Water supply and drainage control method and device applied to algae cultivation

By using intelligent water supply and drainage control methods, combined with the growth needs of algae and environmental parameters, precise water supply and drainage are achieved using condensate, solving the problem of inaccurate water control in traditional methods and ensuring stable growth of algae and air purification effects.

CN117441606BActive Publication Date: 2025-12-12GUANGZHOU LINKAGE ALL THINGS TECH CO LTD
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Patent Information

Application Number
CN202210842296.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-18
Publication Date
2025-12-12
Estimated Expiration
2042-07-18

AI Technical Summary

Technical Problem

Traditional water supply and drainage control methods for algae cultivation have low precision in water volume control, leading to unstable algae growth and problems such as water shortage and withering or rampant proliferation.

Method used

By collecting the current water volume parameters of the purification device, the target water volume control parameters are determined and generated, and the water supply or drainage operation is executed intelligently. Condensate is used as the water supply source, and precise control is carried out in combination with the growth needs of algae and environmental parameters.

Benefits of technology

This ensured the normal growth of algae, reduced wilting and rampant reproduction, guaranteed the proper functioning of air purification, and conserved water resources.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a water supply and discharge control method and device applied to algae cultivation, and the method comprises the following steps: collecting a current water quantity parameter of a purification device during cultivation of algae organisms in the purification device; determining whether a target control operation needs to be performed on the purification device according to the current water quantity parameter; if yes, generating a target water quantity control parameter according to the current water quantity parameter, and performing the target control operation on the purification device according to the target water quantity control parameter. It can be seen that the algae organisms in the purification device can be intelligently supplied with water and discharged according to the application, the problem of low water quantity control accuracy in the traditional time-based water supply and discharge method is solved, the wilting and crazy reproduction of the algae organisms are reduced, the normal growth of the algae organisms is ensured, and the air purification work of the purification device can be normally performed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent devices, and in particular to a water supply and drainage control method and device applied to algae cultivation. BACKGROUND

[0002] Algae, as a huge biological population on the earth, can not only fix carbon dioxide in the surrounding environment through photosynthesis, but also can adsorb substances with pollution properties (such as heavy metals) through its strong adsorption capacity. Therefore, algae are often cultivated for environmental purification and environmental protection.

[0003] Currently, water is an essential substance in the process of cultivating algae. For algae cultivation, the commonly used water supply and drainage control method is to supply water and drain water to the algae at regular time intervals by setting the water supply device and the drainage device at regular time intervals, so as to ensure the normal growth of the algae. However, it is found through practice that this traditional water supply and drainage control method often has inaccurate water supply amount or water discharge amount, which makes it difficult to provide accurate water amount for the growth of the algae, and thus the algae appear the phenomenon of wilting due to lack of water or crazy reproduction. It can be seen that for algae cultivation, it is particularly important to improve the control accuracy of water supply and drainage to ensure the normal growth of the algae. SUMMARY

[0004] The technical problem to be solved by the present application is to provide a water supply and drainage control method and device applied to algae cultivation, which can intelligently supply and drain water to algae in a purification device, solve the problem of low water control accuracy in the traditional timed water supply and drainage method, ensure the normal growth of the algae, and enable the air purification work of the purification device to be carried out normally.

[0005] In order to solve the above technical problem, the present application discloses a water supply and drainage control method applied to algae cultivation, which comprises:

[0006] In the process of cultivating algae in a target purification device, the current water amount parameter of the target purification device is collected; the target purification device is used to purify target air by the algae, and the current water amount parameter includes a current water level parameter and / or a current water volume parameter;

[0007] According to the current water amount parameter, it is judged whether a target control operation needs to be performed on the target purification device; the target control operation includes a water supply control operation and / or a drainage control operation;

[0008] When the determination result is yes, a target water quantity control parameter is generated according to the current water quantity parameter, and a target control operation is performed on the target purification device according to the target water quantity control parameter; the target water quantity control parameter comprises a water supply quantity control parameter and / or a drainage quantity control parameter.

[0009] As an optional implementation, in the first aspect of the present application, the step of determining whether the target control operation needs to be performed on the target purification device according to the current water quantity parameter comprises:

[0010] A target parameter of the algal organism is determined, and a growth demand water quantity parameter of the algal organism is determined according to the target parameter of the algal organism; the target parameter of the algal organism comprises at least one of a type of the algal organism, a current growth rate of the algal organism, a current growth position of the algal organism, and a current growth stage of the algal organism;

[0011] A parameter difference between the current water quantity parameter and the growth demand water quantity parameter is calculated, and it is determined whether the parameter difference is within a preset parameter difference range; the preset parameter difference range comprises a minimum parameter difference threshold and a maximum parameter difference threshold;

[0012] When it is determined that the parameter difference is not within the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, it is determined that the water supply control operation needs to be performed on the target purification device;

[0013] When it is determined that the parameter difference is not within the preset parameter difference range and the parameter difference is greater than the maximum parameter difference threshold, it is determined that the drainage control operation needs to be performed on the target purification device;

[0014] The step of generating the target water quantity control parameter according to the current water quantity parameter comprises:

[0015] The target water quantity control parameter is generated according to the parameter difference between the current water quantity parameter and the growth demand water quantity parameter.

[0016] As an optional implementation, in the first aspect of the present application, after it is determined that the parameter difference is not within the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, the method further comprises:

[0017] An environmental parameter of the target purification device is determined; the environmental parameter of the target purification device comprises at least one of a temperature parameter of the target purification device, a humidity parameter of the target purification device, a light irradiation direction parameter of the target purification device, and a light irradiation intensity parameter of the target purification device;

[0018] Based on the target parameters of the algae and the environmental parameters, predict the water shortage tolerance of the algae;

[0019] Determine the current water shortage tolerance of the algae, and calculate the tolerance difference between the predicted water shortage tolerance of the algae and the current water shortage tolerance of the algae.

[0020] Determine whether the tolerance difference is less than or equal to a preset tolerance difference threshold;

[0021] When it is determined that the tolerance difference is less than or equal to the preset tolerance difference threshold, the determination that the target purification device needs to perform water supply control operation is triggered.

[0022] As an optional implementation, in the first aspect of the present invention, the water inlet of the target purification device is connected to the condensate tank of the target smart device. The target smart device is a device that can generate condensate during its own operation. When the water inlet of the target purification device is in the open state, the condensate can flow into the interior of the target purification device through the condensate tank and the water inlet.

[0023] Before performing the target control operation on the target purification device according to the target water volume control parameters, the method further includes:

[0024] When the generated target water volume control parameter is the same as the water supply volume control parameter, the target intelligent device corresponding to the target purification device is determined, and it is detected whether the target intelligent device is in the target operating state; the target operating state is the operating state that can generate the condensate.

[0025] When the target smart device is detected to be in the target operating state, the step of performing target control operation on the target purification device according to the target water volume control parameters is triggered.

[0026] When it is detected that the target smart device is not in the target operating state, the target situation within a preset range corresponding to the target smart device is determined; the target situation includes environmental situation and / or personnel situation, the personnel situation includes at least one of personnel number, personnel type, personnel activity status and personnel physiological status, and the environmental situation includes environmental humidity and / or environmental temperature;

[0027] When the target situation includes the personnel situation, it is determined whether the personnel situation meets the preset control conditions; the preset control conditions represent the range of the number of personnel who can perform operation control operations on the target intelligent device, the type of target personnel, the activity status of the target personnel, and the physiological status of the target personnel.

[0028] When it is judged that the personnel condition meets the preset control condition, a running request of the target intelligent device is sent to the personnel in the preset range, and it is detected whether an approval instruction of the running request sent by the personnel is received; when it is detected that the approval instruction is received, the step of performing the target control operation on the target purification device according to the target water quantity control parameter is triggered.

[0029] As an optional implementation, in the first aspect of the present application, the target control operation on the target purification device according to the target water quantity control parameter comprises:

[0030] According to the water supply water quantity control parameter and the device parameter of the target intelligent device, a running control parameter of the target intelligent device is determined, and a running control operation is performed on the target intelligent device according to the running control parameter, so that the target intelligent device generates the condensate water in the running process; the device parameter includes device type and / or device function, and the running control parameter includes at least one of running time length, running function parameter and running electric parameter;

[0031] According to the water supply water quantity control parameter, the water inlet of the target purification device is controlled to be in an open state, so that the water quantity of the condensate water flowing into the inside of the target purification device through the water inlet matches the water supply water quantity control parameter.

