Regional Equipment Operation Control Method and Device Based on Photovoltaic-Storage-Charging Microgrid System

By predicting and adjusting the operating parameters of the target equipment of the optical storage and charging microgrid system, the problem of inaccurate equipment operation under the influence of the environment is solved, and higher control accuracy and system stability are achieved.

CN118611153BActive Publication Date: 2025-05-27ANHUI TAIRAN INFORMATION TECH PROJECT CO LTD
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Patent Information

Application Number
CN202410798508.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-19
Publication Date
2025-05-27
Estimated Expiration
2044-06-19

AI Technical Summary

Technical Problem

The optical storage charging microgrid system is prone to reduce performance under the environmental influence of the target area, resulting in inaccurate equipment operation control.

Method used

By obtaining the initial operating parameters of the target device, predicting the operating results in the future time period, determining whether the preset conditions are met, and adjusting the operating parameters according to the expected results to achieve accurate operation.

Benefits of technology

It improves the control accuracy of the target equipment, improves the operating speed and efficiency, and ensures the operating environment stability and reliability of the optical storage charging microgrid system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of optical storage and charging, and discloses a method and device for controlling the operation of regional equipment based on an optical storage and charging microgrid system. The method includes: obtaining the initial operation parameters of a target device in a target area where the optical storage and charging microgrid system is located; predicting the expected operation result of the target device after a preset future time period according to the initial operation parameters; judging whether the target device meets the device operation conditions according to the expected operation result; when it is judged that the device operation conditions are met, controlling the target device to operate according to the initial operation parameters; when it is judged that the device operation conditions are not met, determining the operation regulation requirements corresponding to the target device according to the expected operation result; regulating the initial operation parameters according to the operation regulation requirements to obtain the target operation parameters of the target device, and controlling the target device to operate according to the target operation parameters. It can be seen that implementing the present invention can improve the control accuracy of the target device to achieve the precise operation of the target device.
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Description

Technical Field

[0001] The present invention relates to the field of photovoltaic storage and charging technology, and in particular to a method and device for controlling regional equipment operation based on a photovoltaic storage and charging microgrid system. Background Art

[0002] At present, the photovoltaic storage and charging microgrid system includes functions such as photovoltaic power generation, energy storage, and electric vehicle charging, and can realize the unified dispatch of various energy media. Among them, the photovoltaic storage and charging microgrid system includes multiple system equipment (such as: photovoltaic power generation system, energy storage system, and car charging system integrated into one, and bidirectional transmission with the microgrid system). These system equipment are integrated in the target area where the photovoltaic storage and charging microgrid system is located (such as the computer room), and the equipment can affect the environment of the target area when it is running.

[0003] However, it is found in practice that the photovoltaic storage and charging microgrid system is easily affected by the environment when implementing the above charging / dispatching functions. That is, once the environment in the target area does not meet the pre-set operating requirements, the performance of the photovoltaic storage and charging microgrid system is easily reduced. It can be seen that it is particularly important to propose a technical solution to improve the control accuracy of the equipment in the target area. Summary of the invention

[0004] The present invention provides a method and device for controlling the operation of regional equipment based on a photovoltaic storage and charging microgrid system, which can improve the control accuracy of target equipment to achieve precise operation of the target equipment.

[0005] In order to solve the above technical problems, the first aspect of the present invention discloses a regional equipment operation control method based on a photovoltaic storage and charging microgrid system, the method comprising:

[0006] Acquire initial operating parameters of a target device in a target area where the photovoltaic storage and charging microgrid system is located, wherein the target device is a device capable of controlling environmental parameters of the target area;

[0007] Predicting, based on the initial operating parameters of the target device, an operating result of the target device after a preset future time period, to obtain an expected operating result corresponding to the target device, wherein the expected operating result includes an expected environmental parameter of the target area;

[0008] According to the expected operation result, determining whether the target device meets the preset device operation condition;

[0009] When it is determined that the target device meets the device operation condition, controlling the target device to operate according to the initial operation parameters;

[0010] When it is determined that the target device does not meet the device operating condition, determining the operation control requirement corresponding to the target device according to the expected operation result;

[0011] According to the operation regulation and control requirements, the initial operation parameters are regulated to obtain the target operation parameters of the target device, and the target device is controlled to operate according to the target operation parameters.

[0012] As an optional implementation manner, in the first aspect of the present invention, the expected operation result corresponding to the target device further includes an expected energy consumption parameter corresponding to the target device;

[0013] Determining the operation control requirements corresponding to the target device according to the expected operation result includes:

[0014] Determining a first operation control requirement for the target device according to the expected environmental parameters of the target area;

[0015] According to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters, determine whether the target device meets the preset energy consumption exceeding standard condition, and obtain an exceeding standard determination result;

[0016] Determining a second operation control requirement for the target device according to the exceeding-standard judgment result;

[0017] Obtaining a user's regional environmental requirement for the target area and a user's operating energy consumption requirement for the target device, and determining, based on the regional environmental requirement and the operating energy consumption requirement, a first weight coefficient corresponding to the first operating regulation requirement under the regional environmental requirement and a second weight coefficient corresponding to the second operating regulation requirement under the operating energy consumption requirement;

[0018] The operation regulation requirement corresponding to the target device is determined according to the first operation regulation requirement, the second operation regulation requirement, the first weight coefficient, and the second weight coefficient.

[0019] As an optional implementation manner, in the first aspect of the present invention, determining the second operation regulation requirement for the target device according to the exceeding standard judgment result includes:

[0020] When the result of the exceeding standard judgment is that the target device currently does not meet the energy consumption exceeding standard condition, the prior operation regulation demand of the target device for the prior energy consumption parameter obtained is determined as the second operation regulation demand for the target device, the prior energy consumption parameter is the energy consumption parameter corresponding to the target device before the future time period, and the prior operation regulation demand is the operation regulation demand corresponding to the target device before the future time period;

[0021] When the exceeding-standard judgment result is that the target device currently meets the energy consumption exceeding-standard condition, determining an energy consumption interval that matches the expected energy consumption parameter;

[0022] According to the energy consumption range that matches the expected energy consumption parameter, select an energy consumption control strategy that matches the expected energy consumption parameter from one or more pre-set energy consumption control strategies;

[0023] According to the energy consumption regulation strategy, the acquired prior operation regulation demand is adjusted to obtain an adjusted prior operation regulation demand, and the adjusted prior operation regulation demand is determined as a second operation regulation demand for the target device.

