Water quality monitoring method, device, monitoring equipment and storage medium

By conducting water quality tests in water-using areas, analyzing the safety of components, and sending alerts or handling notices, the problem of large-scale but ineffective water quality testing has been solved, achieving more accurate water quality monitoring and personalized recommendations.

CN114118715BActive Publication Date: 2026-02-03GREE ELECTRIC APPLIANCE INC OF ZHUHAI +1
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Patent Information

Application Number
CN202111300642.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-04
Publication Date
2026-02-03
Estimated Expiration
2041-11-04

AI Technical Summary

Technical Problem

Existing technologies for water quality testing have a large testing range but poor testing results.

Method used

By acquiring water quality test data from the water-using area, a component safety analysis is performed. If the water is found to be unsafe, an alert is sent to the management terminal. If the water is safe, a health-related data matching analysis is performed, and a processing notification is sent to the user's receiving terminal.

Benefits of technology

It narrows the scope of water quality testing, improves the accuracy and effectiveness of testing, ensures water safety, and provides personalized treatment recommendations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a water quality monitoring method and device, a monitoring equipment and a storage medium. The method comprises the following steps: acquiring water quality detection result data of a water use area, wherein the water quality detection result data comprises components and component contents; performing component safety analysis on water in the water use area according to the water quality detection result data; if the result of the component safety analysis is unsafe, sending an unsafe reminding information to a management terminal corresponding to the water use area; if the result of the component safety analysis is safe, performing matching analysis according to the water quality detection result data and acquired health-related data; if the matching is successful, sending a processing notification information to a user receiving terminal corresponding to the water use area. The application can optimize the water quality detection effect.
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Description

Technical Field

[0001] This invention relates to the field of analytical measurement technology, and in particular to a water quality monitoring method, apparatus, monitoring equipment, and storage medium. Background Technology

[0002] Water is an essential resource in life. For community residents, the water delivered to their homes every day through the city's water supply system and community water pipelines is essential. Poor water quality can affect human health, so it is clear that water quality is crucial to people's lives. To understand water quality, water quality testing is necessary.

[0003] Urban water supply is affected by various factors during its transportation, including different methods and environments. Currently, water quality testing is generally only conducted at the source or water treatment plant, resulting in an overly broad testing scope and ineffective testing results. Summary of the Invention

[0004] The technical problem to be solved by the present invention is that the existing water quality detection technology has a large range and poor detection effect.

[0005] To address the aforementioned technical problems, this invention provides a water quality monitoring method, apparatus, monitoring equipment, and storage medium.

[0006] A water quality monitoring method, comprising:

[0007] Obtain water quality test results data for the water-using area, wherein the water quality test results data includes components and their content;

[0008] Based on the water quality test results, a safety analysis of the water composition in the water-using area was conducted.

[0009] If the safety analysis of the ingredients is unsafe, an unsafe alert message will be sent to the management terminal corresponding to the water use area.

[0010] If the safety analysis of the components is found to be safe, then a matching analysis will be performed based on the water quality test results data and the obtained health-related data.

[0011] If a match is found, a processing notification message is sent to the user receiving terminal corresponding to the water usage area.

[0012] In one embodiment, acquiring water quality test result data for the water-using area includes:

[0013] The test data is obtained by collecting water quality data from water quality testing instruments in water-using areas;

[0014] The detection data is cleaned and preprocessed to obtain the water quality detection results data of the water use area.

[0015] In one embodiment, the data preprocessing includes data format conversion and data tagging.

[0016] In one embodiment, the step of performing a safety analysis of the water composition in the water-using area based on the water quality test results includes:

[0017] From the pre-stored component content level table, find the content range of each component in the water quality test results data;

[0018] If the safety level corresponding to the content range to which the component content belongs is safe, then the component corresponding to the component content is a safe component;

[0019] If all components in the water quality test results are safe, the result of the component safety analysis is determined to be safe; otherwise, the result of the component safety analysis is determined to be unsafe.

[0020] In one embodiment, the health association data includes user-defined components for the water usage area; the matching analysis based on the water quality test results and the acquired health association data includes:

[0021] Determine whether the components in the water quality test results data include the components set by the user for the water usage area;

[0022] If included, the step of sending the processing notification information to the user receiving terminal corresponding to the water usage area is executed.

[0023] In one embodiment, the processing notification information includes component processing method information; sending the processing notification information to the user receiving terminal corresponding to the water use area includes:

[0024] From the abnormal component handling method table, find the component handling method information corresponding to the user-defined component contained in the water quality test result data and send it to the corresponding user receiving end.