[0032] As an optional implementation, in the first aspect of the present application, the method further comprises:

[0033] When it is judged that the target control operation on the target purification device is not needed, the water quality condition of the target purification device is monitored; the water quality condition of the target purification device includes at least one of the growth condition of microorganisms in the aquaculture water of the target purification device, the chemical element content condition in the aquaculture water of the target purification device, the cleanliness of the aquaculture water of the target purification device and the water temperature of the aquaculture water of the target purification device;

[0034] According to the water quality condition and the target parameter of the algal organism, the aquaculture matching degree between the water quality condition and the algal organism is calculated, and it is judged whether the aquaculture matching degree is greater than or equal to a preset aquaculture matching degree threshold; when the judgment result is no, a second water quantity control parameter matched with the growth demand water quantity parameter of the algal organism is generated according to the growth demand water quantity parameter of the algal organism; the second water quantity control parameter includes a second water supply water quantity control parameter and a second water discharge water quantity control parameter;

[0035] According to the second water quantity control parameter, the water inlet and the water outlet of the target purification device are controlled to be in an open state to perform a culture water replacement operation on the target purification device; the culture water replacement operation is an operation of discharging a water quantity of the culture water matched with the second water discharge quantity control parameter and supplementing a water quantity of the culture water matched with the second water supply quantity control parameter.

[0036] As an optional implementation, in the first aspect of the present application, after the target water quantity control parameter is generated according to the current water quantity parameter, the method further comprises:

[0037] calculating a parameter influence degree of the environmental parameter of the target purification device on the target parameter of the algal organism, and determining whether the parameter influence degree is greater than or equal to a preset parameter influence degree threshold value;

[0038] when the determination result is no, triggering the step of performing the target control operation on the target purification device according to the target water quantity control parameter;

[0039] when the determination result is yes, performing a correction operation on the target water quantity control parameter according to the environmental parameter of the target purification device to obtain a corrected current water quantity parameter, and triggering the step of performing the target control operation on the target purification device according to the target water quantity control parameter; the target water quantity control parameter is the corrected current water quantity parameter.

[0040] The second aspect of the present application discloses a water supply and discharge control device applied to algal culture, which comprises:

[0041] a collection module, configured to collect a current water quantity parameter of a target purification device during culture of an algal organism of the target purification device; the target purification device is used for purifying target air through the algal organism, and the current water quantity parameter comprises a current water level parameter and / or a current water volume parameter;

[0042] a first determination module, configured to determine whether a target control operation needs to be performed on the target purification device according to the current water quantity parameter; the target control operation comprises a water supply control operation and / or a water discharge control operation;

[0043] a parameter generation module, configured to generate a target water quantity control parameter according to the current water quantity parameter when the determination result of the first determination module is yes;

[0044] a control module, configured to perform a target control operation on the target purification device according to the target water quantity control parameter; the target water quantity control parameter comprises a water supply quantity control parameter and / or a water discharge quantity control parameter.

[0045] As an optional implementation, in the second aspect of the present application, the first judging module comprises:

[0046] a determining sub-module, configured to determine a target parameter of the algal organism, and determine a growth demand water amount parameter of the algal organism according to the target parameter of the algal organism; the target parameter of the algal organism comprises at least one of a type of the algal organism, a current growth rate of the algal organism, a current growth position of the algal organism, and a current growth stage of the algal organism;

[0047] a calculating sub-module, configured to calculate a parameter difference between the current water amount parameter and the growth demand water amount parameter;

[0048] a judging sub-module, configured to judge whether the parameter difference is within a preset parameter difference range; the preset parameter difference range comprises a minimum parameter difference threshold and a maximum parameter difference threshold;

[0049] The determining sub-module is further configured to determine that a water supply control operation needs to be performed on the target purification device when the judging sub-module judges that the parameter difference is not within the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, and determine that a water discharge control operation needs to be performed on the target purification device when the judging sub-module judges that the parameter difference is not within the preset parameter difference range and the parameter difference is greater than the maximum parameter difference threshold.

[0050] The parameter generating module generates the target water amount control parameter according to the current water amount parameter in the following manner:

[0051] generating the target water amount control parameter according to a parameter difference between the current water amount parameter and the growth demand water amount parameter.

[0052] As an optional implementation, in the second aspect of the present application, the determining sub-module is further configured to:

[0053] determine an environmental parameter of the target purification device after the judging sub-module judges that the parameter difference is not within the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold; the environmental parameter of the target purification device comprises at least one of a temperature parameter of the target purification device, a humidity parameter of the target purification device, a light irradiation direction parameter of the target purification device, and a light irradiation intensity parameter of the target purification device;

[0054] The first judging module further comprises:

[0055] a prediction submodule, configured to predict a water-deficit tolerance of the algal organism according to the target parameter of the algal organism and the environmental parameter;

[0056] the determination submodule is further configured to determine a current water-deficit tolerance of the algal organism;

[0057] the calculation submodule is further configured to calculate a tolerance difference between the predicted water-deficit tolerance of the algal organism and the current water-deficit tolerance of the algal organism;

[0058] the judgment submodule is further configured to judge whether the tolerance difference is less than or equal to a preset tolerance difference threshold value; when it is judged that the tolerance difference is less than or equal to the preset tolerance difference threshold value, the determination submodule is triggered to perform the determination of the need for performing the water supply control operation on the target purification device.

[0059] As an optional implementation, in the second aspect of the present application, the water inlet of the target purification device is connected with a condensate tank of a target intelligent device, the target intelligent device is a device capable of generating condensate water in the process of its own operation, and when the water inlet of the target purification device is in an open state, the condensate water can flow into the target purification device through the condensate tank and the water inlet;

[0060] The device further comprises:

[0061] a determination module, configured to determine the target intelligent device corresponding to the target purification device before the control module performs the target control operation on the target purification device according to the target water quantity control parameter, and when the generated target water quantity control parameter is the water supply water quantity control parameter;

[0062] a detection module, configured to detect whether the target intelligent device is in a target running state; the target running state is a running state capable of generating the condensate water; when it is detected that the target intelligent device is in the target running state, the control module is triggered to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter;

[0063] the determination module is further configured to determine a target condition in a preset range corresponding to the target intelligent device when the detection module detects that the target intelligent device is not in the target running state; the target condition includes at least one of an environmental condition and / or a personnel condition, the personnel condition includes at least one of a personnel quantity, a personnel type, a personnel activity condition and a personnel physiological condition, and the environmental condition includes an environmental humidity and / or an environmental temperature;

[0064] The second judging module is configured to judge whether the personnel condition meets a preset control condition when the target condition comprises the personnel condition, wherein the preset control condition represents a range of quantity of personnel capable of performing the operation control operation on the target intelligent device, a target personnel type, a target personnel activity condition, and a target personnel physiological condition.

[0065] The sending module is configured to send an operation request of the target intelligent device to the personnel in the preset range when the second judging module judges that the personnel condition meets the preset control condition.

[0066] The detecting module is further configured to detect whether an agreement instruction of the operation request sent by the personnel is received, and trigger the control module to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter when it is detected that the agreement instruction is received.

[0067] As an optional implementation form, in the second aspect of the present application, the manner in which the control module performs the target control operation on the target purification device according to the target water quantity control parameter is specifically as follows:

[0068] determining an operation control parameter of the target intelligent device according to the water supply quantity control parameter and a device parameter of the target intelligent device, and performing an operation control operation on the target intelligent device according to the operation control parameter, so that the target intelligent device generates the condensate water in the operation process; the device parameter comprises at least one of a device type and / or a device function, and the operation control parameter comprises at least one of an operation duration, an operation function parameter, and an operation electric parameter;

[0069] controlling an inlet of the target purification device to be in an open state according to the water supply quantity control parameter, so that the water quantity of the condensate water flowing into the inside of the target purification device through the inlet matches the water supply quantity control parameter.

[0070] As an optional implementation form, in the second aspect of the present application, the device further comprises:

[0071] The monitoring module is configured to monitor a water quality condition of the target purification device when the first judging module judges that the target control operation on the target purification device is not needed, wherein the water quality condition of the target purification device comprises at least one of a growth condition of microorganisms in aquaculture water of the target purification device, a chemical element content condition in the aquaculture water of the target purification device, a cleanliness degree of the aquaculture water of the target purification device, and a water temperature of the aquaculture water of the target purification device.

[0072] a calculating module, configured to calculate a cultivation matching degree between the water quality condition and the algal organism according to the water quality condition and the target parameter of the algal organism;

[0073] a third judging module, configured to judge whether the cultivation matching degree is greater than or equal to a preset cultivation matching degree threshold value;

[0074] the parameter generating module is further configured to generate a second water quantity control parameter matched with a growth demand water quantity parameter of the algal organism according to the growth demand water quantity parameter of the algal organism when the third judging module judges that the result is no; the second water quantity control parameter comprises a second water supply quantity control parameter and a second water discharge quantity control parameter;

[0075] the control module is further configured to control the water inlet and the water outlet of the target purification device to be in an open state according to the second water quantity control parameter, so as to perform a cultivation water replacement operation on the target purification device; the cultivation water replacement operation is an operation of discharging a water quantity of the cultivation water matched with the second water discharge quantity control parameter and supplementing a water quantity of the cultivation water matched with the second water supply quantity control parameter.