[0024] As an optional implementation manner, in the first aspect of the present invention, judging whether the target device meets a preset energy consumption exceeding standard condition according to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and obtaining the exceeding standard judgment result includes:

[0025] According to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, determining whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter;

[0026] When it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, determining that the target device currently does not meet a preset energy consumption exceeding standard condition;

[0027] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, determining that the target device currently meets a preset energy consumption exceeding standard condition; or,

[0028] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, the energy consumption difference between the expected energy consumption value and the standard energy consumption value is calculated, and the over-standard judgment result is determined based on the energy consumption difference.

[0029] As an optional implementation manner, in the first aspect of the present invention, determining the exceeding-standard judgment result according to the energy consumption difference includes:

[0030] Determining whether the energy consumption difference is less than or equal to a preset energy consumption difference;

[0031] When it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, determining that the target device currently does not meet the energy consumption exceeding standard condition;

[0032] When it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition.

[0033] As an optional implementation manner, in the first aspect of the present invention, predicting the operation result of the target device after a preset future time period according to the initial operation parameters of the target device to obtain the expected operation result corresponding to the target device includes:

[0034] Based on the parameter prediction device, according to the initial operating parameters of the target device, the environmental parameters of the target area under the operating control of the target device and after a preset future time period are predicted as the expected environmental parameters of the target area; and / or,

[0035] According to the initial operating parameters and the preset operating energy consumption relationship coefficient, the energy consumption parameters of the target device in the future time period are predicted to obtain the expected energy consumption parameters corresponding to the target device.

[0036] As an optional implementation manner, in the first aspect of the present invention, judging whether the target device meets a preset device operating condition according to the expected operating result includes:

[0037] According to the expected environmental parameters included in the expected operation result, it is determined whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system, which is recorded as the first condition; or,

[0038] Based on the parameter collection device, collect the current actual environmental parameters of the target area;

[0039] Comparing the actual environmental parameters of the target area with the expected environmental parameters in the expected operation result to obtain an environmental parameter comparison result;

[0040] Determining the degree of environmental control of the target device for the target area according to the environmental parameter comparison result;

[0041] According to the environmental control degree of the target device for the target area, determining whether the environmental control degree is within a preset environmental control degree range, which is recorded as a second condition;

[0042] When at least one of the first condition and the second condition is met, it is determined that the target device meets a preset device operating condition.

[0043] The second aspect of the present invention discloses a regional equipment operation control device based on a photovoltaic storage and charging microgrid system, the device comprising:

[0044] An acquisition module is used to acquire initial operating parameters of a target device in a target area where the photovoltaic storage and charging microgrid system is located, wherein the target device is a device capable of controlling environmental parameters of the target area;

[0045] A prediction module, configured to predict an operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and obtain an expected operation result corresponding to the target device, wherein the expected operation result includes an expected environmental parameter of the target area;

[0046] A judgment module, used to judge whether the target device meets the preset device operation conditions according to the expected operation result;

[0047] a control module, configured to control the target device to operate according to the initial operating parameters when the determination module determines that the target device meets the device operating conditions;

[0048] A determination module, configured to determine, when the determination module determines that the target device does not meet the device operation condition, an operation control requirement corresponding to the target device according to the expected operation result;

[0049] The control module is further used to adjust the initial operating parameters according to the operation regulation requirements, obtain the target operating parameters of the target device, and control the target device to operate according to the target operating parameters.

[0050] As an optional implementation manner, in the second aspect of the present invention, the expected operation result corresponding to the target device further includes an expected energy consumption parameter corresponding to the target device;

[0051] The method in which the determination module determines the operation control requirement corresponding to the target device according to the expected operation result specifically includes:

[0052] Determining a first operation control requirement for the target device according to the expected environmental parameters of the target area;

[0053] According to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters, determine whether the target device meets the preset energy consumption exceeding standard condition, and obtain an exceeding standard determination result;

[0054] Determining a second operation control requirement for the target device according to the exceeding-standard judgment result;

[0055] Obtaining a user's regional environmental requirement for the target area and a user's operating energy consumption requirement for the target device, and determining, based on the regional environmental requirement and the operating energy consumption requirement, a first weight coefficient corresponding to the first operating regulation requirement under the regional environmental requirement and a second weight coefficient corresponding to the second operating regulation requirement under the operating energy consumption requirement;

[0056] The operation regulation requirement corresponding to the target device is determined according to the first operation regulation requirement, the second operation regulation requirement, the first weight coefficient, and the second weight coefficient.

[0057] As an optional implementation manner, in the second aspect of the present invention, the determination module determines the second operation control requirement for the target device according to the exceeding standard judgment result, specifically including:

[0058] When the result of the exceeding standard judgment is that the target device currently does not meet the energy consumption exceeding standard condition, the prior operation regulation demand of the target device for the prior energy consumption parameter obtained is determined as the second operation regulation demand for the target device, the prior energy consumption parameter is the energy consumption parameter corresponding to the target device before the future time period, and the prior operation regulation demand is the operation regulation demand corresponding to the target device before the future time period;

[0059] When the exceeding-standard judgment result is that the target device currently meets the energy consumption exceeding-standard condition, determining an energy consumption interval that matches the expected energy consumption parameter;

[0060] According to the energy consumption range that matches the expected energy consumption parameter, select an energy consumption control strategy that matches the expected energy consumption parameter from one or more pre-set energy consumption control strategies;

[0061] According to the energy consumption regulation strategy, the acquired prior operation regulation demand is adjusted to obtain an adjusted prior operation regulation demand, and the adjusted prior operation regulation demand is determined as a second operation regulation demand for the target device.

[0062] As an optional implementation, in the second aspect of the present invention, the determination module determines whether the target device meets the preset energy consumption exceeding standard condition according to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and the method of obtaining the exceeding standard judgment result specifically includes:

[0063] According to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, determining whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter;

[0064] When it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, determining that the target device currently does not meet a preset energy consumption exceeding standard condition;

[0065] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, determining that the target device currently meets a preset energy consumption exceeding standard condition; or,

[0066] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, the energy consumption difference between the expected energy consumption value and the standard energy consumption value is calculated, and the over-standard judgment result is determined based on the energy consumption difference.

[0067] As an optional implementation manner, in the second aspect of the present invention, the determination module determines the exceeding-standard judgment result according to the energy consumption difference value in a manner specifically including:

[0068] Determining whether the energy consumption difference is less than or equal to a preset energy consumption difference;

[0069] When it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, determining that the target device currently does not meet the energy consumption exceeding standard condition;

[0070] When it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition.