[0025] A water quality monitoring device, comprising:

[0026] The data acquisition module is used to acquire water quality test results data of the water use area, the water quality test results data including components and their content;

[0027] The safety analysis module is used to perform component safety analysis on the water in the water use area based on the water quality test results data;

[0028] The reminder module is used to send an unsafe reminder message to the management terminal corresponding to the water use area when the result of the component safety analysis is unsafe.

[0029] The matching analysis module is used to perform matching analysis based on the water quality test results data and the acquired health association data when the component safety analysis results are safe.

[0030] The processing notification module is used to send processing notification information to the user receiving terminal corresponding to the water use area when the water quality test result data and the acquired health association data match.

[0031] In one embodiment, the safety analysis module is used to: find the content range of each component in the water quality test result data from a pre-stored component content level table; if the safety level corresponding to the content range of the component content is safe, then the component corresponding to the component content is a safe component; if all components in the water quality test result data are safe components, then the result of the component safety analysis is determined to be safe, otherwise the result of the component safety analysis is determined to be unsafe.

[0032] A monitoring device includes a memory and a processor, the memory storing a computer program, and the processor executing the computer program to perform the following steps:

[0033] Obtain water quality test results data for the water-using area, wherein the water quality test results data includes components and their content;

[0034] Based on the water quality test results, a safety analysis of the water composition in the water-using area was conducted.

[0035] If the safety analysis of the ingredients is unsafe, an unsafe alert message will be sent to the management terminal corresponding to the water use area.

[0036] If the safety analysis of the components is found to be safe, then a matching analysis will be performed based on the water quality test results data and the obtained health-related data.

[0037] If a match is found, a processing notification message is sent to the user receiving terminal corresponding to the water usage area.

[0038] A computer-readable storage medium having a computer program stored thereon, the computer program performing the following steps when executed by a processor:

[0039] Obtain water quality test results data for the water-using area, wherein the water quality test results data includes components and their content;

[0040] Based on the water quality test results, a safety analysis of the water composition in the water-using area was conducted.

[0041] If the safety analysis of the ingredients is unsafe, an unsafe alert message will be sent to the management terminal corresponding to the water use area.

[0042] If the safety analysis of the components is found to be safe, then a matching analysis will be performed based on the water quality test results data and the obtained health-related data.

[0043] If a match is found, a processing notification message is sent to the user receiving terminal corresponding to the water usage area.

[0044] Compared with the prior art, one or more embodiments of the above solutions may have the following advantages or beneficial effects:

[0045] Based on the water quality test results of the water use area, component safety analysis is performed. If the water is unsafe, an unsafe alert is sent to the management terminal so that staff can treat the water in the water use area. If the water is safe, further matching analysis is performed based on the water quality test results and the obtained health-related data. When a match is found, a treatment notification is sent to the user's receiving terminal. In this way, the scope of water quality testing is narrowed to the water use area, thus reducing the testing scope. Moreover, based on the water quality safety, further matching analysis is performed on the health-related data, resulting in good testing results. Attached Figure Description

[0046] The scope of this disclosure can be better understood by reading the following detailed description of exemplary embodiments in conjunction with the accompanying drawings. The accompanying drawings are:

[0047] Figure 1 This is a flowchart illustrating a water quality monitoring method in one embodiment;

[0048] Figure 2 This is a processing logic block diagram of a water quality monitoring method in one embodiment;

[0049] Figure 3 This is a structural block diagram of a water quality monitoring device in one embodiment. Detailed Implementation

[0050] To make the objectives, technical solutions, and advantages of the present invention clearer, the implementation method of the present invention will be described in detail below with reference to the accompanying drawings and embodiments, so that the process of how the present invention uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0051] In one embodiment, a water quality monitoring method is provided, such as Figure 1 As shown, the method includes:

[0052] S110: Obtain water quality test results data for the water-using area.

[0053] Water quality testing data characterizes the water quality of a water-using area. This data includes components and their concentrations; specifically, the components in the water quality testing data can be in the form of component names, such as oxygen or chlorine.

[0054] The water use area refers to the area where users use water. It can be divided according to the user's zoning, such as a community / residential area with a unified water supply as a water use area, so that the water quality of the unified water supply area can be tested uniformly.

[0055] S130: Conduct a safety analysis of the composition of water in the water-using area based on water quality test results.

