WO2016045180A1 - 一种电器操作界面显示方法及洗衣机的控制方法 - Google Patents

一种电器操作界面显示方法及洗衣机的控制方法 Download PDF

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WO2016045180A1
WO2016045180A1 PCT/CN2014/091308 CN2014091308W WO2016045180A1 WO 2016045180 A1 WO2016045180 A1 WO 2016045180A1 CN 2014091308 W CN2014091308 W CN 2014091308W WO 2016045180 A1 WO2016045180 A1 WO 2016045180A1
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Prior art keywords
interface
human
computer interaction
washing
frequency
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PCT/CN2014/091308
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English (en)
French (fr)
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吕佩师
高秋英
田颖
王小伟
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青岛海尔洗衣机有限公司
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Application filed by 青岛海尔洗衣机有限公司 filed Critical 青岛海尔洗衣机有限公司
Priority to US15/513,540 priority Critical patent/US20170284009A1/en
Priority to EP14902524.9A priority patent/EP3199685A4/en
Priority to KR1020177011030A priority patent/KR20170049611A/ko
Priority to JP2017515180A priority patent/JP2017527412A/ja
Publication of WO2016045180A1 publication Critical patent/WO2016045180A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/28Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2105/00Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
    • D06F2105/58Indications or alarms to the control system or to the user
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0482Interaction with lists of selectable items, e.g. menus
    • 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
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the invention relates to the field of electrical program display, in particular to an electrical device operation interface display method and a control method of the washing machine.
  • the display interface of most household appliances is fixed, and the automatic sorting of the washing mode cannot be performed according to the user's preference.
  • the washing mode frequently used by the user is mixed with the washing mode that is not frequently used, and there is no order.
  • the washing machine displays a fixed interface when washing clothes, and cannot automatically sort the washing mode according to the user's preference.
  • the washing mode frequently used by the user is mixed with the washing mode that is not frequently used, and there is no order, plus the washing machine.
  • the default value of the self-programming program of the existing washing machine is fixed, and the previous washing data cannot be collected and the default value of the self-programming program is changed according to the user's past washing data.
  • the user steps to wash the clothes using the fully automatic washing machine first insert the power plug into the socket, then put the laundry to be washed into the washing tub, press the power button, and then set the water inlet program, the washing program, and the rinsing program in turn.
  • drainage program and dehydration program, or set the drying program there are many settings, such as water intake, washing time, washing strength, detergent addition and rinsing frequency, etc., the setting process is very troublesome, increased The difficulty of the washing machine and the program selection time. And these procedures can only be set by the amount of clothing and the subjective judgment of the dirty procedure. Since subjective judgment may not accurately grasp the degree of soiling of the clothes, it is easy to cause waste of energy.
  • an object of the present invention is to provide an electrical device operation interface display method, which saves time used by a user to select a usage mode, is simple in operation, avoids waste of energy, and reduces difficulty in using the electrical appliance.
  • Another object of the present invention is to provide a control method for a washing machine, which saves time for the user to select a washing mode, is simple in operation, avoids waste of energy, and reduces the difficulty in using the washing machine.
  • An electrical device operation interface display method the electrical appliance has a human-computer interaction interface, and the human-computer interaction interface includes at least two functional interfaces that can be externally selected, and the method includes the following steps:
  • the priority display is to display the function interface with the highest frequency of use as the open interface of the human-machine interaction interface.
  • the priority display is to display the function interface with the highest frequency of use as the opening interface of the human-computer interaction interface and/or highlight.
  • a plurality of said functional interfaces are displayed in a high-to-low order according to the frequency of use in the human-computer interaction interface.
  • the electrical operation interface display method further comprises: selecting a value of the operating parameter in the function interface, counting the frequency of use of each parameter value, and when displaying the function interface, preferentially displaying the highest frequency of use in the operating parameter.
  • the parameter value is selected from a list of values that are currently being used.
  • a control method of a washing machine which adopts the electric appliance operation interface display method according to any one of the above, wherein the function interface is one or more of washing, rinsing, dehydrating or drying interfaces.
  • the parameters are time, water level, and/or water temperature.
  • the display method of the electrical operation interface provided by the present application can record the frequency of use of each functional interface, and adjust the display arrangement mode of the human-computer interaction interface, so that the function with the highest frequency is used when the human-computer interaction interface is re-opened.