[0071] As an optional implementation, in the second aspect of the present invention, the prediction module predicts the operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and the method of obtaining the expected operation result corresponding to the target device specifically includes:

[0072] Based on the parameter prediction device, according to the initial operating parameters of the target device, the environmental parameters of the target area under the operating control of the target device and after a preset future time period are predicted as the expected environmental parameters of the target area; and / or,

[0073] According to the initial operating parameters and the preset operating energy consumption relationship coefficient, the energy consumption parameters of the target device in the future time period are predicted to obtain the expected energy consumption parameters corresponding to the target device.

[0074] As an optional implementation manner, in the second aspect of the present invention, the judgment module judges whether the target device meets the preset device operation condition according to the expected operation result specifically includes:

[0075] According to the expected environmental parameters included in the expected operation result, it is determined whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system, which is recorded as the first condition; or,

[0076] Based on the parameter collection device, collect the current actual environmental parameters of the target area;

[0077] Comparing the actual environmental parameters of the target area with the expected environmental parameters in the expected operation result to obtain an environmental parameter comparison result;

[0078] Determining the degree of environmental control of the target device for the target area according to the environmental parameter comparison result;

[0079] According to the environmental control degree of the target device for the target area, determining whether the environmental control degree is within a preset environmental control degree range, which is recorded as a second condition;

[0080] When at least one of the first condition and the second condition is met, it is determined that the target device meets a preset device operating condition.

[0081] The third aspect of the present invention discloses another regional equipment operation control device based on a photovoltaic storage and charging microgrid system, the device comprising:

[0082] A memory storing executable program code;

[0083] a processor coupled to the memory;

[0084] The processor calls the executable program code stored in the memory to execute the regional equipment operation control method based on the photovoltaic storage and charging microgrid system disclosed in the first aspect of the present invention.

[0085] The fourth aspect of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the regional equipment operation control method based on the photovoltaic storage and charging microgrid system disclosed in the first aspect of the present invention.

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

[0087] In an embodiment of the present invention, initial operating parameters of a target device in a target area where a photovoltaic storage and charging microgrid system is located are obtained, where the target device is a device that can control the environmental parameters of the target area; based on the initial operating parameters of the target device, the operating results of the target device after a preset future time period are predicted to obtain expected operating results corresponding to the target device, and the expected operating results include expected environmental parameters of the target area; based on the expected operating results, it is determined whether the target device meets preset device operating conditions; when it is determined that the target device meets the device operating conditions, the target device is controlled to operate according to the initial operating parameters; when it is determined that the target device does not meet the device operating conditions, the operating control requirements corresponding to the target device are determined according to the expected operating results; based on the operating control requirements, the initial operating parameters are adjusted to obtain the target operating parameters of the target device, and the target device is controlled to operate according to the target operating parameters. It can be seen that the implementation of the present invention can obtain the initial operating parameters of the target device in the target area where the photovoltaic storage and charging microgrid system is located, and predict the expected operating results of the target device after a future time period based on the initial operating parameters, which can improve the prediction accuracy of the expected operating results corresponding to the target device, and then judge whether the target device meets the preset device operating conditions based on the accurately predicted expected operating results. When it is judged that the target device meets the preset device operating conditions, the target device is controlled to operate according to the initial operating parameters, and the operating speed and efficiency of the target device can be improved based on the initial operating parameters when the target device meets the device operating conditions; and when it is judged that the target device does not meet the preset device operating conditions, the operation control requirements corresponding to the target device are first accurately determined based on the expected operating results, and then the operation control requirements corresponding to the target device are accurately determined based on the accurately determined expected operating results. Based on the operation and control requirements of the target device, the initial operation parameters are adjusted to obtain the target operation parameters of the target device. When the target device does not meet the device operation conditions, the control accuracy of the target operation parameters can be improved based on the operation and control requirements, and then the target device is controlled to operate according to the target operation parameters. The operation accuracy and reliability of the target device can be improved based on the accurately generated target operation parameters, and the diversity and flexibility of the operation parameters of the target device can be improved based on the judgment of the expected operation results, which is conducive to improving the accuracy of environmental control of the target area based on the precise operation of the target device, and then it is conducive to improving the stability and reliability of the operating environment of the photovoltaic storage and charging microgrid system based on the precise control of the target area environment by the target device. BRIEF DESCRIPTION OF THE DRAWINGS

[0088] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0089] Figure 1It is a flow chart of a method for controlling the operation of regional equipment based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention;

[0090] Figure 2 It is a flow chart of another method for controlling regional equipment operation based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention;

[0091] Figure 3 It is a structural schematic diagram of a regional equipment operation control device based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention;

[0092] Figure 4 It is a structural schematic diagram of another regional equipment operation control device based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention. DETAILED DESCRIPTION

[0093] In order to enable those skilled in the art to better understand the scheme of the present invention, the technical scheme in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0094] The terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish different objects rather than to describe a specific order. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. 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 may optionally include steps or units that are not listed, or may optionally include other steps or units inherent to these processes, methods, products or ends.

[0095] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present invention. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0096] The present invention discloses a regional equipment operation control method and device based on a photovoltaic storage and charging microgrid system, which can obtain the initial operation parameters of the target equipment in the target area where the photovoltaic storage and charging microgrid system is located, and predict the expected operation results of the target equipment after a future time period based on the initial operation parameters, which can improve the prediction accuracy of the expected operation results corresponding to the target equipment, and then judge whether the target equipment meets the preset equipment operation conditions based on the accurately predicted expected operation results. When it is judged that the equipment is satisfied, the target equipment is controlled to operate according to the initial operation parameters, and the operation speed and efficiency of the target equipment can be improved based on the initial operation parameters when the target equipment meets the equipment operation conditions; and when it is judged that the equipment is not satisfied, the operation corresponding to the target equipment is first accurately determined based on the expected operation results. The control demand is determined, and then the initial operating parameters are controlled according to the operation control demand accurately determined for the target device to obtain the target operating parameters of the target device. The control accuracy of the target operating parameters can be improved based on the operation control demand when the target device does not meet the device operating conditions, and then the target device is controlled to operate according to the target operating parameters. The operation accuracy and reliability of the target device can be improved based on the accurately generated target operating parameters, and it is conducive to improving the diversity and flexibility of the operating parameters of the target device based on the judgment of the expected operating results, so as to improve the accuracy of environmental control of the target area based on the precise operation of the target device, and then it is conducive to improving the stability and reliability of the operating environment of the photovoltaic storage and charging microgrid system based on the precise control of the target area environment by the target device. The following are detailed explanations.

