WO2016011975A1 - 净水系统以及基于净水系统的滤芯管控方法 - Google Patents

净水系统以及基于净水系统的滤芯管控方法 Download PDF

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Publication number
WO2016011975A1
WO2016011975A1 PCT/CN2015/085045 CN2015085045W WO2016011975A1 WO 2016011975 A1 WO2016011975 A1 WO 2016011975A1 CN 2015085045 W CN2015085045 W CN 2015085045W WO 2016011975 A1 WO2016011975 A1 WO 2016011975A1
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WIPO (PCT)
Prior art keywords
filter element
water
water purification
purification system
filter
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PCT/CN2015/085045
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English (en)
French (fr)
Inventor
陈小平
刘新宇
Original Assignee
佛山市云米电器科技有限公司
小米科技有限责任公司
陈小平
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 佛山市云米电器科技有限公司, 小米科技有限责任公司, 陈小平 filed Critical 佛山市云米电器科技有限公司
Priority to RU2017104983A priority Critical patent/RU2680991C2/ru
Priority to SG11201700590UA priority patent/SG11201700590UA/en
Priority to JP2017524084A priority patent/JP6582047B2/ja
Publication of WO2016011975A1 publication Critical patent/WO2016011975A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/14Safety devices specially adapted for filtration; Devices for indicating clogging
    • B01D35/143Filter condition indicators
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage

Definitions

  • the present disclosure relates to the field of communications, and in particular to a water purification system and a filter control method based on a water purification system.
  • the water quality of the water purifier may deteriorate after using for a period of time, and the user needs to replace the filter element. If the filter element is not replaced on time, the water purifier will not have the effect of purifying water. In the case of using the wrong filter element or a poor quality filter element, the water purifier may not be able to achieve the effect of purifying water.
  • a display window or a prompt light indicating the life of the filter element is set on the water purifier.
  • the working time of the filter element is consistent with the time assumed by the manufacturer, the user can replace the filter element in advance. .
  • some products are only specified in the manual, and there is no practical and effective measure to ensure the correct filter element.
  • the filter element Due to the inconsistent water quality conditions in different places, even the water quality in the same area may be inconsistent, resulting in the actual service life of the filter element being inconsistent with the theoretical life. It may happen that the filter element is actually damaged but the filter element is still good. That is to say, the data actually used by the user and the usage data assumed by the manufacturer are not synchronized, resulting in an early or delayed replacement of the filter element. Or, due to the lack of effective interconnection means between the user and the manufacturer, even if the user uses the inferior or wrong filter element, the manufacturer cannot know, and the water purification effect of the water purifier does not meet the design requirements of the manufacturer. Moreover, since the filter element used cannot be identified, the filter life indicator on the water purifier cannot know when to replace the filter element. The replacement period of the filter element can only be judged by the user according to experience, which greatly affects the clean water quality and service life of the water purifier.
  • the present disclosure provides a water purification system and a filter control method based on a water purification system.
  • a water purification system comprising a water purification device, the water purification device comprising a filter element for filtering water, the water purification system further comprising:
  • a filter element identifying device disposed on the filter element for identifying the filter element
  • a filter element identifying device for reading identification information in the filter element identification device
  • the identification information for reading the filter identification device is sent to a remote control interface of the manufacturer data management center.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the water purification system may further include the following features, the water purification system further comprising:
  • a water characteristic detecting device for detecting characteristics of water filtered through the filter element
  • control device for storing and processing output information of the water property detecting device, connected to the water property detecting device and the remote control interface.
  • the technical solution provided by the embodiments of the present disclosure can not only ensure that the user uses the correct filter element, but also can detect the The water quality information of the water purified by the water purification device determines whether the filter element needs to be replaced according to the water quality information, prompting the user to replace the filter element in time, thereby ensuring the clean water quality and service life of the water purification device.
  • the water purification system may further include the following features, the water purification system further comprising:
  • a display device connected to the control device for displaying the state of use of the filter element.
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element, can also detect the water quality information of the water purified by the water purifying device, determine whether the filter element needs to be replaced according to the water quality information, and can intuitively use the filter state information of the filter element.
  • the display is presented to the user, prompting the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • the water purification system may further include the following features, the water purification system further comprising:
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the above water purification system may further include the feature that the filter element identification device is disposed in the water purification device or in the relay device.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the above water purification system may further include the feature that the remote control interface is disposed in the water purification device or in the relay device.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the above water purification system may further include the following feature, the control device being disposed in the water purification device or in the relay device.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the above water purification system may further include the feature that the display device is disposed in the water purification device or in the relay device.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • the water purifying system may further include the following feature, the relay device being disposed inside the water purifying device.
  • the technical solution provided by the embodiments of the present disclosure can ensure the water purification quality and the service life of the water purifying device.
  • a filter control method for a water purification system comprising:
  • the filter element is processed according to the verification result.
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • the filter control method may further include the following feature, the processing the filter according to the verification result, including:
  • the water quality information of the water filtered by the filter element is obtained and transmitted. Send it to the manufacturer's data management center;
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • the above-mentioned filter core control method may further include the following feature, the processing the filter element according to the verification result, further comprising:
  • the remaining life information of the filter element is displayed.
