Water outlet control method and device of water purifier
By analyzing the water quality data from the water purifier, control parameters are generated to regulate the water purification operation. This solves the problem of reduced filtration performance of the water purifier's filter cartridges, ensures that the water quality meets the target output conditions, and improves the purification function and water safety of the water purifier.
Patent Information
- Application Number
- CN202311357243.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-18
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2043-10-18
AI Technical Summary
During the use of a water purifier, the filter cartridge's filtration performance decreases, failing to effectively purify the water. This results in unpurified water being supplied directly to users, affecting their health.
By analyzing the water quality data from the water purifier, it is determined whether the water demand conditions are met, and control parameters are generated to control the water purification operation, ensuring that the water quality meets the target output conditions.
It improves the purification function of the water purifier, ensures the safety of users' water use, and enhances the accuracy of water purification control and the accuracy of the water output control of the water purifier.
Smart Images

Figure CN117401737B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water purification technology, and in particular to a method and device for controlling the water output of a water purifier. Background Technology
[0002] As people pay increasing attention to water safety, more and more families are installing water purifiers, improving the cleanliness and safety of household water.
[0003] However, in actual use, as the number of times a water purifier is used increases, the filtration performance of the internal filter element decreases continuously. Furthermore, even after cleaning, the filter element may experience filtration performance loss. If the water is directly discharged for user use at this point, it is equivalent to not purifying the water, thus failing to effectively achieve the water purification function of the water purifier, which may have certain adverse effects on the user's health.
[0004] Therefore, it is particularly important to improve the purification function of water purifiers by controlling the water output, thereby ensuring the safety of users' water use. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to provide a water purifier outlet control method and device, which can improve the purification function of the water purifier by controlling the water outlet of the water purifier, thereby ensuring the user's water safety.
[0006] To address the aforementioned technical problems, the first aspect of this invention discloses a method for controlling the water output of a water purifier, the method comprising:
[0007] The first set of test data corresponding to the target water purifier, the first set of test data includes the water quality test data of the water to be discharged;
[0008] Determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions, which are determined based on water demand information;
[0009] When it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions, a first control parameter is generated based on the water quality test data of the water to be discharged and the target water discharge conditions. The first control parameter is used to control the water purification operation to be discharged so that the water quality test data of the water to be discharged meets the target water discharge conditions.
[0010] As an optional implementation, in the first aspect of the present invention, before detecting the first set of detection data corresponding to the target water purifier, the method further includes:
[0011] Based on the detected water discharge control command, analyze the water demand information, and determine the target water quality detection type corresponding to the water demand information and the target detection threshold corresponding to the target water quality detection type.
[0012] The water quality testing data of the water to be discharged includes at least the water quality testing data corresponding to the target water quality monitoring type;
[0013] And, the determination of whether the water quality test data of the water to be discharged meets the predetermined target effluent conditions includes:
[0014] Determine whether the water quality test data of the water to be discharged is greater than or equal to the target detection threshold. If it is determined that the water quality test data of the water to be discharged is greater than or equal to the target detection threshold, then it is determined that the water quality test data of the water to be discharged does not meet the predetermined target discharge conditions.
[0015] As an optional implementation, in the first aspect of the present invention, generating the first control parameter based on the water quality detection data of the water to be effluent and the target effluent conditions includes:
[0016] Based on the water quality test data of the water to be discharged, target resource consumable information is determined. The target resource consumable information includes the usage information of at least one resource consumable. All the resource consumables are used to make the water quality test data of the water to be discharged meet the target discharge conditions. In addition, the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0017] Based on the target resource consumable information, the first control parameter is generated.
[0018] As an optional implementation, in the first aspect of the present invention, after determining the target resource consumable information based on the water quality testing data of the water to be effluent, the method further includes:
[0019] Determine the water outlet link information corresponding to the water to be discharged;
[0020] Based on the water outlet link information, a second detection data set is determined in the corresponding water outlet link, and the second detection data set includes at least one second detection data.
[0021] For each of the second detection data, a target reference data is calculated between the second detection data and the corresponding target environmental threshold. The target reference data is used to represent the degree of impact of the second detection data on the abnormal environment of the water outlet link.
[0022] Update the target resource consumable information based on all the target reference data;
[0023] In the updated target resource consumable information, the usage information of each resource consumable satisfies the corresponding resource reserve conditions.
[0024] And, generating the first control parameter based on the target resource consumable information includes:
[0025] Based on the updated target resource consumable information, the first control parameter is generated.
[0026] As an optional implementation, in the first aspect of the present invention, determining the target resource consumable information based on the water quality testing data of the water to be effluent includes:
[0027] Based on the water quality test data of the water to be discharged, the target treatment operation information of the water to be discharged is determined. The target treatment operation information includes at least one pre-treatment sub-operation information, and each pre-treatment sub-operation information includes the first resource consumable information of the pre-treatment resource consumables used to perform the pre-treatment sub-operation. The target treatment operation corresponding to the target treatment operation information is used to make the water quality test data of the water to be discharged meet the target effluent conditions.
[0028] Determine whether the target processing operation information meets the corresponding resource reserve conditions, wherein the resource reserve conditions include the current resource reserve amount corresponding to each of the prepared resource consumables; when it is determined that the target processing operation information meets the corresponding resource reserve conditions, then all the first resource consumable information is determined to be target processing information;
[0029] When it is determined that the target processing operation information does not meet the corresponding resource reserve conditions, the target processing operation information is adjusted according to the water quality test data of the water to be discharged and the corresponding resource reserve conditions, so that the target processing operation information meets the corresponding resource reserve conditions, and the second resource consumable information in the adjusted target processing operation information is determined, and all the second resource consumable information is determined as target processing information;
[0030] Based on the target processing information, the target resource consumable information is determined.
[0031] As an optional implementation, in the first aspect of the present invention, adjusting the target treatment operation information according to the water quality testing data of the water to be effluent and the corresponding resource reserve conditions, so that the target treatment operation information meets the corresponding resource reserve conditions, includes:
[0032] Based on the water quality test data of the water to be discharged and the corresponding resource reserve conditions, at least one target treatment sub-operation information is determined in the target treatment operation information. The target treatment sub-operation information is an abnormal factor that causes the target treatment operation information to not meet the corresponding resource reserve conditions.
[0033] For each target processing sub-operation information, target adjustment operation information is determined based on the reserve amount of resource consumables corresponding to the target processing sub-operation information. The target adjustment operation information includes adjustment operation information and / or replacement operation information. The adjustment operation information includes at least one of water volume adjustment operation information, water pressure adjustment operation information, and water quality adjustment operation information. The replacement operation information includes resource replacement operation information, which is determined based on a preset resource type equivalent replacement rule.
[0034] Adjust the target processing operation information according to the target adjustment operation information so that the target processing operation information meets the corresponding resource reserve conditions.