[0097] Embodiment 1

[0098] See also Figure 1 , Figure 1 This is a flow chart of a method for controlling the operation of regional equipment based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention. Figure 1 The described regional equipment operation control method based on the photovoltaic storage and charging microgrid system can be applied to a regional equipment operation control device based on the photovoltaic storage and charging microgrid system, wherein the device may include a control device or a control server, wherein the control server may include a cloud server or a local server, which is not limited in the embodiments of the present invention. Figure 1 As shown, the regional equipment operation control method based on the photovoltaic storage and charging microgrid system may include the following operations:

[0099] 101. Obtain initial operating parameters of target equipment in the target area where the photovoltaic storage and charging microgrid system is located.

[0100] In the embodiment of the present invention, the target device is a device capable of controlling the environmental parameters of the target area. Optionally, the target device may be a system device (such as energy storage device, power generation device, etc.) of the photovoltaic storage and charging microgrid system, or an environmental conditioning device (such as air conditioning) in the target area where the photovoltaic storage and charging microgrid system is located. Optionally, the initial operating parameters of the target device may include one or more combinations of the initial operating voltage of the target device, the initial operating current of the target device, and the initial operating power of the target device, etc., which are not limited in the embodiment of the present invention.

[0101] 102. According to the initial operating parameters of the target device, predict the operating result of the target device after a preset future time period, and obtain the expected operating result corresponding to the target device.

[0102] In an embodiment of the present invention, the expected operating results corresponding to the target device may include expected environmental parameters of the target area, and the expected operating results corresponding to the target device may also include expected energy consumption parameters corresponding to the target device. The expected operating results corresponding to the target device may also include the above-mentioned expected environmental parameters and expected energy consumption parameters at the same time, which is not limited in the embodiment of the present invention.

[0103] Optionally, the expected environmental parameters of the target area may include one or more combinations of the expected ambient temperature of the target area, the expected ambient humidity of the target area, the expected air index of the target area, and the expected airflow intensity of the target area. Optionally, the expected energy consumption parameter corresponding to the target device may include the expected energy consumption value corresponding to the target device, and may also include the expected energy consumption change value corresponding to the target device. Among them, the expected energy consumption value corresponding to the target device may be the predicted total energy consumption value of the target device in the future time period, or it may be the predicted real-time energy consumption value of the target device at each of multiple moments in the future time period. Optionally, the expected energy consumption change value corresponding to the target device may include the change value between the predicted energy consumption value of the target device after the future time period and the energy consumption value acquired before the future time period, and may include the predicted energy consumption change value of the target device in each of multiple preset sub-time periods in the future time period, which is not limited in the embodiments of the present invention.

[0104] 103. According to the expected operation result, determine whether the target device meets the preset device operation conditions.

[0105] In an embodiment of the present invention, optionally, the equipment operating conditions may include a determination condition of whether the expected environmental parameters meet the operating environment requirements of the optical insect control microgrid system, and may also include a determination condition of the degree interval to which the environmental control degree corresponding to the expected environmental parameters belongs, which is not limited in the embodiment of the present invention.

[0106] In an embodiment of the present invention, when the judgment result of step 103 is yes, that is, when it is judged that the target device meets the device operating conditions, step 104 is triggered to be executed; when the judgment result of step 103 is no, that is, when it is judged that the target device does not meet the device operating conditions, step 105 is triggered to be executed according to the expected operating results.

[0107] 104. Control the target device to operate according to the initial operating parameters.

[0108] 105. Based on the expected operating results, determine the corresponding operation and control requirements of the target equipment.

[0109] In an embodiment of the present invention, specifically, when the expected operating result includes expected environmental parameters, a first operating regulation requirement for the target device can be determined according to the expected environmental parameters as the operating regulation requirement corresponding to the target device; when the expected operating result includes expected energy consumption parameters, a second operating regulation requirement for the target device can be determined according to the expected energy consumption parameters as the operating regulation requirement corresponding to the target device; when the expected operating result includes both the expected environmental parameters and the expected energy consumption parameters, the first operating regulation requirement for the target device can be determined according to the expected environmental parameters, and the second operating regulation requirement for the target device can be determined according to the expected energy consumption parameters, and the operating regulation requirement corresponding to the target device can be determined according to the first operating regulation requirement and the second operating regulation requirement.

[0110] 106. According to the operation control requirements, the initial operation parameters are adjusted to obtain the target operation parameters of the target equipment.

[0111] In the embodiment of the present invention, specifically, adjusting the initial operating parameters according to the operation control requirements to obtain the target operating parameters of the target device may include:

[0112] Determine the operation requirement parameters of the target equipment according to the operation and control requirements;

[0113] Compare the operation requirement parameters with the initial operation parameters to obtain the operation parameter comparison results;

[0114] According to the comparison results of the operating parameters, the operating control coefficients corresponding to the initial operating parameters are generated;

[0115] According to the operation control coefficient corresponding to the initial operation parameter, the initial operation parameter is controlled to obtain the target operation parameter of the target device. The operation requirement parameter of the target device may include at least one of the operation requirement voltage of the target device, the operation requirement current of the target device, and the operation requirement power of the target device, which is not limited in the embodiment of the present invention. In this way, the accuracy and reliability of the generated target operation parameter of the target device can be improved based on the operation control requirement and the initial operation parameter.

[0116] Among them, generating the operation control coefficient corresponding to the initial operation parameter according to the operation parameter comparison result may include:

[0117] When the operation parameter comparison result indicates that the operation requirement voltage in the operation requirement parameter is different from the initial operation voltage in the initial operation parameter, a voltage adjustment coefficient corresponding to the initial operation voltage is generated according to the voltage difference between the operation requirement voltage and the initial operation voltage; and / or,

[0118] When the operation parameter comparison result indicates that the operation demand current in the operation demand parameter is different from the initial operation current in the initial operation parameter, a current adjustment coefficient corresponding to the initial operation current is generated according to the current difference between the operation demand current and the initial operation current; and / or,

[0119] When the operation parameter comparison result indicates that the operation demand power in the operation demand parameter is different from the initial operation power in the initial operation parameter, a power adjustment coefficient corresponding to the initial operation power is generated according to the power difference between the operation demand power and the initial operation power; wherein the operation adjustment coefficient corresponding to the initial operation parameter may include at least one of a voltage adjustment coefficient corresponding to the initial operation voltage, a current adjustment coefficient corresponding to the initial operation current, and a power adjustment coefficient corresponding to the initial operation power, which is not limited in the embodiment of the present invention. In this way, the accuracy, diversity and flexibility of the generated operation adjustment coefficient can be improved based on the diversified operation parameter comparison results, which is conducive to improving the adjustment accuracy of subsequent target operation parameters based on the accurately generated operation adjustment coefficient.