  • the interface can be displayed first.
  • the washing machine computer controller collects selected usage conditions and washing data of all functional interfaces and stores them in the data storage unit, and calculates and stores the stored data. Frequency analysis is performed.
  • the function interface with the highest frequency is displayed preferentially. Therefore, the time taken by the user to select the washing mode is saved, the operation is simple, and energy waste is avoided.
  • FIG. 1 is a flow chart of a method for displaying an operation interface of a washing machine provided by the present application.
  • the operation interface display method provided by the present application can be applied to all appliances having an operation interface, the electric appliance has a central processing unit and a data storage unit, the electric appliance has a human-computer interaction interface, and the human-machine interaction interface includes an external selection At least two functional interfaces each have at least one secondary interface associated with the functional interface and accessible by selecting the functional interface.
  • the method flow is as shown in FIG. 1 , including the steps of: S10, the central processing unit continuously records the frequency of use of each function interface; S20, adjusting the display arrangement manner of the human-computer interaction interface, so that the person is re-opened When the machine interacts with the interface, the most frequently used function interface can be displayed preferentially.
  • the central processing unit continuously counts the frequency of use of each function interface in a preset time period, so the function interface arranged in the first place before each power-on is not fixed, and is turned on twice before and after.
  • the functional interfaces displayed in the first place may be the same or different.
  • the preset time period may be one week, one month, one quarter, etc., and is specifically set according to actual usage.
  • the following describes the operation interface display method in detail by taking the washing machine as an example.
  • the washing mode Before using the washing machine, the washing mode needs to be selected to determine the washing mode required for the washing.
  • the washing mode is divided into the following types: a washing mode including a water injection process, a washing process, a dehydration process, and a drying process, and a washing mode including a drying process and a dehydration process, including only the drying process or Only the washing mode of the dehydration process, etc. are included.
  • the washing process further comprises various washing procedures, such as a chemical fiber fabric program, a standard washing program, a wool fabric program, a weak washing program or a cotton fabric program.
  • the washing mode is displayed as a function interface from the human-computer interaction interface.
  • a chemical fiber fabric program, a standard washing program, a wool fabric program, a weak washing program or a cotton program, etc. are displayed as a secondary interface associated with the functional interface from the human-computer interaction interface, and each secondary interface further includes a The secondary interface of the next level, either directly or indirectly associated with the secondary interface.
  • the specific working process is: the central processing unit counts the frequency of use of all the secondary interfaces in each functional interface in the preset time period according to the historical washing parameter values stored in the data storage unit, and associates each functional interface with it.
  • the frequency of use of all secondary interfaces in the preset time period is used as the frequency of use of the function interface in the preset time period; all functional interfaces are sorted according to the order of use frequency, and the human-computer interaction interface is used.
  • the function interface with the most frequently used frequency in the preset time period is displayed preferentially.
  • the washing mode in which a series of processes such as the water inlet process, the washing process, the dehydration process, and the drying process are combined is used most frequently in the preset time period, when the human-computer interaction interface is re-opened, the person will be The function interface corresponding to the washing mode is preferentially displayed on the machine interaction interface.
  • the use of the method saves the time taken by the user to select the washing mode, and the operation is simple, and the waste of energy is avoided.
  • a plurality of the function interfaces are sequentially displayed in the human-computer interaction interface according to the frequency of use in the preset time period from high to low.
  • the central processor also sorts each functional interface.
  • the function interfaces are sequentially arranged according to the size of the frequency used by all the secondary interfaces in each function interface in the preset time period, and all the secondary interfaces arranged under the function interface of the N+1th bit are in the preset time period.
  • the frequency of use is greater than the frequency of use of all secondary interfaces arranged under the Nth function interface for a preset period of time. Where N is an integer greater than or equal to 1.
  • the method uses the method to more accurately sort the usage frequency of the washing mode corresponding to the function interface, so that the user can conveniently find the washing mode to be used when the washing mode corresponding to the function interface arranged in the first position is not needed.
  • Corresponding function interface The time taken by the user to select the washing mode is further saved, and the operation is simple.
  • each function interface is associated with at least one level of the secondary interface, after opening a certain function interface, it is possible that the function interface is associated with multiple secondary interfaces of the same level, and the selection of the secondary interface of the level is also required. It takes a certain amount of time, so it is necessary to sort the display order of the secondary interface.