[0035] As an optional implementation, in a first aspect of the present invention, the first control parameter includes at least one second control parameter, and generating the first control parameter based on the updated target resource consumable information includes:
[0036] For each resource consumable corresponding to the updated target resource consumable information, a target information set for that resource consumable is determined based on the target resource consumable information. The target information set includes target flow rate information and corresponding access link information. The access link information includes target valve information corresponding to the access link. Based on the target flow rate information, a second control parameter for the target valve corresponding to the target valve information is determined. The second control parameter is used to control the target valve to perform a matching adjustment control operation so that the water quality detection data of the water to be discharged meets the target effluent conditions.
[0037] A second aspect of the present invention discloses a water outlet control device for a water purifier, the device comprising:
[0038] The detection module is used to detect the first detection data set corresponding to the target water purifier, the first detection data set including the water quality detection data of the water to be discharged;
[0039] The judgment module is used to determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions, which are determined based on water demand information;
[0040] The generation module is used to generate a first control parameter based on the water quality test data of the water to be discharged and the target effluent conditions when the judgment module determines that the water quality test data of the water to be discharged does not meet the target effluent conditions. The first control parameter is used to control the water purification operation to be discharged so that the water quality test data of the water to be discharged meets the target effluent conditions.
[0041] As an optional implementation, in a second aspect of the invention, the apparatus further includes:
[0042] The analysis module is used to analyze water demand information based on the detected water outlet control command before the detection module detects the first set of detection data corresponding to the target water purifier.
[0043] The first determining module is used to determine the target water quality detection type corresponding to the water demand information and the target detection threshold corresponding to the target water quality detection type.
[0044] The water quality testing data of the water to be discharged includes at least the water quality testing data corresponding to the target water quality monitoring type;
[0045] Furthermore, the specific methods by which the judgment module determines whether the water quality test data of the water to be discharged meets the predetermined target effluent conditions include:
[0046] Determine whether the water quality test data of the water to be discharged is greater than or equal to the target detection threshold. If it is determined that the water quality test data of the water to be discharged is greater than or equal to the target detection threshold, then it is determined that the water quality test data of the water to be discharged does not meet the predetermined target discharge conditions.
[0047] As an optional implementation, in a second aspect of the present invention, the specific method by which the generating module generates the first control parameter based on the water quality detection data of the water to be effluent and the target effluent conditions includes:
[0048] Based on the water quality test data of the water to be discharged, target resource consumable information is determined. The target resource consumable information includes the usage information of at least one resource consumable. All the resource consumables are used to make the water quality test data of the water to be discharged meet the target discharge conditions. In addition, the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0049] Based on the target resource consumable information, the first control parameter is generated.
[0050] As an optional implementation, in a second aspect of the invention, the apparatus further includes:
[0051] The second determining module is used to determine the water discharge link information corresponding to the water to be discharged after the generating module determines the target resource consumable information based on the water quality test data of the water to be discharged.
[0052] The second determining module is further configured to determine a second detection data set in the corresponding water outlet link based on the water outlet link information, wherein the second detection data set includes at least one second detection data.
[0053] The calculation module is used to calculate, for each second detection data, a target reference data between the second detection data and the corresponding target environmental threshold, wherein the target reference data is used to represent the degree of impact of the second detection data on the abnormal environment of the water outlet link;
[0054] The update module is used to update the target resource consumable information based on all the target reference data;
[0055] In the updated target resource consumable information, the usage information of each resource consumable satisfies the corresponding resource reserve conditions.
[0056] Furthermore, the specific method by which the generation module generates the first control parameter based on the target resource consumable information includes:
[0057] Based on the updated target resource consumable information, the first control parameter is generated.
[0058] As an optional implementation, in a second aspect of the present invention, the specific method by which the generation module determines the target resource consumable information based on the water quality testing data of the water to be effluent includes:
[0059] Based on the water quality test data of the water to be discharged, the target treatment operation information of the water to be discharged is determined. The target treatment operation information includes at least one pre-treatment sub-operation information, and each pre-treatment sub-operation information includes the first resource consumable information of the pre-treatment resource consumables used to perform the pre-treatment sub-operation. The target treatment operation corresponding to the target treatment operation information is used to make the water quality test data of the water to be discharged meet the target effluent conditions.
[0060] Determine whether the target processing operation information meets the corresponding resource reserve conditions, wherein the resource reserve conditions include the current resource reserve amount corresponding to each of the prepared resource consumables; when it is determined that the target processing operation information meets the corresponding resource reserve conditions, then all the first resource consumable information is determined to be target processing information;
[0061] When it is determined that the target processing operation information does not meet the corresponding resource reserve conditions, the target processing operation information is adjusted according to the water quality test data of the water to be discharged and the corresponding resource reserve conditions, so that the target processing operation information meets the corresponding resource reserve conditions, and the second resource consumable information in the adjusted target processing operation information is determined, and all the second resource consumable information is determined as target processing information;
[0062] Based on the target processing information, the target resource consumable information is determined.
[0063] As an optional implementation, in the second aspect of the present invention, the specific method by which the generation module adjusts the target treatment operation information according to the water quality detection data of the water to be effluent and the corresponding resource reserve conditions, so that the target treatment operation information meets the corresponding resource reserve conditions, includes:
[0064] Based on the water quality test data of the water to be discharged and the corresponding resource reserve conditions, at least one target treatment sub-operation information is determined in the target treatment operation information. The target treatment sub-operation information is an abnormal factor that causes the target treatment operation information to not meet the corresponding resource reserve conditions.
[0065] For each target processing sub-operation information, target adjustment operation information is determined based on the reserve amount of resource consumables corresponding to the target processing sub-operation information. The target adjustment operation information includes adjustment operation information and / or replacement operation information. The adjustment operation information includes at least one of water volume adjustment operation information, water pressure adjustment operation information, and water quality adjustment operation information. The replacement operation information includes resource replacement operation information, which is determined based on a preset resource type equivalent replacement rule.
[0066] Adjust the target processing operation information according to the target adjustment operation information so that the target processing operation information meets the corresponding resource reserve conditions.
[0067] As an optional implementation, in a second aspect of the present invention, the first control parameter includes at least one second control parameter, and the specific method by which the generation module generates the first control parameter based on the updated target resource consumable information includes:
[0068] For each resource consumable corresponding to the updated target resource consumable information, a target information set for that resource consumable is determined based on the target resource consumable information. The target information set includes target flow rate information and corresponding access link information. The access link information includes target valve information corresponding to the access link. Based on the target flow rate information, a second control parameter for the target valve corresponding to the target valve information is determined. The second control parameter is used to control the target valve to perform a matching adjustment control operation so that the water quality detection data of the water to be discharged meets the target effluent conditions.
