, status information of the smart home device, function information of the smart home device, and the like, that is, at least two smart homes included in the acquisition a scenario setting of the information of the device, where the scenario setting is used to save a scenario of the smart home device set according to the acquired information of at least two smart home devices, so that the user selects the scenario setting, which reduces the user setting the scene.
  • a user wants to set up a home scene by using a smart home device such as a smart TV, a smart air conditioner, a smart door and window, and the NFC radio frequency identification sensor can be used by a terminal having an NFC radio frequency identification tag reading and writing function.
  • Information on smart home devices such as smart TVs, smart air conditioners, smart doors and windows embedded with NFC RFID tags, automatically enabling scene setting functions, based on information on smart TVs, smart air conditioners, smart doors and windows, etc.
  • the setting of the scene data storage mode creating a scene setting related to the information of the smart home device such as the smart TV, the smart air conditioner, the smart door and the window, does not require the user to set through the button or the touch panel of the terminal, Directly accepting the created scene settings, reducing the user's operating process and improving the experience of the smart home device
  • the user can choose to accept or not accept.
  • the created scene settings are saved.
  • the user can edit the created scene settings. , that is, modify, delete, add, etc. the created scene settings, for example, the created scene setting is obtained in the state of the smart door is in a hiccup state, the hall light is in a hiccup state, and the light brightness setting is 801ux If the user needs the brightness of the light to be 1201ux, you can edit it. In the scene setting, the smart door will be closed, the hall light will be slammed, and the brightness of the light will be set to 1201ux. After that, the edited scene settings will be saved.
  • the operation of the scene setting can be simplified to a large extent, and the user can more conveniently set the scene of the smart home device, thereby improving the user experience of using the smart home device.
  • the embodiment of the present invention provides a scenario setting method, which continuously acquires information of at least two smart home devices through a contactless radio frequency identification sensing mode, automatically enables a scenario setting function, and acquires the at least two smart home devices.
  • the information is classified according to a predefined scene data storage mode, and based on the classification setting of the information of the at least two smart home devices in the predefined scene data storage mode, creating information related to the information of the at least two smart home devices
  • the scene setting is convenient for the user to select, which greatly reduces the user's operation steps for setting the scene of the smart home device, and improves the user experience.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1
  • FIG. 2 is a structural diagram of a scene setting terminal according to a second embodiment of the present invention, where the terminal package is provided. Includes:
  • the acquiring device information unit 21 is configured to continuously acquire information of at least two smart home devices by using a contactless radio frequency identification sensing manner;
  • a scene setting unit 22 configured to create, according to the acquired information of the at least two smart home devices, a scene setting related to information of the at least two smart home devices, where the scene setting is used to save according to Obtaining a scene set by the information of the at least two smart home devices.
  • the acquiring device information unit with the radio frequency identification tag reading and writing function and the smart home device embedded with the radio frequency identification tag chip are communicatively connected through the non-contact radio frequency identification sensing method, so as to have the radio frequency identification.
  • the acquiring device information unit of the tag reading and writing function acquires the information of the smart home device embedded with the radio frequency identification tag chip in the identification running application, wherein the radio frequency identification tag may be an NFC (Near Field Communication) tag, or may be RFID (Radio
  • the frequency identification label correspondingly, the non-contact radio frequency identification sensing method may be an NFC radio frequency identification sensing method or an RFID radio frequency identification sensing method.
  • the acquisition device information unit supporting the two-dimensional code and/or the barcode scanning function and the two-dimensional code and/or barcode containing the information of the smart home device can also be communicatively connected through the contactless identification sensing method to enable scanning identification.
  • the acquiring device information unit of the function acquires information of the smart home device having a two-dimensional code and/or a barcode in the identification application, wherein the non-contact recognition sensing mode may be a two-dimensional code recognition sensing method, or It is a barcode recognition sensing method, and the acquisition device information unit and the smart home device supporting the Z-wave technology can also perform communication connection through the Z-wave radio frequency identification sensing method, and obtain information of the smart home device in the identification running application, and the invention is implemented.
  • the non-contact identification sensing method is not limited.
  • the NFC radio frequency identification sensing method is preferred. The following uses the NFC radio frequency identification sensing method as an example.
  • the NFC radio frequency identification tag reading and writing function acquisition device information unit passes the NFC radio frequency.
  • the information of the smart home device includes at least: ID information of the smart home device, status information of the smart home device, and function information of the smart home device, and the NFC radio frequency identification tag may include the ID information of the smart home device and the status of the smart home device.
  • the information, the function information of the smart home device, and the like may also include ID information of the smart home device, and obtain other information in the smart home system through the ID information, such as status information of the smart home device, function information of the smart home device, and the like.
  • the scenario includes at least two working states of the smart home device.
  • the smart home device in the embodiment of the present invention includes at least two, that is, at least two Information on two smart home devices.
  • the smart home device may be a smart TV, a smart air conditioner, or the like, or may be a smart camera, an intelligent access control, or the like.
  • the specific form of the smart home device is not limited in the present invention, as long as the present invention can be implemented. Any of the specific forms of the smart home device of the inventive concept can be used.
  • acquiring information of at least two smart home devices that is, acquiring ID information of at least two smart home devices, status information of the smart home device, and function information of the smart home device, wherein the ID information of the smart home device is used as the smart
  • the unique identifier of the home device may be a MAC address or a device serial number.
  • the ID information of the smart home device includes the type information of the smart home device, and the type of the smart home device may be known from the ID information of the smart home device.