[0076] As an optional implementation form, in the second aspect of the present application, the calculating module is further configured to:

[0077] calculate a parameter influence degree of the environmental parameter of the target purification device on the target parameter of the algal organism after the parameter generating module generates the target water quantity control parameter according to the current water quantity parameter;

[0078] the third judging module is further configured to judge whether the parameter influence degree is greater than or equal to a preset parameter influence degree threshold value; when the judging result is no, trigger the control module to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter;

[0079] and the device further comprises:

[0080] a correcting module, configured to perform a correcting operation on the target water quantity control parameter according to the environmental parameter of the target purification device when the third judging module judges that the result is yes, to obtain a corrected current water quantity parameter, and trigger the control module to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter; the target water quantity control parameter is the corrected current water quantity parameter.

[0081] The third aspect of the present application discloses another water supply and discharge control device applied to algal cultivation, which comprises:

[0082] a memory storing executable program codes;

[0083] a processor coupled to the memory;

[0084] The processor invokes the executable program code stored in the memory to execute the water supply and drainage control method for algae cultivation disclosed in the first aspect of the present application.

[0085] The fourth aspect of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the water supply and drainage control method for algae cultivation disclosed in the first aspect of the present application when invoked.

[0086] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0087] In the embodiments of the present application, in the process of cultivating algae organisms in the target purification device, the current water quantity parameter of the target purification device is collected; whether the target control operation needs to be performed on the target purification device is judged according to the current water quantity parameter; if yes, the target water quantity control parameter is generated according to the current water quantity parameter, and the target control operation is performed on the target purification device according to the target water quantity control parameter. It can be seen that the present application can intelligently supply and drain water for algae organisms in the purification device, solve the problem of low water quantity control accuracy in the traditional timed water supply and drainage method, reduce the occurrence of algae organism wilting and crazy reproduction, ensure the normal growth of algae organisms, and enable the air purification work of the purification device to be carried out normally. BRIEF DESCRIPTION OF DRAWINGS

[0088] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0089] Figure 1 is a scene schematic diagram of the water supply and drainage control for algae cultivation disclosed by the embodiments of the present application;

[0090] Figure 2 is a flowchart of the water supply and drainage control method for algae cultivation disclosed by the embodiments of the present application;

[0091] Figure 3 is a flowchart of another water supply and drainage control method for algae cultivation disclosed by the embodiments of the present application;

[0092] Figure 4 is a structure schematic diagram of a water supply and drainage control device for algae cultivation disclosed by the embodiments of the present application;

[0093] Figure 5 is another structural schematic view of the water supply and drainage control device applied to algae cultivation according to an embodiment of the present application;

[0094] Figure 6 is another structural schematic view of the water supply and drainage control device applied to algae cultivation according to an embodiment of the present application. DETAILED DESCRIPTION

[0095] In order to make the personnel in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0096] The terms "first", "second", and the like in the specification and claims of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.

[0097] In this document, the term "embodiment" means that the specific features, structures, or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily mean the same embodiment, nor is it independent or alternative to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0098] The present application discloses a water supply and drainage control method and device applied to algae cultivation, which can intelligently supply and drain water to algae organisms in the purification device, solves the problem of low water control accuracy in the traditional timed water supply and drainage method, ensures the normal growth of algae organisms, and enables the air purification work of the purification device to be carried out normally. The following will be described in detail.

[0099] Embodiment one

[0100] Please refer to Figure 2 , Figure 2 is a flowchart of the water supply and drainage control method applied to algae cultivation according to an embodiment of the present application. Among them, Figure 2The described water supply and drainage control method applied to algae cultivation can control the water supply and drainage of algae cultivation through linkage control of an intelligent device capable of generating condensed water. Optionally, the intelligent device can be any one of an intelligent air conditioner, an intelligent dehumidifier, and an intelligent dehumidifier, and the device type of the intelligent device capable of generating condensed water is not limited in the embodiments of the present application. Further optionally, the method can be implemented by a water supply and drainage control system, which can be integrated in the intelligent device capable of generating condensed water or exist independently of the intelligent device. Still further, when the water supply and drainage control system exists independently of the intelligent device, the water supply and drainage control system can be specifically integrated in a supervision device or a supervision server that supervises the water supply and drainage control process of algae cultivation, and the supervision server can be a local server or a cloud server, etc., which is not limited in the embodiments of the present application. As shown in Figure 2 The water supply and drainage control method applied to algae cultivation can include the following operations:

[0101] 101. In the process of cultivating algae organisms in a target purification device, a current water quantity parameter of the target purification device is collected.

[0102] In the embodiments of the present application, specifically, the target purification device, such as a purification bin, a purification tank, etc., can be installed inside (integrated type) or outside (separated type) the intelligent device capable of generating condensed water (such as an intelligent air conditioner, an intelligent dehumidifier, etc.), wherein the target purification device can be used to purify target air by algae organisms, such as algae organisms in the purification bin fixing carbon dioxide in the surrounding air through photosynthesis. Optionally, the current water quantity parameter includes a current water level parameter and / or a current water volume parameter, such as a current water level of 3 cm or a current water volume of 5 dL in the purification bin. Further optionally, the current water quantity parameter of the target purification device can be directly collected by a water level sensor (such as a pressure type water level sensor, an ultrasonic type water level sensor, etc.) or indirectly collected by first collecting relevant images by an image sensor (such as a charge coupled device image sensor, etc.) and then analyzing the relevant images.

[0103] 102. According to the current water quantity parameter, it is judged whether a target control operation needs to be performed on the target purification device.

[0104] In the embodiments of the present application, optionally, the target control operation comprises a water supply control operation and / or a water discharge control operation. Further, as an optional implementation, according to the current water quantity parameter, it is determined whether the target control operation needs to be performed on the target purification device, comprising: determining whether the current water quantity parameter is within a preset water quantity parameter threshold range, wherein the preset water quantity parameter threshold range comprises a maximum water quantity parameter threshold and a minimum water quantity parameter threshold; when it is determined that the current water quantity parameter is within the preset water quantity parameter threshold range, it is determined that the target control operation does not need to be performed on the target purification device; when it is determined that the current water quantity parameter is not within the preset water quantity parameter threshold range and is greater than the maximum water quantity parameter threshold, it is determined that the water discharge control operation needs to be performed on the target purification device; when it is determined that the current water quantity parameter is not within the preset water quantity parameter threshold range and is less than the minimum water quantity parameter threshold, it is determined that the water supply control operation needs to be performed on the target purification device.

[0105] For example, when the preset water quantity parameter threshold range is 7dL-10dL, if the current water quantity parameter of the purification bin is 5dL, the algae in the purification bin may appear a water shortage phenomenon, at this time, it can be determined that the water supply operation needs to be performed on the purification bin; and if the current water quantity parameter of the purification bin is 11dL, the algae in the purification bin may appear a water surplus phenomenon, at this time, it can be determined that the water discharge operation needs to be performed on the purification bin.

[0106] 103、When the determination result is yes, according to the current water quantity parameter, a target water quantity control parameter is generated, and according to the target water quantity control parameter, the target control operation is performed on the target purification device.

[0107] In the embodiments of the present application, optionally, the target water quantity control parameter comprises a water supply water quantity control parameter and / or a water discharge water quantity control parameter. Further optionally, the target water quantity control parameter can comprise at least one of a required water supply time length, a required water supply flow rate, a required water supply volume, a required water discharge time length, a required water discharge flow rate, and a required water discharge volume, wherein the supplied water resource can come from the condensed water generated by the intelligent device, or can come from the target water in the preset water storage tank (which can be arranged inside or outside the intelligent device). For example, when it is determined that the water discharge control operation needs to be performed on the purification bin, according to the current water volume parameter 10dL of the purification bin and the preset water volume parameter 8dL, it can be analyzed that the purification bin needs to discharge at least 2dL of water, i.e. the target water quantity control parameter, at this time, according to the target water quantity control parameter, 2dL of water can be discharged from the purification bin.

[0108] It can be seen that the embodiment of the present application can intelligently supply and discharge water for the algae in the purification device, solves the problem of low precision of water quantity control in the traditional timing water supply and discharge method, reduces the occurrence of withering and crazy reproduction of the algae, ensures the normal growth of the algae, enables the air purification work of the purification device to be normally performed, can make full use of water resources by taking the condensed water as the water supply source, saves water resources, and is beneficial to the protection of water resources.