[0120] 107. Control the target device to operate according to the target operating parameters.

[0121] It can be seen that implementation Figure 1The described regional device operation control method based on a photovoltaic energy storage charging microgrid system can obtain the initial operation parameters of the target devices in the target area where the photovoltaic energy storage charging microgrid system is located, and based on the initial operation parameters, predict the expected operation results of the target devices after a future time period, which can improve the prediction accuracy of the expected operation results corresponding to the target devices. Subsequently, based on the accurately predicted expected operation results, it is determined whether the target devices meet the preset device operation conditions. When it is determined that they are met, the target devices are controlled to operate according to the initial operation parameters, which can improve the operation speed and operation efficiency of the target devices based on the initial operation parameters when the target devices meet the device operation conditions; and when it is determined that they are not met, first, based on the expected operation results, the operation regulation requirements corresponding to the target devices are accurately determined, and then based on the accurately determined operation regulation requirements for the target devices, the initial operation parameters are regulated to obtain the target operation parameters of the target devices, which can improve the regulation accuracy of the target operation parameters based on the operation regulation requirements when the target devices do not meet the device operation conditions. Subsequently, the target devices are controlled to operate according to the target operation parameters, which can improve the operation accuracy and reliability of the target devices based on the accurately generated target operation parameters, and is conducive to improving the diversity and flexibility of the operation parameters of the target devices based on the judgment of the expected operation results, thereby being conducive to improving the environmental control accuracy of the target area based on the precise operation of the target devices, and further being conducive to improving the stability and reliability of the operation environment of the photovoltaic energy storage charging microgrid system based on the precise control of the target area environment by the target devices.

[0122] In an alternative embodiment, the step 102 of predicting the operation results of the target devices after a preset future time period based on the initial operation parameters of the target devices to obtain the expected operation results corresponding to the target devices may include:

[0123] Based on a parameter prediction device, predicting the environmental parameters of the target area after a preset future time period under the operation control of the target devices based on the initial operation parameters of the target devices as the expected environmental parameters of the target area; and / or,

[0124] Predicting the energy consumption parameters of the target devices within the future time period based on the initial operation parameters and the preset operation energy consumption relationship coefficient to obtain the expected energy consumption parameters corresponding to the target devices.

[0125] In the embodiments of the present invention, the operation energy consumption relationship coefficient can be used to represent the corresponding relationship between the operation parameters and the energy consumption parameters of the target devices.

[0126] It can be seen that this optional embodiment can predict the environmental parameters of the target area under the operation control of the target device and after a preset future time period based on the initial operating parameters of the target device based on the parameter prediction device, and use them as the expected environmental parameters of the target area. This can improve the prediction accuracy of the expected environmental parameters of the target area, and predict the energy consumption parameters of the target device in the future time period based on the initial operating parameters and the preset operating energy consumption relationship coefficient to obtain the expected energy consumption parameters corresponding to the target device, which can improve the prediction accuracy of the target expected energy consumption parameters, and is conducive to improving the accuracy and diversity of the expected operating results corresponding to the target device.

[0127] In another optional embodiment, judging whether the target device meets the preset device operation condition according to the expected operation result in step 103 may include:

[0128] According to the expected environmental parameters included in the expected operation results, it is determined whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system, which is recorded as the first condition; or,

[0129] Based on the parameter collection equipment, the actual environmental parameters of the target area are collected;

[0130] Compare the actual environmental parameters of the target area with the expected environmental parameters in the expected operation results to obtain an environmental parameter comparison result;

[0131] Determine the degree of environmental control of the target device for the target area based on the environmental parameter comparison results;

[0132] According to the environmental control degree of the target device for the target area, determining whether the environmental control degree is within a preset environmental control degree range, which is recorded as the second condition;

[0133] When at least one of the first condition and the second condition is met, it is determined that the target device meets the preset device operating condition.

[0134] In an embodiment of the present invention, when both the first condition and the second condition are not met, it is determined that the target device does not meet the preset device operating conditions. The operating environment requirements may include the requirements of the photovoltaic storage and charging microgrid system for its operating environment, and the operating environment can be divided into a better operating environment, a general operating environment, and a poor operating environment. The environmental parameter comparison result can be used to represent the result of the degree of parameter change between the actual environmental parameters and the expected environmental parameters. According to the environmental parameter comparison result, a specific method for determining the degree of environmental control of the target device for the target area may include: dividing the degree of parameter change between the actual environmental parameters and the expected environmental parameters by the actual environmental parameters to obtain a percentage value, and determining it as the degree of environmental control of the target device for the target area.

[0135] It can be seen that this optional embodiment can judge whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system based on the expected environmental parameters included in the expected operating results, which is recorded as the first condition; and based on the parameter acquisition device, the current actual environmental parameters of the target area are collected, and the actual environmental parameters are compared with the expected environmental parameters to obtain the environmental parameter comparison results, which can improve the accuracy of the comparison between the actual environmental parameters and the expected environmental parameters. Subsequently, according to the environmental parameter comparison results, the environmental control degree of the target device for the target area is determined, which can improve the accuracy of determining the environmental control degree corresponding to the target device. Then, based on the accurately determined environmental control degree, it is judged whether the environmental control degree is in the preset range, which is recorded as the second condition. Whether the expected environmental parameters meet the operating environment requirements or whether the environmental control degree is in the preset degree range can improve the accuracy, diversity and flexibility of judging whether the target device meets the preset device operating conditions.

[0136] Embodiment 2

[0137] See also Figure 2 , Figure 2 This is a flow chart of a method for controlling the operation of regional equipment based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention. Figure 2 The described regional equipment operation control method based on the photovoltaic storage and charging microgrid system can be applied to a regional equipment operation control device based on the photovoltaic storage and charging microgrid system, wherein the device may include a control device or a control server, wherein the control server may include a cloud server or a local server, which is not limited in the embodiments of the present invention. Figure 2 As shown, the regional equipment operation control method based on the photovoltaic storage and charging microgrid system may include the following operations:

[0138] 201. Obtain initial operating parameters of target equipment in a target area where the photovoltaic storage and charging microgrid system is located.

[0139] 202. Predict an operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and obtain an expected operation result corresponding to the target device.

[0140] 203. According to the expected operation result, determine whether the target device meets the preset device operation conditions.