  • the filter control method may further include the following feature, the processing the filter according to the verification result, including:
  • the user is prompted to replace the filter element.
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • the filter control method may further include the following feature, the processing the filter according to the verification result, including:
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • the filter control method may further include the following feature, the processing the filter according to the verification result, including:
  • the technical solution provided by the embodiment of the present disclosure can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purifying device.
  • FIG. 1 is one of block diagrams of a water purification system, according to an exemplary embodiment.
  • FIG. 2 is a second block diagram of a water purification system, according to an exemplary embodiment.
  • FIG. 3 is a third block diagram of a water purification system, according to an exemplary embodiment.
  • FIG. 4 is a fourth block diagram of a water purification system, according to an exemplary embodiment.
  • FIG. 5 is a fifth block diagram of a water purification system, according to an exemplary embodiment.
  • FIG. 6 is a flow chart of a water purification system based filter control method according to an exemplary embodiment.
  • FIG. 1 is one of block diagrams of a water purification system, according to an exemplary embodiment.
  • the water purification system includes a filter cartridge 10, a cartridge identification device 110, a cartridge identification device 20, and a remote control interface 30.
  • the filter element 10 is in the water purification device in the water purification system. That is, the water purification system includes a water purification device that includes the filter element 10.
  • the filter element 10 is used to filter water.
  • the filter element identification device 110 is disposed on the filter element 10 for identifying the filter element 10.
  • the filter element identification device 20 is used to read the identification information in the filter element identification device 110.
  • the remote control interface 30 is configured to transmit the identification information read by the filter identification device 20 to the manufacturer data management center.
  • the filter element identification device 20 and the filter element identification device 110 are connected in a wireless manner.
  • the filter identification device 20 and the remote control interface 30 may be connected in a wireless manner or may be connected in a wired manner.
  • the filter identification device 110 can be a barcode or a rewritable chip.
  • the barcode can be attached to the surface of the filter housing or the identification code that is molded onto the filter housing.
  • the rewritable chip can record a variety of information about the filter element, such as the filter type, manufacturer, and technical parameters.
  • the rewritable chip can be mounted on the filter cartridge or attached to the inner surface of the filter cartridge.
  • the identification information in the filter identification device 110 may include information such as the type of the filter element, the manufacturer, and technical parameters.
  • the filter element identification device 20 may be a scanner.
  • the filter identification device 20 can not only identify the identity of the filter element, but also can be used to determine whether the filter element is kept at the set position to ensure that the filter element can work normally. If the filter element is not installed or the filter element is pulled out, the user can be reminded to install the filter element. it is good.
  • the remote control interface 30 and the manufacturer data management center are connected in a wireless manner.
  • the wireless connection method may be a WIFI connection, a GPRS (General Packet Radio Service) connection, an infrared connection, or the like.
  • the data connection between the remote control interface 30 and the manufacturer data management center may be a real-time connection, a weekly connection or a monthly connection, and the connection period is set according to the user's usage habits.
  • the cartridge identification device 20 reads the identification information in the cartridge identification device 110 and transmits the identification information to the manufacturer data management center.
  • the manufacturer data management center verifies that the filter element used by the user is correct according to the identification information. If the filter element used by the user is incorrect (for example, the filter element does not match the model of the water purifying device), the manufacturer can notify the user to replace the filter element by telephone or mobile phone. In this way, it is ensured that the user uses the correct filter element to ensure the clean water quality and service life of the water purifier.
  • the water purification system shown in this embodiment can ensure that the user uses the correct filter element to ensure the clean water quality and service life of the water purifying device.
  • FIG. 2 is a second block diagram of a water purification system, according to an exemplary embodiment.
  • the water purification system package The filter element 10, the filter element identification device 110, the filter element identification device 20, the remote control interface 30, the water characteristic detecting device 40, and the control device 50 are included.
  • the functions of the filter element 10, the filter element identification device 110, the filter element identification device 20, and the remote control interface 30 have been described above, and are not described herein again.
  • the water property detecting device 40 is for detecting the characteristics of the water filtered by the filter element 10.
  • the control device 50 is connected to the water property detecting device 40 and the remote control interface 30.
  • the control device 50 is for storing and processing the output information of the water characteristic detecting device 40.
  • the water property detecting device 40 and the control device 50 are connected in an electrical connection.
  • the remote control interface 30 and the control device 50 may be combined into one module, or may be two independent modules. Both the water property detecting device 40 and the control device 50 may be combined into one module or two independent modules.
  • the water property detecting device 40 may be disposed on the water path connected to the filter element 10.
  • the water property detecting device 40 may be a TDS (Total Dissolved Solids) detecting device, a water temperature sensor, a flow meter, a water pressure gauge, or the like.
  • the water characteristic detecting device 40 is for collecting water characteristic information such as water quality information, water temperature information, water amount information, water pressure information, or flow rate information of the water filtered by the filter element 10.
  • the manufacturer data management center can periodically collect the water quality information of the water purified by the water purifying device by using the water characteristic detecting device 40.
  • the manufacturer can call or The form of the mobile phone informs the user to replace the filter element.