  • the smart home equipment belongs to different types, and the function information is different.
  • the acquired status information is different.
  • the temperature sensor and the smart air conditioner belong to different types.
  • the function information is as follows: The temperature sensor can support detection.
  • the indoor temperature change function while the smart air conditioner can support the snoring/shutdown function, and is in a snoring state, the temperature can be set, and accordingly, the acquired state information of the temperature sensor can be a temperature value of 28 degrees, and the intelligent air conditioner Status information It may be currently in a snoring state, the set temperature is 26 degrees, etc., and the obtained status information, function information, and the like may be used as information of the smart home device in the scene setting, wherein the function information is used as a subsequent user to edit the scene setting. Basis. It should be understood that the ID information of the smart home device is not specifically limited in the present invention.
  • the information of the smart home device may also include other information except the ID information of the smart home device, the status information of the smart home device, and the function information of the smart home device, such as a smart home device.
  • Location information, etc. which has a reference to creating a scene setting related to the information of the smart home device.
  • the acquiring device information unit 21 further includes:
  • the scene setting unit 211 is enabled to automatically enable the function of the scene setting after continuously acquiring the information of the two smart home devices.
  • the scene setting unit is enabled to automatically enable the scene setting function, and the acquired information of the smart home device is sequentially Appearing on the terminal interface, the interval between the information of the at least two smart home devices continuously obtained is short, for example, the interval is 0.2 seconds, and the interval is not limited by the present invention. Any interval between the ideas of the present invention can be achieved. It should be understood that when the information of the same smart home device is continuously obtained through the non-contact radio frequency identification sensing method, or the information of the smart home device is obtained through the contactless radio frequency identification sensing method, the information of the other smart home device is acquired.
  • the information of the smart home device is obtained again, and the information of the smart home device is displayed on the terminal interface, that is, the information is created according to the acquired information of the at least two smart home devices.
  • the information related scene setting of at least two smart home devices one record of the acquired information of the at least two smart home devices is saved.
  • the creating a scene setting unit 22 includes:
  • a classification setting information unit 221, configured to classify the acquired information of the at least two smart home devices according to a predefined scene data storage mode
  • the sub-creation scene setting unit 222 is configured to create information about the at least two smart home devices based on the classification setting of the information of the at least two smart home devices in the predefined scene data storage mode. Related scene settings.
  • the scene data storage mode refers to a mode in which the acquired information of the smart home device is parsed into structured data in the terminal, and the scene data storage mode may be predefined by the smart home App. It may also be pre-defined by the user in the application smart home App, and the predefined scene data storage mode is stored in the created scene setting unit equipped with the smart home App.
  • the classification setting information unit classifies the acquired information of the at least two smart home devices according to a predefined scene data storage mode, that is, parses the acquired information of the at least two smart home devices into structured data, by using two
  • the form of the dimension table structure logically represents the acquired information of at least two smart home devices (as shown in Table 1 in the first embodiment).
  • the sub-creation scene setting unit is based on the classification setting of the acquired information of the at least two smart home devices in the predefined scene data storage mode, that is, at least two smart home devices in the form of a two-dimensional table structure Information such as ID information, status information of the smart home device, function information of the smart home device, and the like, realizes a classified data expression form in a predefined scene data storage mode, and creates and the at least two smarts based on the classified data expression form Information related to the home device settings, That is, creating a scene setting related to information such as ID information of the at least two smart home devices, status information of the smart home device, function information of the smart home device, and the like, that is, information including the acquired at least two smart home devices.
  • the scene setting is used to save the scene of the smart home device set according to the acquired information of the at least two smart home devices, so that the user selects the scene setting, which reduces the operation flow of the user setting the scene.
  • the user wants to set up a home scene by using a smart home device such as a smart TV, a smart air conditioner, a smart door and window, etc., and can acquire the embedded information through an NFC radio frequency identification sensing unit using an acquisition setting information unit having an NFC radio frequency identification tag reading and writing function.
  • a smart home device such as a smart TV, a smart air conditioner, a smart door and window, etc.
  • Information on smart home devices such as smart TVs, smart air conditioners, smart doors and windows with NFC RFID tags, enabling scene setting unit to automatically enable scene setting function, sub-create scene setting unit based on smart TV, smart air conditioner, smart door and window, etc.
  • the setting of the information of the device in the predefined scene data storage mode creating a scene setting related to the information of the smart home device such as the smart TV, the smart air conditioner, the smart door and the window, without the user pressing the button or the touch panel of the terminal, etc.
  • you can directly accept and accept the created scene settings which reduces the user's operation process and improves the experience of the smart home device.
  • the terminal further includes:
  • the edit scene setting unit 23 is configured to edit the scene setting scheme when the scene setting scheme does not meet the user requirement.
  • the scene setting unit can be edited.
  • the operation of the scene setting can be simplified to a large extent, and the user can conveniently set the scene of the smart home device to improve the user experience of the smart home device. Effect.
  • An embodiment of the present invention provides a scenario setting terminal, where the acquiring device information unit continuously acquires information of at least two smart home devices through a contactless radio frequency identification sensing mode, and enables the scene setting unit to automatically enable the scene setting function, and the classification setting is performed.
  • the information unit classifies the acquired information of the at least two smart home devices according to a predefined scene data storage mode, and the sub-created scene setting unit is based on the information of the at least two smart home devices in the predefined scene data storage mode.