[0109] In an optional embodiment, the step 102 of determining whether the target control operation needs to be performed on the target purification device according to the current water quantity parameter comprises:

[0110] determining the target parameter of the algae, and determining the growth demand water quantity parameter of the algae according to the target parameter of the algae;

[0111] calculating the parameter difference between the current water quantity parameter and the growth demand water quantity parameter, and determining whether the parameter difference is in the preset parameter difference range;

[0112] when it is determined that the parameter difference is not in the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, determining that the water supply control operation needs to be performed on the target purification device;

[0113] when it is determined that the parameter difference is not in the preset parameter difference range and the parameter difference is greater than the maximum parameter difference threshold, determining that the water discharge control operation needs to be performed on the target purification device.

[0114] Further, in the optional embodiment, the target water quantity control parameter is generated according to the current water quantity parameter, comprising:

[0115] generating the target water quantity control parameter according to the parameter difference between the current water quantity parameter and the growth demand water quantity parameter.

[0116] In the optional embodiment, optionally, the target parameter of the algal organism includes at least one of a type of the algal organism, a current growth rate of the algal organism, a current growth position of the algal organism, and a current growth stage of the algal organism. Further optionally, the growth water demand parameter of the algal organism can include a growth water level demand parameter and / or a growth water volume demand parameter. Specifically, the preset parameter difference range includes a minimum parameter difference threshold and a maximum parameter difference threshold, wherein the minimum parameter difference threshold is a negative value and the maximum parameter difference threshold is a positive value. For example, when the current growth position of the algal organism is the bottom of the purification tank, the growth water level demand parameter of the algal organism can be determined as 3 cm, and then combined with the current water level parameter of the purification tank 2.5 cm, the water level parameter difference can be determined as -0.5 cm, and when the preset parameter difference range is -0.3 cm-0.3 cm, it can be determined that the purification tank needs to be supplied with water and the water level of the purification tank is supplied to 3 cm. When the current growth position of the algal organism is the left contact side 1 cm away from the bottom of the purification tank, the growth water level demand parameter of the algal organism can be determined as 4 cm, and then combined with the current water level parameter of the purification tank 4.5 cm, the water level parameter difference can be determined as 0.5 cm, and when the preset parameter difference range is -0.3 cm-0.3 cm, it can be determined that the purification tank needs to be drained and the water level of the purification tank is drained to 4 cm.

[0117] It can be seen that the optional embodiment can determine the target water quantity control parameter through the growth water demand parameter of the algal organism, which is beneficial to improve the reliability and accuracy of the determined required water supply and drainage quantity, and further beneficial to improve the control reliability and control accuracy of the purification device water supply and drainage, thereby facilitating the normal growth of the algal organism in the purification device and effectively purifying the surrounding air.

[0118] In another optional embodiment, after determining in the above-mentioned step that the parameter difference is not in the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, the method can further include:

[0119] determining an environmental parameter of the target purification device;

[0120] predicting a water deficiency tolerance of the algal organism according to the target parameter of the algal organism and the environmental parameter;

[0121] determining a current water deficiency tolerance of the algal organism, and calculating a tolerance difference between the predicted water deficiency tolerance of the algal organism and the current water deficiency tolerance of the algal organism;

[0122] determining whether the tolerance difference is less than or equal to a preset tolerance difference threshold;

[0123] When it is judged that the tolerance difference is less than or equal to the preset tolerance difference threshold value, it is determined that the water supply control operation needs to be performed on the target purification device.

[0124] In the optional embodiment, optionally, the environmental parameter of the target purification device includes at least one of a temperature parameter of the target purification device, a humidity parameter of the target purification device, a light irradiation direction parameter of the target purification device, and a light irradiation intensity parameter of the target purification device. Specifically, the predicted water deficiency tolerance of the algae can be understood as the time / days that the algae can maintain a normal growth state under water deficiency, and the current water deficiency tolerance of the algae can be calculated from the time when it is judged in the above step that the parameter difference is not in the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold value, that is, the time / days that the algae is in a water deficiency state.

[0125] Further, in the optional embodiment, the method can further include: when it is judged that the tolerance difference is greater than the preset tolerance difference threshold value, it is determined that the water supply control operation does not need to be performed on the target purification device. For example, when the environmental temperature of the purification bin is 25°C, for the algae A, the predicted water deficiency tolerance can reach 5 days, and when the current water deficiency tolerance of the algae A is 2 days and the preset tolerance difference threshold value is 2 days, that is, the algae A can still maintain the current normal growth state, at this time, it can be determined that the purification bin does not need to be supplied with water temporarily; and if the current water deficiency tolerance of the algae A is 3 days, that is, the growth state of the algae A will be negatively affected if it continues to be in a water deficiency state, at this time, it can be determined that the purification bin needs to be supplied with water.

[0126] It can be seen that the optional embodiment can determine whether the purification device needs to be supplied with water by the predicted water deficiency tolerance of the algae and the current water deficiency tolerance of the algae, enriching the intelligent water supply and drainage mode of the water supply and drainage control system, which is beneficial to supplying the purification bin with water according to the specific growth needs of the algae, and thus is beneficial to improving the control reliability, control accuracy, and control effectiveness of the water supply and drainage of the purification device, thereby being beneficial to the normal growth of the algae in the purification device.

[0127] In another optional embodiment, after the target water amount control parameter is generated according to the current water amount parameter in the above step 103, the method can further include:

[0128] calculating a parameter influence degree of the environmental parameter of the target purification device on the target parameter of the algae, and judging whether the parameter influence degree is greater than or equal to a preset parameter influence degree threshold value;

[0129] When the result of the judgment is no, a step of performing a target control operation on the target purification device according to the target water volume control parameter in step 103 is triggered;

[0130] When the result of the judgment is yes, a correction operation is performed on the target water volume control parameter according to the environmental parameter of the target purification device, a corrected current water volume parameter is obtained, and a step of performing a target control operation on the target purification device according to the target water volume control parameter in step 103 is triggered.

[0131] In this optional embodiment, the target water volume control parameter is the corrected current water volume parameter. Specifically, the judgment of whether the parameter influence degree is greater than or equal to the preset parameter influence degree threshold can be understood as the judgment of whether the environmental temperature, the environmental humidity, and the degree of light irradiation of the target purification device will cause excessive influence on the current growth rate and the current growth stage of the algal organism, thereby affecting the water volume required by the algal organism to maintain normal growth. For example, when the temperature in the purification bin is 25°C and it does not cause excessive influence on the current growth rate of the algal organism (such as stable respiration), the generated target water volume control parameter does not need to be corrected; when the temperature in the purification bin is 35°C and it causes excessive influence on the current growth rate of the algal organism (such as rapid increase in growth rate, more vigorous respiration, etc.), the water volume required by the algal organism to maintain normal growth may be increased, and at this time, the target water volume control parameter needs to be corrected according to the environmental temperature of the purification bin.

[0132] It can be seen that this optional embodiment can determine whether the target water volume control parameter needs to be corrected by calculating the influence degree between the environmental parameter of the purification device and the target parameter of the algal organism, which is beneficial to improve the correction reliability and correction accuracy of the target water volume control parameter, and is further beneficial to further improve the reliability and accuracy of the determined target water volume control parameter, thereby being beneficial to further improve the subsequent water supply and drainage control reliability and control accuracy of the purification device.

[0133] Embodiment Two

[0134] Please refer to Figure 3 , Figure 3 is a flowchart of a water supply and drainage control method applied to algal cultivation disclosed by the embodiments of the present application. In the flowchart, Figure 3The described water supply and drainage control method applied to algae cultivation can control the water supply and drainage of algae cultivation through linkage control of an intelligent device capable of generating condensed water. Optionally, the intelligent device can be any one of an intelligent air conditioner, an intelligent dehumidifier, and an intelligent dehumidifier, and the device type of the intelligent device capable of generating condensed water is not limited in the embodiments of the present application. Further optionally, the method can be implemented by a water supply and drainage control system, which can be integrated in the intelligent device capable of generating condensed water or exist independently of the intelligent device. Further, when the water supply and drainage control system exists independently of the intelligent device, the water supply and drainage control system can be specifically integrated in a supervision device or a supervision server that supervises the water supply and drainage control process of algae cultivation, and the supervision server can be a local server or a cloud server, etc., which is not limited in the embodiments of the present application. As shown in Figure 3 The water supply and drainage control method applied to algae cultivation can include the following operations:

[0135] 201. In the process of cultivating algae organisms in the target purification device, the current water quantity parameter of the target purification device is collected.

[0136] 202. According to the current water quantity parameter, it is judged whether the target control operation needs to be performed on the target purification device.