[0069] A third aspect of the present invention discloses another water outlet control device for a water purifier, the device comprising:
[0070] Memory containing executable program code;
[0071] A processor coupled to the memory;
[0072] The processor calls the executable program code stored in the memory to execute the water output control method of the water purifier disclosed in the first aspect of the present invention.
[0073] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute the water output control method of the water purifier disclosed in the first aspect of the present invention.
[0074] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0075] In this embodiment of the invention, a first set of detection data corresponding to the target water purifier is detected. The first set of detection data includes water quality detection data of the water to be discharged. It is determined whether the water quality detection data of the water to be discharged meets the predetermined target water discharge conditions, which are determined based on water demand information. When it is determined that the water quality detection data of the water to be discharged does not meet the target water discharge conditions, a first control parameter is generated based on the water quality detection data of the water to be discharged and the target water discharge conditions. The first control parameter is used to control the water purification operation performed on the water to be discharged so that the water quality detection data of the water to be discharged meets the target water discharge conditions. As can be seen, implementing the embodiments of the present invention can determine whether the water to be discharged from the target water purifier meets the corresponding target water discharge conditions determined based on the water demand information, thereby improving the accuracy of water quality detection of the water to be discharged. When it is determined that the water to be discharged does not meet the corresponding target water discharge conditions, a first control parameter is generated based on the water quality detection data of the water to be discharged and the target water discharge conditions, thereby performing a water purification operation on the water to be discharged so that the water quality detection data of the water to be discharged meets the target water discharge conditions. This can improve the accuracy of water purification control of the water to be discharged, thereby improving the accuracy of water discharge control of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety. Attached Figure Description
[0076] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0077] Figure 1 This is a schematic diagram of a water purifier's water output control scenario disclosed in an embodiment of the present invention;
[0078] Figure 2 This is a schematic flowchart of a water purifier's water output control method disclosed in an embodiment of the present invention;
[0079] Figure 3This is a flowchart illustrating another method for controlling the water output of a water purifier disclosed in an embodiment of the present invention;
[0080] Figure 4 This is a schematic diagram of the structure of a water purifier's water outlet control device disclosed in an embodiment of the present invention;
[0081] Figure 5 This is a schematic diagram of the structure of another water purifier outlet control device disclosed in an embodiment of the present invention;
[0082] Figure 6 This is a schematic diagram of the structure of another water purifier outlet control device disclosed in an embodiment of the present invention. Detailed Implementation
[0083] To enable those skilled in the art to better understand the present invention, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0084] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.
[0085] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0086] This invention discloses a water purifier outlet control method and device. Based on detected water quality data, it determines whether the water to be dispensed from the target water purifier meets the corresponding target outlet conditions determined according to water demand information, thereby improving the accuracy of water quality detection. When it is determined that the water to be dispensed does not meet the corresponding target outlet conditions, a first control parameter is generated based on the water quality detection data and the target outlet conditions, thereby performing a water purification operation on the water to be dispensed to ensure that the water quality detection data meets the target outlet conditions. This improves the accuracy of water purification control, thus improving the water purifier's outlet control accuracy. By controlling the water purifier's outlet, the purification function of the water purifier can be enhanced, thereby ensuring the user's water safety. Detailed descriptions follow.
[0087] To better understand the water outlet control method and device for a water purifier described in this invention, the applicable scenario for the water outlet control method is first described. Specifically, the schematic diagram of this scenario can be shown as follows: Figure 1 As shown, Figure 1 This is a schematic diagram of a scenario according to an embodiment of the present invention. Figure 1 As shown, the scenario includes a water purifier, which contains a water tank for dispensing water. The water tank includes a water pipe and an isolation space to the right of the water pipe. This isolation space is used to purify the water when it is transferred from the water tank to the isolation space, using consumable materials dispensed through the consumable material inlet. This ensures that the water quality test data of the water meets the target discharge conditions. The water that meets the target discharge conditions is then discharged from the target drain outlet, while some wastewater that does not meet the target discharge conditions is discharged through the sewage outlet.
[0088] It should be noted that, Figure 1 The schematic diagram shown is only intended to illustrate a scenario applicable to a water purifier's water output control method. The water purifier involved, as well as its internal components such as the water tank, isolation space, resource consumable outlet, target drain outlet, and sewage discharge outlet, are also only for illustrative purposes. Figure 1 The illustrated scenario is not intended to limit the scope of the invention. The following is a detailed description of a water purifier's outlet water control method and device.
[0089] Example 1
[0090] Please see Figure 2 , Figure 2 This is a schematic flowchart of a water purifier's water output control method disclosed in an embodiment of the present invention. Figure 2The described water purifier outlet control method can be applied to water purifiers, terminal devices connected to water pipes, and also to water management systems / platforms, edge computing devices, cloud computing devices, urban management systems, and other devices in one or more application scenarios such as smart homes, resource environments, groundwater, ocean water, and rivers and lakes. This invention does not limit the scope of the application. Figure 2 As shown, the water outlet control method of this water purifier may include the following operations:
[0091] 101. The first set of test data corresponding to the target water purifier, which includes the water quality test data of the water to be discharged.
[0092] In this embodiment of the invention, optionally, the above-mentioned water quality testing data includes, but is not limited to, one or more of the following: total dissolved substances data (e.g., TDS data), pH data, dissolved oxygen data, total hardness data, color data, ammonia nitrogen data, chemical oxygen demand, visible matter data, residual chlorine data, total coliform count data, conductivity data, odor and taste data, permanganate index data, radioactivity index data, oxygen consumption data, total bacterial count data, chloride data, and metal content data (e.g., mercury, iron, copper, or one or more other metals).
[0093] Furthermore, optionally, based on the above-mentioned target water purifier and the above-mentioned application scenario of the execution subject (i.e., the above-mentioned application device or apparatus) of the present invention, the detected water to be discharged may also include one or more of the following: sewage, pure water, seawater, fishery water, swimming pool water, reclaimed water, bottled purified water, drinking natural mineral water, cooling water, farmland irrigation water, landscape water, domestic drinking water, groundwater, boiler water, surface water, industrial water, and experimental water.
[0094] Furthermore, optionally, the detection method for the first set of detection data corresponding to the aforementioned target water purifier may include, but is not limited to, one or more of the following: liquid extraction, headspace method, purge and trap method, solid phase extraction, solid phase microextraction, and supercritical fluid extraction.
[0095] 102. Determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions.
[0096] In this embodiment of the invention, the target water discharge conditions are determined based on water demand information.
[0097] Optionally, the water demand information mentioned above is determined based on the detected water outlet control command, and the water outlet control command is used to control the water outlet of the target water purifier.
[0098] Alternatively, the detection method for the aforementioned water outlet control command can be either triggered by the user or intelligently generated based on environmental perception information.