  • the display order of the secondary interfaces is sorted by the following preferred scheme: the central processor counts the frequency of use of all the secondary interfaces under each functional interface in the preset time period, and uses the preset time period. The most frequently used secondary interface is displayed first when it is turned on next time. For example, if the standard washing program is counted as the most frequently used during the preset time period, the standard washing program will be used at the next power-on. The corresponding secondary interface is displayed first. When the corresponding function interface is opened to enter the secondary interface, the secondary interface corresponding to the standard washing program is preferentially displayed.
  • the preferred solution performs statistics on the secondary interfaces of each level under each functional interface, and displays the secondary interfaces with the most frequently used frequency in the preset time period under each functional interface, thereby further facilitating the user's
  • the choice of the level interface reduces the difficulty for the user to select the secondary interface and saves the time spent on the secondary interface selection.
  • the present invention also sorts the secondary interfaces of each level under each functional interface.
  • the secondary interfaces are sequentially arranged according to the size of the used frequency of each secondary interface in each functional interface in the preset time period, and are arranged at the M+1.
  • the secondary interface of the bit is used for a preset period of time greater than the secondary interface arranged at the Mth bit for a preset period of time.
  • M is an integer greater than or equal to 1.
  • the standard washing program is used most frequently in the preset time period
  • the chemical fiber fabric program uses the second most frequently used time in the preset time period
  • the wool fabric program uses the third most frequently used frequency in the preset time period.
  • the weak washing program or the cotton fabric program is The preset time period uses the least frequency.
  • the value of the running parameter can be selected, the frequency of use of each parameter value is counted, and when the function interface is displayed, the parameter value with the highest frequency of use in the running parameter is preferentially displayed.
  • the central processing unit Since at least part of the secondary interface corresponding to the washing program is a self-programming program, the central processing unit also counts the operating parameters of each self-programming program in a preset time period, and presets each self-programming program.
  • the operating parameters with the most frequent use of the time period are ranked first. Among them, the operating parameters are generally time, water level, water quality, washing water temperature, user habits and other factors.
  • the central processor collects, analyzes, and counts the time, water level, water quality, washing water temperature, and user habits used by the user in the past when using the washing machine. Based on these factors, the user uses the most used water flow and washing liquid loading amount. Parameters such as washing time, water level, water flow speed, etc., the next time the power is turned on, these parameters are displayed by default.
  • the priority display is to display the function interface with the highest frequency of use as the open interface of the human-computer interaction interface. Specifically, after the central processor counts the function interface, the function interface arranged in the first position is displayed as the boot interface from the human-computer interaction interface at the next booting, that is, at the next boot, only in the first One function interface is displayed from the human-computer interaction interface. When the human-computer interaction interface is swept backward, the function interfaces arranged after the first position are sequentially displayed from the human-computer interaction interface. Each time the human-computer interaction interface is swiped, the function interface displayed on the human-computer interaction interface changes, and only one function interface is displayed at a time on the human-computer interaction interface.
  • the human-computer interaction interface displays the functional interface arranged in the first place.
  • the human-computer interaction interface displays the functional interface arranged in the second position.
  • the function interface arranged in the third position is displayed on the human-computer interaction interface, and so on, until all the function interfaces are displayed from the human-computer interaction interface.
  • the secondary interface arranged in the first place under the function interface appears on the human-computer interaction interface.
  • the human-computer interaction interface is swept in the fixed direction.
  • the human-computer interaction interface displays the secondary interfaces arranged in the second place, and so on, until all the secondary interfaces are displayed from the human-computer interaction interface.
  • the priority display is to display the function interface with the highest frequency of use as the opening interface of the human-computer interaction interface and/or highlight.
  • the method is: dividing the human-computer interaction interface into multiple regions, and all the functional interfaces are simultaneously displayed from multiple regions on the human-computer interaction interface in a sequential order, and are arranged in the first functional interface as The opening interface of the human-computer interaction interface is outlined and/or highlighted.
  • the human-computer interaction interface is divided into multiple regions, if the order is: standard washing program, chemical fiber fabric program, wool fabric program, weak washing program, cotton fabric program, wherein the standard washing program is ranked first, cotton fabric
  • the program is arranged in the last digit, and the standard washing program is displayed and/or highlighted as the opening interface of the human-computer interaction interface.