[0137] 203. When the judgment result is yes, the target water quantity control parameter is generated according to the current water quantity parameter; when the generated target water quantity control parameter is the water supply quantity control parameter, the target intelligent device corresponding to the target purification device is determined, and it is detected whether the target intelligent device is in the target running state; when the detection result of step 203 is yes, step 204 is triggered to be executed; when the detection result of step 203 is no, step 205 is triggered to be executed.

[0138] In the embodiments of the present application, specifically, the water inlet of the target purification device is connected with the condensed water tank of the target intelligent device, wherein the target intelligent device is a device capable of generating condensed water in its own operation, and when the water inlet of the target purification device is in an open state, the condensed water can flow into the target purification device through the condensed water tank and the water inlet, such as the water inlet of the purification bin being connected with the condensed water tank of the intelligent air conditioner. Optionally, the target intelligent device corresponding to the target purification device can be one or more. Specifically, the target running state is a running state capable of generating condensed water.

[0139] For example, Figure 1 A scene diagram of the water supply and drainage control applied to algae cultivation disclosed in the embodiments of the present application is shown in Figure 1As shown, a purification device is installed externally on the smart air conditioner, and the condensate drain of the smart air conditioner is connected to the water inlet of the purification device (which is closed before the target control operation is performed on the purification device). When the water supply and drainage control system detects that the current water level of the purification device is 3cm via a water level sensor, since it is lower than the preset water level parameter threshold, the water supply and drainage control system determines that a water supply control operation needs to be performed on the purification device, and the required water supply volume is 5dL. At this time, the water supply and drainage control system detects whether the smart air conditioner corresponding to the purification device is in cooling mode (i.e., the target operating state that can produce condensate). When the smart air conditioner is detected to be in cooling mode, the water supply and drainage control system immediately controls the water inlet of the purification device to open, so that the condensate produced by the smart air conditioner can flow into the purification device through the condensate drain and the water inlet. When the water supply and drainage control system detects that the amount of condensate flowing in reaches 5dL, it immediately controls the water inlet of the purification device to close, so that no more condensate flows into the purification device.

[0140] 204. Perform target control operations on the target purification device according to the target water volume control parameters.

[0141] In this embodiment of the invention, for other descriptions of steps 201, 202 and 204, please refer to the detailed description of steps 101-103 in Embodiment 1. This embodiment of the invention will not repeat them.

[0142] 205. Determine the target situation within the preset range corresponding to the target intelligent device.

[0143] In this embodiment of the invention, optionally, the target situation includes environmental conditions and / or personnel conditions. The personnel conditions include at least one of the following: number of personnel, personnel type (e.g., the personnel are permanent residents and have control permissions for the target smart device), personnel activity (e.g., the personnel are exercising or sleeping), and personnel physiological conditions (e.g., the personnel's body temperature, heart rate, etc.). The environmental conditions include ambient humidity and / or ambient temperature. Specifically, the target smart device not being in the target operating state can be understood as the target smart device being in a turned-off state or the operating state of the target smart device not being able to generate condensate. Further optionally, the preset range can be a radius range of 3 meters, 5 meters, or 6.3 meters centered on the target smart device.

[0144] 206. When the target situation includes personnel situation, determine whether the personnel situation meets the preset control conditions.

[0145] In the embodiments of the present application, specifically, the preset control condition represents a quantity range of personnel capable of performing the operation control operation on the target intelligent device, a target personnel type (for example, the personnel need to have a control right of the target intelligent device), a target personnel activity situation (for example, the personnel is in a motion state and has a use demand for the target intelligent device), and a target personnel physiological situation (for example, the personnel has a high body temperature and has a use demand for the target intelligent device). For example, when the intelligent dehumidifier is not in a dehumidification state, that is, is not in a target operation state, it is needed to determine whether there is personnel capable of controlling the intelligent dehumidifier within a 3-meter radius range of the dehumidifier, and if there is, it is determined that the personnel situation satisfies the preset control condition.

[0146] 207、When it is determined that the personnel situation satisfies the preset control condition, a running request of the target intelligent device is sent to personnel within a preset range, and it is detected whether an approval instruction of the running request sent by the personnel is received; when the detection result is yes, step 204 is triggered to be executed.

[0147] In the embodiments of the present application, specifically, the running request of the target intelligent device is sent to the personnel within the preset range, that is, the personnel within the preset range is requested to approve that the target intelligent device is in a target operation state capable of producing condensed water, for example, a refrigeration state of an intelligent air conditioner, a dehumidification state of an intelligent dehumidifier, and the like.

[0148] Further, as an optional implementation manner, the method can further include:

[0149] When it is detected that the refusal instruction of the running request sent by the personnel is received, a preset water storage tank corresponding to the target purification device is determined, wherein a water outlet of the preset water storage tank is connected with the second water inlet of the target purification device.

[0150] According to the water supply quantity control parameter, the second water inlet of the target purification device is controlled to be in an open state, so that a water quantity of the target water flowing into the target purification device through the water outlet of the preset water storage tank and the second water inlet of the target purification device matches the water supply quantity control parameter.

[0151] Specifically, the water storage tank stores the target water, wherein the water storage tank can be installed in the interior of the target intelligent device (integrated type) or installed outside the target intelligent device (split type).

[0152] It can be seen that the embodiment of the present application can control the intelligent device which can produce condensed water, so as to ensure that the water supply control of the purification device is carried out smoothly, and the intelligent water supply mode of the water supply and drainage control system is enriched. In this way, it is not only beneficial to improve the water supply control reliability and effectiveness of the purification device, ensure the normal growth of algae in the purification device, and make the air purification work of the purification device carried out normally, but also beneficial to fully utilize the condensed water produced by the intelligent device, so that the water resources can be recycled, and the water resources are protected.

[0153] In an optional embodiment, the step 204 of performing the target control operation on the target purification device according to the target water quantity control parameter comprises:

[0154] According to the water supply water quantity control parameter and the device parameter of the target intelligent device, the operation control parameter of the target intelligent device is determined, and the operation control operation is performed on the target intelligent device according to the operation control parameter, so that the target intelligent device produces condensed water in the operation process.

[0155] According to the water supply water quantity control parameter, the water inlet of the target purification device is controlled to be in an open state, so that the water quantity of the condensed water flowing into the inside of the target purification device through the water inlet matches the water supply water quantity control parameter.

[0156] In this optional embodiment, optionally, the device parameter includes a device type and / or a device function (such as a refrigeration mode of an intelligent air conditioner, a dehumidification mode of an intelligent dehumidifier). Further optionally, the operation control parameter includes at least one of an operation time length, an operation function parameter, and an operation electric parameter.

[0157] For example, when it is determined that the water supply control operation needs to be performed on the purification bin, according to the determined water supply water quantity control parameter, such as 5dL, and the refrigeration function of the intelligent air conditioner, it can be determined that the intelligent air conditioner needs to be in the refrigeration mode of 26℃ and run for 2 hours, so as to ensure that the intelligent air conditioner can produce 5dL of condensed water.

[0158] Further, in the optional embodiment, the step 204 of performing the target control operation on the target purification device according to the target water quantity control parameter comprises:

[0159] When the generated target water quantity control parameter is a drainage water quantity control parameter, the drainage outlet of the target purification device is controlled to be in an open state according to the drainage water quantity control parameter, so that the water quantity of the breeding water discharged through the drainage outlet matches the drainage water quantity control parameter.

[0160] It can be seen that the optional embodiment can specifically and targetedly control the intelligent device that can generate condensed water, so as to ensure that the intelligent device can generate sufficient condensed water, so that the water supply control process of the purification device can be accurately and effectively performed, so that the algae in the purification device can absorb sufficient water and grow normally.

[0161] In another optional embodiment, the method can further include:

[0162] When it is judged that the target control operation is not needed for the target purification device, monitoring the water quality condition of the target purification device;

[0163] According to the water quality condition and the target parameter of the algae, calculating the cultivation matching degree between the water quality condition and the algae, and judging whether the cultivation matching degree is greater than or equal to a preset cultivation matching degree threshold; when the judgment result is no, generating a second water quantity control parameter matched with the growth demand water quantity parameter of the algae according to the growth demand water quantity parameter of the algae;

[0164] According to the second water quantity control parameter, controlling the water inlet and the water outlet of the target purification device to be in an open state to perform a cultivation water replacement operation on the target purification device.

[0165] In this optional embodiment, optionally, the water quality condition of the target purification device includes at least one of the growth condition of microorganisms in the cultivation water of the target purification device (such as the growth rate of bacteria in the cultivation water), the chemical element content condition in the cultivation water of the target purification device (such as the content of elements such as ammonia, nitrogen, phosphorus, potassium, etc. in the cultivation water), the cleanliness of the cultivation water of the target purification device (such as whether there are foreign matters in the cultivation water, whether the cultivation water is clear, etc.), and the water temperature of the cultivation water of the target purification device. Specifically, the second water quantity control parameter includes a second water supply water quantity control parameter and a second water discharge water quantity control parameter, and the cultivation water replacement operation is an operation of discharging a water quantity of cultivation water matched with the second water discharge water quantity control parameter and supplementing a water quantity of cultivation water matched with the second water supply water quantity control parameter.