  • the classification setting in the middle, creating a scene setting related to the information of the at least two smart home devices, so as to facilitate the user to select, greatly reducing the user's operation steps for setting the scene of the smart home device, and improving the user experience effect. .

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Abstract

一种场景设置方法及终端,该方法包括:通过非接触式射频识别感应方式连续获取至少两个智能家居设备的信息;根据获取的该至少两个智能家居设备的信息,创建与该至少两个智能家居设备的信息相关的场景设置,该场景设置用于保存根据获取的该至少两个智能家居设备的信息设置的场景。通过该场景设置方法及终端,可减少智能家居设备场景设置的操作步骤,方便用户对智能家居设备进行场景设置,提升了用户对智能家居设备的使用体验效果。

Description

场景设置方法及终端
技术领域
[0001] 本发明涉及智能家居技术领域, 尤其涉及一种场景设置方法及终端。
背景技术
[0002] 随着物联网技术的迅速发展, 实现家庭自动化的需求日益普及, 然而, 在实际 操作中, 用户想要对智能家居设备进行场景设置, 大多需要通过诸如智能手机 、 平板电脑等终端的按键或触摸板对智能家居设备进行场景设置, 这种操作模 式还是不能减少用户的操作, 用户体验效果不佳。
技术问题
[0003] 鉴于以上内容, 有必要提供一种场景设置方法及终端, 旨在通过非接触式射频 识别感应方式连续获取至少两个智能家居设备的信息, 自动启用场景设置功能 , 创建与该智能家居设备的信息相关的场景设置, 以方便用户进行选择, 从而 减少了用户的操作流程。
问题的解决方案
技术解决方案
[0004] 第一方面, 本发明实施例提供一种场景设置方法, 所述方法包括:
[0005] 通过非接触式射频识别感应方式连续获取至少两个智能家居设备的信息; [0006] 根据获取的所述至少两个智能家居设备的信息, 创建与所述至少两个智能家居 设备的信息相关的场景设置, 所述场景设置用于保存根据获取的所述至少两个 智能家居设备的信息设置的场景。
[0007] 结合第一方面, 在其第一种实现方式中, 所述非接触式射频识别感应方式至少 包括: NFC射频识别感应方式、 RFID射频识别感应方式。
[0008] 结合第一方面及其上述实现方式, 在第一方面的第二种实现方式中, 所述智能 家居设备的信息至少包括: 智能家居设备的 ID信息、 智能家居设备的状态信息
、 智能家居设备的功能信息。
[0009] 结合第一方面及其上述实现方式, 在第一方面的第三种实现方式中, 在所述通 过非接触式射频识别感应方式连续获取至少两个智能家居设备的信息步骤之中 , 还包括:
[0010] 在连续获取了两个智能家居设备的信息之后, 自动启用场景设置的功能。
[0011] 结合第一方面及其上述实现方式, 在第一方面的第四种实现方式中, 所述根据 获取的所述至少两个智能家居设备的信息, 创建与所述至少两个智能家居设备 的信息相关的场景设置, 具体包括:
[0012] 将获取的所述至少两个智能家居设备的信息按照预先定义的场景数据存储模式 分类设置;
[0013] 基于所述至少两个智能家居设备的信息在所述预先定义的场景数据存储模式中 的分类设置, 创建与所述至少两个智能家居设备的信息相关的场景设置。
[0014] 结合第一方面至第一方面的第四种实现方式中, 在所述根据获取的所述至少两 个智能家居设备的信息, 创建与所述至少两个智能家居设备的信息相关的场景 设置步骤之后, 还包括:
[0015] 当所述场景设置不符合用户需求吋, 用户对所述场景设置进行编辑。
[0016] 第二方面, 本发明实施例提供一种场景设置终端, 所述终端包括:
[0017] 获取设备信息单元, 用于通过非接触式射频识别感应方式连续获取至少两个智 能家居设备的信息;
[0018] 创建场景设置单元, 用于根据获取的所述至少两个智能家居设备的信息, 创建 与所述至少两个智能家居设备的信息相关的场景设置, 所述场景设置用于保存 根据获取的所述至少两个智能家居设备的信息设置的场景。
[0019] 结合第二方面, 在第二方面的第一种实现方式中, 所述非接触式射频识别感应 方式至少包括: NFC射频识别感应方式、 RFID射频识别感应方式。
[0020] 结合第二方面及其上述实现方式, 在第二方面的第二种实现方式中, 所述智能 家居设备的信息至少包括: 智能家居设备的 ID信息、 智能家居设备的状态信息 、 智能家居设备的功能信息。
[0021] 结合第二方面及其上述实现方式, 在第二方面的第三种实现方式中, 所述获取 设备信息单元还包括:
[0022] 启用场景设置单元, 用于在连续获取了两个智能家居设备的信息之后, 自动启 用场景设置的功能。