  • the chemical fiber fabric program, the wool fabric program, the weak wash program, and the cotton fabric program are also displayed from the display interface in the above order, and are displayed from the back to the rear.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Textile Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

一种电器操作界面显示方法及洗衣机的控制方法。所述电器具有人机交互界面,所述人机交互界面包括可由外部选择的至少两个功能界面,所述方法包括步骤:S10 记录每个功能界面的使用频率;S20 自动调整人机交互界面的显示排列方式,使得在重新开启所述人机交互界面时,使用频率最高的功能界面能被优先显示。特别地,将该方法应用于洗衣机上时,洗衣机电脑控制器收集所有功能界面的被选择使用情况和洗涤数据并存储在数据存储单元中,并对这些存储数据进行计算及对这些功能界面的被选用频次进行分析,当用户再使用洗衣机时,使用频次最高的功能界面被优先显示。节省了用户选择洗涤模式所用的时间,操作简单。

Description

一种电器操作界面显示方法及洗衣机的控制方法
本专利申请要求于2014年09月23日提交的、申请号为201410491565.4、申请人为青岛海尔洗衣机有限公司、发明名称为“一种电器操作界面显示方法及洗衣机的控制方法”的中国专利申请的优先权,该申请的全文以引用的方式并入本申请中。
技术领域
本发明涉及电器程序显示领域,具体涉及一种电器操作界面显示方法及洗衣机的控制方法。
背景技术
现有技术中,大多数家用电器的显示界面固定,不能根据用户喜好进行洗涤模式的自动排序,用户经常用到的洗涤模式与不经常用到的洗涤模式混为一起,没有先后的顺序。
特别是洗衣机,在洗涤衣物时显示界面固定,不能根据用户喜好进行洗涤模式的自动排序,用户经常用到的洗涤模式与不经常用到的洗涤模式混在一起,没有先后的顺序,再加上洗衣机所涉及的洗涤模式种类较多,所以洗涤模式排布更加凌乱。并且现有洗衣机的自编程程序默认数值固定,不能搜集以往的洗涤数据并根据用户的以往洗涤数据对自编程程序默认数值进行相应的更改。
用户使用全自动洗衣机洗涤衣物的操作步骤为:先将电源插头***插座,然后将需要洗涤的衣物放入洗涤桶,按动电源键,接下来再依次设定进水程序、洗涤程序、漂洗程序、排水程序及脱水程序,或者还设定烘干程序,需要设定的内容很多,比如进水量、洗涤时间、洗涤强度、洗涤剂添加量和漂洗频率等,该设定过程非常麻烦,增加了该洗衣机的使用难度和程序选择时间。并且只能靠衣物的多少和脏污程序的主观判断来设定这些程序,由于主观判断可能对衣物的脏污程度把握不准,所以很容易造成能源的浪费。
基于以上描述,亟需要一种带有新的电器操作界面显示方法,以解决现有技术中存在的电器使用难度大和模式选择所需时间久,且容易造成能源浪费的问题。
发明内容
有鉴于此,本发明的目的在于提供一种电器操作界面显示方法,该方法节省了用户选择使用模式时所用的时间,操作简单,避免了能源的浪费,降低了电器的使用难度。
本发明的另一个目的在于提供一种洗衣机的控制方法,该方法节省了用户选择洗涤模式时所用的时间,操作简单,避免了能源的浪费,降低了洗衣机的使用难度。
本发明实施例采用以下技术方案:
一种电器操作界面显示方法,所述电器具有人机交互界面,所述人机交互界面包括可由外部选择的至少两个功能界面,所述方法包括步骤:
S10、记录每个功能界面的使用频率;
S20、调整人机交互界面的显示排列方式,使得在重新开启所述人机交互界面时,使用频率最高的功能界面能被优先显示。
作为优选,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面显示。
作为优选,当人机交互界面同时显示多个所述功能界面时,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面排头和/或突出显示。