  • the manufacturer data management center can also determine the remaining life information of the filter element based on the water quality information and the technical parameters in the identification information of the filter element. The user can replace the filter element in time according to the remaining life information of the filter element to ensure the quality of the purified water.
  • the water purification system shown in this embodiment can not only ensure that the user uses the correct filter element, but also can detect the water quality information of the water purified by the water purifying device, determine whether the filter element needs to be replaced according to the water quality information, and prompt the user to replace the filter element in time to ensure the net.
  • the water quality and service life of the water unit can not only ensure that the user uses the correct filter element, but also can detect the water quality information of the water purified by the water purifying device, determine whether the filter element needs to be replaced according to the water quality information, and prompt the user to replace the filter element in time to ensure the net.
  • FIG. 3 is a third block diagram of a water purification system, according to an exemplary embodiment.
  • the water purification system includes a filter cartridge 10, a cartridge identification device 110, a cartridge identification device 20, a remote control interface 30, a water property detecting device 40, a control device 50, and a display device 60.
  • the functions of the filter element 10, the filter element identification device 110, the filter element identification device 20, the remote control interface 30, the water characteristic detecting device 40, and the control device 50 have been described above, and are not described herein again.
  • Display device 60 is coupled to control device 50.
  • the display device 60 is for displaying the state of use of the filter element 10.
  • the display device 60 can remind the user of the use state of the filter element 10, such as a wrong filter element, no filter element installed (the reason may be that the filter element is not installed or the filter element is pulled out), the remaining service life of the filter element, and the like.
  • the water purification system shown in this embodiment can ensure that the user uses the correct filter element, and can also detect the water quality information of the water purified by the water purifying device, determine whether the filter element needs to be replaced according to the water quality information, and can intuitively use the filter state information of the filter element. Displayed to the user, prompting the user to replace the filter element in time to ensure the clean water quality and service life of the water purification device.
  • the water purification system includes a water purification device 70, a filter element 10, a filter element identification device 110, a filter element identification device 20, a remote control interface 30, a water property detecting device 40, a control device 50, and a display device 60.
  • the filter element 10, the filter element identification device 110, the filter element identification device 20, the remote control interface 30, the water characteristic detecting device 40, the control device 50, and the display device 60 are all disposed in the water purifying device 70.
  • the filter identification device 110 is disposed on the filter element 10 in the water purification device 70, and the filter identification device 20,
  • the remote control interface 30, the water characteristic detecting device 40, the control device 50, and the display device 60 are disposed in the water purifying device 70.
  • the water purification system shown in this embodiment can ensure that the user uses the correct filter element, and can also detect the water quality information of the water purified by the water purifying device, determine whether the filter element needs to be replaced according to the water quality information, and can intuitively use the filter state information of the filter element. Displayed to the user, prompting the user to replace the filter element in time to ensure the clean water quality and service life of the water purification device.
  • FIG. 5 is a fifth block diagram of a water purification system, according to an exemplary embodiment.
  • the water purification system includes a water purifying device 70, a relay device 80, a filter cartridge 10, a cartridge identifying device 110, a cartridge identifying device 20, a remote control interface 30, a water property detecting device 40, a control device 50, and a display device 60.
  • the filter identification device 110 is disposed on the filter element 10 in the water purification device 70
  • the water characteristic detecting device 40 is disposed in the water purification device 70.
  • the filter identification device 20, the remote control interface 30, the control device 50, and the display device 60 are disposed on In the relay device 80.
  • the relay device 80 can be a movable device.
  • the relay device 80 can be placed separately or on the water purifying device 70.
  • the relay device 80 can be hidden inside the water purifying device, or can be independently set at any position in the user's home.
  • the water purifying device 70 and the relay device 80 may be connected in a wired manner or may be connected in a wireless manner, such as a WIFI connection, a GPRS connection, an infrared connection, or the like.
  • a relay device allows the user to know the condition of the water purification device at a distance from the water purification device. For example, if the water purifying device is placed in the kitchen and the relay device is placed at a certain position in the living room, the user can clearly know the current state of the water purifying device in the living room without going to the kitchen to check the condition of the water purifying device, and more Convenient and user-friendly. At the same time, this can also reduce the pollution of the kitchen fume to the central device, thereby improving the reliability of the mid-mounted device and the stability of the signal, and prolonging the service life.
  • any one of the filter element identification device 20, the remote control interface 30, the control device 50, and the display device 60 may be disposed in the relay device 80 or in the water purification device 70.
  • the water purification system shown in this embodiment is convenient for the user to know the usage status information of the filter element from a place far away from the water purification device, and not only prompts the user to replace the filter element in time, ensures the water purification quality and the service life of the water purification device, and also provides the user with the water purification device.
  • the convenience of use is convenient for the user to know the usage status information of the filter element from a place far away from the water purification device, and not only prompts the user to replace the filter element in time, ensures the water purification quality and the service life of the water purification device, and also provides the user with the water purification device.
  • the following example illustrates how the filter element can be controlled based on the water purification system of the present disclosure.