[0023] 结合第二方面及其上述实现方式, 在第二方面的第四种实现方式中, 所述创建 场景设置单元包括:
[0024] 分类设置信息单元, 用于将获取的所述至少两个智能家居设备的信息按照预先 定义的场景数据存储模式分类设置;
[0025] 子创建场景设置单元, 用于基于所述至少两个智能家居设备的信息在所述预先 定义的场景数据存储模式中的分类设置, 创建与所述至少两个智能家居设备的 信息相关的场景设置。
[0026] 结合第二方面至第二方面的第四种实现方式中, 所述终端还包括:
[0027] 编辑场景设置单元, 用于当所述场景设置不符合用户需求吋, 用户对所述场景 设置进行编辑。
发明的有益效果
有益效果
[0028] 本发明实施例提供了一种场景设置方法及终端, 通过非接触式射频识别感应方 式连续获取至少两个智能家居设备的信息, 自动启用场景设置功能, 将该智能 家居设备的信息按照预先定义的场景数据存储模式分类设置, 基于该智能家居 设备的信息在所述预先定义的场景数据存储模式中的分类设置, 创建与该智能 家居设备的信息相关的场景设置, 以方便用户进行选择, 从而减少了用户对智 能家居设备进行场景设置的操作流程, 提升了用户的使用体验效果。
对附图的简要说明
附图说明
[0029] 图 1是本发明第一实施例提供的一种场景设置方法的流程图;
[0030] 图 2是本发明第二实施例提供的一种场景设置终端的结构图。
本发明的实施方式
[0031] 为了使本发明的目的、 技术方案及优点更加清楚明白, 以下结合附图及实施例 , 对本发明进行进一步详细说明。 应当理解, 此处所描述的具体实施例仅仅用 以解释本发明, 并不用于限定本发明。
[0032] 本发明的说明书和权利要求书及上述附图中的术语 "包括 "和"具有"以及他们的 任何变形, 意图在于覆盖不排他的包含, 例如, 包含了一系列步骤或单元的过 程、 方法、 ***、 产品或设备不必限于清楚地列出的那些步骤或单元, 而是可 包括没有清楚地列出的或对于这些过程、 方法、 产品或设备固有的其它步骤或 单元。
[0033] 首先需要说明的是, 在本发明各个实施例中, 所涉及的终端包括但不限于下述 中的任一种: 智能手机、 平板电脑, 只要能实现本发明所述思想的任何形式的 终端均可; 本发明实施例中所描述的智能家居设备包括但不限于: 智能家电设 备、 智能门禁设备等, 只要能实现本发明所述思想的任一种具体形式的智能家 居设备均可。
[0034] 以下结合具体实施例对本发明的具体实现进行详细描述:
[0035] 实施例一:
[0036] 图 1示出了本发明第一实施例提供的一种场景设置方法的流程, 详述如下: [0037] 步骤 S101、 通过非接触式射频识别感应方式连续获取至少两个智能家居设备的 f π息。
[0038] 步骤 S102、 根据获取的所述至少两个智能家居设备的信息, 创建与所述至少两 个智能家居设备的信息相关的场景设置, 所述场景设置用于保存根据获取的所 述至少两个智能家居设备的信息设置的场景。
[0039] 在本发明实施例中, 具备射频识别标签读写功能的终端与嵌有射频识别标签芯 片的智能家居设备通过非接触式射频识别感应方式进行通信连接, 以使具备射 频识别标签读写功能的终端在识别运行应用中获取嵌有射频识别标签芯片的所 述智能家居设备的信息, 其中, 所述射频识别标签可以是 NFC (Near Field Communication) 标签, 也可以是 RFID (Radio Frequency Identification) 标签, 相应地, 所述非接触式射频识别感应方式, 可以是 NFC射频识别感应方式, 也可 以是 RFID射频识别感应方式。 另外, 支持二维码和 /或条形码扫描功能的终端与 含有智能家居设备的信息的二维码和 /或条形码也可以通过非接触式识别感应方 式进行通信连接, 以使具备扫描识别功能的终端在识别应用中获取具有二维码 和 /或条形码的所述智能家居设备的信息, 其中, 所述非接触式识别感应方式, 可以是二维码识别感应方式, 也可以是条形码识别感应方式, 对于支持 Z-wave 技术的终端与智能家居设备还可以通过 Z-wave射频识别感应方式进行通信连接 , 在识别运行应用中获取智能家居设备的信息, 本发明实施例对非接触式识别 感应方式不作具体限定, 以 NFC射频识别感应方式为优选方式, 以下以 NFC射频 识别感应方式为例进行说明, 具备 NFC射频识别标签读写功能的终端通过 NFC射 频识别感应方式获取嵌有 NFC射频识别标签芯片的智能家居设备的信息。 所述智 能家居设备的信息至少包括: 智能家居设备的 ID信息、 智能家居设备的状态信 息、 智能家居设备的功能信息, NFC射频识别标签中可以包括智能家居设备的 I D信息、 智能家居设备的状态信息、 智能家居设备的功能信息等信息, 也可以包 括智能家居设备的 ID信息, 通过该 ID信息在智能家居***中获取其他信息, 如 智能家居设备的状态信息、 智能家居设备的功能信息等。
[0040] 在本发明实施例中, 由于在连续获取了两个智能家居设备的信息之后, 终端自 动启用场景设置的功能, 故, 场景中包括至少两个智能家居设备的工作状态, 为实现智能家居设备的场景设置, 本发明实施例中的智能家居设备至少包括两 个, 也就是获取至少两个智能家居设备的信息。
