Water purifier customization method based on water quality data

By combining user smart devices and a back-end server with a positioning module and water quality testing equipment, personalized filter cartridge combinations are generated based on tap water quality data. This solves the problem of fixed filter cartridge combinations in water purifiers and achieves water filtration that better meets user needs.

CN119797455BActive Publication Date: 2025-12-05ZHONGSHAN GOSSEN TECHNOLOGIES CO LTD
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Patent Information

Application Number
CN202411956473.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2025-12-05
Estimated Expiration
2044-12-28

AI Technical Summary

Technical Problem

The filter components of water purifiers on the market are fixed, making it difficult to meet personalized filtration needs based on the differences in minerals and trace elements in tap water in different regions and users' water usage habits.

Method used

By combining user smart devices and back-end servers with positioning modules, mobile communication modules, and customized water purifier application systems, personalized filter cartridge component combinations are generated based on tap water quality data. This includes data collection and analysis from water quality testing equipment to generate filter cartridge component combinations that match user needs.

Benefits of technology

It enables the customization of water purifier filter cartridges based on the tap water quality and user water usage habits in different regions, improving the compliance of filtered water, meeting personalized needs, and allowing for the improvement or development of new filter cartridges to optimize filtration effects.

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Abstract

The application discloses a water purifier customization method based on water quality data, comprising the following steps: starting a water purifier customization application system in a user smart device, opening a positioning module, and connecting with a water purifier customization system of a background server; displaying tap water component type options and tap water application options for the user to select through the user smart device; sending positioning location information and option information to the water purifier customization system after the user selects the tap water component type and the tap water application; searching for tap water quality data of a corresponding region according to the positioning location information, generating a filter core assembly combination scheme matched with the option information according to the tap water quality data, and feeding back to the water purifier customization application system; and sending the filter core assembly combination scheme to a manufacturer after the user confirms the filter core assembly combination scheme, so that the filtered water of the customized water purifier is more in line with the use requirements of the user.
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Description

[TECHNICAL FIELD]

[0001] The present application relates to a water purifier customization method based on water quality data. [BACKGROUND]

[0002] In modern society, people pay more and more attention to a healthy lifestyle and realize the importance of high-quality drinking water for maintaining physical health. Clean and safe water can prevent a variety of diseases, such as intestinal diseases and chronic diseases. At the same time, people live in different areas and environments, and have different living habits, so the demand for drinking water is also different. For example, the minerals and trace elements in tap water in different areas are different, so some users living and working in non-hometown areas are prone to vomiting and diarrhea and other problems of acclimatization after drinking tap water in non-hometown areas. At the same time, different water use habits of users such as direct drinking, tea brewing or soup boiling also affect the demand for drinking water. However, the filter core assembly combination of the water purifier on the market cannot be changed, and only the tap water can be filtered according to the set filter core assembly combination, so it is difficult to make the filtered water meet the user's demand. [SUMMARY]

[0003] The present application overcomes the shortcomings of the prior art and provides a water purifier customization method based on water quality data.

[0004] To achieve the above-mentioned purpose, the following technical solutions are adopted in the present application:

[0005] A water purifier customization method based on water quality data, characterized in that it comprises a user intelligent device and a background server, the user intelligent device is provided with a positioning module, a mobile communication module in wireless communication connection with the background server, the positioning module and a water purifier customization application system, the background server is provided with a water purifier customization system, storage of tap water quality data in multiple different areas and storage of filter core assembly information with multiple different functions, and the customization steps are as follows:

[0006] S1, triggering the water purifier customization application system in the user intelligent device to start, the water purifier customization application system opens the positioning module and the water purifier customization system of the background server;

[0007] S2, the water purifier customization application system displays the tap water component type options and tap water application options selected by the user through the user intelligent device;

[0008] S3, after the user selects the tap water component type and the tap water application, the positioning position information and the option information are sent to the water purifier customization system;

[0009] S4, the water purifier customization system finds the tap water quality data of the corresponding area according to the positioning location information, generates the filter element assembly combination scheme matched with the option information according to the tap water quality data, and feeds back to the water purifier customization application system, and returns to S2, until the user confirms the filter element assembly combination scheme through the water purifier customization application system, and the water purifier customization system sends the filter element assembly combination scheme to the manufacturer.

[0010] The water purifier customization method based on water quality data has the characteristics that the background server is preset with water purifier information of different filter element assembly information and different filter element assembly combinations, and stores different water quality data of different areas of different water purifiers; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can find the preset water purifier information through the water purifier customization application system; in S4, the water purifier customization system finds the same water quality data of the corresponding area according to the positioning location information, and generates the filter element assembly combination scheme matched with the option information according to the water quality data of the corresponding area and the filter element assembly combination information of the water purifier.