  • the filter identification device 20 reads the identification information in the filter identification device 110, and transmits the identification information to the remote control interface 30;
  • the remote control interface 30 transmits the identification information to the manufacturer data management center. If the manufacturer data management center is verified and the filter element is not a filter element matching the water purifying device model, then the remote control interface 30 "filter error" verification is returned. result;
  • the remote control interface 30 After receiving the verification result of the "filter error", the remote control interface 30 transmits the result to the display device 60 through the control device 50, and the display device 60 displays the verification result of the "filter error” to the user;
  • the filter identification device 20 reads the identification information in the filter element identification device 110 on the replacement filter element, and then transmits the identification information to the remote control interface 30;
  • the remote control interface 30 transmits the identification information to the manufacturer data management center, and the manufacturer data management center passes the test. If the filter element is correct, then it will return to the remote control interface 30 "correct filter element" verification result;
  • the remote control interface 30 After receiving the verification result of “correct filter element”, the remote control interface 30 transmits the verification result to the display device 60 through the control device 50, and the display device 60 displays the verification result of “correct filter element” to the user, and the control device 50 notifies the water characteristic detecting device. 40 detecting water quality information;
  • the water characteristic detecting device 40 transmits the detected water quality information to the remote control interface 30 through the control device 50, and the remote control interface 30 transmits the water quality information to the manufacturer data management center, and the manufacturer data management center according to the water quality information and the replaced filter element.
  • the technical parameter in the identification information determines the remaining service life of the replaced filter element, and returns the remaining service life information to the remote control interface 30;
  • the remote control interface 30 transmits the remaining life information to the display device 60 through the control device 50, and the display device 60 displays the remaining life information of the replaced filter element to the user.
  • FIG. 6 is a flow chart of a water purification system based filter control method according to an exemplary embodiment. As shown in FIG. 6, a filter water control method based on a water purification system is used in a water purification system (referring to the water purification system proposed by the present disclosure), and the method may include the following steps:
  • step S601 acquiring identification information of the filter element in the water purifying device
  • the identification information may include information such as the type of the filter element, the manufacturer, and the technical parameters.
  • step S602 the identification information is transmitted to the manufacturer data management center of the water purification device
  • step S603 the verification result of the identification information returned by the manufacturer data management center is received
  • step S604 the filter element is processed according to the verification result.
  • processing the filter element according to the verification result may include the following situations:
  • the first case is: when the verification result indicates that the filter element is correct, the water quality information of the water filtered by the filter element is obtained and transmitted to the manufacturer data management center; and the remaining service life information of the filter element returned by the manufacturer data management center is received, the filter element
  • the remaining service life information is determined by the manufacturer data management center based on the technical parameters contained in the water quality information and the identification information. On this basis, the remaining life information of the filter element can also be displayed to the user.
  • the second case is: when the verification result indicates that the filter element is correct, the water quality information of the water filtered by the filter element is obtained and transmitted to the manufacturer data management center; and the judgment result of whether the filter element returned by the manufacturer data management center needs to be replaced is received.
  • the judgment result is judged by the manufacturer data management center according to the water quality information; when the judgment result indicates that the filter element needs to be replaced, the user is prompted to replace the filter element.
  • the third case is to remind the user to replace the filter element when the verification result indicates that the filter element is wrong. For example, if the user mistakenly uses the filter element that does not match the original water purification device model, the filter element error message will be displayed, and the user will be reminded to replace the filter element to ensure the life of the filter element and ensure that the water purification device can achieve the effect of purifying water.
  • the fourth case is: when the verification result indicates that the filter element is not installed, the user is reminded to adjust the position of the filter element or install the filter element. When the filter element is not installed or the filter element is pulled out, it is considered that the filter element is not installed. The user adjusts the position of the filter element according to the prompt information, so that the filter element is in the correct installation position to ensure that the filter element can work normally.
  • the filter core control method based on the water purification system shown in this embodiment can ensure that the user uses the correct filter element and reminds the user to replace the filter element in time to ensure the clean water quality and service life of the water purification device.