[0041] 其中, 智能家居设备可以是智能电视、 智能空调等家电设备, 也可以是智能摄 像头、 智能门禁等安防设备, 对此智能家居设备的具体形式, 本发明不作具体 限定, 只要能实现本发明所述思想的任一种具体形式的智能家居设备均可。
[0042] 获取至少两个智能家居设备的信息, 也就是获取至少两个智能家居设备的 ID信 息、 智能家居设备的状态信息、 智能家居设备的功能信息, 其中, 智能家居设 备的 ID信息作为智能家居设备的唯一标识, 可以是 MAC地址, 也可以是设备序 列号, 智能家居设备的 ID信息中包括智能家居设备的类型信息, 从智能家居设 备的 ID信息中可以获悉该智能家居设备所属的类型, 智能家居设备所属的类型 不同, 具备的功能信息也就不同, 获取的状态信息也就不同, 如温度传感器、 智能空调所属的类型不同, 所具备的功能信息分别为: 温度传感器可以是支持 检测室内温度的变化功能, 而智能空调可以是支持打幵 /关闭功能, 并且处于打 幵状态吋, 可以设置温度等, 相应地, 获取的温度传感器的状态信息可以是温 度值为 28度、 智能空调的状态信息可以是当前处于打幵状态, 设置的温度为 26 度等, 获取的该状态信息、 功能信息等可以作为场景设置中的智能家居设备的 信息, 其中, 该功能信息作为后续用户对场景设置进行编辑的依据。 应当理解 , 本发明对智能家居设备的 ID信息不作具体限定。
[0043] 本领域技术人员可以理解, 智能家居设备的信息也可以是包括除了智能家居设 备的 ID信息、 智能家居设备的状态信息、 智能家居设备的功能信息之外的其它 信息, 如智能家居设备的位置信息等, 该其它信息对创建与智能家居设备的信 息相关的场景设置具有参考作用。
[0044] 进一步地, 在通过非接触式射频识别感应方式连续获取至少两个智能家居设备 的信息步骤之中, 还包括: 在连续获取了两个智能家居设备的信息之后, 自动 启用场景设置的功能。
[0045] 当通过非接触式射频识别感应方式连续获取两个智能家居设备的信息之后, 终 端自动启用场景设置的功能, 所获取的智能家居设备的信息依次出现在终端界 面上, 这里所说的连续为获取的至少两个智能家居设备的信息之间的间隔吋间 短, 比如间隔为 0.2秒, 对此间隔吋间, 本发明不做具体数值限定, 只要能实现 本发明所述思想的任一间隔吋间均可。 应当理解, 当通过非接触式射频识别感 应方式连续获取同一个智能家居设备的信息吋, 或者, 通过非接触式射频识别 感应方式获取了该智能家居设备的信息, 在获取了其他智能家居设备的信息之 后, 再次获取所述该智能家居设备的信息吋, 该智能家居设备的信息在终端界 面上只显示一个, 也就是根据获取的所述至少两个智能家居设备的信息, 创建 的与所述至少两个智能家居设备的信息相关的场景设置中, 保存了获取的所述 至少两个智能家居设备的信息的一次记录。
[0046] 进一步地, 所述根据获取的所述至少两个智能家居设备的信息, 创建与所述至 少两个智能家居设备的信息相关的场景设置, 具体包括:
[0047] 将获取的所述至少两个智能家居设备的信息按照预先定义的场景数据存储模式 分类设置;
[0048] 基于所述至少两个智能家居设备的信息在所述预先定义的场景数据存储模式中 的分类设置, 创建与所述至少两个智能家居设备的信息相关的场景设置。 [0049] 应当指出, 所述场景数据存储模式是指获取的所述智能家居设备的信息在终端 中解析为结构化形式的数据而存储的模式, 该场景数据存储模式可以由智能家 居 App预先定义, 也可以是由用户在应用智能家居 App吋预先定义, 预先定义的 场景数据存储模式存储在装有智能家居 App的终端中。
[0050] 将获取的至少两个智能家居设备的信息按照预先定义的场景数据存储模式分类 设置, 也就是将获取的至少两个智能家居设备的信息解析为结构化数据, 通过 二维表结构的形式来逻辑表示获取的至少两个智能家居设备的信息 (如表 1所示
[0051]
[0052]
Figure imgf000009_0001
[0053]
[0054] 基于获取的至少两个智能家居设备的信息在所述预先定义的场景数据存储模式 中的分类设置, 也就是通过二维表结构的形式将至少两个智能家居设备的 ID信 息、 智能家居设备的状态信息、 智能家居设备的功能信息等信息在预先定义的 场景数据存储模式中实现分类的数据表达形式, 基于该分类的数据表达形式创 建与所述至少两个智能家居设备的信息相关的场景设置, 也就是创建与所述至 少两个智能家居设备的 ID信息、 智能家居设备的状态信息、 智能家居设备的功 能信息等信息相关的场景设置, 也即包含获取的至少两个智能家居设备的信息 的场景设置, 所述场景设置用于保存根据获取的至少两个智能家居设备的信息 设置的所述智能家居设备的场景, 以供用户选择该场景设置, 减少了用户设置 场景吋的操作流程。
[0055] 如, 用户想要利用智能电视、 智能空调、 智能门窗等智能家居设备设置一个回 家场景, 可以用具备 NFC射频识别标签读写功能的终端通过 NFC射频识别感应方 式获取嵌有 NFC射频识别标签芯片的智能电视、 智能空调、 智能门窗等智能家居 设备的信息, 自动启用场景设置功能, 基于该智能电视、 智能空调、 智能门窗 等智能家居设备的信息在预先定义的场景数据存储模式中的分类设置, 创建与 所述智能电视、 智能空调、 智能门窗等智能家居设备的信息相关的场景设置, 不需要用户通过终端的按键或触摸板等方式在进行设置, 可直接选择接受所创 建的场景设置, 减少了用户的操作流程, 提升了智能家居设备的使用体验效果