[0099] Optionally, the above-mentioned methods for generating water outlet control commands include:
[0100] Based on the perceived information from the environment, the target demand information of the preset target object is determined. The perceived object corresponding to the perceived information is the aforementioned preset target object, and the target demand information is used to represent the water demand information of the preset target object.
[0101] Based on the target requirements, generate water discharge control instructions.
[0102] Optionally, the target demand information mentioned above may include one or more of the following: water consumption, water temperature, and water TDS content.
[0103] Further, alternatively, the environmental perception methods for obtaining the aforementioned perceived information include:
[0104] Based on the acquired target sensing data, it is determined whether the aforementioned preset target object meets the corresponding first water demand condition. When it is determined that the aforementioned preset target object meets the corresponding first water demand condition, sensing information is generated based on the aforementioned target sensing data; or,
[0105] The first sensing signal is determined based on the preset information of the preset target object.
[0106] The first sensing signal is sent to the preset location corresponding to the preset information.
[0107] Obtain the second sensing signal corresponding to the first sensing signal, whereby the second sensing signal is a feedback signal of the first sensing signal.
[0108] Based on the first and second sensing signals, sensing information is generated.
[0109] Among them, the target sensing data is used to represent the real-time status of the preset target object, and the target sensing data can also be transmitted based on the user corresponding to the preset target object. Optionally, the user transmission method can be through a designated APP.
[0110] Optionally, if it is determined that the aforementioned preset target does not meet the corresponding first water demand condition, the operation of determining whether the aforementioned preset target meets the corresponding water demand condition based on the acquired target sensing data is triggered.
[0111] Further optionally, the above-mentioned generation of sensing information based on the first sensing signal and the second sensing signal includes:
[0112] Based on the first and second sensing signals, it is determined whether the preset target object meets the corresponding second water demand condition. When it is determined that the preset target object meets the corresponding second water demand condition, sensing information is generated based on the target sensing data.
[0113] Optionally, if it is determined that the aforementioned preset target does not meet the corresponding second water demand condition, then the operation of sending the aforementioned first sensing signal to the preset location corresponding to the preset information is triggered, and the operation of obtaining the second sensing signal corresponding to the first sensing signal is performed.
[0114] Optionally, both the first sensing signal and the second sensing signal mentioned above include a communication sensing fusion frame structure, and the specific composition of the frame structure is determined according to the preset information of the preset target object.
[0115] Furthermore, the preset information of the aforementioned preset target object includes, but is not limited to, one or more of the following: size, shape, location, latitude and longitude, ambient temperature, ambient humidity, and user information.
[0116] As can be seen, implementing this optional embodiment can determine whether the preset target object meets the corresponding water demand conditions by sensing the real-time status of the preset target object in the environment. If it does, sensing information is generated to further determine the target demand information of the preset target object, thereby generating water discharge control instructions, which is conducive to improving the accuracy of water purification control and water discharge control.
[0117] 103. When it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions, a first control parameter is generated based on the water quality test data of the water to be discharged and the target water discharge conditions. The first control parameter is used to control the water purification operation of the water to be discharged so that the water quality test data of the water to be discharged meets the target water discharge conditions.
[0118] In this embodiment of the invention, the method may optionally include the following operations:
[0119] When it is determined that the water quality test data of the water to be discharged meets the target discharge conditions, the discharge link information of the water to be discharged is determined.
[0120] Based on the water outlet link information, a third control parameter is generated. This third control parameter is used to control the target device to transport the water to be discharged from the water outlet link corresponding to the water outlet link information to the target delivery end corresponding to the aforementioned water outlet control command.
[0121] As can be seen, implementing the embodiments of the present invention can determine whether the water to be discharged from the target water purifier meets the corresponding target water discharge conditions determined based on the water demand information, thereby improving the accuracy of water quality detection of the water to be discharged. When it is determined that the water to be discharged does not meet the corresponding target water discharge conditions, a first control parameter is generated based on the water quality detection data of the water to be discharged and the target water discharge conditions, thereby performing a water purification operation on the water to be discharged so that the water quality detection data of the water to be discharged meets the target water discharge conditions. This can improve the accuracy of water purification control of the water to be discharged, thereby improving the accuracy of water discharge control of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0122] In this embodiment of the invention, as an optional implementation, before detecting the first set of detection data corresponding to the target water purifier, the method may further include the following operations:
[0123] Based on the detected water control commands, analyze the water demand information and determine the target water quality detection type and the target detection threshold corresponding to the water demand information.
[0124] The water quality testing data to be discharged must include at least the water quality testing data corresponding to the target water quality monitoring type.
[0125] Furthermore, determining whether the water quality test data of the effluent meets the predetermined target effluent conditions may include the following operations:
[0126] Determine whether the water quality test data of the water to be discharged is greater than or equal to the target detection threshold. If it is determined that the water quality test data of the water to be discharged is greater than or equal to the target detection threshold, then it is determined that the water quality test data of the water to be discharged does not meet the predetermined target discharge conditions.
[0127] In this optional embodiment, the target water quality detection type mentioned above corresponds to the water quality detection data mentioned above.
[0128] It is evident that implementing this optional embodiment can perform different judgment operations for different water quality test data, and determine the accuracy of the determination that the water quality test data meets the predetermined target water output conditions. This is beneficial to improving the accuracy of the generation of the first control parameter, thereby improving the accuracy of the water purification control of the water to be discharged and the accuracy of the water output control of the water purifier. It is also beneficial to improve the purification function of the water purifier by controlling the water output of the water purifier, thereby ensuring the user's water safety.
[0129] Example 2
[0130] Please see Figure 3 , Figure 3 This is a schematic flowchart of a water purifier's water output control method disclosed in an embodiment of the present invention. Figure 3 The described water purifier outlet control method can be applied to water purifiers, terminal devices connected to water pipes, and also to water management systems / platforms, edge computing devices, cloud computing devices, urban management systems, and other devices in one or more application scenarios such as smart homes, resource environments, groundwater, ocean water, and rivers and lakes. This invention does not limit the scope of the application. Figure 3 As shown, the water outlet control method of this water purifier may include the following operations:
[0131] 201. The first set of test data corresponding to the target water purifier, which includes the water quality test data of the water to be discharged.
[0132] 202. Determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions.
[0133] In this embodiment of the invention, the target water discharge conditions are determined based on water demand information.
[0134] In this embodiment of the invention, for other descriptions of steps 201 and 202, please refer to the detailed description of steps 101-102 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.
[0135] 203. When it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions, the target resource consumable information shall be determined based on the water quality test data of the water to be discharged.