[0141] In an embodiment of the present invention, when the judgment result of step 203 is yes, that is, when it is judged that the target device meets the device operating conditions, step 204 is triggered to be executed; when the judgment result of step 203 is no, that is, when it is judged that the target device does not meet the device operating conditions, step 205 is triggered to be executed.

[0142] 204. Control the target device to operate according to the initial operating parameters.

[0143] 205. Determine a first operation control requirement for the target device according to the expected environmental parameters of the target area.

[0144] 206. According to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters, determine whether the target device meets the preset energy consumption exceeding standard condition, and obtain the exceeding standard determination result.

[0145] In an embodiment of the present invention, optionally, the energy consumption exceeding standard condition may include a judgment condition of a comparison result of an expected energy consumption value represented by an expected energy consumption parameter with a standard energy consumption value represented by a standard energy consumption parameter, or may include a judgment condition of a comparison result of an energy consumption difference between the expected energy consumption value and the standard energy consumption value with a preset energy consumption difference, which is not limited in the embodiment of the present invention.

[0146] 207. Determine a second operation control requirement for the target device based on the exceeding standard judgment result.

[0147] In the embodiment of the present invention, there is no sequence between any of step 206 and step 207 and step 205, that is, any of step 206 and step 207 may occur before step 205, or after step 205, or may occur simultaneously with step 205, which is not limited in the embodiment of the present invention.

[0148] 208. Obtain the user's regional environmental requirements for the target area and the user's operating energy consumption requirements for the target device.

[0149] In the embodiment of the present invention, the user's regional environment requirement for the target area may include the user's requirement for environmental parameters of the target area, and the user's operating energy consumption requirement for the target device may include the user's requirement for expected energy consumption parameters of the target device.

[0150] 209. According to the regional environmental demand and the operational energy consumption demand, determine a first weight coefficient corresponding to the first operational regulation demand under the regional environmental demand and a second weight coefficient corresponding to the second operational regulation demand under the operational energy consumption demand.

[0151] In an embodiment of the present invention, specifically, corresponding weight coefficients can be assigned to the first operation regulation demand and the second operation regulation demand according to the proportion of the regional environmental demand in the total demand of the regional environmental demand and the operation energy consumption demand, and the proportion of the operation energy consumption demand in the total demand of the regional environmental demand and the operation energy consumption demand.

[0152] 210. Determine an operation regulation requirement corresponding to the target device according to the first operation regulation requirement, the second operation regulation requirement, the first weight coefficient, and the second weight coefficient.

[0153] 211. According to the operation control requirements, the initial operation parameters are adjusted to obtain the target operation parameters of the target equipment.

[0154] 212. Control the target device to operate according to the target operating parameters.

[0155] In the embodiment of the present invention, for other descriptions of steps 201 to 204, step 211 and step 212, please refer to the detailed description of steps 101 to 104, step 106 and step 107 in the first embodiment, and the embodiment of the present invention will not be repeated here.

[0156] It can be seen that the implementation Figure 2The described regional equipment operation control method based on the photovoltaic storage and charging microgrid system can obtain the initial operating parameters of the target equipment in the target area where the photovoltaic storage and charging microgrid system is located, and predict the expected operating results of the target equipment after a future time period based on the initial operating parameters, which can improve the prediction accuracy of the expected operating results corresponding to the target equipment, and then judge whether the target equipment meets the preset equipment operating conditions based on the accurately predicted expected operating results. When it is judged that the preset equipment operating conditions are met, the target equipment is controlled to operate according to the initial operating parameters, and the operating speed and efficiency of the target equipment can be improved based on the initial operating parameters when the target equipment meets the equipment operating conditions; and when it is judged that the preset equipment operating conditions are not met, the operation control requirements corresponding to the target equipment are accurately determined based on the expected operating results. , and then according to the accurately determined operation and control requirements for the target device, the initial operation parameters are adjusted to obtain the target operation parameters of the target device. When the target device does not meet the device operating conditions, the control accuracy of the target operation parameters can be improved based on the operation and control requirements, and then the target device is controlled to operate according to the target operation parameters. The operation accuracy and reliability of the target device can be improved based on the accurately generated target operation parameters, and it is beneficial to improve the diversity and flexibility of the operation parameters of the target device based on the judgment of the expected operation results, so as to improve the accuracy of environmental control of the target area based on the precise operation of the target device, and then it is beneficial to improve the stability and reliability of the operating environment of the photovoltaic storage and charging microgrid system based on the precise control of the target area environment by the target device. In addition, it is also possible to determine the first operation and control demand for the target device based on the expected environmental parameters of the target area, which can improve the accuracy of determining the first operation and control demand, and judge whether the target device meets the preset energy consumption exceeding condition based on the expected energy consumption parameters of the target device and the preset standard energy consumption parameters to obtain the exceeding judgment result, and determine the second operation and control demand for the target device based on the exceeding judgment result, which can improve the accuracy of determining the second operation and control demand, and then determine the first weight coefficient corresponding to the first operation and control demand and the second weight coefficient corresponding to the second operation and control demand based on the obtained regional environmental requirements and operation energy consumption requirements corresponding to the user, respectively, which can improve the accuracy and reliability of determining the weight coefficients corresponding to each operation and control demand, and then determine the operation and control demand corresponding to the target device based on the first operation and control demand, the second operation and control demand, the first weight coefficient and the second weight coefficient, which can improve the accuracy and reliability of determining the operation and control demand corresponding to the target device.

[0157] In an optional embodiment, determining the second operation control requirement for the target device according to the exceeding standard judgment result in step 207 may include:

[0158] When the result of the over-standard judgment is that the target device currently does not meet the energy consumption over-standard condition, the acquired prior operation regulation demand of the target device for the prior energy consumption parameter is determined as the second operation regulation demand for the target device;

[0159] When the result of the over-limit judgment is that the target device currently meets the energy consumption over-limit condition, an energy consumption range matching the expected energy consumption parameters is determined;

[0160] According to the energy consumption range that matches the expected energy consumption parameter, an energy consumption control strategy that matches the expected energy consumption parameter is selected from one or more pre-set energy consumption control strategies;

[0161] According to the energy consumption control strategy, the acquired prior operation control demand is adjusted to obtain the adjusted prior operation control demand, and the adjusted prior operation control demand is determined as the second operation control demand for the target device.

[0162] In the embodiment of the present invention, the previous energy consumption parameter is the energy consumption parameter corresponding to the target device before the future time period, and the previous operation regulation requirement is the operation regulation requirement corresponding to the target device before the future time period.

