WO2016187855A1 - 一种智能饮水机及其控制方法 - Google Patents

一种智能饮水机及其控制方法 Download PDF

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Publication number
WO2016187855A1
WO2016187855A1 PCT/CN2015/080001 CN2015080001W WO2016187855A1 WO 2016187855 A1 WO2016187855 A1 WO 2016187855A1 CN 2015080001 W CN2015080001 W CN 2015080001W WO 2016187855 A1 WO2016187855 A1 WO 2016187855A1
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WIPO (PCT)
Prior art keywords
water
information
user
module
smart
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PCT/CN2015/080001
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English (en)
French (fr)
Inventor
罗辉
谭和华
覃国秘
李耀军
吕发斌
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深圳市赛亿科技开发有限公司
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Application filed by 深圳市赛亿科技开发有限公司 filed Critical 深圳市赛亿科技开发有限公司
Priority to PCT/CN2015/080001 priority Critical patent/WO2016187855A1/zh
Priority to CN201580003008.6A priority patent/CN107427148A/zh
Publication of WO2016187855A1 publication Critical patent/WO2016187855A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • 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
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors

Definitions

  • the invention relates to the technical field of water dispensers, in particular to a smart water dispenser and a control method thereof.
  • Intelligent water dispensers play a very important role in daily life, which enhances people's drinking quality and convenience. With the development of science and technology, especially the arrival of the information age, people have put forward higher requirements for the demand for smart water dispensers. Intelligent water dispensers that can provide personalized and intelligent services for different users have broad market prospects.
  • the technical problem to be solved by the present invention is to provide a control method for a smart water dispenser capable of providing personalized and intelligent services for different users.
  • the present invention adopts the following technical solutions.
  • a method for controlling a smart water dispenser includes the following steps:
  • the smart water dispenser water is controlled in a conventional water outlet mode or a smart water outlet mode; if it is a new user, the current user identity information is created and the water is conventionally discharged.
  • Mode control intelligent water dispenser water
  • the conventional water discharge mode is configured to control the water discharge of the smart water dispenser in response to the real-time operation of the current user, obtain the water discharge information of the real-time operation, and store the water discharge information under the corresponding user name; the smart water discharge mode is to call the drinking water habit information of the corresponding user.
  • the smart water dispenser is controlled to effluent, and the drinking habit information is processed by at least one effluent information analysis.
  • the effluent information includes an outlet water temperature and an effluent amount.
  • the water discharge information includes a start time point, an outlet water temperature, and a water discharge amount of the current user performing the water discharge operation.
  • the step of generating the drinking water habit information by the effluent information analysis processing is: counting the probability distribution of the effluent temperature and the effluent amount in the effluent information in each time period, and the effluent temperature having the highest probability in each time period The amount of water is used as the drinking habit information of the current user.
  • the step of generating the habit information by the effluent information analysis process is: calculating an average value of the effluent temperature and the effluent amount in the effluent information in each time period, and the effluent temperature and the effluent amount in each time period. The average value is used as the drinking habit information of the current user.
  • the drinking habit information closest to the time period is taken as the drinking habit information of the current time period.
  • the method for determining whether the user is a new user or an existing user is: traversing all the user identity information stored by using the collected identity information of the current user as a keyword, and if all the stored user identity information includes the identity information of the current user, Then, it is determined that the current user is an existing user, otherwise it is a new user.
  • the step of collecting the identity information of the current user is implemented by at least one of an RFID collection module, a fingerprint collection module, an infrared monitoring module, a face collection module, a voice collection module, an iris collection module, and a vein collection module.
  • the technical problem to be solved by the present invention is also to provide a smart water dispenser capable of providing personalized and intelligent services for different users.
  • the present invention adopts the following technical solutions.
  • a smart water dispenser includes: a controller, an information collecting module connected to the controller, a storage module connected to the controller, and a water outlet control module connected to the controller;
  • the information collection module is configured to collect identity information of the current user.
  • the storage module is configured to store user identity information and corresponding water discharge information and drinking water habit information, and the drinking water habit information is formed by analyzing and processing at least one water discharge information;
  • the controller is configured to determine, according to the collected current user identity information and the user identity information stored in the storage module, whether the user is a new user or an existing user;
  • the controller responds to the current user's water delivery mode selection operation and accordingly controls the water in the normal water delivery mode or the smart water delivery mode; if the current user identity information is a new user The controller creates identity information of the current user and controls the water discharge of the smart water dispenser in a regular water discharge mode;
  • the conventional water discharge mode is that the controller responds to the real-time operation of the current user to control the water discharge of the smart water dispenser, acquires the water discharge information of the real-time operation and stores it under the corresponding user name;
  • the intelligent water discharge mode is the control
  • the device instructs the current user's drinking habit information to control the water of the smart water dispenser;
  • the drinking habit information is processed and processed by at least one water discharge information;
  • the water discharge control module is configured to perform a water discharge operation of the smart water dispenser for the current user.
  • the information collection module is an RFID collection module, a fingerprint collection module, an infrared monitoring module, a face collection module, a voice collection module, an iris collection module, or a vein collection module.