[0056] Component safety analysis is an analytical procedure that determines whether the components in water are within the safe range for water use. Specifically, the results of component safety analysis include two categories: safe and unsafe. A result of unsafe component safety analysis indicates that the water quality in the water-using area is unsafe, while a result of safe component safety analysis indicates that the water quality in the water-using area is safe.

[0057] S150: If the result of the component safety analysis is unsafe, an unsafe alert message will be sent to the management terminal corresponding to the water use area.

[0058] The unsafe alert message is used to notify users that the water quality in a given water usage area is unsafe. The management terminal corresponding to a water usage area refers to the terminal used by the relevant administrator in that area; different water usage areas may use the same or different management terminals. When the water quality is unsafe, an unsafe alert message is sent to the management terminal, allowing it to promptly receive information and facilitate unified treatment of the water in the water usage area by staff.

[0059] S170: If the safety analysis of the components is found to be safe, then a matching analysis shall be performed based on the water quality test data and the obtained health-related data.

[0060] Health-related data refers to data related to drinking water health. Specifically, health-related data includes at least one type of data from water quality testing data. Correspondingly, matching analysis is performed on the same type of data in the water quality testing results data and the health-related data. For example, water quality testing results data includes components and their content, while health-related data includes at least one of the components and their content; taking the inclusion of components in health-related data as an example, then matching analysis is performed on the components in the water quality testing results data and the components in the health-related data.

[0061] Specifically, there can be multiple health-related data points. When multiple health-related data points are included, each health-related data point is matched and analyzed with the water quality test results.

[0062] S190: If a match is found, a processing notification message is sent to the user receiving terminal corresponding to the water usage area.

[0063] The processing notification message is a message prompting users to perform relevant water treatment. The user receiving terminal corresponding to the water usage area refers to the terminal used by users in the designated user area, such as mobile phones, tablets, or portable wearable devices. When the matching analysis result is a match, a processing notification message is sent to the user receiving terminal, allowing users to view and receive the processing notification information on their receiving terminal for water treatment.

[0064] Specifically, if the result of the matching analysis in step S170 is a mismatch, no operation is performed, or the process can return to step S110 for a loop.

[0065] The aforementioned water quality monitoring method analyzes the safety of water components based on water quality testing data from the water-using area. When the water quality is unsafe, an unsafe alert is sent to the management terminal so that staff can treat the water in the water-using area. When the water quality is safe, further matching analysis is performed based on the water quality testing data and the obtained health-related data. When a match is found, a treatment notification is sent to the user's receiving terminal. In this way, the scope of water quality testing is narrowed to the water-using area, thus reducing the testing scope. Moreover, based on the premise of water quality safety, further matching analysis is performed based on health-related data, resulting in good testing effectiveness.

[0066] In one embodiment, the water usage area is the target residential community; that is, the water quality testing data refers to the water quality testing results for the water used in a single target residential community. Generally, the water source for the same community is unified, and it is also the final point of water supply. By analyzing the water quality testing data of a residential community, water quality monitoring of the community can be achieved. Compared to testing water quality at the source or at the water treatment plant, this narrows the monitoring scope and improves accuracy. Specifically, in this embodiment, the management terminal can be the property management's control terminal. When the water quality is unsafe, an unsafe alert is sent to the property management's control terminal, providing feedback to the property management for unified emergency response.

[0067] In one embodiment, step S110 includes: collecting detection data obtained from water quality testing of the water in the water use area from a water quality tester; cleaning and preprocessing the detection data to obtain water quality test result data of the water use area.

[0068] A water quality analyzer is an instrument that can detect the components and their concentrations in water. By using a water quality analyzer to test the water quality in a water-using area, test data is obtained. Specifically, using a large, precise water quality analyzer can yield more accurate and detailed results.

[0069] Data cleaning involves removing noise, duplicate data, and other errors to correct data errors. Cleaning the test data improves its accuracy. Data preprocessing involves organizing the data to facilitate subsequent processing. Specifically, the test data is cleaned, and then preprocessed to obtain the water quality test results.

[0070] In one embodiment, data preprocessing includes data format conversion and data tagging. Data format conversion involves transforming data into a preset format. For example, if the detection data contains component names, and the original format of the component name field is "name," the field is converted to "name" to facilitate technical processing. Data tagging involves adding preset tags to the data to identify it. For instance, data with a component content >10 is all labeled F10. Subsequent filtering of this type of data is then performed directly according to tag F10, making data processing easier for technicians.