[0136] In this embodiment of the invention, the target resource consumable information includes the usage information of at least one resource consumable, and all resource consumables are used to ensure that the water quality test data of the water to be discharged meets the target effluent conditions, and the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0137] In this embodiment of the invention, the above-mentioned resource consumables may optionally include, but are not limited to, pure water, activated carbon, fiber balls, fruit shell filter media, selected anthracite filter media, refined quartz sand filter media, magnetite filter media, manganese sand filter media, limestone filter media, ceramsite filter media, pebbles, zeolite, garnet, maifanite, corundum, rare earth ceramic sand, activated alumina, coconut shell activated carbon, fruit shell activated carbon, wood powdered activated carbon, coal-based columnar activated carbon, and coal-based granular activated carbon.
[0138] 204. Based on the target resource and consumable information, generate the first control parameter. The first control parameter is used to control the water purification operation of the water to be discharged so that the water quality test data of the water to be discharged meets the target water discharge conditions.
[0139] In this embodiment of the invention, optionally, when the aforementioned resource consumables include materials other than purified water, the target water purifier may include a first water outlet link channel and a second water outlet link channel. The first water outlet link channel is used to discharge water whose water quality testing data meets the target water outlet conditions, that is, to transport the water meeting the target water outlet conditions to the target conveying end corresponding to the aforementioned water outlet control command. The second water outlet link channel is used to discharge water whose water quality testing data does not yet meet the target water outlet conditions (including cases involving resource consumables other than purified water), that is, to discharge water that does not meet the target water outlet conditions through the second water outlet link channel.
[0140] Optionally, the aforementioned first control parameter is also used to control the open state of the first and second water outlet link channels.
[0141] Optionally, if the water quality test data of the water to be discharged does not meet the target water discharge conditions, the second water discharge link channel is opened and the first water discharge link channel is closed.
[0142] When the water quality test data of the water to be discharged meets the target discharge conditions, the first discharge link channel is opened and the second discharge link channel is closed.
[0143] As can be seen, implementing the embodiments of the present invention can determine the target resource consumable information based on the water quality test data of the water to be discharged when it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions. By using at least one resource consumable that meets the corresponding resource reserve conditions, the water quality test data of the water to be discharged can be made to meet the target water discharge conditions, thereby improving the accuracy of the generation of the first control parameter, improving the accuracy of the purified water control of the water to be discharged, and thus improving the accuracy of the water discharge control of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0144] In this embodiment of the invention, as an optional implementation, after determining the target resource consumable information based on the water quality testing data of the water to be effluent, the following operations may be included:
[0145] Determine the water discharge link information corresponding to the water to be discharged.
[0146] Based on the water outlet link information, a second detection data set is determined in the corresponding water outlet link. The second detection data set includes at least one second detection data.
[0147] For each second detection data, a target reference data is calculated between the second detection data and the corresponding target environmental threshold. The target reference data is used to represent the degree of impact of the second detection data on the abnormal environment of the water outlet link.
[0148] Update the target resource and consumable information based on all target reference data.
[0149] In the updated target resource consumable information, the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0150] Furthermore, generating the first control parameter based on the target resource consumable information may include the following operations:
[0151] The first control parameters are generated based on the updated target resource and consumable information.
[0152] In this optional embodiment, the second set of detection data mentioned above corresponds to the first set of detection data mentioned above, and specific limitations of the corresponding water quality detection data can be referred to.
[0153] As can be seen, implementing this optional embodiment, based on the above-mentioned direct determination of target resource consumable information based on the water quality test data of the water to be discharged, further determines the second set of test data in the corresponding water discharge link based on the water discharge link information of the water to be discharged, and calculates the target reference data between each second test data in the second set of test data and the corresponding target environmental threshold, so as to determine the degree of abnormal environmental impact of each second test data on the water discharge link, that is, to determine the impact of the water discharge link on the water quality test data of the water to be discharged during the process of water being transported outward, thereby further updating the target resource consumable information to generate the first control parameter, which can further improve the accuracy of the generation of the first control parameter, improve the accuracy of the water purification control of the water to be discharged, and thus improve the water discharge control accuracy of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0154] In this embodiment of the invention, as another optional implementation, the above-mentioned determination of target resource consumable information based on the water quality test data of the water to be effluent may include the following operations:
[0155] Based on the water quality test data of the water to be discharged, the target treatment operation information of the water to be discharged is determined. The target treatment operation information includes at least one pre-treatment sub-operation information, and each pre-treatment sub-operation information includes the first resource consumable information of the pre-treatment consumables used to perform the pre-treatment sub-operation. The target treatment operation corresponding to the target treatment operation information is used to make the water quality test data of the water to be discharged meet the target effluent conditions.
[0156] Determine whether the target processing operation information meets the corresponding resource reserve conditions. The resource reserve conditions include the current resource reserve amount corresponding to each preparatory resource consumable. When it is determined that the target processing operation information meets the corresponding resource reserve conditions, then all first resource consumable information is determined as target processing information.
[0157] When it is determined that the target processing operation information does not meet the corresponding resource reserve conditions, the target processing operation information is adjusted according to the water quality test data of the water to be discharged and the corresponding resource reserve conditions, so that the target processing operation information meets the corresponding resource reserve conditions, and the second resource consumable information in the adjusted target processing operation information is determined, and all second resource consumable information is determined as target processing information.
[0158] Based on the target processing information, determine the target resource and consumable information.
[0159] Optionally, each pre-processing sub-operation corresponding to the above target processing operation information includes, but is not limited to, the output usage control operation of each resource consumable and the alternating output frequency control operation of each resource consumable.
[0160] As can be seen, implementing this optional embodiment can determine the target treatment operation information for the water to be discharged based on the water quality test data of the water to be discharged, and for each pre-treatment sub-operation information in the target treatment operation information, determine the first resource consumable information of the pre-treatment sub-operation information used in the pre-treatment sub-operation information, so as to finally determine the resource consumable information that meets the current resource reserve, which can improve the accuracy of the determination of target resource consumable information and the feasibility of water purification operation, further improve the water purification control accuracy of the water to be discharged, thereby improving the water output control accuracy of the water purifier, and can improve the purification function of the water purifier by controlling the water output of the water purifier, thereby ensuring the user's water safety.
[0161] In this optional embodiment, as an optional implementation method, adjusting the target treatment operation information according to the water quality test data of the water to be effluent and the corresponding resource reserve conditions so that the target treatment operation information meets the corresponding resource reserve conditions may include the following operations:
[0162] Based on the water quality testing data of the water to be discharged and the corresponding resource reserve conditions, at least one target treatment sub-operation information is determined in the target treatment operation information. The target treatment sub-operation information is an anomaly factor that causes the target treatment operation information to fail to meet the corresponding resource reserve conditions.
[0163] For each target processing sub-operation information, target adjustment operation information is determined based on the reserve quantity of the corresponding resource consumables. The target adjustment operation information includes adjustment operation information and / or replacement operation information. The adjustment operation information includes at least one of water volume adjustment operation information, water pressure adjustment operation information, and water quality adjustment operation information. The replacement operation information includes resource replacement operation information, which is determined based on a preset resource type equivalent replacement rule.