  • the effluent control module includes a conventional setting module for performing a water discharge operation in a normal water discharge mode, the controller controls the effluent water in response to the effluent information input by the conventional setting module, and stores the effluent information in the Storage module.
  • the smart water dispenser further includes a display screen for displaying water information.
  • the smart water dispenser is provided with a reminding module.
  • the reminding module is activated to notify the current user that the smart water discharging mode is available.
  • controller of the smart water dispenser includes a time module for acquiring a starting time point at which the user performs the water discharging operation.
  • the smart water dispenser further includes a time module for acquiring a starting time point of the user performing the water discharging operation, and the time module is connected to the controller.
  • the display screen is a touch screen
  • the information collection module is a fingerprint identification module
  • the smart water dispenser comprises a controller, an information collecting module connected to the controller, a storage module connected to the controller, and a connection with the controller.
  • Outlet control module The storage module is configured to store user identity information and corresponding water discharge information and drinking water habit information.
  • the controller determines, according to the current user identity information collected by the information collection module, whether the user is a new user or an existing user. For an existing user, the controller responds to the current user's water mode selection operation and accordingly uses a conventional water delivery mode or intelligence.
  • the water outlet mode controls the water from the smart water dispenser.
  • the conventional water discharge mode is that the controller controls the water discharge in response to the real-time operation of the current user, and stores the water-out information of the real-time operation into the storage module; the smart water-out mode is that the controller invokes the current user's drinking habit
  • the information controls the smart water dispenser to discharge water; the drinking water habit information is formed by analyzing and processing at least one water discharge information.
  • the water discharge control module is configured to perform a water discharge operation of the smart water dispenser for the current user.
  • the smart water dispenser can identify different users and store multiple water discharge information of different users.
  • the drinking water habit information obtained by analyzing and processing a large amount of water information is relatively close to the user's drinking habit, so it can be directly adopted by the intelligent water discharge mode.
  • the user's drinking habit information is invoked to control the water of the smart water dispenser, and the drinking water process is more intelligent and convenient, thereby improving the user experience.
  • FIG. 1 is a block diagram showing the structure of a smart water dispenser of the present invention.
  • FIG. 2 is a structural block diagram of a water outlet control module of the intelligent water dispenser of the present invention.
  • FIG. 3 is a block diagram showing the structure of another embodiment of the smart water dispenser of the present invention.
  • FIG. 4 is a flow chart of a method for controlling a smart water dispenser according to the present invention.
  • the smart water dispenser includes a controller 10, an information collecting module 20 connected to the controller 10, a storage module 30 connected to the controller 10, and The water outlet control module 40 connected to the controller 10.
  • the smart water dispenser further includes other essential components of the prior art that constitute a smart water dispenser, such as a water pump, a heater, a temperature sensor, a water level detector, and the like.
  • the information collection module 20 is configured to collect the identity information of the current user, and may use the fingerprint information, the iris information, the face information, and the like of the current user as the identity information corresponding thereto.
  • the information collecting module 20 can adopt any module with the identity information collecting function in the prior art, such as an RFID collecting module, a fingerprint collecting module, an infrared monitoring module, a face collecting module, a voice collecting module, an iris collecting module, or a vein collecting module. .
  • the storage module 30 is configured to store user identity information and corresponding water discharge information and drinking water habit information.
  • the water discharge information may include information such as the water temperature and water output of the user each time the drinking water is used, and the drinking water habit information is analyzed and processed by at least one water discharge information. . Since the drinking habit information is processed and analyzed for the effluent information, it is closer to the user's drinking habits.
  • the controller 10 is configured to: determine, according to the collected identity information of the current user, whether the current user is a new user or an existing user, and if it is an existing user, respond to the current user's water delivery mode selection operation accordingly.
  • the conventional water outlet mode or the intelligent water outlet mode controls the water discharge of the smart water dispenser; if it is a new user, the identity information of the current user is created and the water of the smart water dispenser is controlled by the conventional water outlet mode.
  • the conventional water discharge mode is configured to control the water discharge of the smart water dispenser in response to the real-time operation of the current user, obtain the water discharge information of the real-time operation, and store the water discharge information under the corresponding user name; the smart water discharge mode is to call the drinking water habit information of the corresponding user.
  • the smart water dispenser is controlled to effluent, and the drinking habit information is processed by at least one effluent information analysis.
  • the effluent control module 40 is used for the current user to perform the water discharge operation of the smart water dispenser.
  • the smart water discharging mode cannot be used, and the user can only use the conventional water discharging mode to control the water discharging of the smart water dispenser.
  • the user can select one of the regular water outlet mode or the smart water outlet mode to control the water dispenser water.
  • the effluent control module 40 includes a conventional setting module 401, and the controller 10 controls the effluent in response to the effluent information input by the conventional setting module 401, and
  • the effluent information is stored in the storage module 30.
  • the controller 10 controls the power of the smart water dispenser heater and the water discharge time of the water pump to realize the water in response to the water discharge information, so as to satisfy the user. Demand.