作为优选,在人机交互界面中按照使用频率由高到低排序显示多个所述功能界面。
作为优选,所述电器操作界面显示方法还包括,在功能界面中可选择运行参数的数值,统计每个参数值的使用频率,并当显示该功能界面时,优先显示该运行参数中使用频率最高的参数值。
一种洗衣机的控制方法,采用了以上任一项所述的电器操作界面显示方法,其中,所述功能界面为:洗涤、漂洗、脱水或烘干界面中的一种或多种。
作为优选,所述参数是时间、水位、和/或水温。
本发明实施例提出的技术方案的有益技术效果是:
(1)由于本申请提供的电器操作界面显示方法可以记录每个功能界面的使用频率,调整人机交互界面的显示排列方式,使得在重新开启所述人机交互界面时,使用频率最高的功能界面能被优先显示。特别是将该方法应用于洗衣机上时,洗衣机电脑控制器收集所有功能界面的被选择使用情况和洗涤数据并存储在数据存储单元中,并对这些存储数据进行计算及对这些功能界面的被选用频次进行分析,当用户再使用洗衣机时,使用频次最高的功能界面被优先显示。所以节省了用户选择洗涤模式时所用的时间,操作简单,避免了能源浪费。
(2)由于本发明所述方法应用于洗衣机时还可以在功能界面中可选择具体的参数值(时间、水位和/或水温等),统计每个参数值的使用频率,并当显示该功能界面时,优先显示该运行参数中使用频率最高的参数值,所以该方法还可以对自编程程序设定的参数值进行学习,默认显示使用频次高的参数值。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对本发明实施例描述中所需要使用的附图作简单的介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据本发明实施例的内容和这些附图获得其他的附图。
图1是本申请提供的洗衣机操作界面显示方法流程图。
具体实施方式
为使本发明解决的技术问题、采用的技术方案和达到的技术效果更加清楚,下面将结合附图对本发明实施例的技术方案作进一步的详细描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发 明中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本申请提供的操作界面显示方法可以应用在所有具有操作界面的电器上,所述电器具有中央处理器和数据存储单元,所述电器具有人机交互界面,所述人机交互界面包括可由外部选择的至少两个功能界面,在每个功能界面下均具有与功能界面相关联并且可通过选中功能界面而到达的至少一个次级界面。其中,所述方法流程如图1所示,包括步骤:S10、中央处理器不断的记录每个功能界面的使用频率;S20、调整人机交互界面的显示排列方式,使得在重新开启所述人机交互界面时,使用频率最高的功能界面能被优先显示。其中,中央处理器不断的统计每个功能界面在预设时间段的使用频率,所以每次开机前所统计出来的排列在第一位的功能界面都是不固定的,前后相邻两次开机时显示出来的排列在第一位的功能界面可能相同,也可能不同。其中,所述预设时间段可以为一周、一个月、一个季度等,具体根据实际使用情况而设定。
以下以洗衣机为例,对操作界面显示方法进行详细描述。
在使用洗衣机之前,需要对洗涤模式进行选择,以确定该次洗涤需要的洗涤方式。洗涤模式分为以下几种:包括进水过程、洗涤过程、脱水过程和烘干过程等一系列过程组合在一起的洗涤模式,包括烘干过程及脱水过程的洗涤模式,只包括烘干过程或只包括脱水过程的洗涤模式等。其中,所述洗涤过程又包括多种洗涤程序,比如化纤织品程序、标准洗涤程序、羊毛织品程序、弱洗程序或棉织品程序等。家庭日常洗涤时,除脏的、厚重织物和比较贵重的、易损织物外,并不按质料分类,而是将各类织物放在一起洗涤,这时应选择化纤织品程序或标准洗涤程序。在夏季洗涤各类不脏的比较轻薄的织物,选择羊毛织品程序或弱洗程序即可。只有在洗涤脏的、厚重的各类织物时,才有必要选择棉织品程序。洗较脏的毛线编织物,也可使用化纤织品程序或标准洗涤程序。
其中,洗涤模式作为功能界面从人机交互界面上显示出来。化纤织品程序、标准洗涤程序、羊毛织品程序、弱洗程序或棉织品程序等作为与所述功能界面相关联的次级界面从人机交互界面上显示出来,并且每个次级界面下还包括一级或多级与次级界面直接或间接关联的下一级的次级界面。