[0011] The water purifier customization method based on water quality data has the characteristics that the background server is preset with water purifier information of different filter element assembly information and different filter element assembly combinations, and stores different water quality data of different areas of different water purifiers; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can find the preset water purifier information through the water purifier customization application system; in S4, the water purifier customization system finds the same water quality data of the corresponding area according to the positioning location information, and generates the filter element assembly combination scheme matched with the option information according to the water quality data of the corresponding area and the filter element assembly combination information of the water purifier.

[0012] The water purifier customization method based on water quality data has the characteristics that the background server is preset with water purifier information of different filter element assembly information and different filter element assembly combinations, and stores different water quality data of different areas of different water purifiers; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can find the preset water purifier information through the water purifier customization application system; in S4, the water purifier customization system finds the same water quality data of the corresponding area according to the positioning location information, and generates the filter element assembly combination scheme matched with the option information according to the water quality data of the corresponding area and the filter element assembly combination information of the water purifier.

[0013] The water purifier customization method based on water quality data has the characteristics that the background server is preset with water purifier information of different filter element assembly information and different filter element assembly combinations, and stores different water quality data of different areas of different water purifiers; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can find the preset water purifier information through the water purifier customization application system; in S4, the water purifier customization system finds the same water quality data of the corresponding area according to the positioning location information, and generates the filter element assembly combination scheme matched with the option information according to the water quality data of the corresponding area and the filter element assembly combination information of the water purifier.

[0014] The water purifier customization method based on water quality data has the characteristics that the background server is preset with water purifier information of different filter element assembly information and different filter element assembly combinations, and stores different water quality data of different areas of different water purifiers; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can find the preset water purifier information through the water purifier customization application system; in S4, the water purifier customization system finds the same water quality data of the corresponding area according to the positioning location information, and generates the filter element assembly combination scheme matched with the option information according to the water quality data of the corresponding area and the filter element assembly combination information of the water purifier.

[0015] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0016] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0017] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0018] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0019] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0020] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region. [DETAILED DESCRIPTION]

[0021] Figure 1 The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region. [DETAILED DESCRIPTION]

[0022] The water purifier customization method based on water quality data has the characteristics that, in S4, a matched filter core assembly combination scheme is generated according to the adverse factors of the tap water in the corresponding region.

[0023] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative positional relationship and movement of the components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly. Furthermore, descriptions involving "preferred," "second-best," etc., in this invention are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "preferred" or "second-best" may explicitly or implicitly include at least one of those features.

[0024] like Figure 1 As shown, a water purifier customization method based on water quality data includes a user smart device 1 and a backend server 2. The user smart device 1 is equipped with a positioning module, a mobile communication module 11 wirelessly connected to the backend server 2, a positioning module 12, and a water purifier customization application system. The backend server 2 is equipped with a water purifier customization system, stores multiple sets of tap water quality data from different regions, and stores information on multiple filter cartridge components with different functions. The customization steps are as follows:

[0025] S1. Trigger the startup of the water purifier customization application system in the user's smart device 1. The water purifier customization application system opens the positioning module 12 and the water purifier customization system in the background server 2.

[0026] S2, The water purifier customized application system displays the tap water composition type and tap water application options for users to select through the user's smart device 1;

[0027] S3. After the user selects the type of tap water composition and tap water application, the location information and option information are sent to the water purifier customization system.

[0028] S4. The water purifier customization system searches for the tap water quality data of the corresponding region based on the location information, then generates a filter element combination scheme that matches the option information based on the tap water quality data, and feeds it back to the water purifier customization application system, and returns to S2. The water purifier customization system sends the filter element combination scheme to the manufacturer after the user confirms the filter element combination scheme through the water purifier customization application system, so that the water filtered by the customized water purifier can better meet the user's needs.

[0029] Wherein, the tap water composition type option is a region option, and each region option is provided with content information of minerals and microelements in corresponding region tap water. For example, a user in A lives and works in B, and thus the user can select the A region option when selecting the tap water composition type option, so that the filtered water obtained by filtering the B tap water through the water purifier retains or supplements the mineral and microelement types and contents in the A region tap water, so that the filtered water is more in line with the user's needs; the tap water application option is a user's main water use habit option, including a direct drinking option, a heating and drinking option, a tea brewing option, a coffee brewing option, or a soup boiling option. Different water use habits have different needs for the minerals and microelements retained or supplemented in the filtered water, such as selecting the direct drinking option, and adjusting the corresponding components in the filtered water to maximize the direct drinking taste.