  • the controller 10 of the smart water dispenser includes a time module for obtaining a point in time at which the user performs the water delivery operation. In some embodiments, since not all of the controllers 10 of the smart water dispenser include a time module, the smart water dispenser further includes an external time module coupled to the controller 10 for obtaining a start time point at which the user performs the water discharge operation.
  • the smart water dispenser is further provided with a reminder module 60.
  • the reminder module 60 is activated to notify the user that the smart water outlet mode can be used.
  • the reminder module 60 is an indicator light, a buzzer, etc., which can more intuitively inform the current user that the intelligent water discharge mode is available.
  • the smart water dispenser is further provided with a display screen 50, which can display the water discharge information of the user in real time.
  • the information collection module 20, the water outlet control module 40, the reminder module 60, and the display screen 50 can be integrated on a touch display screen, thereby facilitating the user experience.
  • step S1 the information collection module 20 collects the identity information of the current user.
  • the current user's fingerprint information, iris information, face information, and the like can be used as the identity information corresponding thereto.
  • This step can be implemented by any module having the identity information collection function in the prior art, such as an RFID acquisition module, a fingerprint collection module, an infrared monitoring module, a face collection module, a voice collection module, an iris acquisition module, or a vein collection module.
  • step S2 the controller 10 determines whether the current user is a new user or an existing user.
  • the method for determining whether the current user is a new user or an existing user is: traversing the collected identity information of the current user as a keyword to traverse all the user identity information stored in the storage module 30, if all the user identity information is stored. If the identity information of the current user is included, it is determined that the current user is an existing user, otherwise it is a new user.
  • step S3 the smart water dispenser is controlled to discharge water.
  • a selection interface is created for the current user to select the water outlet mode of the smart water dispenser, and corresponding to the current user's water outlet mode selection operation and corresponding to the regular water delivery mode or smart
  • the water outlet mode controls the water of the smart water dispenser; if it is a new user, the identity information of the current user is created and the water of the smart water dispenser is controlled by the regular water outlet mode.
  • the conventional water discharge mode is configured to respond to the real-time operation of the current user to control the water discharge of the smart water dispenser, and obtain the water discharge information of the real-time operation and store it to the corresponding user; the smart water discharge mode is to call the drinking water habit information of the corresponding user to control the smart
  • the water dispenser effluent, the drinking habit information is formed by analyzing and processing at least one effluent information.
  • the collected water discharge information includes the start time point of the water discharge operation, the water discharge temperature, and the water discharge amount.
  • the smart water dispenser does not need to set the time module.
  • the drinking water habit information there are various methods for generating the drinking water habit information by analyzing and processing the effluent information, such as calculating the probability distribution of the effluent temperature and the effluent amount in each time period in the effluent information, and maximizing the probability in each time period.
  • the water outlet temperature and water output amount are used as the current user's drinking habit information; or the average value of the outlet water temperature and the water output amount in each time period of the water information is calculated, and the average value of the outlet water temperature and the water output amount in each time period is taken as the current user.
  • Drinking habits information and more. Wherein, if the corresponding water outlet temperature and the water discharge amount are missing in the current drinking water period, the drinking habit information closest to the time period is taken as the drinking habit information of the current time period.
  • the drinking habit information is stored in the storage module 30 and is called when the user selects the smart water discharging mode.
  • the controller 10 When the time module acquires the user 8 and selects the smart water mode drinking water through the water outlet control module 40, the controller 10 will call the drinking habit information within 6 to 12 hours and control the water, that is, the user's current drinking water temperature is 40. °C, the amount of water is 200mL. Similarly, when the user 13 drinks water, the controller 10 will call the drinking habit information within 12 to -18 hours and control the water, that is, the user's current drinking water temperature is 40 ° C, and the water output is 100 mL.
  • the controller 10 regards the drinking habit information closest to the time period as the drinking habit information of the time period, that is, when the call is 18:
  • the drinking water habit information at 24 o'clock therefore, the user's current drinking water temperature is 75 ° C, and the water output is 50 mL.
  • the drinking habit information is stored in the storage module 30 and is called when the user selects the smart water discharging mode.
  • the controller 10 When the time module acquires the user 8 and selects the smart water mode drinking water through the water discharge control module 40, the controller 10 will call the drinking habit information within 6 to 12 hours and control the water, that is, the user's current drinking water temperature is 46. °C, the amount of water is 170mL. Similarly, when the user 13 drinks water, the controller 10 will call the drinking habit information within 12 to -18 hours and control the water, that is, the user's current drinking water temperature is 35 ° C, and the water output is 113 mL. When the user 5 drinks water, since there is no corresponding drinking habit information in the time period, the controller 10 regards the drinking habit information closest to the time period as the drinking habit information of the time period, that is, calling 6:00-12 hours. Drinking water habit information, therefore, the user's current drinking water temperature is 46 ° C, the water output is 170 mL.
  • the user has only one water temperature and water output in a certain period of time, then the water temperature and water output are the drinking habit information of the user during this time period.