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  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
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Abstract

一种净水系统以及基于净水系统的滤芯管控方法。净水系统包括净水装置,净水装置包括用于对水进行过滤的滤芯(10),净水系统还包括:设置于滤芯(10)上、用于标识滤芯(10)的滤芯标识装置(110);用于读取滤芯标识装置(110)中的标识信息的滤芯识别装置(20);用于将滤芯识别装置(20)读取的标识信息发送给厂家数据管理中心的远程控制接口(30)。

Description

净水系统以及基于净水系统的滤芯管控方法 技术领域
本公开涉及通信领域,尤其涉及净水系统以及基于净水系统的滤芯管控方法。
背景技术
净水机在使用一段时间后水质可能变差,用户需要更换滤芯。如果不按时更换滤芯,净水机就起不到净水的效果。在使用了错误的滤芯或质量不好的滤芯的情况下,净水机也可能起不到净水的效果。
为了提示用户,防止出现不及时更换滤芯的情况,相关技术中,在净水机上设置指示滤芯寿命的显示窗口或提示灯,当滤芯的工作时间与厂家假定的时间一致时,用户可以提前更换滤芯。而为了保证是用正确的滤芯,有些产品仅仅在说明书中规定,没有实际有效的措施保证滤芯的正确。
由于各地的水质状况不一致,甚至同一地区的水质也可能不一致,导致滤芯的实际使用寿命与理论寿命不一致,可能出现滤芯实际已经损坏但显示滤芯还是良好的情况。也就是说,用户实际使用的数据和厂家假定的使用数据是不同步的,导致更换滤芯出现提前或推迟的情况。或者,由于用户与厂家之间缺乏有效的互联手段,即使用户使用劣质或错误的滤芯,厂家也无法知晓,造成净水机的净水效果达不到厂家的设计要求。而且,由于使用的滤芯无法识别,净水机上的滤芯寿命指示器无法知道何时更换滤芯,滤芯的更换周期只能靠用户根据经验去判断,大大影响净水机的净水质量与使用寿命。
发明内容
为克服相关技术中存在的问题,本公开提供一种净水系统以及基于净水系统的滤芯管控方法。
根据本公开实施例的第一方面,提供一种净水系统,该净水系统包括净水装置,所述净水装置包括用于对水进行过滤的滤芯,所述净水系统还包括:
设置于所述滤芯上、用于标识所述滤芯的滤芯标识装置;
用于读取所述滤芯标识装置中的标识信息的滤芯识别装置;
用于将所述滤芯识别装置读取的标识信息发送给厂家数据管理中心的远程控制接口。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述净水系统还包括:
用于检测经所述滤芯过滤后的水的特性的水特性检测装置;
与所述水特性检测装置和所述远程控制接口相连、用于存储和处理所述水特性检测装置的输出信息的控制装置。
本公开的实施例提供的技术方案,不仅能够确保用户使用正确的滤芯,还能够检测经 过净水装置净化的水的水质信息,根据水质信息确定是否需要更换滤芯,促使用户及时更换滤芯,从而保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述净水系统还包括:
与所述控制装置相连、用于显示所述滤芯使用状态的显示装置。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,还能够检测经过净水装置净化的水的水质信息,根据水质信息确定是否需要更换滤芯,并能够将滤芯的使用状态信息直观地展示给用户,促使用户及时更换滤芯,从而保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述净水系统还包括:
与所述净水装置相连的中转装置。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述滤芯识别装置设置于所述净水装置中或所述中转装置中。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述远程控制接口设置于所述净水装置中或所述中转装置中。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述控制装置设置于所述净水装置中或所述中转装置中。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述显示装置设置于所述净水装置中或所述中转装置中。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
上述净水系统还可以包括如下特点,所述中转装置设置于所述净水装置内部。
本公开的实施例提供的技术方案,能够保证净水装置的净水质量和使用寿命。
根据本公开实施例的第二方面,提供一种净水系统的滤芯管控方法,其特征在于,包括:
获取净水装置中滤芯的标识信息;
将所述标识信息传送给所述净水装置的厂家数据管理中心;
接收所述厂家数据管理中心返回的对所述标识信息的验证结果;
根据所述验证结果处理所述滤芯。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
上述滤芯管控方法还可以包括如下特点,所述根据所述验证结果处理所述滤芯,包括:
在所述验证结果提示所述滤芯正确时,获取经过所述滤芯过滤后的水的水质信息并传 送给所述厂家数据管理中心;
接收所述厂家数据管理中心返回的所述滤芯的剩余使用寿命信息,所述滤芯的剩余使用寿命信息由所述厂家数据管理中心根据所述水质信息和所述标识信息中包含的技术参数确定。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