[0030] In the present case, the background server 2 is pre-provided with water purifier information of different filter element assembly information and different filter element assembly combinations, and is stored with water quality data of different water purifiers in different regions; in S1, after the water purifier customization application system is connected with the water purifier customization system, the user can search for the pre-provided water purifier information through the water purifier customization application system; in S4, the water purifier customization system searches for the same water purifier water quality data of the corresponding region according to the positioning location information, and then replaces the filter element assembly in the pre-provided water purifier according to the water purifier water quality data and the filter element assembly combination information of the water purifier, to generate a filter element assembly combination scheme matched with the option information, so that the present case is compatible with the redesigned filter element assembly combination scheme function and improves the existing water purifier filter element combination scheme function.

[0031] In the present case, as shown in Figure 1 , it further includes a water quality detection device 3 that can be connected with the user smart device 1 for Bluetooth communication to detect water quality data, and after the water quality detection device 3 detects the water quality data of the tap water or the filtered water of the water purifier, it sends the positioning location information and the water quality data to the background server 2 through the user smart device 1, so that the background server 2 obtains the water quality data of different water types in different regions and stores it. Wherein, the water quality data includes TDS total dissolved solids data, TOC total organic carbon data, COD chemical oxygen demand data, UV ultraviolet transmittance data, EC electrical conductivity data and temperature data.

[0032] In the present case, the tap water quality data and the water purifier water quality data of different regions stored in the background server 2 can be obtained by the water quality detection team on-site detection or by laboratory detection after collecting water samples. Wherein, the water quality data detected on-site by the water quality detection team further includes residual chlorine data, PH data, turbidity data and water pressure data; the water quality data detected by the laboratory further includes bacterial colony data, heavy metal data and various ion data.

[0033] In the case, the background server 2 collects all the water quality data first through cleaning, filtering out the unreasonable data caused by the failure in the collection process; then the water purifier customization system carries out multi-dimensional clustering processing on the water quality data of different regions, respectively classifies the water quality data from the region, period, water quality type, and calculates the average, median and variance of each classification for statistics, generates the attenuation curve of various filter elements in different scenarios, the regional recent and historical water quality status table, and identifies the adverse factors of tap water in different regions, and generates the corresponding water quality adverse report such as heavy metal exceeding standard, insufficient beneficial elements, high residual chlorine and the like in a certain region.

[0034] In the case, S4 also needs to generate a matched filter element assembly combination scheme according to the adverse factors of the corresponding region tap water, so that the customized water purifier is more in line with the user's needs, and the best filter element combination effect is achieved.

[0035] In the case, the water purifier customization system in S4 also pushes the water quality adverse report of the corresponding region tap water and the recommended filter element assembly according to the adverse factors of the corresponding region tap water to the water purifier customization application system; the manufacturer can also improve the existing filter element assembly or develop new filter element assembly according to the adverse factors of the tap water in different regions.

[0036] In the case, the water quality detection equipment is provided with a central processor, the central processor is connected with a Bluetooth communication component for wireless communication connection with the user's smart device, a display component for displaying water quality detection information, a TDS electrode component, an ultraviolet transceiver component, a temperature sensor and a key component. During detection, the water quality detection equipment is placed in the water to be detected, and the detection is started through the key component, and after the detection is completed, the TDS total dissolved solid data, TOC total organic carbon data, COD chemical oxygen demand data, UV ultraviolet transmittance data, EC conductivity data and temperature data and other related water quality data are displayed through the display component.

[0037] Among them, the temperature data detection principle of the water quality detection equipment is that the central processor is pre-set with a temperature reference table corresponding to the water temperature digital signal generated by the temperature sensor; the temperature sensor is in contact with the water to be detected, and generates different analog voltage outputs according to the water temperature, and after A / D analog-digital conversion of the temperature sensor, the water temperature digital signal is sent to the central processor; the central processor obtains the temperature data by looking up the table according to the water temperature digital signal and the temperature reference table.

[0038] The detection principle of the EC conductivity data and the TDS total dissolved solid data of the water quality detection device is that a temperature compensation algorithm relationship between the TDS total dissolved solid, the EC conductivity and the temperature is preset in the central processor; the TDS electrode assembly is in contact with the water to be detected, and different currents are generated according to the distribution of ions in the water, the corresponding voltage signals are obtained through the conversion circuit of the TDS electrode assembly, and the EC conductivity data of the water to be detected are obtained after the A / D analog conversion of the TDS electrode assembly and are sent to the central processor; the central processor calculates the TDS total dissolved solid data according to the temperature data, the EC conductivity data, the temperature compensation algorithm relationship and the calibration value of the corresponding water quality parameter. The temperature compensation algorithm relationship is a relationship between the temperature, the conductivity and the total dissolved solid obtained by curve fitting after multi-point sampling.