  • the drinking habit information obtained by analyzing and processing a small amount of effluent information is not accurate enough. At this time, it is recommended to drink water through the conventional effluent mode; otherwise, a large amount of effluent information is analyzed and processed. The drinking habit information is closer to the user's drinking habits. At this time, it is recommended to use the intelligent water discharging mode to directly call the user's drinking habit information to control the smart water dispenser's water. The drinking water process is more intelligent and convenient, and enhances the user experience.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

一种智能饮水机及其控制方法,该智能饮水机包括有控制器(10)、信息采集模块(20)、存储模块(30)及出水控制模块(40)。该智能饮水机能够识别不同用户并存储不同用户的多次出水信息,大量的出水信息分析处理而成的饮水习惯信息比较接近于用户的饮水习惯,因此可通过智能出水模式直接调用该用户的饮水习惯信息以控制智能饮水机出水,饮水过程更加智能、方便,提升了用户体验。

Description

一种智能饮水机及其控制方法
技术领域
本发明涉及饮水机技术领域,尤其涉及一种智能饮水机及其控制方法。
背景技术
智能饮水机在日常生活中起到非常重要的作用,它提升了人们的饮水质量和生活便捷性。随着科技的发展,特别是信息时代的到来,人们对智能饮水机的需求也提出了更高的要求,能为不同用户提供个性化、智能服务的智能饮水机具有广阔的市场前景。
发明内容
本发明所要解决的技术问题在于提供一种能为不同用户提供个性化、智能服务的智能饮水机的控制方法。
为解决上述技术问题,本发明采用如下技术方案。
一种智能饮水机的控制方法,包括以下步骤:
采集当前用户的身份信息,并判断该当前用户为新用户还是已有用户;
若为已有用户,则响应该当前用户的出水模式选择操作而相应地以常规出水模式或智能出水模式控制智能饮水机出水;若为新用户,则创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水;
其中,所述常规出水模式为响应当前用户的实时操作以控制智能饮水机出水,获取该实时操作的出水信息并存储至相应的用户名下;所述智能出水模式为调用相应用户的饮水习惯信息控制智能饮水机出水,所述饮水习惯信息由至少一次出水信息分析处理而成。
进一步地,所述出水信息包括出水温度、出水量。
进一步地,所述出水信息包括当前用户进行出水操作的开始时间点、出水温度和出水量。
进一步地,将出水信息分析处理生成饮水习惯信息的步骤为:统计所述出水信息中的出水温度、出水量在每一时间段内的概率分布情况,将每一时间段内概率最大的出水温度、出水量作为当前用户的饮水习惯信息。
进一步地,将出水信息分析处理生成习惯信息的步骤为:计算所述出水信息中的出水温度、出水量在每一时间段内内的平均值,将每一时间段内的出水温度、出水量的平均值作为当前用户的饮水习惯信息。
进一步地,如果当前饮水的时间段内缺少对应的出水温度、出水量,则将最接近该时间段的饮水习惯信息当作当前时间段的饮水习惯信息。
进一步地,判断用户是新用户还是已有用户的方法为:将采集的当前用户的身份信息作为关键字遍历存储的所有用户身份信息,若存储的所有用户身份信息中含有当前用户的身份信息,则判断该当前用户是已有用户,否则为新用户。
进一步地,所述采集当前用户的身份信息的步骤通过RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块以及静脉采集模块的至少一者来实现。
本发明所要解决的技术问题还在于提供一种能为不同用户提供个性化、智能服务的智能饮水机。
为解决上述技术问题,本发明采用如下技术方案。
一种智能饮水机,包括有:控制器、与所述控制器连接的信息采集模块、与所述控制器连接的存储模块、与所述控制器连接的出水控制模块;
其中,所述信息采集模块,用于采集当前用户的身份信息;
所述存储模块,用于存储用户身份信息及与之对应的出水信息、饮水习惯信息,所述饮水习惯信息由至少一次出水信息分析处理而成;
所述控制器,用于根据采集的当前用户身份信息和所述存储模块中存储的用户身份信息判断用户是新用户还是已有用户;
若所述当前用户的身份信息为已有用户,所述控制器响应当前用户的出水模式选择操作而相应地以常规出水模式或者智能出水模式控制出水;若所述当前用户的身份信息为新用户,所述控制器创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水;