[0056] 需要说明的是, 在实际应用中, 根据获取的所述至少两个智能家居设备的信息 , 创建与所述至少两个智能家居设备的信息相关的场景设置之后, 显示在终端 界面上, 用户可以选择接受或者不接受, 当用户选择接受所创建的场景设置吋 , 将所创建的场景设置进行保存, 当所述场景设置不符合用户需求吋, 用户可 以对所创建的场景设置进行编辑, 也就是对所创建的场景设置进行修改、 刪除 、 增添等操作, 如, 所创建的场景设置中获取到智能门磁幵关处于打幵状态, 大厅灯处于打幵状态, 灯亮度设置是 801ux, 用户需要灯亮度为 1201ux, 则可以 进行编辑, 将场景设置中智能门磁幵关打幵, 大厅灯打幵, 灯亮度设置为 1201ux , 之后, 将经过编辑的场景设置进行保存。
[0057] 本发明实施例通过上述方法, 可以较大程度上简化场景设置的操作, 使用户更 为方便的对智能家居设备进行场景设置, 提升用户对智能家居设备的使用体验 效果。
[0058] 本发明实施例提供了一种场景设置方法, 通过非接触式射频识别感应方式连续 获取至少两个智能家居设备的信息, 自动启用场景设置功能, 将获取的该至少 两个智能家居设备的信息按照预先定义的场景数据存储模式分类设置, 基于该 至少两个智能家居设备的信息在所述预先定义的场景数据存储模式中的分类设 置, 创建与该至少两个智能家居设备的信息相关的场景设置, 以方便用户进行 选择, 较大程度上减少了用户对智能家居设备进行场景设置的操作步骤, 提升 了用户体验效果。
[0059] 实施例二:
[0060] 图 2示出了本发明第二实施例提供的一种场景设置终端的结构图, 所述终端包 括:
[0061] 获取设备信息单元 21, 用于通过非接触式射频识别感应方式连续获取至少两个 智能家居设备的信息;
[0062] 创建场景设置单元 22, 用于根据获取的所述至少两个智能家居设备的信息, 创 建与所述至少两个智能家居设备的信息相关的场景设置, 所述场景设置用于保 存根据获取的所述至少两个智能家居设备的信息设置的场景。
[0063] 在本发明实施例中, 具备射频识别标签读写功能的获取设备信息单元与嵌有射 频识别标签芯片的智能家居设备通过非接触式射频识别感应方式进行通信连接 , 以使具备射频识别标签读写功能的获取设备信息单元在识别运行应用中获取 嵌有射频识别标签芯片的所述智能家居设备的信息, 其中, 所述射频识别标签 可以是 NFC (Near Field Communication) 标签, 也可以是 RFID (Radio
Frequency Identification) 标签, 相应地, 所述非接触式射频识别感应方式, 可以 是 NFC射频识别感应方式, 也可以是 RFID射频识别感应方式。 另外, 支持二维 码和 /或条形码扫描功能的获取设备信息单元与含有智能家居设备的信息的二维 码和 /或条形码也可以通过非接触式识别感应方式进行通信连接, 以使具备扫描 识别功能的获取设备信息单元在识别应用中获取具有二维码和 /或条形码的所述 智能家居设备的信息, 其中, 所述非接触式识别感应方式, 可以是二维码识别 感应方式, 也可以是条形码识别感应方式, 对于支持 Z-wave技术的获取设备信 息单元与智能家居设备还可以通过 Z-wave射频识别感应方式进行通信连接, 在 识别运行应用中获取智能家居设备的信息, 本发明实施例对非接触式识别感应 方式不作具体限定, 以 NFC射频识别感应方式为优选方式, 以下以 NFC射频识别 感应方式为例进行说明, 具备 NFC射频识别标签读写功能的获取设备信息单元通 过 NFC射频识别感应方式获取嵌有 NFC射频识别标签芯片的智能家居设备的信息 。 所述智能家居设备的信息至少包括: 智能家居设备的 ID信息、 智能家居设备 的状态信息、 智能家居设备的功能信息, NFC射频识别标签中可以包括智能家居 设备的 ID信息、 智能家居设备的状态信息、 智能家居设备的功能信息等信息, 也可以包括智能家居设备的 ID信息, 通过该 ID信息在智能家居***中获取其他 信息, 如智能家居设备的状态信息、 智能家居设备的功能信息等。 [0064] 在本发明实施例中, 场景中包括至少两个智能家居设备的工作状态, 为实现智 能家居设备的场景设置, 本发明实施例中的智能家居设备至少包括两个, 也就 是获取至少两个智能家居设备的信息。
[0065] 其中, 智能家居设备可以是智能电视、 智能空调等家电设备, 也可以是智能摄 像头、 智能门禁等安防设备, 对此智能家居设备的具体形式, 本发明不作具体 限定, 只要能实现本发明所述思想的任一种具体形式的智能家居设备均可。