[0166] For example, since the water environment of the cultivation water on which the algae depend for survival has a great influence on the normal growth of the algae, when it is judged that the cultivation matching degree between the water quality condition of the cultivation water and the algae is lower than the preset cultivation matching degree threshold, that is, the cultivation water will have a negative impact on the normal growth of the algae, at this time, the cultivation water in the purification bin can be replaced, so that the cultivation water can meet the normal growth demand of the algae.

[0167] It can be seen that the optional embodiment can automatically replace the aquaculture water that does not meet the normal growth of the algal organisms, which shows that the aquaculture water replacement mode of the water supply and drainage control system is intelligent, which is conducive to improving the control reliability and control accuracy of the aquaculture water replacement in the purification device, thereby reducing the rapid reproduction of the algal organisms and the occurrence of the algal organisms disease, ensuring the normal growth of the algal organisms, and thus improving the aquaculture effectiveness of the algal organisms.

[0168] In another optional embodiment, the method can further include:

[0169] When it is judged that the personnel situation does not meet the preset control condition, a target water storage tank corresponding to the target purification device is determined, and a target water condition of the target water storage tank is determined; wherein the water outlet of the target water storage tank is connected with the second water inlet of the target purification device;

[0170] It is judged whether the target water condition meets a preset water supply control condition; when the judgment result is yes, a step of performing a target control operation on the target purification device according to a target water quantity control parameter is triggered to be executed; when the judgment result is no, the target water condition is sent to a related personnel to make the related personnel handle the target water condition.

[0171] In the optional embodiment, optionally, the target water condition of the target water storage tank can include a target water quantity and / or a target water quality condition of the target water. Specifically, the preset water supply control condition represents a target water quantity and / or a target water quality condition that can perform a water supply control operation on the target purification device. For example, after it is determined that there is no personnel with use authority in the preset range of the intelligent air conditioner, i.e., the personnel situation does not meet the preset control condition, the purification bin can be supplied with water through the preset water storage tank. When it is detected that the water quantity in the preset water storage tank is insufficient (i.e., insufficient for the normal growth of the algal organisms), the water quantity insufficient condition of the preset water storage tank can be sent to a related personnel (i.e., a personnel who can replenish water in the preset water storage tank) to make the related personnel replenish water in the preset water storage tank in time.

[0172] It can be seen that the optional embodiment can supply water to the purification device through the preset water storage tank, which is conducive to reducing the situation that the water supply control of the purification device fails due to the lack of condensate water, thereby ensuring that the water supply control process of the purification device can be accurately performed, so that the algal organisms in the purification device can grow normally, and the air purification work of the purification device can be normally performed.

[0173] Embodiment three

[0174] Please refer to Figure 4 , Figure 4is a structural schematic view of a water supply and drainage control device applied to algae cultivation disclosed by the embodiment of the present application. As shown in the figure, the water supply and drainage control device applied to algae cultivation can include: Figure 4

[0175] The collection module 301 is configured to collect a current water quantity parameter of the target purification device during cultivation of algae organisms of the target purification device.

[0176] The first judgment module 302 is configured to judge whether a target control operation needs to be performed on the target purification device according to the current water quantity parameter.

[0177] The parameter generation module 303 is configured to generate a target water quantity control parameter according to the current water quantity parameter when the first judgment module 302 judges that the answer is yes.

[0178] The control module 304 is configured to perform the target control operation on the target purification device according to the target water quantity control parameter.

[0179] In the embodiment of the present application, the target purification device is configured to purify target air by algae organisms. Optionally, the current water quantity parameter includes a current water level parameter and / or a current water volume parameter; the target control operation includes a water supply control operation and / or a water drainage control operation; and the target water quantity control parameter includes a water supply water quantity control parameter and / or a water drainage water quantity control parameter.

[0180] It can be seen that the water supply and drainage control device applied to algae cultivation described above can intelligently supply and drain water for algae organisms in the purification device, solves the problem of low water quantity control accuracy in the traditional time-based water supply and drainage method, reduces the occurrence of withering and crazy reproduction of algae organisms, ensures the normal growth of algae organisms, enables the air purification work of the purification device to be carried out normally, and can also make full use of water resources by taking condensed water as a water supply source, saves water resources, and is conducive to the protection of water resources. Figure 4

[0181] In an optional embodiment, the first judgment module 302 includes:

[0182] The determination sub-module 3021 is configured to determine a target parameter of the algae organisms, and determine a growth demand water quantity parameter of the algae organisms according to the target parameter of the algae organisms.

[0183] The calculation sub-module 3022 is configured to calculate a parameter difference value between the current water quantity parameter and the growth demand water quantity parameter.

[0184] The judgment sub-module 3023 is configured to judge whether the parameter difference value is in a preset parameter difference value range.

[0185] ​​The determining sub-module 3021 is further configured to determine that the water supply control operation needs to be performed on the target purification device when the parameter difference is determined by the judging sub-module 3023 to be not within the preset parameter difference range and less than the minimum parameter difference threshold; and determine that the water discharge control operation needs to be performed on the target purification device when the parameter difference is determined by the judging sub-module 3023 to be not within the preset parameter difference range and greater than the maximum parameter difference threshold.

[0186] The parameter generation module 303 generates the target water quantity control parameter according to the current water quantity parameter in the following manner:

[0187] The parameter generation module 303 generates the target water quantity control parameter according to the current water quantity parameter and the parameter difference between the growth demand water quantity parameter.

[0188] In this optional embodiment, the preset parameter difference range includes the minimum parameter difference threshold and the maximum parameter difference threshold; and the target parameter of the algal organism includes at least one of the type of the algal organism, the current growth rate of the algal organism, the current growth position of the algal organism, and the current growth stage of the algal organism.

[0189] It can be seen that the implementation Figure 5 The water supply and discharge control device for algal cultivation described herein can determine the target water quantity control parameter according to the growth demand water quantity parameter of the algal organism, which is conducive to improving the reliability and accuracy of the determined required water supply and discharge quantity, and thus improving the control reliability and control accuracy of the water supply and discharge of the purification device, thereby facilitating the normal growth of the algal organism in the purification device and effectively purifying the surrounding air.

[0190] In another optional embodiment, the determining sub-module 3021 is further configured to:

[0191] After the judging sub-module 3023 determines that the parameter difference is not within the preset parameter difference range and is less than the minimum parameter difference threshold, the determining sub-module 3021 determines the environmental parameter of the target purification device.

[0192] The first judging module 302 further includes:

[0193] The predicting sub-module 3024 is configured to predict the water deficiency tolerance of the algal organism according to the target parameter of the algal organism and the environmental parameter.

[0194] The determining sub-module 3021 is further configured to determine the current water deficiency tolerance of the algal organism.

[0195] The calculating sub-module 3022 is further configured to calculate the tolerance difference between the predicted water deficiency tolerance of the algal organism and the current water deficiency tolerance of the algal organism.

[0196] The determining sub-module 3023 is further configured to determine whether the tolerance difference is less than or equal to a preset tolerance difference threshold value; when it is determined that the tolerance difference is less than or equal to the preset tolerance difference threshold value, triggering the determining sub-module 3021 to perform the determination that the water supply control operation needs to be performed on the target purification device.

[0197] In the optional embodiment, the environmental parameter of the target purification device includes at least one of a temperature parameter of the target purification device, a humidity parameter of the target purification device, a light irradiation direction parameter of the target purification device, and a light irradiation intensity parameter of the target purification device.

[0198] It can be seen that, by implementing the application, the water supply and drainage control device applied to algae cultivation can determine whether the water supply needs to be performed on the purification device by using the predicted water deficiency tolerance of the algae and the current water deficiency tolerance of the algae, which enriches the intelligent water supply and drainage mode of the water supply and drainage control system, is beneficial to performing the water supply on the purification bin according to the specific growth needs of the algae, and is further beneficial to improving the control reliability, control accuracy, and control effectiveness of the water supply and drainage of the purification device, so as to facilitate the normal growth of the algae in the purification device. Figure 5 In yet another optional embodiment, the device can further include:

[0199] The determining module 305 is configured to determine the target intelligent device corresponding to the target purification device before the control module 304 performs the target control operation on the target purification device according to the target water quantity control parameter, and when the generated target water quantity control parameter is the water supply quantity control parameter.

[0200] The detecting module 306 is configured to detect whether the target intelligent device is in the target running state; when it is detected that the target intelligent device is in the target running state, triggering the control module 304 to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter.