其中,所述常规出水模式为所述控制器响应当前用户的实时操作以控制智能饮水机出水,获取该实时操作的出水信息并存储至相应的用户名下;所述智能出水模式为所述控制器调用当前用户的饮水习惯信息控制智能饮水机出水;所述饮水习惯信息由至少一次出水信息分析处理而成;
所述出水控制模块,用于供当前用户进行智能饮水机的出水操作。
进一步地,所述信息采集模块为RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块或者静脉采集模块。
进一步地,所述出水控制模块包括常规设置模块,用于供常规出水模式进行出水操作,所述控制器响应由该常规设置模块输入的出水信息来控制出水,并将该出水信息存入所述存储模块。
进一步地,所述智能饮水机还包括显示屏,所述显示屏用于显示出水信息。
进一步地,所述智能饮水机设有提醒模块,当所述控制器判断用户为已有用户时,所述提醒模块被启动,用于告知当前用户智能出水模式可用。
进一步地,所述智能饮水机的控制器包括时间模块,用于获取用户进行出水操作的开始时间点。
进一步地,所述智能饮水机还包括时间模块,用于获取用户进行出水操作的开始时间点,所述时间模块与所述控制器相连。
进一步地,所述显示屏为触摸屏,所述信息采集模块为指纹识别模块。
本发明与现有技术相比的有益效果是:本智能饮水机包括有控制器、与所述控制器连接的信息采集模块、与所述控制器连接的存储模块、与所述控制器连接的出水控制模块。所述存储模块,用于存储用户身份信息及与之对应的出水信息、饮水习惯信息。所述控制器根据信息采集模块采集的当前用户身份信息判断用户是新用户还是已有用户,对于已有用户,所述控制器响应当前用户的出水模式选择操作而相应地以常规出水模式或者智能出水模式控制智能饮水机出水。所述常规出水模式为所述控制器响应当前用户的实时操作来控制出水,并将该实时操作的出水信息存储至存储模块中;所述智能出水模式为所述控制器调用当前用户的饮水习惯信息控制智能饮水机出水;所述饮水习惯信息由至少一次出水信息分析处理而成。所述出水控制模块,用于供当前用户进行智能饮水机的出水操作。
鉴由此设计,该智能饮水机能够识别不同用户并存储不同用户的多次出水信息,大量的出水信息分析处理而成的饮水习惯信息比较接近于用户的饮水习惯,因此可通过智能出水模式直接调用该用户的饮水习惯信息以控制智能饮水机出水,饮水过程更加智能、方便,提升了用户体验。
附图说明
图1为本发明智能饮水机的结构方框图。
图2为本发明智能饮水机出水控制模块的结构方框图。
图3为本发明智能饮水机另一种实施例的结构方框图。
图4为本发明智能饮水机控制方法的流程图。
具体实施方式
为了更充分理解本发明的技术内容,下面结合具体实施例对本发明的技术方案作进一步介绍和说明。
如图1所示,在本发明的一种实施例中,该智能饮水机包括有控制器10、与该控制器10连接的信息采集模块20、与该控制器10连接的存储模块30、与该控制器10连接的出水控制模块40。本领域技术人员可以理解地,该智能饮水机还包括现有技术构成智能饮水机的其他必要部件,例如水泵、加热器、温度传感器、水位探测器等。
其中,信息采集模块20用于采集当前用户的身份信息,可以使用当前用户的指纹信息、虹膜信息、人脸信息等等作为与其相应的身份信息。该信息采集模块20可以采用现有技术中任何具有身份信息采集功能的模块,例如RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块或者静脉采集模块等。
存储模块30用于存储用户身份信息及与之对应的出水信息及饮水习惯信息,出水信息可以包括用户每次饮水的出水温度、出水量等信息,饮水习惯信息由至少一次出水信息分析处理而成。由于饮水习惯信息为出水信息分析处理而成,因此其比较接近于用户的饮水习惯。
控制器10用于执行如下操作:依据所采集的当前用户的身份信息判断该当前用户为新用户还是已有用户,若为已有用户,则响应该当前用户的出水模式选择操作而相应地以常规出水模式或智能出水模式控制智能饮水机出水;若为新用户,则创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水。其中,所述常规出水模式为响应当前用户的实时操作以控制智能饮水机出水,获取该实时操作的出水信息并存储至相应的用户名下;所述智能出水模式为调用相应用户的饮水习惯信息控制智能饮水机出水,所述饮水习惯信息由至少一次出水信息分析处理而成。
出水控制模块40用于供当前用户进行智能饮水机的出水操作。对于新用户,由于存储模块30中没有相应于该用户的饮水习惯信息,因此智能出水模式不可使用,用户只能使用常规出水模式以控制智能饮水机出水。对于已有用户,用户可以选择常规出水模式或者智能出水模式其中之一以控制智能饮水机出水。
在一些实施例中,如图2所示,为了便于实现常规出水模式的出水,出水控制模块40包括常规设置模块401,控制器10响应由该常规设置模块401输入的出水信息控制出水,并将该出水信息存入存储模块30。例如用户想泡杯咖啡,则通过常规设置模块401设置出水温度100℃、出水量100mL,控制器10响应该出水信息而控制智能饮水机加热器的功率和水泵的出水时间实现出水,以满足用户的需求。
在一些实施例中,智能饮水机的控制器10包括时间模块,用于获取用户进行出水操作的开始时间点。在一些实施例中,由于并非所有智能饮水机的控制器10都包括时间模块,智能饮水机还包括与控制器10相连的外部的时间模块,用于获取用户进行出水操作的开始时间点。