[0164] Adjust the operation information according to the target, and adjust the target processing operation information to meet the corresponding resource reserve conditions.
[0165] In this optional embodiment, the aforementioned preset resource type equivalent replacement rule can be calculated by variable matching based on the corresponding water purification effect achieved by each resource consumable.
[0166] Optionally, when activated carbon is determined to be the above-mentioned resource consumable, and the corresponding resource reserve conditions of activated carbon do not meet the requirements of the corresponding water quality test data to meet the target effluent conditions, the above-mentioned resource consumable is determined to be purified water based on the current reserve of purified water, and the specific amount of purified water used is adjusted.
[0167] As can be seen, implementing this optional embodiment can determine the target adjustment operation information based on the reserve amount of resource consumables corresponding to the target processing sub-operation information when the target processing operation information does not meet the corresponding resource reserve conditions. This allows for the adjustment of the target processing operation information to meet the corresponding resource reserve conditions, which can improve the accuracy of determining the target resource consumable information and the feasibility of water purification operations. It further improves the accuracy of water purification control of the water to be discharged, thereby improving the water discharge control accuracy of the water purifier.
[0168] In an optional embodiment, the first control parameter described above includes at least one second control parameter, and generating the first control parameter based on the updated target resource consumable information may include the following operations:
[0169] For each resource consumable corresponding to the updated target resource consumable information, a target information set for that resource consumable is determined based on the target resource consumable information. The target information set includes target flow rate information and corresponding access link information. The access link information includes target valve information for the corresponding access link. Based on the target flow rate information, a second control parameter for the target valve corresponding to the target valve information is determined. The second control parameter is used to control the target valve to perform a matching regulation control operation so that the water quality detection data of the water to be discharged meets the target effluent conditions.
[0170] As can be seen, implementing this optional embodiment can, after updating the target resource consumable information, control the access link of the specific resource consumable and the target valve of the access link to ensure that the water quality detection data of the water to be discharged meets the target water discharge conditions. This can help improve the accuracy and diversity of the water purification control of the water to be discharged, thereby improving the accuracy and diversity of the water discharge control of the water purifier. By controlling the water discharge of the water purifier in multiple ways, the purification function and purification implementation diversity of the water purifier can be improved, thereby ensuring the user's water safety.
[0171] Example 3
[0172] Please see Figure 4 , Figure 4 This is a schematic diagram of the water outlet control device for a water purifier disclosed in an embodiment of the present invention. Figure 4 The described water purifier's outlet control device can be applied to water purifiers, terminal devices connected to water pipes, and also to water management systems / platforms, edge computing devices, cloud computing devices, urban management systems, and other devices in one or more application scenarios such as smart homes, resource environments, groundwater, ocean water, and rivers and lakes. This invention does not limit the application of this device. Figure 4 As shown, the water outlet control device of the water purifier may include:
[0173] The detection module 301 is used to detect the first detection data set corresponding to the target water purifier. The first detection data set includes the water quality detection data of the water to be discharged.
[0174] The judgment module 302 is used to determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions, which are determined based on the water demand information.
[0175] The generation module 303 is used to generate a first control parameter based on the water quality test data of the water to be discharged and the target water discharge conditions when the judgment module 302 determines that the water quality test data of the water to be discharged does not meet the target water discharge conditions. The first control parameter is used to control the water purification operation to be discharged so that the water quality test data of the water to be discharged meets the target water discharge conditions.
[0176] As can be seen, implementing the embodiments of the present invention can determine whether the water to be discharged from the target water purifier meets the corresponding target water discharge conditions determined based on the water demand information, thereby improving the accuracy of water quality detection of the water to be discharged. When it is determined that the water to be discharged does not meet the corresponding target water discharge conditions, a first control parameter is generated based on the water quality detection data of the water to be discharged and the target water discharge conditions, thereby performing a water purification operation on the water to be discharged so that the water quality detection data of the water to be discharged meets the target water discharge conditions. This can improve the accuracy of water purification control of the water to be discharged, thereby improving the accuracy of water discharge control of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0177] In this embodiment of the invention, as an optional implementation, such as Figure 5 As shown, the device may further include:
[0178] The analysis module 304 is used to analyze water demand information based on the detected water outlet control command before the detection module 301 detects the first detection data set corresponding to the target water purifier.
[0179] The first determining module 305 is used to determine the target water quality detection type corresponding to the water demand information and the target detection threshold corresponding to the target water quality detection type.
[0180] The water quality testing data to be discharged must include at least the water quality testing data corresponding to the target water quality monitoring type.
[0181] Furthermore, the specific methods by which the judgment module 302 determines whether the water quality test data of the water to be discharged meets the predetermined target effluent conditions include:
[0182] Determine whether the water quality test data of the water to be discharged is greater than or equal to the target detection threshold. If it is determined that the water quality test data of the water to be discharged is greater than or equal to the target detection threshold, then it is determined that the water quality test data of the water to be discharged does not meet the predetermined target discharge conditions.
[0183] It is evident that implementing this optional embodiment can perform different judgment operations for different water quality test data, and determine the accuracy of the determination that the water quality test data meets the predetermined target water output conditions. This is beneficial to improving the accuracy of the generation of the first control parameter, thereby improving the accuracy of the water purification control of the water to be discharged and the accuracy of the water output control of the water purifier. It is also beneficial to improve the purification function of the water purifier by controlling the water output of the water purifier, thereby ensuring the user's water safety.
[0184] In this embodiment of the invention, as another optional implementation, the specific method by which the generation module 303 generates the first control parameter based on the water quality detection data of the water to be effluent and the target effluent conditions includes:
[0185] Based on the water quality testing data of the water to be discharged, the target resource consumable information is determined. The target resource consumable information includes the usage information of at least one resource consumable, and all resource consumables are used to ensure that the water quality testing data of the water to be discharged meets the target effluent conditions. In addition, the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0186] The first control parameter is generated based on the target resource and consumable information.
[0187] As can be seen, implementing this optional embodiment can determine the target resource consumable information based on the water quality test data of the water to be discharged when it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions. By using at least one resource consumable that meets the corresponding resource reserve conditions, the water quality test data of the water to be discharged can meet the target water discharge conditions, thereby improving the accuracy of the generation of the first control parameter, improving the accuracy of the purified water control of the water to be discharged, and thus improving the accuracy of the water discharge control of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0188] In this optional embodiment, as an optional implementation method, such as Figure 5 As shown, the device may further include:
[0189] The second determining module 306 is used to determine the water discharge link information corresponding to the water to be discharged after the generating module 303 determines the target resource consumable information based on the water quality test data of the water to be discharged.
[0190] The second determining module 306 is further configured to determine a second detection data set in the corresponding water outlet link based on the water outlet link information, wherein the second detection data set includes at least one second detection data.