上述滤芯管控方法还可以包括如下特点,所述根据所述验证结果处理所述滤芯,还包括:
显示所述滤芯的剩余使用寿命信息。
上述滤芯管控方法还可以包括如下特点,所述根据所述验证结果处理所述滤芯,包括:
在所述验证结果提示所述滤芯正确时,获取经过所述滤芯过滤后的水的水质信息并传送给所述厂家数据管理中心;
接收所述厂家数据管理中心返回的所述滤芯是否需要更换的判断结果,所述判断结果由所述厂家数据管理中心根据所述水质信息判断;
在所述判断结果为需要更换所述滤芯时,提示用户更换所述滤芯。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
上述滤芯管控方法还可以包括如下特点,所述根据所述验证结果处理所述滤芯,包括:
在所述验证结果提示所述滤芯错误时,提醒用户更换所述滤芯。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
上述滤芯管控方法还可以包括如下特点,所述根据所述验证结果处理所述滤芯,包括:
在所述验证结果提示未安装滤芯时,提醒用户调整所述滤芯的位置或安装滤芯。
本公开的实施例提供的技术方案,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本发明的实施例,并与说明书一起用于解释本发明的原理。
图1是根据一示例性实施例示出的一种净水系统的框图之一。
图2是根据一示例性实施例示出的一种净水系统的框图之二。
图3是根据一示例性实施例示出的一种净水系统的框图之三。
图4是根据一示例性实施例示出的一种净水系统的框图之四。
图5是根据一示例性实施例示出的一种净水系统的框图之五。
图6是根据一示例性实施例示出的一种基于净水系统的滤芯管控方法的流程图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本发明相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本发明的一些方面相一致的装置和方法的例子。
图1是根据一示例性实施例示出的一种净水系统的框图之一。参照图1,净水系统包括滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30。其中,滤芯10处于该净水系统中的净水装置中。也就是说,该净水系统包括净水装置,该净水装置包括滤芯10。滤芯10用于对水进行过滤。滤芯标识装置110设置于滤芯10上,用于标识滤芯10。滤芯识别装置20用于读取滤芯标识装置110中的标识信息。远程控制接口30用于将滤芯识别装置20读取的标识信息发送给厂家数据管理中心。滤芯识别装置20与滤芯标识装置110之间以无线方式相连。滤芯识别装置20与远程控制接口30之间可以以无线方式相连,也可以以有线方式相连。
其中,滤芯标识装置110可以是条形码或可擦写芯片。条形码可以粘贴在滤芯壳的表面,或者是注塑在滤芯壳上的识别码。可擦写芯片可以记录滤芯的多种信息,比如滤芯的型号、生产厂家、技术参数等。可擦写芯片可以安装在滤芯壳上或者粘贴在滤芯的内表面。滤芯标识装置110中的标识信息可以包括滤芯的型号、生产厂家、技术参数等信息。
其中,滤芯识别装置20可以是扫描器。滤芯识别装置20不仅可以识别滤芯的身份,也可以用于确定滤芯是否保持在设定的位置上,以确保滤芯可以正常工作,如果滤芯没有安装好或滤芯被拔出,可以提醒用户将滤芯安装好。
其中,远程控制接口30与厂家数据管理中心之间以无线方式相连接。该无线连接方式可以是WIFI连接、GPRS(General Packet Radio Service,通用无线分组业务)连接、红外连接等。远程控制接口30与厂家数据管理中心之间的数据连接可以是实时连接,也可以是每周连接或者是每月连接,连接周期按照用户的使用习惯而设定。
在使用时,滤芯识别装置20读取滤芯标识装置110中的标识信息,并将标识信息发送给厂家数据管理中心。厂家数据管理中心根据标识信息验证用户使用的滤芯是否正确,如果用户使用的滤芯不正确(比如滤芯与净水装置的型号不匹配),厂家可以通过电话或手机的形式通知用户更换滤芯。这样,就可以确保用户使用正确的滤芯,保证净水装置的净水质量和使用寿命。
本实施例示出的净水系统,能够确保用户使用正确的滤芯,保证净水装置的净水质量和使用寿命。
图2是根据一示例性实施例示出的一种净水系统的框图之二。参照图2,净水系统包 括滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40和控制装置50。其中,滤芯10、滤芯标识装置110、滤芯识别装置20和远程控制接口30的作用在前面已有说明,此处不再赘述。水特性检测装置40用于检测经滤芯10过滤后的水的特性。控制装置50与水特性检测装置40和远程控制接口30相连。控制装置50用于存储和处理水特性检测装置40的输出信息。水特性检测装置40和控制装置50之间以电连接的方式相连。
其中,远程控制接口30与控制装置50两者可以合并为一个模块,也可以是两个相互独立的模块。水特性检测装置40和控制装置50两者可以合并为一个模块,也可以是两个相互独立的模块。
其中,水特性检测装置40可以设置于与滤芯10相连的水路上。水特性检测装置40可以是TDS(Total Dissolved Solids,水溶解总固体)检测装置、水温传感器、流量计或水压计等。水特性检测装置40用于收集经过滤芯10过滤后的水的水质信息、水温信息、水量信息、水压信息或流速信息等水特性信息。厂家数据管理中心可以利用水特性检测装置40以设定周期定期搜集经过净水装置净化的水的水质信息,在水质超过水质安全标准一段时间后,如果用户还未更换滤芯,厂家可以通过电话或手机的形式通知用户更换滤芯。厂家数据管理中心还可以根据水质信息和滤芯的标识信息中的技术参数来确定滤芯的剩余使用寿命信息。用户根据滤芯的剩余使用寿命信息可以及时更换滤芯,以确保净水质量。