在一些实施例中,如图3所示,该智能饮水机还设有提醒模块60,当控制器10判断用户为已有用户时,提醒模块60被启动,用于告知用户可以使用智能出水模式。优选的,提醒模块60为指示灯、蜂鸣器等,可以更加直观告知当前用户智能出水模式可用。
在一些实施例中,如图3所示,该智能饮水机还设有显示屏50,能实时显示该用户的出水信息。在一些优选实施例中,可将信息采集模块20、出水控制模块40、提醒模块60和显示屏50集成于一触摸显示屏上,如此,有利于提升用户的使用体验。
下面结合上述实施例所描述的智能饮水机以对本发明所公开的智能饮水机的控制方法进行说明。
步骤S1,信息采集模块20采集当前用户的身份信息。
在此步骤中,可以使用当前用户的指纹信息、虹膜信息、人脸信息等等作为与其相应的身份信息。该步骤可以采用现有技术中任何具有身份信息采集功能的模块来实现,例如RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块或者静脉采集模块等。
步骤S2,控制器10判断当前用户为新用户还是已有用户。
在此步骤中,判断当前用户是新用户还是已有用户的方法为:将采集的当前用户的身份信息作为关键字遍历存储模块30中存储的所有用户身份信息,若存储的所有用户身份信息中含有当前用户的身份信息,则判断该当前用户是已有用户,否则为新用户。
步骤S3,控制智能饮水机出水。
在此步骤中,若当前用户为已有用户,则创建一选择界面以供于当前用户选择智能饮水机的出水模式,并响应该当前用户的出水模式选择操作而相应地以常规出水模式或智能出水模式控制智能饮水机出水;若为新用户,则创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水。其中,所述常规出水模式为响应当前用户的实时操作以控制智能饮水机出水,并获取该实时操作的出水信息而存储至相应用户;所述智能出水模式为调用相应用户的饮水习惯信息控制智能饮水机出水,所述饮水习惯信息由至少一次出水信息分析处理而成。
在此步骤中,所采集的出水信息包括出水操作的开始时间点、出水温度和出水量。当然,在一些实施例中,也只需获取出水温度和出水量以作为出水信息,而无需采集出水操作的开始时间点,如此,智能饮水机也无需设置时间模块。
在此步骤中,将出水信息分析处理生成饮水习惯信息的方法有多种,比如统计出水信息中的出水温度和出水量在每一时间段内的概率分布情况,将每一时间段内概率最大的出水温度、出水量作为当前用户的饮水习惯信息;或者计算出水信息中每一时间段的出水温度、出水量的平均值,将每一时间段内出水温度、出水量的平均值作为当前用户的饮水习惯信息等等。其中,如果当前饮水的时间段内缺少对应的出水温度、出水量,则将最接近该时间段的饮水习惯信息当作当前时间段的饮水习惯信息。
例如,将一天分成四个时间段:0时-6时、6时-12时、12时-18时、18时-24时,某个用户在各时间段内已存储的出水温度、出水量情况如下:
(1)0时-6时,没有出水温度、出水量情况;
(2)6时-12时,有5次出水温度、出水量情况,分别为40℃、200mL;55℃、200mL;45℃、100mL;40℃、200mL;50℃、150mL;
(3)12时-18时,有6次出水温度、出水量情况,分别为30℃、100mL;40℃、100mL;45℃、150mL;35℃、100mL;20℃、80mL;40℃、150mL;
(4)18时-24时,有4次出水温度、出水量情况,分别为60℃、50mL;75℃、90mL;75℃、100mL;65℃、50mL。
若将每一时间段内概率最大的出水温度、出水量作为用户的饮水习惯信息,则0时-6时,没有饮水习惯信息;6时-12时的饮水习惯信息为出水温度40℃、出水量200mL;12时-18时的饮水习惯信息为出水温度40℃、出水量100mL;18时-24时的饮水习惯信息为出水温度75℃、出水量50mL。上述饮水习惯信息被存储于存储模块30内,待用户选择智能出水模式时调用。
当时间模块获取用户8时5分通过出水控制模块40选择智能出水模式饮水时,控制器10将调用6时-12时内的饮水习惯信息并控制出水,即用户本次饮水的出水温度为40℃、出水量为200mL。同理,当该用户13时饮水时,控制器10将调用12时-18时内的饮水习惯信息并控制出水,即用户本次饮水的出水温度为40℃、出水量为100mL。当该用户0时30分饮水时,由于该时间段没有对应的饮水习惯信息,控制器10会将最接近该时间段的饮水习惯信息当作该时间段的饮水习惯信息,即调用18时-24时的饮水习惯信息,因此,用户本次饮水的出水温度为75℃、出水量为50mL。
若将出水温度、出水量在每一时间段内内的平均值作为用户的饮水习惯信息,则0时-6时,没有饮水习惯信息;6时-12时的饮水习惯信息为出水温度46℃、出水量170mL;12时-18时内的饮水习惯信息为出水温度35℃、出水量113mL;18时-24时的饮水习惯信息为出水温度69℃、出水量73mL。上述饮水习惯信息被存储于存储模块30内,待用户选择智能出水模式时调用。
当时间模块获取用户8时5分通过出水控制模块40选择智能出水模式饮水时,控制器10将调用6时-12时内的饮水习惯信息并控制出水,即用户本次饮水的出水温度为46℃、出水量为170mL。同理,当该用户13时饮水时,控制器10将调用12时-18时内的饮水习惯信息并控制出水,即用户本次饮水的出水温度为35℃、出水量为113mL。当用户5时饮水时,由于该时间段没有对应的饮水习惯信息,控制器10会将最接近该时间段的饮水习惯信息当作该时间段的饮水习惯信息,即调用6时-12时时的饮水习惯信息,因此,用户本次饮水的出水温度为46℃、出水量为170mL。