[0201] The determining module 305 is further configured to determine the target situation in the preset range corresponding to the target intelligent device when the detecting module 306 detects that the target intelligent device is not in the target running state.

[0202] The second determining module 307 is configured to determine whether the personnel situation meets the preset control condition when the target situation includes the personnel situation.

[0203] The sending module 308 is configured to send the running request of the target intelligent device to the personnel in the preset range when the second determining module 307 determines that the personnel situation meets the preset control condition.

[0204]

[0205] ​The detection module 306 is further configured to detect whether a consent instruction of the running request sent by the person is received, and trigger the control module 304 to perform the step of controlling the target purification device according to the target water quantity control parameter to perform the target control operation on the target purification device when it is detected that the consent instruction is received.

[0206] In the optional embodiment, the water inlet of the target purification device is connected with the condensate tank of the target intelligent device, the target intelligent device is a device capable of generating condensate water in the process of self running, and when the water inlet of the target purification device is in an open state, the condensate water can flow into the target purification device through the condensate tank and the water inlet; the target running state is a running state capable of generating condensate water; the target condition includes an environmental condition and / or a person condition, the person condition includes at least one of a person quantity, a person type, a person activity condition and a person physiological condition, and the environmental condition includes an environmental humidity and / or an environmental temperature; the preset control condition represents a person quantity range, a target person type, a target person activity condition and a target person physiological condition capable of performing a running control operation on the target intelligent device.

[0207] It can be seen that the implementation Figure 5 The water supply and drainage control device applied to algae cultivation described herein can control the intelligent device capable of generating condensate water in linkage, thereby ensuring that the water supply control of the purification device is smoothly performed, and enriching the intelligent water supply mode of the water supply and drainage control system. In this way, it is not only conducive to improving the water supply control reliability and water supply control effectiveness of the purification device, ensuring the normal growth of algae organisms in the purification device, so that the air purification work of the purification device can be normally performed, but also conducive to fully utilizing the condensate water generated by the intelligent device, so that water resources can be recycled, and water resources are protected.

[0208] In yet another optional embodiment, the control module 304 controls the target purification device according to the target water quantity control parameter in the following manner:

[0209] According to the water supply quantity control parameter and the device parameter of the target intelligent device, a running control parameter of the target intelligent device is determined, and a running control operation is performed on the target intelligent device according to the running control parameter, so that the target intelligent device generates condensate water in the running process;

[0210] According to the water supply quantity control parameter, the water inlet of the target purification device is controlled to be in an open state, so that the water quantity of the condensate water flowing into the target purification device through the water inlet matches the water supply quantity control parameter.

[0211] In the optional embodiment, the device parameter includes a device type and / or a device function, and the running control parameter includes at least one of a running time length, a running function parameter and a running electrical parameter.

[0212] It can be seen that the implementation Figure 5 The water supply and drainage control device applied to algae cultivation described can specifically and targetedly control the intelligent device that can generate condensed water, thereby ensuring that the intelligent device can generate sufficient condensed water, so that the water supply control process of the purification device can be accurately and effectively performed to enable the algae organisms in the purification device to absorb sufficient water and grow normally.

[0213] In yet another optional embodiment, the device can further include:

[0214] The monitoring module 309 is configured to monitor the water quality of the target purification device when the first determining module 302 determines that the target control operation is not required to be performed on the target purification device.

[0215] The calculating module 310 is configured to calculate a cultivation matching degree between the water quality and the algae organisms according to the water quality and the target parameter of the algae organisms.

[0216] The third determining module 311 is configured to determine whether the cultivation matching degree is greater than or equal to a preset cultivation matching degree threshold.

[0217] The parameter generating module 303 is further configured to generate a second water quantity control parameter matched with the growth demand water quantity parameter of the algae organisms according to the growth demand water quantity parameter of the algae organisms when the third determining module 311 determines that the cultivation matching degree is less than the preset cultivation matching degree threshold.

[0218] The control module 304 is further configured to control the water inlet and the water outlet of the target purification device to be in an open state according to the second water quantity control parameter, so as to perform a cultivation water replacement operation on the target purification device.

[0219] In the optional embodiment, the water quality of the target purification device includes at least one of a growth condition of microorganisms in cultivation water of the target purification device, a chemical element content condition in the cultivation water of the target purification device, a cleanliness degree of the cultivation water of the target purification device, and a water temperature of the cultivation water of the target purification device; the second water quantity control parameter includes a second water supply water quantity control parameter and a second water drainage water quantity control parameter; and the cultivation water replacement operation is an operation of draining a water quantity of cultivation water matched with the second water drainage water quantity control parameter and supplementing a water quantity of cultivation water matched with the second water supply water quantity control parameter.

[0220] It can be seen that the implementation Figure 5The water supply and drainage control device applied to algae cultivation can automatically replace the cultivation water that does not meet the normal growth of algae organisms, which shows that the cultivation water replacement mode of the water supply and drainage control system is intelligent, is conducive to improving the control reliability and control accuracy of the replacement of the cultivation water in the purification device, and is conducive to reducing the situation that the algae organisms reproduce too fast and the algae organisms have symptoms, ensuring the normal growth of the algae organisms, thereby being conducive to improving the cultivation effectiveness of the algae organisms.

[0221] In yet another optional embodiment, the calculation module 310 is further configured to:

[0222] After the parameter generation module 303 generates the target water quantity control parameter according to the current water quantity parameter, the calculation of the parameter influence degree of the environmental parameter of the target purification device on the target parameter of the algae organisms is performed.

[0223] The third determination module 311 is further configured to determine whether the parameter influence degree is greater than or equal to a preset parameter influence degree threshold value; when the determination result is no, the control module 304 is triggered to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter.

[0224] In addition, the device can further include:

[0225] The correction module 312 is configured to, when the third determination module 311 determines that the result is yes, perform a correction operation on the target water quantity control parameter according to the environmental parameter of the target purification device, obtain a corrected current water quantity parameter, and trigger the control module 304 to perform the step of performing the target control operation on the target purification device according to the target water quantity control parameter.

[0226] In the optional embodiment, the target water quantity control parameter is the corrected current water quantity parameter.

[0227] It can be seen that the implementation Figure 5 The water supply and drainage control device applied to algae cultivation can determine whether the target water quantity control parameter needs to be corrected by calculating the influence degree between the environmental parameter of the purification device and the target parameter of the algae organisms, which is conducive to improving the correction reliability and correction accuracy of the target water quantity control parameter, and is conducive to further improving the reliability and accuracy of the determined target water quantity control parameter, thereby being conducive to further improving the subsequent water supply and drainage control reliability and control accuracy of the purification device.

[0228] Embodiment Four

[0229] Please refer to Figure 6 , Figure 6 is another structure diagram of the water supply and drainage control device applied to algae cultivation disclosed in the embodiments of the present application. As shown in Figure 6As shown, the water supply and drainage control device applied to algae cultivation can include:

[0230] The memory 401 stores executable program codes;

[0231] The processor 402 is coupled to the memory 401;

[0232] The processor 402 invokes the executable program codes stored in the memory 401 to execute the steps in the water supply and drainage control method applied to algae cultivation described in the embodiment one or the embodiment two.

[0233] Embodiment five

[0234] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the steps in the water supply and drainage control method applied to algae cultivation described in the embodiment one or the embodiment two when invoked.

[0235] Embodiment six

[0236] The embodiment of the present application discloses a computer program product, which includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute the steps in the water supply and drainage control method applied to algae cultivation described in the embodiment one or the embodiment two.

[0237] The above-described device embodiments are only schematic, wherein the modules illustrated as separate components can or can not be physically separate, and the components illustrated as modules can or can not be physical modules, i.e., can be located in one place, or can be distributed on multiple network modules. Part or all of the modules can be selected according to actual needs to achieve the purpose of the present embodiment scheme. Those skilled in the art can understand and implement without creative labor.

[0238] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the above specific description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in the sense of contribution to the prior art, can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, which includes a Read-Only Memory (ROM), a Random Access Memory (RAM), a Programmable Read-only Memory (PROM), an Erasable Programmable Read Only Memory (EPROM), a One-time Programmable Read-Only Memory (OTPROM), an Electrically-Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM), or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other medium that can be used to carry or store data in a computer readable manner.

[0239] Finally, it should be noted that: the application discloses a kind of water supply and drainage control method and device applied to algae culture disclosed by the preferred embodiment of the application, only for describing the technical solutions of the application, not for its limitation;Although the application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that;It can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features;And these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the application.