[0071] In one embodiment, step S130 includes steps (a1) to (a3).

[0072] Step (a1): From the pre-stored component content level table, find the content range of each component in the water quality test results data.

[0073] The ingredient content grading table is a data table that includes the content ranges corresponding to various types of ingredients, as well as the safety levels corresponding to each content range. Specifically, the content of an ingredient can be compared with the content range corresponding to that ingredient in the ingredient content grading table to determine the content range containing that ingredient.

[0074] Step (a2): If the safety level corresponding to the content range to which the component content belongs is safe, then the component corresponding to the component content is a safe component.

[0075] The safety level corresponding to a content range can be found in the component content level table. Specifically, if the safety level corresponding to a content range of a component is unsafe, then the component is unsafe. For example, if the component is chlorine, the chlorine content range in the component content level table includes range 1 and range 2. Range 1 corresponds to a safe safety level, and range 2 corresponds to an unsafe safety level. If the chlorine content in the water quality test results is within range 1, then chlorine is a safe component; if the chlorine content in the water quality test results is within range 2, then chlorine is an unsafe component.

[0076] Step (a3): If all components in the water quality test results are safe, the result of the component safety analysis is determined to be safe; otherwise, the result of the component safety analysis is determined to be unsafe.

[0077] Water typically contains multiple components, and water quality testing results generally include these components and their concentrations. Water is considered safe only when all components are deemed safe, resulting in a safety analysis result for the safe components. Conversely, if any single component is found to be unsafe, the water is considered unsafe, resulting in a safety analysis result for the unsafe components. Analyzing the concentration of each component in the water quality testing data ensures high accuracy.

[0078] For example, in water quality testing data, the component content field is C1, the content range field in the component content level table is C2, and the corresponding safety level field is L2. A testing result table is generated based on the water quality testing data. Using the component name in the testing result table as the key, the testing result table and the component content level table are joined based on the key. The resulting intermediate table contains the key, C1, C2, and L2. C2 is further filtered based on C1. If C1 falls within the range of C2, that data is retained under the same key. The L2 corresponding to this data is the safety level of the detected component. If all component testing results are safe, the result is determined to be "safe" (state A). If any component is found to be unsafe, the result is determined to be "unsafe" (state B).

[0079] It is understood that in other embodiments, step S130 can also be implemented in other ways. For example, step S130 may include: searching for the safe content range corresponding to each component in the water quality test result data from a pre-stored safe content table of components; if the component content is within the corresponding safe content range, then the component corresponding to the component content is a safe component; if the component content is not within the corresponding safe content range, then the component corresponding to the component content is an unsafe component. The safe content table of components is a data table that records the safe content range corresponding to each type of component.

[0080] In one embodiment, a grade table storage step is included before step S130, which includes: creating and storing a component content grade table.

[0081] By establishing and storing a component content grading table, it is convenient to analyze and process water quality test results data. Specifically, the component content data of water quality can be graded according to the water safety range based on professional assessment methods to obtain a component content grading table. Preferably, the grading table storage step is performed before step S110. It can be understood that in other embodiments, the grading table storage step may also be performed after step S110.

[0082] In one embodiment, the health-related data includes user-defined components. For example, the health-related data could be user-defined components obtained from other devices, or components input by the user via an input device. For instance, if user A is concerned about component A in the water, they can set component A to a user-defined component through data setting operations; similarly, if user B is concerned about component B in the water, they can set component B to a user-defined component through data setting operations.

[0083] Correspondingly, step S170 includes: determining whether the components in the water quality test result data include the components set by the user for the water use area; if so, the water quality test result data matches the compared health-related data, and then step S190 is executed.

[0084] Specifically, if the components in the water quality test results include user-defined components, it means that the water in the water-using area contains the user-defined components. In this case, step S190 is executed, which involves sending a processing notification message to the user receiving terminal. The user receiving terminal is the terminal used by the user who set the user-defined components. For example, if the user-defined components include component A set by user A and component B set by user B, and the water quality test results include component A, then a processing notification message is sent to user A's receiving terminal. By comparing and analyzing the components in the water quality test results with the user-defined components, the detection of specified components can be achieved, thus fulfilling user needs and satisfying individual user testing requirements.

[0085] For example, sodium ions in water have no effect on healthy individuals, but those with high blood pressure should not consume excessive amounts. For users with a family member suffering from high blood pressure, sodium can be set as a user-defined component. The water quality test results for state A (safe) are compared and analyzed with the user-defined component "sodium." If "sodium" is detected in state A, the water quality is considered safe but abnormal for that user, i.e., state C. It is understood that in other embodiments, health-related data can also be expert-informed information obtained online regarding components in the water that affect health.