在某些情况下,用户在某个时间段内仅有一次出水温度、出水量情况,那么该出水温度、出水量即为该用户在此时间段的饮水习惯信息。
通常,若用户使用该智能饮水机次数较少,则由少量的出水信息分析处理而成的饮水习惯信息不够准确,此时建议通过常规出水模式饮水;反之,大量的出水信息分析处理而成的饮水习惯信息比较接近于用户的饮水习惯,此时建议使用智能出水模式,直接调用该用户的饮水习惯信息以控制智能饮水机出水,饮水过程更加智能、方便,提升了用户体验。
以上陈述仅以实施例来进一步说明本发明的技术内容,以便于读者更容易理解,但不代表本发明的实施方式仅限于此,任何依本发明所做的技术延伸或再创造,均受本发明的保护。

Claims (16)

  1. 一种智能饮水机的控制方法,其特征在于,所述控制方法包括以下步骤:
    采集当前用户的身份信息,并判断该当前用户为新用户还是已有用户;
    若为已有用户,则响应该当前用户的出水模式选择操作而相应地以常规出水模式或智能出水模式控制智能饮水机出水;若为新用户,则创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水;
    其中,所述常规出水模式为响应当前用户的实时操作以控制智能饮水机出水,获取该实时操作的出水信息并存储至相应的用户名下;所述智能出水模式为调用相应用户的饮水习惯信息控制智能饮水机出水,所述饮水习惯信息由至少一次出水信息分析处理而成。
  2. 如权利要求1所述的智能饮水机的控制方法,其特征在于:所述出水信息包括出水温度、出水量。
  3. 如权利要求1所述的智能饮水机的控制方法,其特征在于:所述出水信息包括当前用户进行出水操作的开始时间点、出水温度和出水量。
  4. 如权利要求3所述的智能饮水机的控制方法,其特征在于,将出水信息分析处理生成饮水习惯信息的步骤为:统计所述出水信息中的出水温度、出水量在每一时间段内的概率分布情况,将每一时间段内概率最大的出水温度、出水量作为当前用户的饮水习惯信息。
  5. 如权利要求3所述的智能饮水机的控制方法,其特征在于,将出水信息分析处理生成饮水习惯信息的步骤为:计算所述出水信息中的出水温度、出水量在每一时间段内的平均值,将每一时间段内的出水温度、出水量的平均值作为当前用户的饮水习惯信息。
  6. 如权利要求4或5所述的智能饮水机的控制方法,其特征在于:如果当前饮水的时间段内缺少对应的出水温度、出水量,则将最接近该时间段的饮水习惯信息当作当前时间段的饮水习惯信息。
  7. 如权利要求1所述的智能饮水机的控制方法,其特征在于,判断用户是新用户还是已有用户的方法为:将采集的当前用户的身份信息作为关键字遍历存储的所有用户身份信息,若存储的所有用户身份信息中含有当前用户的身份信息,则判断该当前用户是已有用户,否则为新用户。
  8. 如权利要求1所述的智能饮水机的控制方法,其特征在于:所述采集当前用户的身份信息的步骤通过RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块以及静脉采集模块的至少一者来实现。
  9. 一种智能饮水机,其特征在于,包括有:控制器、与所述控制器连接的信息采集模块、与所述控制器连接的存储模块、与所述控制器连接的出水控制模块;
    其中,所述信息采集模块,用于采集当前用户的身份信息;
    所述存储模块,用于存储用户身份信息及与之对应的出水信息、饮水习惯信息,所述饮水习惯信息由至少一次出水信息分析处理而成;
    所述控制器,用于根据采集的当前用户身份信息和所述存储模块中存储的用户身份信息判断用户是新用户还是已有用户;
    若所述当前用户的身份信息为已有用户,所述控制器响应当前用户的出水模式选择操作而相应地以常规出水模式或者智能出水模式控制出水;若所述当前用户的身份信息为新用户,所述控制器创建该当前用户的身份信息并以常规出水模式控制智能饮水机出水;
    其中,所述常规出水模式为所述控制器响应当前用户的实时操作以控制智能饮水机出水,获取该实时操作的出水信息并存储至相应的用户名下;所述智能出水模式为所述控制器调用当前用户的饮水习惯信息控制智能饮水机出水;所述饮水习惯信息由至少一次出水信息分析处理而成;
    所述出水控制模块,用于供当前用户进行智能饮水机的出水操作。
  10. 如权利要求9所述的智能饮水机,其特征在于:所述信息采集模块为RFID采集模块、指纹采集模块、红外监控模块、人脸采集模块、语音采集模块、虹膜采集模块或者静脉采集模块。
  11. 如权利要求9所述的智能饮水机,其特征在于:所述出水控制模块包括常规设置模块,用于供常规出水模式进行出水操作,所述控制器响应由该常规设置模块输入的出水信息来控制出水,并将该出水信息存入所述存储模块。
  12. 如权利要求9所述的智能饮水机,其特征在于:所述智能饮水机还包括显示屏,所述显示屏用于显示出水信息。
  13. 如权利要求9所述的智能饮水机,其特征在于:所述智能饮水机设有提醒模块,当所述控制器判断用户为已有用户时,所述提醒模块被启动,用于告知当前用户智能出水模式可用。
  14. 智能出水模式如权利要求9所述的智能饮水机,其特征在于:所述智能饮水机的控制器包括时间模块,用于获取用户进行出水操作的开始时间点。