本实施例示出的净水系统,不仅能够确保用户使用正确的滤芯,还能够检测经过净水装置净化的水的水质信息,根据水质信息确定是否需要更换滤芯,促使用户及时更换滤芯,从而保证净水装置的净水质量和使用寿命。
图3是根据一示例性实施例示出的一种净水系统的框图之三。参照图3,净水系统包括滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40、控制装置50和显示装置60。其中,滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40和控制装置50的作用在前面已有说明,此处不再赘述。显示装置60与控制装置50相连。显示装置60用于显示滤芯10的使用状态。
显示装置60可以提醒用户滤芯10的使用状态,比如滤芯错误、未安装滤芯(此时原因可能是滤芯没有安装好或者滤芯被拔出)、滤芯的剩余使用寿命等。
本实施例示出的净水系统,能够确保用户使用正确的滤芯,还能够检测经过净水装置净化的水的水质信息,根据水质信息确定是否需要更换滤芯,并能够将滤芯的使用状态信息直观地展示给用户,促使用户及时更换滤芯,从而保证净水装置的净水质量和使用寿命。
图4是根据一示例性实施例示出的一种净水系统的框图之四。参照图4,净水系统包括净水装置70、滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40、控制装置50和显示装置60。滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40、控制装置50和显示装置60都设置于净水装置70中。其中,滤芯标识装置110设置于净水装置70中的滤芯10上,滤芯识别装置20、 远程控制接口30、水特性检测装置40、控制装置50和显示装置60设置于净水装置70中。
本实施例示出的净水系统,能够确保用户使用正确的滤芯,还能够检测经过净水装置净化的水的水质信息,根据水质信息确定是否需要更换滤芯,并能够将滤芯的使用状态信息直观地展示给用户,促使用户及时更换滤芯,从而保证净水装置的净水质量和使用寿命。
图5是根据一示例性实施例示出的一种净水系统的框图之五。参照图5,净水系统包括净水装置70、中转装置80、滤芯10、滤芯标识装置110、滤芯识别装置20、远程控制接口30、水特性检测装置40、控制装置50和显示装置60。其中,滤芯标识装置110设置于净水装置70中的滤芯10上,水特性检测装置40设置于净水装置70中,滤芯识别装置20、远程控制接口30、控制装置50和显示装置60设置于中转装置80中。
中转装置80可以是一个可移动装置。中转装置80可以独立放置,也可以置于净水装置70上。中转装置80可以隐藏设置在净水装置内部,也可以独立设置在用户家庭中的任意位置。
净水装置70与中转装置80之间可以以有线的方式相连接,也可以以无线的方式相连接,比如WIFI连接、GPRS连接、红外连接等等。中转装置的使用使得用户可以在距离净水装置较远的地方就能够了解净水装置的状况。比如,如果净水装置放在厨房,而中转装置设置在客厅的某个位置,用户在客厅就可以清楚的知道目前净水装置的状况,而无需跑到厨房中查看净水装置的状况,更加方便和人性化。同时,这样还可以减少厨房油烟对中装装置的污染,从而可以提高中装装置的可靠性和信号的稳定性,延长使用寿命。
在本公开实施例中,滤芯识别装置20、远程控制接口30、控制装置50和显示装置60中的任意一个都既可以设置于中转装置80中,也可以设置于净水装置70中。
本实施例示出的净水系统,方便用户从距离净水装置较远的地方了解滤芯的使用状态信息,不仅促使用户及时更换滤芯,保证净水装置的净水质量和使用寿命,还为用户提供了使用上的便利。
下面举例说明基于本公开净水系统如何对滤芯进行管控。
滤芯识别装置20读取滤芯标识装置110中的标识信息,将该标识信息传送给远程控制接口30;
远程控制接口30将该标识信息传送给厂家数据管理中心,如果厂家数据管理中心经过验证,滤芯不是与净水装置型号相匹配的滤芯,那么就会返回给远程控制接口30“滤芯错误”的验证结果;
远程控制接口30接收到“滤芯错误”的验证结果后,通过控制装置50传送给显示装置60,显示装置60将“滤芯错误”的验证结果显示给用户;
用户看到“滤芯错误”的验证结果后,更换正确的滤芯;
滤芯识别装置20读取更换后的滤芯上滤芯标识装置110中的标识信息,再将该标识信息传送给远程控制接口30;
远程控制接口30将该标识信息传送给厂家数据管理中心,厂家数据管理中心经过验 证,滤芯正确,那么就会返回给远程控制接口30“滤芯正确”的验证结果;
远程控制接口30接收到“滤芯正确”的验证结果后,通过控制装置50传送给显示装置60,显示装置60将“滤芯正确”的验证结果显示给用户,同时,控制装置50通知水特性检测装置40检测水质信息;
水特性检测装置40将检测的水质信息通过控制装置50传送给远程控制接口30,远程控制接口30再将该水质信息传送给厂家数据管理中心,厂家数据管理中心根据水质信息和更换后的滤芯的标识信息中的技术参数确定该更换后的滤芯的剩余使用寿命,并将该剩余使用寿命信息返回给远程控制接口30;
远程控制接口30将该剩余使用寿命信息通过控制装置50传送给显示装置60,显示装置60将更换后的滤芯的剩余使用寿命信息显示给用户。
图6是根据一示例性实施例示出的一种基于净水系统的滤芯管控方法的流程图。如图6所示,一种基于净水系统的滤芯管控方法用于净水系统(指本公开提出的净水系统)中,该方法可以包括以下步骤:
在步骤S601中,获取净水装置中滤芯的标识信息;
其中,标识信息可以包括滤芯的型号、生产厂家、技术参数等信息。
在步骤S602中,将标识信息传送给净水装置的厂家数据管理中心;