具体的工作过程为:中央处理器根据数据存储单元中存储的历史洗涤参数值统计每个功能界面下的所有次级界面在预设时间段的使用频率次数,并将每个功能界面下与其相关联的所有次级界面在预设时间段的使用频率次数作为该功能界面在预设时间段的使用频率;按照使用频率由大到小的次序对所有功能界面进行排序,并当人机交互界面被重新开启时,优先显示在预设时间段使用频率最多的该功能界面。比如,如果统计出进水过程、洗涤过程、脱水过程和烘干过程等一系列过程组合在一起的洗涤模式在预设时间段使用频率最多,则人机交互界面被重新开启时,将从人机交互界面上优先显示该洗涤模式对应的功能界面出来。
所以使用该方法节省了用户选择洗涤模式时所用的时间,操作简单,避免了能源的浪费。
于本实施例中,作为进一步的优选方案,按照在预设时间段使用频率由高到低在人机交互界面中排序显示多个所述功能界面。具体的,中央处理器还对每个功能界面进行排序。具体的,按照每个功能界面下的所有次级界面在预设时间段使用频率次数的大小依次排列功能界面,排列在第N+1位的功能界面下的所有次级界面在预设时间段使用频率次数大于排列在第N位的功能界面下的所有次级界面在预设时间段使用频率次数。其中,N为大于等于1的整数。
使用该方法对功能界面对应的洗涤模式的使用频率进行了更精确的排序,使得用户在不需要使用排列在第一位的功能界面对应的洗涤模式的时候,可以方便的找到需要使用的洗涤模式对应的功能界面。进一步节省了用户选择洗涤模式时所用的时间,操作简单。
由于每个功能界面至少和一级次级界面相关联,打开某个功能界面后,有可能该功能界面下会关联多个同一级的次级界面,对该级的次级界面进行选择同样需要耗费一定的时间,所以有必要对次级界面的显示顺序进行排序。
于本实施例中,通过以下优选方案对次级界面的显示顺序进行排序:中央处理器统计每个功能界面下的所有次级界面在预设时间段使用频率,并将在预设时间段使用频率最多的次级界面在下次开机时优先显示。比如,如果统计出标准洗涤程序为在预设时间段使用频率最多,则在下次开机时将标准洗涤程序 对应的次级界面优先显示。当打开相应的功能界面进入次级界面后,标准洗涤程序对应的次级界面优先显示。
同理,对与其它功能界面相关联的次级界面进行显示排序的方法与上述方法相同。
本优选方案对每个功能界面下的每一级的次级界面都进行了统计,将每个功能界面下的在预设时间段使用频率最多的次级界面优先显示,进一步方便了用户对次级界面的选择,降低了用户对次级界面的选择难度,节省了次级界面选择所用的时间。
与功能界面的显示排序过程相同,本发明还对每个功能界面下的每一级的次级界面进行了排序。于本实施例中,作为进一步的优选方案,在下次开机时,按照每个功能界面下的所有次级界面在预设时间段使用频率的大小依次排列次级界面,并且排列在第M+1位的次级界面在预设时间段使用频率大于排列在第M位的次级界面在预设时间段使用频率。其中,M为大于等于1的整数。比如,如果标准洗涤程序在预设时间段使用频率最多,化纤织品程序在预设时间段使用频率第二多,羊毛织品程序在预设时间段使用频率第三多,弱洗程序或棉织品程序在预设时间段使用频率最少,则下次开机后,当打开相应的功能界面后,显示在第一位的为标准洗涤程序,显示在第二位的为化纤织品程序,显示在第三位的为羊毛织品程序,显示在第四位,即最后一位的为弱洗程序或棉织品程序。
在功能界面中可选择运行参数的数值,统计每个参数值的使用频率,并当显示该功能界面时,优先显示该运行参数中使用频率最高的参数值。由于至少部分次级界面对应的洗涤程序为自编程程序,所以中央处理器还统计每个自编程程序中的运行参数在预设时间段使用频率,并将每个自编程程序下的在预设时间段使用频率最多的运行参数排列在第一位。其中,运行参数一般为时间、水位、水质、洗涤水的温度、用户使用习惯等因素。中央处理器对用户以往使用洗衣机时所用的时间、水位、水质、洗涤水的温度、用户使用习惯进行收集、分析、统计,根据这几个因素统计出用户使用最多的水流、洗涤液放入量、洗涤时间、水位、水流速度等参数,下次开机时,将这些参数默认优先显示出来。
于本实施例中,作为优选方案,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面显示。具体的,中央处理器统计完功能界面的排序后,并在下次开机时将排列在第一位的功能界面作为开机界面从人机交互界面上显示,即在下次开机时,仅有排列在第一位的功能界面从人机交互界面上显示,当人机交互界面被向后滑动时,将排列在第一位之后的功能界面按照顺序依次从人机交互界面上显示。每滑动一下人机交互界面,人机交互界面上显示的功能界面都会改变,并且人机交互界面上每次只显示一个功能界面。