  15. 如权利要求9所述的智能饮水机,其特征在于:所述智能饮水机还包括时间模块,用于获取用户进行出水操作的开始时间点,所述时间模块与所述控制器相连。
  16. 如权利要求12所述的智能饮水机,其特征在于:所述显示屏为触摸屏,所述信息采集模块为指纹识别模块。
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CN108991929A (zh) * 2017-06-07 2018-12-14 厦门百霖净水科技有限公司 一种具有图像识别控制功能的饮水装置
CN109471382A (zh) * 2018-10-24 2019-03-15 深圳佳电屋电器有限公司 饮水机响应方法、装置、设备及存储介质
CN110456714A (zh) * 2019-08-23 2019-11-15 洛阳师范学院 一种物联网饮水机
CN110618708A (zh) * 2018-06-20 2019-12-27 佛山市顺德区美的电热电器制造有限公司 一种控制进水量的方法、装置和取水容器
CN110934502A (zh) * 2019-12-04 2020-03-31 珠海格力电器股份有限公司 饮水机控制方法、装置、存储介质及饮水机
CN111557593A (zh) * 2020-02-29 2020-08-21 佛山市云米电器科技有限公司 饮水机控制方法、饮水机及计算机可读存储介质
CN112826327A (zh) * 2020-12-31 2021-05-25 佛山市顺德区美的饮水机制造有限公司 用于饮水机的补水方法、装置、存储介质及处理器
CN113854797A (zh) * 2021-10-21 2021-12-31 善水科技公司 一种智能水杯的控制方法
CN114947540A (zh) * 2022-01-10 2022-08-30 青岛海尔施特劳斯水设备有限公司 一种饮水机的控制方法、装置、饮水机及存储介质
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CN115104910A (zh) * 2022-07-13 2022-09-27 浙江佰途科技有限公司 一种基于身份识别和互联网的智能饮水系统及其控制方法
CN117023674A (zh) * 2023-10-08 2023-11-10 山东世纪阳光科技有限公司 用于净水设备的智能出水控制系统

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CN107121950A (zh) * 2017-03-29 2017-09-01 广西喜爱家饮水设备有限公司 一种基于用户饮水分析的饮水机器人
CN108991929A (zh) * 2017-06-07 2018-12-14 厦门百霖净水科技有限公司 一种具有图像识别控制功能的饮水装置
CN110618708A (zh) * 2018-06-20 2019-12-27 佛山市顺德区美的电热电器制造有限公司 一种控制进水量的方法、装置和取水容器
CN109471382A (zh) * 2018-10-24 2019-03-15 深圳佳电屋电器有限公司 饮水机响应方法、装置、设备及存储介质
CN110456714A (zh) * 2019-08-23 2019-11-15 洛阳师范学院 一种物联网饮水机
CN110934502A (zh) * 2019-12-04 2020-03-31 珠海格力电器股份有限公司 饮水机控制方法、装置、存储介质及饮水机
CN111557593A (zh) * 2020-02-29 2020-08-21 佛山市云米电器科技有限公司 饮水机控制方法、饮水机及计算机可读存储介质
CN112826327B (zh) * 2020-12-31 2022-11-18 佛山市顺德区美的饮水机制造有限公司 用于饮水机的补水方法、装置、存储介质及处理器
CN112826327A (zh) * 2020-12-31 2021-05-25 佛山市顺德区美的饮水机制造有限公司 用于饮水机的补水方法、装置、存储介质及处理器
CN115067755A (zh) * 2021-03-12 2022-09-20 Oppo广东移动通信有限公司 饮水设备的控制方法、装置、设备及存储介质
CN113854797A (zh) * 2021-10-21 2021-12-31 善水科技公司 一种智能水杯的控制方法
CN114947540A (zh) * 2022-01-10 2022-08-30 青岛海尔施特劳斯水设备有限公司 一种饮水机的控制方法、装置、饮水机及存储介质
CN115104910A (zh) * 2022-07-13 2022-09-27 浙江佰途科技有限公司 一种基于身份识别和互联网的智能饮水系统及其控制方法
CN115104910B (zh) * 2022-07-13 2024-03-19 浙江佰途科技有限公司 一种基于身份识别和互联网的智能饮水系统及其控制方法
CN117023674A (zh) * 2023-10-08 2023-11-10 山东世纪阳光科技有限公司 用于净水设备的智能出水控制系统
CN117023674B (zh) * 2023-10-08 2024-01-09 山东世纪阳光科技有限公司 用于净水设备的智能出水控制系统

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