[0086] In one embodiment, the processing notification information includes component processing method information. The component processing method information describes the method for processing the component. Specifically, step S190 includes: when water quality test result data and health-related data are matched, searching the abnormal component processing method table for the component processing method corresponding to the user-defined component contained in the water quality test result data and sending it to the corresponding user receiving terminal.

[0087] The abnormal component treatment method table is a data table recording treatment methods for various types of components. Specifically, scientific treatment methods can be integrated based on different components to generate abnormal component treatment methods. For example, the treatment method for chlorine is to let it stand in air or sunlight for 4-5 days to allow it to evaporate. By finding the component treatment methods set by the user, the table sends them to the user's receiving end for review and information, thus providing the user with appropriate water quality treatment methods. Users no longer need to spend time thinking about treatment methods, improving their convenience.

[0088] Let's take a residential community as an example to illustrate this. Figure 2 As shown, after obtaining the water quality test results, a safety analysis of the components is performed based on the water quality test results and the component content level table. If the result is unsafe, feedback is given to the property management. If it is safe, further analysis is conducted with health-related data. If the components are user-defined, the corresponding component treatment method information is found and sent to the user.

[0089] It should be understood that, although Figure 1 The steps in the flowchart are shown sequentially as indicated by the arrows, but these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order in which these steps are executed, and they can be performed in other orders. Figure 1 At least some of the steps in the process may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but may be executed at different times. The execution order of these steps or stages is not necessarily sequential, but may be executed in turn or alternately with other steps or at least some of the steps or stages in other steps.

[0090] In one embodiment, such as Figure 3 The present invention provides a water quality monitoring device, including a data acquisition module 310, a safety analysis module 330, an alert module 350, a matching analysis module 370, and a processing notification module 390.

[0091] The data acquisition module 310 is used to acquire water quality test results data of the water use area, including components and their content; the safety analysis module 330 is used to perform component safety analysis on the water in the water use area based on the water quality test results data; the reminder module 350 is used to send an unsafe reminder message to the management terminal corresponding to the water use area when the component safety analysis result is unsafe; the matching analysis module 370 is used to perform matching analysis based on the water quality test results data and the acquired health association data when the component safety analysis result is safe; and the processing notification module 390 is used to send a processing notification message to the user receiving terminal corresponding to the water use area when the water quality test results data and the acquired health association data match.

[0092] The aforementioned water quality monitoring device performs component safety analysis based on water quality test data from the water-using area. When the water quality is unsafe, it sends an unsafe alert to the management terminal so that staff can treat the water in the water-using area. When the water quality is safe, it further performs matching analysis based on the water quality test data and the acquired health-related data. When a match is found, it sends a treatment notification to the user's receiving terminal. In this way, the scope of water quality detection is limited to the water-using area, narrowing the detection range. Moreover, based on water quality safety, further matching analysis is performed based on health-related data, resulting in good detection effects.

[0093] In one embodiment, the data acquisition module 310 is used to: collect detection data obtained from water quality testing of the water in the water use area from the water quality tester; perform data cleaning and data preprocessing on the detection data to obtain water quality test result data of the water use area.

[0094] In one embodiment, data preprocessing includes data format conversion and data tagging.

[0095] In one embodiment, the safety analysis module 330 is used to: search for the content range of each component in the water quality test result data from a pre-stored component content level table; if the safety level corresponding to the content range of the component content is safe, then the component corresponding to the component content is a safe component; if all components in the water quality test result data are safe components, then the result of the component safety analysis is determined to be safe, otherwise the result of the component safety analysis is determined to be unsafe.

[0096] In one embodiment, the health association data includes user-defined components for the water usage area. The matching analysis module 370 determines whether the components in the water quality test result data include user-defined components for the water usage area; if so, the water quality test result data matches the compared health association data, and the processing notification module 390 executes the corresponding function.

[0097] In one embodiment, the processing notification information includes component processing method information. When matching water quality test result data and health-related data, the processing notification module 390 searches for the component processing method information corresponding to the user-defined component contained in the water quality test result data from the abnormal component processing method table and sends it to the corresponding user receiving terminal.