[0163] Specifically, determining the energy consumption interval that matches the expected energy consumption parameter may include: selecting an energy consumption interval in which the expected energy consumption value represented by the expected energy consumption parameter is located from one or more preset energy consumption intervals as the energy consumption interval that matches the expected energy consumption parameter.

[0164] In an embodiment of the present invention, each energy consumption control strategy corresponds to an energy consumption interval, and each energy consumption control strategy can be used to adjust the operation control requirements of the target device according to the content of the energy consumption control strategy. Specifically, based on the energy consumption interval that matches the expected energy consumption parameter, the energy consumption control strategy that matches the expected energy consumption parameter is selected from one or more pre-set energy consumption control strategies, which may include: based on the energy consumption interval that matches the expected energy consumption parameter, the energy consumption control strategy corresponding to the energy consumption interval is selected from one or more pre-set energy consumption control strategies, and the energy consumption control strategy corresponding to the energy consumption interval is determined as the energy consumption control strategy that matches the expected energy consumption parameter. This can improve the matching accuracy between the expected energy consumption parameter and the energy consumption control strategy.

[0165] It can be seen that this optional embodiment can directly determine the acquired prior operation regulation demand of the target device for the prior energy consumption parameter as the second operation regulation demand for the target device when the result of the over-standard judgment is that the target device currently does not meet the energy consumption over-standard condition, thereby improving the determination speed and efficiency of the second operation regulation demand, and automatically determine the energy consumption interval matching the expected energy consumption parameter when the result of the over-standard judgment is that the target device currently meets the energy consumption over-standard condition, and select the energy consumption regulation strategy matching the expected energy consumption parameter from one or more pre-set energy consumption regulation strategies according to the energy consumption interval matching the expected energy consumption parameter, thereby improving the selection accuracy of the energy consumption regulation strategy matching the expected energy consumption parameter, and then adjust the prior operation regulation demand according to the accurately selected energy consumption regulation strategy to obtain the adjusted prior operation regulation demand, thereby improving the adjustment accuracy of the prior operation regulation demand, and then determine the accurately adjusted prior operation regulation demand as the second operation regulation demand for the target device, thereby improving the determination accuracy and reliability of the second operation regulation demand, and thereby facilitating the improvement of the diversity and flexibility of the determination method of the second operation regulation demand based on the diversity of the over-standard judgment results.

[0166] In another optional embodiment, the above step 206 determines whether the target device meets the preset energy consumption exceeding standard condition according to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and obtains the exceeding standard judgment result, which may include:

[0167] According to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, determining whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter;

[0168] When it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, it is determined that the target device currently does not meet the preset energy consumption exceeding standard condition;

[0169] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, it is determined that the target device currently meets the preset energy consumption exceeding standard condition; or,

[0170] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, the energy consumption difference between the expected energy consumption value and the standard energy consumption value is calculated, and the over-standard judgment result is determined based on the energy consumption difference.

[0171] In the embodiment of the present invention, specifically, the energy consumption value of the target device can be divided into level 1 energy consumption value, level 2 energy consumption value, level 3 energy consumption value, level 4 energy consumption value and level 5 energy consumption value from small to large, wherein level 1 represents the most energy-saving and level 5 represents the most energy-consuming. Optionally, the standard energy consumption value can be level 1 energy consumption value, level 2 energy consumption value, or other set energy consumption value levels, which is not limited in the embodiment of the present invention.

[0172] It can be seen that this optional embodiment can determine whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter based on the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and directly determine that the target device does not currently meet the preset energy consumption exceeding standard condition when it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, thereby improving the determination speed and efficiency of the target device not currently meeting the preset energy consumption exceeding standard condition, and when it is determined that the expected energy consumption value is greater than the standard energy consumption value, choose to directly determine that the target device currently meets the preset energy consumption exceeding standard condition, thereby improving the determination speed and efficiency of the target device currently meeting the preset energy consumption exceeding standard condition, or choose to first calculate the energy consumption difference between the expected energy consumption value and the standard energy consumption value, and then determine the exceeding standard judgment result based on the energy consumption difference, thereby improving the accuracy and reliability of the judgment of whether the target device currently meets the preset energy consumption exceeding standard condition, and when it is determined that the expected energy consumption value is greater than the standard energy consumption value, improving the flexibility of the judgment of whether the target device currently meets the preset energy consumption exceeding standard condition.

[0173] In this optional embodiment, as an optional implementation manner, determining the exceeding-standard judgment result according to the energy consumption difference may include:

[0174] Determine whether the energy consumption difference is less than or equal to a preset energy consumption difference;

[0175] When it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, it is determined that the target device currently does not meet the energy consumption exceeding standard condition;

[0176] When it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition.

[0177] In the embodiment of the present invention, the preset energy consumption difference value may be used to represent the difference between the preset maximum allowable energy consumption value and the above standard energy consumption value.

[0178] It can be seen that this optional implementation method can, when it is judged that the expected energy consumption value is greater than the standard energy consumption value, choose to further judge whether the energy consumption difference between the expected energy consumption value and the standard energy consumption value is less than or equal to the preset energy consumption difference value, and when it is judged that the energy consumption difference value is less than or equal to the preset energy consumption difference value, it is determined that the target device currently does not meet the energy consumption exceeding standard condition, thereby improving the accuracy and reliability of determining that the target device currently does not meet the energy consumption exceeding standard condition, and when it is judged that the energy consumption difference value is greater than the preset energy consumption difference value, it is determined that the target device currently meets the energy consumption exceeding standard condition, thereby improving the accuracy and reliability of determining that the target device currently meets the energy consumption exceeding standard condition.

[0179] Embodiment 3

[0180] See also Figure 3 , Figure 3 This is a schematic diagram of the structure of a regional equipment operation control device based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention. Figure 3 The regional equipment operation control device based on the photovoltaic storage and charging microgrid system described may include a control device or a control server, wherein the control server may include a cloud server or a local server, which is not limited in the embodiment of the present invention. Figure 3 As shown, the regional equipment operation control device based on the photovoltaic storage and charging microgrid system may include:

[0181] The acquisition module 301 is used to obtain the initial operating parameters of the target device in the target area where the photovoltaic storage and charging microgrid system is located. The target device is a device that can control the environmental parameters of the target area.

[0182] The prediction module 302 is used to predict the operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and obtain the expected operation result corresponding to the target device, and the expected operation result includes the expected environmental parameters of the target area.

[0183] The judgment module 303 is used to judge whether the target device meets the preset device operation conditions according to the expected operation result.