Claims

1. A water supply and discharge control method for algal cultivation, characterized by, The method comprises: In the process of cultivating the algae organism of the target purification device, collecting a current water quantity parameter of the target purification device; the target purification device is used for purifying target air by the algae organism, and the current water quantity parameter comprises a current water level parameter and / or a current water volume parameter; According to the current water quantity parameter, it is judged whether the target control operation needs to be performed on the target purification device; the target control operation comprises a water supply control operation and / or a drainage control operation; When the judgment result is yes, according to the current water quantity parameter, a target water quantity control parameter is generated, and the target control operation is performed on the target purification device according to the target water quantity control parameter; the target water quantity control parameter comprises a water supply water quantity control parameter and / or a drainage water quantity control parameter; And the method further comprises: When it is judged that the target control operation does not need to be performed on the target purification device, the water quality of the target purification device is monitored; According to the water quality and the target parameter of the algae organism, the cultivation matching degree between the water quality and the algae organism is calculated, and it is judged whether the cultivation matching degree is greater than or equal to a preset cultivation matching degree threshold; when the judgment result is no, a second water quantity control parameter matched with the growth demand water quantity parameter of the algae organism is generated according to the growth demand water quantity parameter of the algae organism; the target parameter of the algae organism comprises at least one of the type of the algae organism, the current growth rate of the algae organism, the current growth position of the algae organism and the current growth stage of the algae organism; According to the second water quantity control parameter, the water inlet and the drainage port of the target purification device are controlled to be in an open state to perform a cultivation water replacement operation on the target purification device; the second water quantity control parameter comprises a second water supply water quantity control parameter and a second drainage water quantity control parameter, and the cultivation water replacement operation is an operation of discharging the water quantity of the cultivation water matched with the second drainage water quantity control parameter and supplementing the water quantity of the cultivation water matched with the second water supply water quantity control parameter.

2. The water supply and discharge control method for algal cultivation according to claim 1, characterized by, According to the current water quantity parameter, it is judged whether the target control operation needs to be performed on the target purification device, comprising: The target parameter of the algae organism is determined, and the growth demand water quantity parameter of the algae organism is determined according to the target parameter of the algae organism; The parameter difference value between the current water quantity parameter and the growth demand water quantity parameter is calculated, and it is judged whether the parameter difference value is in a preset parameter difference value range; the preset parameter difference value range comprises a minimum parameter difference threshold and a maximum parameter difference threshold; When it is judged that the parameter difference value is not in the preset parameter difference value range and the parameter difference value is less than the minimum parameter difference threshold, it is determined that the water supply control operation needs to be performed on the target purification device; When it is judged that the parameter difference value is not in the preset parameter difference value range and the parameter difference value is greater than the maximum parameter difference threshold, it is determined that the drainage control operation needs to be performed on the target purification device; The generating a target water quantity control parameter according to the current water quantity parameter comprises: generating a target water quantity control parameter according to a parameter difference between the current water quantity parameter and the growth demand water quantity parameter.

3. The water supply and discharge control method for algal cultivation according to claim 2, characterized by, After judging that the parameter difference is not in the preset parameter difference range and the parameter difference is less than the minimum parameter difference threshold, the method further comprises: determining an environmental parameter of the target purification device; the environmental parameter of the target purification device comprises at least one of a temperature parameter of the target purification device, a humidity parameter of the target purification device, a light irradiation direction parameter of the target purification device, and a light irradiation intensity parameter of the target purification device; predicting a water deficiency tolerance of the algal organism according to the target parameter of the algal organism and the environmental parameter; determining a current water deficiency tolerance of the algal organism, and calculating a tolerance difference between the predicted water deficiency tolerance of the algal organism and the current water deficiency tolerance of the algal organism; judging whether the tolerance difference is less than or equal to a preset tolerance difference threshold; when it is judged that the tolerance difference is less than or equal to the preset tolerance difference threshold, triggering the execution of the determination that the water supply control operation needs to be performed on the target purification device.

4. The water supply and discharge control method for algal cultivation according to any one of claims 1 to 3, characterized by, The water inlet of the target purification device is connected with a condensate tank of a target intelligent device, the target intelligent device is a device capable of generating condensate water in the process of its own operation, and when the water inlet of the target purification device is in an open state, the condensate water can flow into the target purification device through the condensate tank and the water inlet; Before the performing a target control operation on the target purification device according to the target water quantity control parameter, the method further comprises: when the generated target water quantity control parameter is the water supply water quantity control parameter, determining the target intelligent device corresponding to the target purification device, and detecting whether the target intelligent device is in a target operation state; the target operation state is an operation state capable of generating the condensate water; when it is detected that the target intelligent device is in the target operation state, triggering the execution of the step of performing a target control operation on the target purification device according to the target water quantity control parameter; when it is detected that the target intelligent device is not in the target operation state, determining a target situation in a preset range corresponding to the target intelligent device; the target situation comprises an environmental situation and / or a personnel situation, the personnel situation comprises at least one of a number of personnel, a type of personnel, a personnel activity situation, and a personnel physiological situation, and the environmental situation comprises an environmental humidity and / or an environmental temperature; when the target situation comprises the personnel situation, judging whether the personnel situation satisfies a preset control condition; the preset control condition represents a number of personnel range, a target type of personnel, a target personnel activity situation, and a target personnel physiological situation capable of performing an operation control operation on the target intelligent device. When it is judged that the personnel condition meets the preset control condition, a running request of the target intelligent device is sent to the personnel in the preset range, and it is detected whether an approval instruction of the running request sent by the personnel is received; when it is detected that the approval instruction is received, the step of performing the target control operation on the target purification device according to the target water quantity control parameter is triggered.

5. The water supply and discharge control method for algal cultivation according to claim 4, characterized by, The target control operation on the target purification device according to the target water quantity control parameter comprises: According to the water supply water quantity control parameter and the device parameter of the target intelligent device, the running control parameter of the target intelligent device is determined, and the running control operation is performed on the target intelligent device according to the running control parameter, so that the target intelligent device generates the condensate water in the running process; the device parameter comprises at least one of device type and / or device function, and the running control parameter comprises at least one of running time length, running function parameter and running electric parameter; According to the water supply water quantity control parameter, the water inlet of the target purification device is controlled to be in an open state, so that the water quantity of the condensate water flowing into the inside of the target purification device through the water inlet matches the water supply water quantity control parameter.

6. The water supply and discharge control method for algal cultivation according to any one of claims 1 to 3, characterized by, The water quality condition of the target purification device comprises at least one of the growth condition of microorganisms in the aquaculture water of the target purification device, the chemical element content condition in the aquaculture water of the target purification device, the cleanliness of the aquaculture water of the target purification device and the water temperature of the aquaculture water of the target purification device.

7. The water supply and discharge control method for algal cultivation according to claim 6, characterized by, After the target water quantity control parameter is generated according to the current water quantity parameter, the method further comprises: calculating the parameter influence degree of the environmental parameter of the target purification device on the target parameter of the algal organism, and judging whether the parameter influence degree is greater than or equal to a preset parameter influence degree threshold value; when the judgment result is no, the step of performing the target control operation on the target purification device according to the target water quantity control parameter is triggered; when the judgment result is yes, the target water quantity control parameter is modified according to the environmental parameter of the target purification device, the current water quantity parameter after modification is obtained, and the step of performing the target control operation on the target purification device according to the target water quantity control parameter is triggered; the target water quantity control parameter is the current water quantity parameter after modification.

8. A water supply and discharge control device for algal cultivation, characterized by comprising: The device is used to execute the water supply and drainage control method applied to algal aquaculture according to any one of claims 1-7, and the device comprises: The acquisition module is used to acquire the current water quantity parameter of the target purification device in the process of cultivating the algal organism of the target purification device; the target purification device is used to purify the target air through the algal organism, and the current water quantity parameter comprises a current water level parameter and / or a current water volume parameter; The first judgment module is used to judge whether the target control operation needs to be performed on the target purification device according to the current water quantity parameter; the target control operation comprises a water supply control operation and / or a drainage control operation; The first judgment module is used to judge whether the target control operation needs to be performed on the target purification device according to the current water quantity parameter; the target control operation comprises a water supply control operation and / or a drainage control operation; A parameter generation module is configured to generate a target water quantity control parameter according to the current water quantity parameter when the first determination module determines that the answer is yes. A control module is configured to perform a target control operation on the target purification device according to the target water quantity control parameter; and the target water quantity control parameter includes a water supply quantity control parameter and / or a drainage quantity control parameter.

9. A water supply and discharge control device for algal cultivation, characterized by comprising: The device comprises: a memory storing executable program codes; a processor coupled with the memory; the processor invokes the executable program codes stored in the memory to execute the water supply and drainage control method for algal cultivation according to any one of claims 1-7.

10. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which are invoked to execute the water supply and drainage control method for algal cultivation according to any one of claims 1-7.

Citation Information

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