[0098] Specific limitations regarding the water quality monitoring device can be found in the limitations of the water quality monitoring method described above, and will not be repeated here. Each module in the aforementioned water quality monitoring device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in the processor of the monitoring device in hardware form or independently of it, or stored in the memory of the monitoring device in software form, so that the processor can call and execute the operations corresponding to each module. It should be noted that the module division in this embodiment is illustrative and only represents a logical functional division; other division methods may be used in actual implementation.

[0099] In one embodiment, a monitoring device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps of the methods in the above embodiments.

[0100] The aforementioned monitoring equipment, since it can implement the steps of the methods in the above embodiments, similarly achieves good water quality detection results.

[0101] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, which, when executed by a processor, implements the steps of the methods described in the above embodiments.

[0102] The computer-readable storage medium described above can implement the steps of the methods in the above embodiments, and similarly, it has good water quality detection effect.

[0103] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the methods described above. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, or optical storage, etc. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.

[0104] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0105] While the embodiments disclosed in this invention are as described above, the content is merely for the purpose of facilitating understanding of the invention and is not intended to limit the invention. Any person skilled in the art to which this invention pertains may make any modifications and changes in form and detail of the implementation without departing from the spirit and scope disclosed herein; however, the scope of protection of this invention shall still be determined by the scope defined in the appended claims.

Claims

1. A water quality monitoring method, characterized in that, include: Obtain water quality test results data for the water-using area, wherein the water quality test results data includes components and their content; Based on the water quality test results, a safety analysis of the water composition in the water-using area was conducted. If the safety analysis of the ingredients is unsafe, an unsafe alert message will be sent to the management terminal corresponding to the water use area. If the safety analysis of the components is found to be safe, then a matching analysis will be performed based on the water quality test results data and the obtained health-related data. If a match is found, a processing notification message is sent to the user receiving terminal corresponding to the water usage area. The health-related data includes user-defined components for the water usage area; The matching analysis based on the water quality test results and the acquired health-related data includes: Determine whether the components in the water quality test results data include the components set by the user for the water usage area; If included, the step of sending the processing notification information to the user receiving terminal corresponding to the water usage area is executed.

2. The method according to claim 1, characterized in that, The acquisition of water quality test results data for the water-using area includes: The test data is obtained by collecting water quality data from water quality testing instruments in water-using areas; The detection data is cleaned and preprocessed to obtain the water quality detection results data of the water use area.

3. The method according to claim 2, characterized in that, The data preprocessing includes data format conversion and data labeling.

4. The method according to claim 1, characterized in that, The step of performing a safety analysis of the water composition in the water-using area based on the water quality test results includes: From the pre-stored component content level table, find the content range of each component in the water quality test results data; If the safety level corresponding to the content range to which the component content belongs is safe, then the component corresponding to the component content is a safe component; If all components in the water quality test results are safe, the result of the component safety analysis is determined to be safe; otherwise, the result of the component safety analysis is determined to be unsafe.

5. The method according to claim 1, characterized in that, The processing notification information includes component processing method information; sending the processing notification information to the user receiving terminal corresponding to the water use area includes: From the abnormal component handling method table, find the component handling method information corresponding to the user-defined component contained in the water quality test result data and send it to the corresponding user receiving end.

6. A water quality monitoring device, characterized in that, include: The data acquisition module is used to acquire water quality test results data of the water use area, the water quality test results data including components and their content; The safety analysis module is used to perform component safety analysis on the water in the water use area based on the water quality test results data; The reminder module is used to send an unsafe reminder message to the management terminal corresponding to the water use area when the result of the component safety analysis is unsafe. The matching analysis module is used to perform matching analysis based on the water quality test results data and the acquired health association data when the result of the component safety analysis is safe. The processing notification module is used to send processing notification information to the user receiving terminal corresponding to the water use area when the water quality test result data and the acquired health association data match. The health association data includes user-defined components for the water usage area; the matching analysis module is also used to determine whether the components in the water quality test result data include user-defined components for the water usage area; if so, the water quality test result data matches the compared health association data, and the processing notification module executes the corresponding function.

7. The apparatus according to claim 6, characterized in that, The safety analysis module is used to: find the content range of each component in the water quality test results data from the pre-stored component content level table; if the safety level corresponding to the content range of the component content is safe, then the component corresponding to the component content is a safe component; if all components in the water quality test results data are safe components, then the result of the component safety analysis is determined to be safe, otherwise the result of the component safety analysis is determined to be unsafe.

8. A monitoring device, comprising a memory and a processor, wherein the memory stores a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 5.

9. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 5.

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