[0191] The calculation module 307 is used to calculate, for each second detection data, a target reference data between the second detection data and the corresponding target environmental threshold. The target reference data is used to represent the degree of impact of the second detection data on the abnormal environment of the water outlet link.
[0192] Update module 308 is used to update the target resource consumable information based on all target reference data.
[0193] In the updated target resource consumable information, the usage information of each resource consumable meets the corresponding resource reserve conditions.
[0194] Furthermore, the specific methods by which the generation module 303 generates the first control parameter based on the target resource consumable information include:
[0195] The first control parameters are generated based on the updated target resource and consumable information.
[0196] As can be seen, implementing this optional embodiment, based on the above-mentioned direct determination of target resource consumable information based on the water quality test data of the water to be discharged, further determines the second set of test data in the corresponding water discharge link based on the water discharge link information of the water to be discharged, and calculates the target reference data between each second test data in the second set of test data and the corresponding target environmental threshold, so as to determine the degree of abnormal environmental impact of each second test data on the water discharge link, that is, to determine the impact of the water discharge link on the water quality test data of the water to be discharged during the process of water being transported outward, thereby further updating the target resource consumable information to generate the first control parameter, which can further improve the accuracy of the generation of the first control parameter, improve the accuracy of the water purification control of the water to be discharged, and thus improve the water discharge control accuracy of the water purifier. By controlling the water discharge of the water purifier, the purification function of the water purifier can be improved, thereby ensuring the user's water safety.
[0197] In this optional embodiment, as an optional implementation method, the specific way in which the generation module 303 determines the target resource consumable information based on the water quality test data of the water to be effluent includes:
[0198] Based on the water quality test data of the water to be discharged, the target treatment operation information of the water to be discharged is determined. The target treatment operation information includes at least one pre-treatment sub-operation information, and each pre-treatment sub-operation information includes the first resource consumable information of the pre-treatment consumables used to perform the pre-treatment sub-operation. The target treatment operation corresponding to the target treatment operation information is used to make the water quality test data of the water to be discharged meet the target effluent conditions.
[0199] Determine whether the target processing operation information meets the corresponding resource reserve conditions. The resource reserve conditions include the current resource reserve amount corresponding to each preparatory resource consumable. When it is determined that the target processing operation information meets the corresponding resource reserve conditions, then all first resource consumable information is determined as target processing information.
[0200] When it is determined that the target processing operation information does not meet the corresponding resource reserve conditions, the target processing operation information is adjusted according to the water quality test data of the water to be discharged and the corresponding resource reserve conditions, so that the target processing operation information meets the corresponding resource reserve conditions, and the second resource consumable information in the adjusted target processing operation information is determined, and all second resource consumable information is determined as target processing information.
[0201] Based on the target processing information, determine the target resource and consumable information.
[0202] As can be seen, implementing this optional embodiment can determine the target treatment operation information for the water to be discharged based on the water quality test data of the water to be discharged, and for each pre-treatment sub-operation information in the target treatment operation information, determine the first resource consumable information of the pre-treatment sub-operation information used in the pre-treatment sub-operation information, so as to finally determine the resource consumable information that meets the current resource reserve, which can improve the accuracy of the determination of target resource consumable information and the feasibility of water purification operation, further improve the water purification control accuracy of the water to be discharged, thereby improving the water output control accuracy of the water purifier, and can improve the purification function of the water purifier by controlling the water output of the water purifier, thereby ensuring the user's water safety.
[0203] In an optional embodiment, the generation module 303 adjusts the target treatment operation information based on the water quality testing data of the water to be effluent and the corresponding resource reserve conditions, so that the target treatment operation information meets the corresponding resource reserve conditions in the following specific ways:
[0204] Based on the water quality testing data of the water to be discharged and the corresponding resource reserve conditions, at least one target treatment sub-operation information is determined in the target treatment operation information. The target treatment sub-operation information is an anomaly factor that causes the target treatment operation information to fail to meet the corresponding resource reserve conditions.
[0205] For each target processing sub-operation information, target adjustment operation information is determined based on the reserve quantity of the corresponding resource consumables. The target adjustment operation information includes adjustment operation information and / or replacement operation information. The adjustment operation information includes at least one of water volume adjustment operation information, water pressure adjustment operation information, and water quality adjustment operation information. The replacement operation information includes resource replacement operation information, which is determined based on a preset resource type equivalent replacement rule.
[0206] Adjust the operation information according to the target, and adjust the target processing operation information to meet the corresponding resource reserve conditions.
[0207] As can be seen, implementing this optional embodiment can determine the target adjustment operation information based on the reserve amount of resource consumables corresponding to the target processing sub-operation information when the target processing operation information does not meet the corresponding resource reserve conditions. This allows for the adjustment of the target processing operation information to meet the corresponding resource reserve conditions, which can improve the accuracy of determining the target resource consumable information and the feasibility of water purification operations. It further improves the accuracy of water purification control of the water to be discharged, thereby improving the water discharge control accuracy of the water purifier.
[0208] In another optional embodiment, the first control parameter mentioned above includes at least one second control parameter, and the specific method by which the generation module 303 generates the first control parameter based on the updated target resource consumable information includes:
[0209] For each resource consumable corresponding to the updated target resource consumable information, a target information set for that resource consumable is determined based on the target resource consumable information. The target information set includes target flow rate information and corresponding access link information. The access link information includes target valve information for the corresponding access link. Based on the target flow rate information, a second control parameter for the target valve corresponding to the target valve information is determined. The second control parameter is used to control the target valve to perform a matching regulation control operation so that the water quality detection data of the water to be discharged meets the target effluent conditions.
[0210] As can be seen, implementing this optional embodiment can, after updating the target resource consumable information, control the access link of the specific resource consumable and the target valve of the access link to ensure that the water quality detection data of the water to be discharged meets the target water discharge conditions. This can help improve the accuracy and diversity of the water purification control of the water to be discharged, thereby improving the accuracy and diversity of the water discharge control of the water purifier. By controlling the water discharge of the water purifier in multiple ways, the purification function and purification implementation diversity of the water purifier can be improved, thereby ensuring the user's water safety.
[0211] Example 4
[0212] Please see Figure 6 , Figure 6 This is a schematic diagram of the structure of another water purifier's water outlet control device disclosed in an embodiment of the present invention. (See diagram below.) Figure 6 As shown, the water outlet control device of the water purifier may include:
[0213] Memory 401 that stores executable program code.
[0214] Processor 402 coupled to memory 401.
[0215] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the water purifier outlet control method described in Embodiment 1 or Embodiment 2 of the present invention.
[0216] Example 5
[0217] This invention discloses a computer storage medium storing computer instructions. When these computer instructions are invoked, they are used to execute the steps in the water purifier outlet control method described in Embodiment 1 or Embodiment 2 of this invention.