比如,刚开机时,人机交互界面上上显示的是排列在第一位的功能界面,当朝固定方向滑动人机交互界面时,人机交互界面上显示排列在第二位的功能界面,当朝固定方向再滑动人机交互界面时,人机交互界面上显示排列在第三位的功能界面,依次类推,直到所有的功能界面都被从人机交互界面上所显示。
当点击人机交互界面上的某个功能界面时,人机交互界面上会出现该功能界面下面的排列在第一位的次级界面,同理,当朝固定方向再滑动人机交互界面时,人机交互界面上显示排列在第二位的次级界面,依次类推,直到所有的次级界面都被从人机交互界面上所显示。
于本实施例中,当人机交互界面同时显示多个所述功能界面时,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面排头和/或突出显示。具体的,所述方法为:将人机交互界面划分为多个区域,所有功能界面按照先后顺序同时从人机交互界面上的多个区域上显示出来,并且排列在第一位的功能界面作为人机交互界面的开启界面排头和/或突出显示。
比如,将人机交互界面划分为多个区域,如果的排列顺序为:标准洗涤程序、化纤织品程序、羊毛织品程序、弱洗程序、棉织品程序,其中,标准洗涤程序排列在第一位,棉织品程序排列在最后一位,则标准洗涤程序作为人机交互界面的开启界面排头和/或突出显示。化纤织品程序、羊毛织品程序、弱洗程序及棉织品程序也按照以上排列顺序从显示界面上显示出来,并且从前往后显示。
将该方法应用到其它的电器中时与应用到洗衣机中时原理相同,在此不做累述。
注意,上述仅为本发明的较佳实施例及所运用技术原理。本领域技术人员会理解,本发明不限于这里所述的特定实施例,对本领域技术人员来说能够进行各种明显的变化、重新调整和替代而不会脱离本发明的保护范围。因此,虽然通过以上实施例对本发明进行了较为详细的说明,但是本发明不仅仅限于以上实施例,在不脱离本发明构思的情况下,还可以包括更多其他等效实施例,而本发明的范围由所附的权利要求范围决定。

Claims (7)

  1. 一种电器操作界面显示方法,所述电器具有人机交互界面,所述人机交互界面包括可由外部选择的至少两个功能界面,其特征在于,包括步骤:
    S10、记录每个功能界面的使用频率;
    S20、自动调整人机交互界面的显示排列方式,使得在重新开启所述人机交互界面时,使用频率最高的功能界面能被优先显示。
  2. 如权利要求1所述的电器操作界面显示方法,其特征在于,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面显示。
  3. 如权利要求1所述的电器操作界面显示方法,其特征在于,当人机交互界面同时显示多个所述功能界面时,所述优先显示为将使用频率最高的功能界面作为人机交互界面的开启界面排头和/或突出显示。
  4. 如权利要求3所述的电器操作界面显示方法,其特征在于,在人机交互界面中按照使用频率由高到低排序显示多个所述功能界面。
  5. 如权利要求1-4中任一项所述的电器操作界面显示方法,其特征在于,还包括,在功能界面中可选择运行参数的数值,统计每个参数值的使用频率,并当显示该功能界面时,优先显示该运行参数中使用频率最高的参数值。
  6. 一种洗衣机的控制方法,采用了如权利要求1-5中任一项所述的电器操作界面显示方法,其特征在于,所述功能界面包括:洗涤、漂洗、脱水或烘干界面中的一种或多种。
  7. 如权利要求6所述的洗衣机的控制方法,其特征在于,所述参数是时间、水位、和/或水温。
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JP2017527412A (ja) 2017-09-21
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CN105506926A (zh) 2016-04-20
EP3199685A1 (en) 2017-08-02

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