[0066] 获取至少两个智能家居设备的信息, 也就是获取至少两个智能家居设备的 ID信 息、 智能家居设备的状态信息、 智能家居设备的功能信息, 其中, 智能家居设 备的 ID信息作为智能家居设备的唯一标识, 可以是 MAC地址, 也可以是设备序 列号, 智能家居设备的 ID信息中包括智能家居设备的类型信息, 从智能家居设 备的 ID信息中可以获悉该智能家居设备所属的类型, 智能家居设备所属的类型 不同, 具备的功能信息也就不同, 获取的状态信息也就不同, 如温度传感器、 智能空调所属的类型不同, 所具备的功能信息分别为: 温度传感器可以是支持 检测室内温度的变化功能, 而智能空调可以是支持打幵 /关闭功能, 并且处于打 幵状态吋, 可以设置温度等, 相应地, 获取的温度传感器的状态信息可以是温 度值为 28度、 智能空调的状态信息可以是当前处于打幵状态, 设置的温度为 26 度等, 获取的该状态信息、 功能信息等可以作为场景设置中的智能家居设备的 信息, 其中, 该功能信息作为后续用户对场景设置进行编辑的依据。 应当理解 , 本发明对智能家居设备的 ID信息不作具体限定。
[0067] 本领域技术人员可以理解, 智能家居设备的信息也可以是包括除了智能家居设 备的 ID信息、 智能家居设备的状态信息、 智能家居设备的功能信息之外的其它 信息, 如智能家居设备的位置信息等, 该其它信息对创建与智能家居设备的信 息相关的场景设置具有参考作用。
[0068] 进一步地, 所述获取设备信息单元 21还包括:
[0069] 启用场景设置单元 211, 用于在连续获取了两个智能家居设备的信息之后, 自 动启用场景设置的功能。
[0070] 当通过非接触式射频识别感应方式连续获取两个智能家居设备的信息之后, 启 用场景设置单元自动启用场景设置的功能, 所获取的智能家居设备的信息依次 出现在终端界面上, 这里所说的连续为获取的至少两个智能家居设备的信息之 间的间隔吋间短, 比如间隔为 0.2秒, 对此间隔吋间, 本发明不做具体数值限定 , 只要能实现本发明所述思想的任一间隔吋间均可。 应当理解, 当通过非接触 式射频识别感应方式连续获取同一个智能家居设备的信息吋, 或者, 通过非接 触式射频识别感应方式获取了该智能家居设备的信息, 在获取了其他智能家居 设备的信息之后, 再次获取所述该智能家居设备的信息吋, 该智能家居设备的 信息在终端界面上只显示一个, 也就是根据获取的所述至少两个智能家居设备 的信息, 创建的与所述至少两个智能家居设备的信息相关的场景设置中, 保存 了获取的所述至少两个智能家居设备的信息的一次记录。
[0071] 进一步地, 所述创建场景设置单元 22包括:
[0072] 分类设置信息单元 221, 用于将获取的所述至少两个智能家居设备的信息按照 预先定义的场景数据存储模式分类设置;
[0073] 子创建场景设置单元 222, 用于基于所述至少两个智能家居设备的信息在所述 预先定义的场景数据存储模式中的分类设置, 创建与所述至少两个智能家居设 备的信息相关的场景设置。
[0074] 应当指出, 所述场景数据存储模式是指获取的所述智能家居设备的信息在终端 中解析为结构化形式的数据而存储的模式, 该场景数据存储模式可以由智能家 居 App预先定义, 也可以是由用户在应用智能家居 App吋预先定义, 预先定义的 场景数据存储模式存储在装有智能家居 App的创建场景设置单元中。
[0075] 分类设置信息单元将获取的至少两个智能家居设备的信息按照预先定义的场景 数据存储模式分类设置, 也就是将获取的至少两个智能家居设备的信息解析为 结构化数据, 通过二维表结构的形式来逻辑表示获取的至少两个智能家居设备 的信息 (如实施例一中的表 1所示) 。
[0076] 子创建场景设置单元基于获取的至少两个智能家居设备的信息在所述预先定义 的场景数据存储模式中的分类设置, 也就是通过二维表结构的形式将至少两个 智能家居设备的 ID信息、 智能家居设备的状态信息、 智能家居设备的功能信息 等信息在预先定义的场景数据存储模式中实现分类的数据表达形式, 基于该分 类的数据表达形式创建与所述至少两个智能家居设备的信息相关的场景设置, 也就是创建与所述至少两个智能家居设备的 ID信息、 智能家居设备的状态信息 、 智能家居设备的功能信息等信息相关的场景设置, 也即包含获取的至少两个 智能家居设备的信息的场景设置, 所述场景设置用于保存根据获取的至少两个 智能家居设备的信息设置的所述智能家居设备的场景, 以供用户选择该场景设 置, 减少了用户设置场景吋的操作流程。
[0077] 如, 用户想要利用智能电视、 智能空调、 智能门窗等智能家居设备设置一个回 家场景, 可以用具备 NFC射频识别标签读写功能的获取设置信息单元通过 NFC射 频识别感应方式获取嵌有 NFC射频识别标签芯片的智能电视、 智能空调、 智能门 窗等智能家居设备的信息, 启用场景设置单元自动启用场景设置功能, 子创建 场景设置单元基于该智能电视、 智能空调、 智能门窗等智能家居设备的信息在 预先定义的场景数据存储模式中的分类设置, 创建与所述智能电视、 智能空调 、 智能门窗等智能家居设备的信息相关的场景设置, 不需要用户通过终端的按 键或触摸板等方式在进行设置, 可直接选择接受所创建的场景设置, 减少了用 户的操作流程, 提升了智能家居设备的使用体验效果。
[0078] 需要说明的是, 在实际应用中, 根据获取的所述至少两个智能家居设备的信息 , 创建与所述至少两个智能家居设备的信息相关的场景设置之后, 显示在终端 界面上, 用户可以选择接受或者不接受, 当用户选择接受所创建的场景设置吋 , 将所创建的场景设置进行保存, 当所述场景设置不符合用户需求吋, 用户可 以对所创建的场景设置进行编辑, 也就是对所创建的场景设置进行修改、 刪除 、 增添等操作, 故, 所述终端还包括:
[0079] 编辑场景设置单元 23, 用于当所述场景设置方案不符合用户需求吋, 用户对所 述场景设置方案进行编辑。
[0080] 如, 所创建的场景设置中获取到智能门磁幵关处于打幵状态, 大厅灯处于打幵 状态, 灯亮度设置是 801ux, 用户需要灯亮度为 1201ux, 则可以通过编辑场景设 置单元进行编辑, 将场景设置中智能门磁幵关打幵, 大厅灯打幵, 灯亮度设置 为 1201ux, 之后, 将经过编辑的场景设置进行保存。
[0081] 本发明实施例通过上述终端, 可以较大程度上简化场景设置的操作, 使用户更 为方便的对智能家居设备进行场景设置, 提升用户对智能家居设备的使用体验 效果。
[0082] 本发明实施例提供了一种场景设置终端, 获取设备信息单元通过非接触式射频 识别感应方式连续获取至少两个智能家居设备的信息, 启用场景设置单元自动 启用场景设置功能, 分类设置信息单元将获取的该至少两个智能家居设备的信 息按照预先定义的场景数据存储模式分类设置, 子创建场景设置单元基于该至 少两个智能家居设备的信息在所述预先定义的场景数据存储模式中的分类设置 , 创建与该至少两个智能家居设备的信息相关的场景设置, 以方便用户进行选 择, 较大程度上减少了用户对智能家居设备进行场景设置的操作步骤, 提升了 用户体验效果。
[0083]
[0084] 本领域普通技术人员可以理解实现上述实施例方法中的全部或部分步骤是可以 通过程序来指令相关的硬件来完成, 所述的程序可以存储于一计算机可读取存 储介质中, 所述的存储介质, 如 ROM/RAM、 磁盘、 光盘等。
[0085] 以上所述仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡在本发明的 精神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本发明的保 护范围之内。

Claims

权利要求书
一种场景设置方法, 其特征在于, 所述方法包括步骤:
通过非接触式射频识别感应方式连续获取至少两个智能家居设备的信 息;
根据获取的所述至少两个智能家居设备的信息, 创建与所述至少两个 智能家居设备的信息相关的场景设置, 所述场景设置用于保存根据获 取的所述至少两个智能家居设备的信息设置的场景。
如权利要求 1所述的方法, 其特征在于, 所述非接触式射频识别感应 方式至少包括: NFC射频识别感应方式、 RFID射频识别感应方式。 如权利要求 1所述的方法, 其特征在于, 所述智能家居设备的信息至 少包括: 智能家居设备的 ID信息、 智能家居设备的状态信息、 智能家 居设备的功能信息。
如权利要求 1所述的方法, 其特征在于, 在所述通过非接触式射频识 别感应方式连续获取至少两个智能家居设备的信息步骤之中, 还包括 在连续获取了两个智能家居设备的信息之后, 自动启用场景设置的功 能。
如权利要求 1所述的方法, 其特征在于, 所述根据获取的所述至少两 个智能家居设备的信息, 创建与所述至少两个智能家居设备的信息相 关的场景设置, 具体包括:
将获取的所述至少两个智能家居设备的信息按照预先定义的场景数据 存储模式分类设置;
基于所述至少两个智能家居设备的信息在所述预先定义的场景数据存 储模式中的分类设置, 创建与所述至少两个智能家居设备的信息相关 的场景设置。
如权利要求 1-5任一项所述的方法, 其特征在于, 在所述根据获取的 所述至少两个智能家居设备的信息, 创建与所述至少两个智能家居设 备的信息相关的场景设置步骤之后, 还包括: 当所述场景设置不符合用户需求吋, 用户对所述场景设置进行编辑。 一种场景设置终端, 其特征在于, 所述终端包括:
获取设备信息单元, 用于通过非接触式射频识别感应方式连续获取至 少两个智能家居设备的信息;
创建场景设置单元, 用于根据获取的所述至少两个智能家居设备的信 息, 创建与所述至少两个智能家居设备的信息相关的场景设置, 所述 场景设置用于保存根据获取的所述至少两个智能家居设备的信息设置 的场景。
如权利要求 7所述的终端, 其特征在于, 所述非接触式射频识别感应 方式至少包括: NFC射频识别感应方式、 RFID射频识别感应方式。 如权利要求 7所述的终端, 其特征在于, 所述智能家居设备的信息至 少包括: 智能家居设备的 ID信息、 智能家居设备的状态信息、 智能家 居设备的功能信息。
如权利要求 7所述的终端, 其特征在于, 所述获取设备信息单元还包 括:
启用场景设置单元, 用于在连续获取了两个智能家居设备的信息之后 , 自动启用场景设置的功能。
如权利要求 7所述的终端, 其特征在于, 所述创建场景设置单元包括 分类设置信息单元, 用于将获取的所述至少两个智能家居设备的信息 按照预先定义的场景数据存储模式分类设置;
子创建场景设置单元, 用于基于所述至少两个智能家居设备的信息在 所述预先定义的场景数据存储模式中的分类设置, 创建与所述至少两 个智能家居设备的信息相关的场景设置。
如权利要求 7-11任一项所述的终端, 其特征在于, 所述终端还包括: 编辑场景设置单元, 用于当所述场景设置不符合用户需求吋, 用户对 所述场景设置进行编辑。
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