[0218] Example 6
[0219] This invention discloses a computer program product, which includes a non-transitory computer read storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the water purifier outlet control method described in Embodiment 1 or Embodiment 2.
[0220] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0221] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.
[0222] Finally, it should be noted that the water output control method and device for a water purifier disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for controlling the water output of a water purifier, characterized in that, The method includes: The first set of test data corresponding to the target water purifier, the first set of test data includes the water quality test data of the water to be discharged; Determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions, which are determined based on water demand information; When it is determined that the water quality test data of the water to be discharged does not meet the target water discharge conditions, a first control parameter is generated based on the water quality test data of the water to be discharged and the target water discharge conditions. The first control parameter is used to control the water purification operation to be discharged so that the water quality test data of the water to be discharged meets the target water discharge conditions. And, the step of generating the first control parameter based on the water quality test data of the water to be effluent and the target effluent conditions includes: Based on the water quality test data of the water to be discharged, target resource consumable information is determined. The target resource consumable information includes the usage information of at least one resource consumable. All the resource consumables are used to make the water quality test data of the water to be discharged meet the target discharge conditions. In addition, the usage information of each resource consumable meets the corresponding resource reserve conditions. Based on the target resource consumable information, the first control parameter is generated.
2. The water outlet control method for a water purifier according to claim 1, characterized in that, Before the first set of detection data corresponding to the target water purifier, the method further includes: Based on the detected water discharge control command, analyze the water demand information, and determine the target water quality detection type corresponding to the water demand information and the target detection threshold corresponding to the target water quality detection type. The water quality testing data of the water to be discharged includes at least the water quality testing data corresponding to the target water quality monitoring type; And, the determination of whether the water quality test data of the water to be discharged meets the predetermined target effluent conditions includes: Determine whether the water quality test data of the water to be discharged is greater than or equal to the target detection threshold. If it is determined that the water quality test data of the water to be discharged is greater than or equal to the target detection threshold, then it is determined that the water quality test data of the water to be discharged does not meet the predetermined target discharge conditions.
3. The water outlet control method for a water purifier according to claim 1, characterized in that, After determining the target resource consumables information based on the water quality test data of the water to be effluent, the method further includes: Determine the water outlet link information corresponding to the water to be discharged; Based on the water outlet link information, a second detection data set is determined in the corresponding water outlet link, and the second detection data set includes at least one second detection data. For each of the second detection data, a target reference data is calculated between the second detection data and the corresponding target environmental threshold. The target reference data is used to represent the degree of impact of the second detection data on the abnormal environment of the water outlet link. Update the target resource consumable information based on all the target reference data; In the updated target resource consumable information, the usage information of each resource consumable satisfies the corresponding resource reserve conditions. And, generating the first control parameter based on the target resource consumable information includes: Based on the updated target resource consumable information, the first control parameter is generated.
4. The water outlet control method for a water purifier according to claim 1, characterized in that, The step of determining the target resource consumable information based on the water quality test data of the water to be discharged includes: Based on the water quality test data of the water to be discharged, the target treatment operation information of the water to be discharged is determined. The target treatment operation information includes at least one pre-treatment sub-operation information, and each pre-treatment sub-operation information includes the first resource consumable information of the pre-treatment resource consumables used to perform the pre-treatment sub-operation. The target treatment operation corresponding to the target treatment operation information is used to make the water quality test data of the water to be discharged meet the target effluent conditions. Determine whether the target processing operation information meets the corresponding resource reserve conditions, wherein the resource reserve conditions include the current resource reserve amount corresponding to each of the prepared resource consumables; when it is determined that the target processing operation information meets the corresponding resource reserve conditions, then all the first resource consumable information is determined to be target processing information; When it is determined that the target processing operation information does not meet the corresponding resource reserve conditions, the target processing operation information is adjusted according to the water quality test data of the water to be discharged and the corresponding resource reserve conditions, so that the target processing operation information meets the corresponding resource reserve conditions, and the second resource consumable information in the adjusted target processing operation information is determined, and all the second resource consumable information is determined as target processing information; Based on the target processing information, the target resource consumable information is determined.
5. The water outlet control method for a water purifier according to claim 4, characterized in that, The step of adjusting the target treatment operation information based on the water quality testing data of the water to be effluent and the corresponding resource reserve conditions, so that the target treatment operation information meets the corresponding resource reserve conditions, includes: Based on the water quality test data of the water to be discharged and the corresponding resource reserve conditions, at least one target treatment sub-operation information is determined in the target treatment operation information. The target treatment sub-operation information is an abnormal factor that causes the target treatment operation information to not meet the corresponding resource reserve conditions. For each target processing sub-operation information, target adjustment operation information is determined based on the reserve amount of resource consumables corresponding to the target processing sub-operation information. The target adjustment operation information includes adjustment operation information and / or replacement operation information. The adjustment operation information includes at least one of water volume adjustment operation information, water pressure adjustment operation information, and water quality adjustment operation information. The replacement operation information includes resource replacement operation information, which is determined based on a preset resource type equivalent replacement rule. Adjust the target processing operation information according to the target adjustment operation information so that the target processing operation information meets the corresponding resource reserve conditions.
6. The water outlet control method for a water purifier according to claim 3, characterized in that, The first control parameter includes at least one second control parameter. Generating the first control parameter based on the updated target resource consumable information includes: For each resource consumable corresponding to the updated target resource consumable information, a target information set for that resource consumable is determined based on the target resource consumable information. The target information set includes target flow rate information and corresponding access link information. The access link information includes target valve information corresponding to the access link. Based on the target flow rate information, a second control parameter for the target valve corresponding to the target valve information is determined. The second control parameter is used to control the target valve to perform a matching adjustment control operation so that the water quality detection data of the water to be discharged meets the target effluent conditions.
7. A water outlet control device for a water purifier, characterized in that, The device is used to perform the water outlet control method of the water purifier as described in any one of claims 1-6, and the device comprises: The detection module is used to detect the first detection data set corresponding to the target water purifier, the first detection data set including the water quality detection data of the water to be discharged; The judgment module is used to determine whether the water quality test data of the water to be discharged meets the predetermined target discharge conditions, which are determined based on water demand information; The generation module is used to generate a first control parameter based on the water quality test data of the water to be discharged and the target effluent conditions when the judgment module determines that the water quality test data of the water to be discharged does not meet the target effluent conditions. The first control parameter is used to control the water purification operation to be discharged so that the water quality test data of the water to be discharged meets the target effluent conditions.
8. A water outlet control device for a water purifier, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the water output control method of the water purifier as described in any one of claims 1-6.
9. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the water outlet control method of the water purifier as described in any one of claims 1-6.
Citation Information
Patent Citations
Water purification equipment, control method and device thereof, storage medium and electronic equipment
CN114162933A