在步骤S603中,接收厂家数据管理中心返回的对标识信息的验证结果;
在步骤S604中,根据验证结果处理滤芯。
其中,根据验证结果处理滤芯可以包括如下几种情况:
第一种情况是:在验证结果提示滤芯正确时,获取经过该滤芯过滤后的水的水质信息并传送给厂家数据管理中心;接收厂家数据管理中心返回的该滤芯的剩余使用寿命信息,该滤芯的剩余使用寿命信息由厂家数据管理中心根据水质信息和标识信息中包含的技术参数确定。在此基础上,还可以将滤芯的剩余使用寿命信息显示给用户。
第二种情况是:在验证结果提示滤芯正确时,获取经过该滤芯过滤后的水的水质信息并传送给厂家数据管理中心;接收厂家数据管理中心返回的该滤芯是否需要更换的判断结果,此判断结果由厂家数据管理中心根据水质信息判断;在判断结果为需要更换滤芯时,提示用户更换滤芯。
第三种情况是:在验证结果提示滤芯错误时,提醒用户更换滤芯。例如,如果用户错误地使用了与原净水装置型号不匹配的滤芯,就会显示滤芯错误的信息,并提醒用户更换滤芯,以保证滤芯的寿命并确保净水装置可以达到净水的效果。
第四种情况是:在验证结果提示未安装滤芯时,提醒用户调整滤芯的位置或安装滤芯。当滤芯没有安装好或者滤芯被拔出时,就会被认为未安装滤芯,用户根据提示信息去调整滤芯的位置,从而使滤芯处于正确的安装位置上,保证滤芯能够正常工作。
本实施例示出的基于净水系统的滤芯管控方法,能够确保用户使用正确的滤芯,并提醒用户及时更换滤芯,保证净水装置的净水质量和使用寿命。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本发明的其它实施方案。本申请旨在涵盖本发明的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本发明的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本发明的真正范围和精神由下面的权利要求指出。
应当理解的是,本发明并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本发明的范围仅由所附的权利要求来限制。

Claims (15)

  1. 一种净水系统,包括净水装置,所述净水装置包括用于对水进行过滤的滤芯,其特征在于,所述净水系统还包括:
    设置于所述滤芯上、用于标识所述滤芯的滤芯标识装置;
    用于读取所述滤芯标识装置中的标识信息的滤芯识别装置;
    用于将所述滤芯识别装置读取的标识信息发送给厂家数据管理中心的远程控制接口。
  2. 根据权利要求1所述的净水系统,其特征在于,所述净水系统还包括:
    用于检测经所述滤芯过滤后的水的特性的水特性检测装置;
    与所述水特性检测装置和所述远程控制接口相连、用于存储和处理所述水特性检测装置的输出信息的控制装置。
  3. 根据权利要求1所述的净水系统,其特征在于,所述净水系统还包括:
    与所述控制装置相连、用于显示所述滤芯使用状态的显示装置。
  4. 根据权利要求1至3任一项所述的净水系统,其特征在于,所述净水系统还包括:
    与所述净水装置相连的中转装置。
  5. 根据权利要求4所述的净水系统,其特征在于,所述滤芯识别装置设置于所述净水装置中或所述中转装置中。
  6. 根据权利要求4所述的净水系统,其特征在于,所述远程控制接口设置于所述净水装置中或所述中转装置中。
  7. 根据权利要求4所述的净水系统,其特征在于,所述控制装置设置于所述净水装置中或所述中转装置中。
  8. 根据权利要求4所述的净水系统,其特征在于,所述显示装置设置于所述净水装置中或所述中转装置中。
  9. 根据权利要求4所述的净水系统,其特征在于,所述中转装置设置于所述净水装置内部。
  10. 一种基于权利要求1至3以及权利要求5至9任一项所述的净水系统的滤芯管控方法,其特征在于,包括:
    获取净水装置中滤芯的标识信息;
    将所述标识信息传送给所述净水装置的厂家数据管理中心;
    接收所述厂家数据管理中心返回的对所述标识信息的验证结果;
    根据所述验证结果处理所述滤芯。
  11. 根据权利要求10所述的滤芯管控方法,其特征在于,所述根据所述验证结果处理所述滤芯,包括:
    在所述验证结果提示所述滤芯正确时,获取经过所述滤芯过滤后的水的水质信息并传送给所述厂家数据管理中心;
    接收所述厂家数据管理中心返回的所述滤芯的剩余使用寿命信息,所述滤芯的剩余使 用寿命信息由所述厂家数据管理中心根据所述水质信息和所述标识信息中包含的技术参数确定。
  12. 根据权利要求11所述的滤芯管控方法,其特征在于,所述根据所述验证结果处理所述滤芯,还包括:
    显示所述滤芯的剩余使用寿命信息。
  13. 根据权利要求10所述的滤芯管控方法,其特征在于,所述根据所述验证结果处理所述滤芯,包括:
    在所述验证结果提示所述滤芯正确时,获取经过所述滤芯过滤后的水的水质信息并传送给所述厂家数据管理中心;
    接收所述厂家数据管理中心返回的所述滤芯是否需要更换的判断结果,所述判断结果由所述厂家数据管理中心根据所述水质信息判断;
    在所述判断结果为需要更换所述滤芯时,提示用户更换所述滤芯。
  14. 根据权利要求10所述的滤芯管控方法,其特征在于,所述根据所述验证结果处理所述滤芯,包括:
    在所述验证结果提示所述滤芯错误时,提醒用户更换所述滤芯。
  15. 根据权利要求10所述的滤芯管控方法,其特征在于,所述根据所述验证结果处理所述滤芯,包括:
    在所述验证结果提示未安装滤芯时,提醒用户调整所述滤芯的位置或安装滤芯。
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