[0039] The detection principle of the UV ultraviolet transmittance data, the TOC total organic carbon data and the COD chemical oxygen demand data of the water quality detection device is that a relationship between the UV ultraviolet transmittance and the TOC total organic carbon and the COD chemical oxygen demand is preset in the central processor; the ultraviolet transceiver assembly is in contact with the water to be detected and controls the emission end of the ultraviolet transceiver assembly to emit ultraviolet light of 275 nm, converts the light intensity into the corresponding voltage signal through the conversion circuit of the ultraviolet transceiver assembly after receiving the ultraviolet light at the receiving end of the ultraviolet transceiver assembly, obtains the UV transmittance data of the water to be detected after the A / D analog conversion of the ultraviolet transceiver assembly and sends the data to the central processor; the central processor calculates the TOC total organic carbon data and the COD chemical oxygen demand data according to the relationship between the UV ultraviolet transmittance and the TOC total organic carbon and the COD chemical oxygen demand and the calibration value of the corresponding water quality parameter. The relationship is a relationship between the UV ultraviolet transmittance and the TOC total organic carbon and the COD chemical oxygen demand obtained by curve fitting after multi-point sampling.

[0040] The above is only the preferred embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structural transformation, direct or indirect application in other related technical fields under the inventive concept of the present application and the content of the specification and drawings are included in the patent protection range of the present application.

Claims

1. A water purifier customization method based on water quality data, characterized by: The application relates to a water purifier customization method and system, which comprises a user smart device (1) and a background server (2), wherein the user smart device (1) is internally provided with a mobile communication module (11), a positioning module (12) and a water purifier customization application system which are in wireless communication connection with the background server (2), the background server (2) is internally provided with a water purifier customization system and stores a plurality of groups of tap water quality data of different regions and a plurality of information of filter core assemblies with different functions, and the customization method is as follows: S1, a water purifier customization application system in the user smart device (1) is triggered and started, the water purifier customization application system opens the positioning module (12), and the water purifier customization system of the background server (2); In S1, after the water purifier customization application system is connected with the water purifier customization system, the user searches preset water purifier information through the water purifier customization application system; S2, the water purifier customization application system displays tap water component type options and tap water application options for the user to select through the user smart device (1); S3, after the user selects the tap water component type and the tap water application, positioning position information and option information are sent to the water purifier customization system; S4, the water purifier customization system searches the same water purifier quality data of the corresponding region according to the positioning position information, replaces the filter core assembly in the preset water purifier according to the water purifier quality data and the filter core assembly combination information of the water purifier, generates a filter core assembly combination scheme matched with the option information, and returns to S2, until the user confirms the filter core assembly combination scheme through the water purifier customization application system, and the water purifier customization system sends the filter core assembly combination scheme to the manufacturer; The background server (2) is preset with different filter core assembly information, water purifier information of different filter core assembly combinations and a plurality of groups of different water purifier quality data of different regions; the water purifier customization system performs multidimensional clustering processing on the water quality data of different regions, classifies the water quality data from regions, periods and water quality types respectively, calculates the average value, the median and the variance of each classification for statistics, identifies the adverse factors of tap water in different regions, and generates a corresponding water quality adverse report; in S4, the water purifier customization system also pushes the water quality adverse report of tap water in the corresponding region and the recommended filter core assembly according to the adverse factors of tap water in the corresponding region to the water purifier customization application system; in S4, a matched filter core assembly combination scheme also needs to be generated according to the adverse factors of tap water in the corresponding region; the manufacturer improves the preset filter core assembly or develops a new filter core assembly according to the adverse factors of tap water in different regions; the tap water component type options are regional options, each regional option is provided with content information of minerals and trace elements in tap water in the corresponding region; the tap water application options are main water use habit options of the user, including a direct drinking option, a heating drinking option, a tea brewing option, a coffee brewing option or a soup boiling option.

2. The water purifier customization method based on water quality data according to claim 1, characterized in that: Also included with the user smart device (1) Bluetooth communication connection for detecting water quality data water quality detection equipment (3), water quality detection equipment (3) detection of tap water or water purifier filter water quality data through the user smart device (1) to the background server (2) sends the positioning location information and the water quality data, so that the background server (2) gets the water quality data of different water types in different areas and stores.

3. The water purifier customization method based on water quality data according to claim 1, characterized in that: The background server (2) stores the tap water quality data and different water purifier water quality data in different regions obtained by the water quality detection team on-site detection or through laboratory detection after collecting water samples.

Citation Information

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