[0184] The control module 304 is used to control the target device to operate according to the initial operating parameters when the determination module 303 determines that the target device meets the device operating conditions.

[0185] The determination module 305 is used to determine the operation control requirements corresponding to the target device according to the expected operation results when the determination module 303 determines that the target device does not meet the device operation conditions.

[0186] The control module 304 is further used to adjust the initial operation parameters according to the operation regulation requirements, obtain the target operation parameters of the target device, and control the target device to operate according to the target operation parameters.

[0187] It can be seen that implementation Figure 3The described regional equipment operation control device based on the photovoltaic storage and charging microgrid system can obtain the initial operating parameters of the target equipment in the target area where the photovoltaic storage and charging microgrid system is located, and predict the expected operating results of the target equipment after a future time period based on the initial operating parameters, which can improve the prediction accuracy of the expected operating results corresponding to the target equipment, and then judge whether the target equipment meets the preset equipment operating conditions based on the accurately predicted expected operating results. When it is judged that the preset equipment operating conditions are met, the target equipment is controlled to operate according to the initial operating parameters, and the operating speed and efficiency of the target equipment can be improved based on the initial operating parameters when the target equipment meets the equipment operating conditions; and when it is judged that the preset equipment operating conditions are not met, the operation control requirements corresponding to the target equipment are accurately determined based on the expected operating results. , and then according to the accurately determined operation and control requirements for the target device, the initial operation parameters are adjusted to obtain the target operation parameters of the target device. When the target device does not meet the device operating conditions, the control accuracy of the target operation parameters can be improved based on the operation and control requirements, and then the target device is controlled to operate according to the target operation parameters. The operation accuracy and reliability of the target device can be improved based on the accurately generated target operation parameters, and it is beneficial to improve the diversity and flexibility of the operation parameters of the target device based on the judgment of the expected operation results, so as to improve the accuracy of environmental control of the target area based on the precise operation of the target device, and then it is beneficial to improve the stability and reliability of the operating environment of the photovoltaic storage and charging microgrid system based on the precise control of the target area environment by the target device.

[0188] In an optional embodiment, the expected operation result corresponding to the target device also includes the expected energy consumption parameter corresponding to the target device. The determination module 305 determines the operation control requirement corresponding to the target device according to the expected operation result, which may specifically include:

[0189] Determining a first operation control requirement for the target device according to expected environmental parameters of the target area;

[0190] According to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters, it is judged whether the target device meets the preset energy consumption exceeding standard condition, and the exceeding standard judgment result is obtained;

[0191] Determine the second operation control requirement for the target equipment according to the result of exceeding the standard;

[0192] Obtaining the user's regional environmental requirements for the target area and the user's operating energy consumption requirements for the target device, and determining a first weight coefficient corresponding to the first operating regulation requirement under the regional environmental requirements and a second weight coefficient corresponding to the second operating regulation requirement under the operating energy consumption requirements according to the regional environmental requirements and the operating energy consumption requirements;

[0193] The operation regulation requirement corresponding to the target device is determined according to the first operation regulation requirement, the second operation regulation requirement, the first weight coefficient, and the second weight coefficient.

[0194] It can be seen that this optional embodiment can determine the first operation and control demand for the target device according to the expected environmental parameters of the target area, which can improve the accuracy of determining the first operation and control demand, and judge whether the target device meets the preset energy consumption exceeding condition according to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters to obtain the exceeding judgment result, and determine the second operation and control demand for the target device according to the exceeding judgment result, which can improve the accuracy of determining the second operation and control demand, and then determine the first weight coefficient corresponding to the first operation and control demand and the second weight coefficient corresponding to the second operation and control demand according to the obtained regional environmental requirements and operation energy consumption requirements corresponding to the user, which can improve the accuracy and reliability of determining the weight coefficients corresponding to each operation and control demand, and then determine the operation and control demand corresponding to the target device according to the first operation and control demand, the second operation and control demand, the first weight coefficient and the second weight coefficient, which can improve the accuracy and reliability of determining the operation and control demand corresponding to the target device.

[0195] In this optional embodiment, as an optional implementation, the determination module 305 determines the second operation control requirement for the target device according to the exceeding standard judgment result, which may specifically include:

[0196] When the result of the over-standard judgment is that the target device currently does not meet the energy consumption over-standard condition, the prior operation regulation demand of the target device for the prior energy consumption parameter is obtained and determined as the second operation regulation demand for the target device, the prior energy consumption parameter is the energy consumption parameter corresponding to the target device before the future time period, and the prior operation regulation demand is the operation regulation demand corresponding to the target device before the future time period;

[0197] When the result of the over-limit judgment is that the target device currently meets the energy consumption over-limit condition, an energy consumption range matching the expected energy consumption parameters is determined;

[0198] According to the energy consumption range that matches the expected energy consumption parameter, an energy consumption control strategy that matches the expected energy consumption parameter is selected from one or more pre-set energy consumption control strategies;

[0199] According to the energy consumption control strategy, the acquired prior operation control demand is adjusted to obtain the adjusted prior operation control demand, and the adjusted prior operation control demand is determined as the second operation control demand for the target device.

[0200] It can be seen that this optional implementation method can directly determine the acquired prior operation regulation demand of the target device for the prior energy consumption parameter as the second operation regulation demand for the target device when the result of the over-standard judgment is that the target device currently does not meet the energy consumption over-standard condition, thereby improving the determination speed and efficiency of the second operation regulation demand, and automatically determine the energy consumption interval matching the expected energy consumption parameter when the result of the over-standard judgment is that the target device currently meets the energy consumption over-standard condition, and select the energy consumption regulation strategy matching the expected energy consumption parameter from one or more pre-set energy consumption regulation strategies according to the energy consumption interval matching the expected energy consumption parameter, thereby improving the selection accuracy of the energy consumption regulation strategy matching the expected energy consumption parameter, and then adjust the prior operation regulation demand according to the accurately selected energy consumption regulation strategy to obtain the adjusted prior operation regulation demand, thereby improving the adjustment accuracy of the prior operation regulation demand, and then determine the accurately adjusted prior operation regulation demand as the second operation regulation demand for the target device, thereby improving the determination accuracy and reliability of the second operation regulation demand, and thereby facilitating the improvement of the diversity and flexibility of the determination method of the second operation regulation demand based on the diversity of over-standard judgment results.

[0201] In this optional embodiment, as another optional implementation, the determination module 305 determines whether the target device meets the preset energy consumption exceeding standard condition according to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and the specific library of the method of obtaining the exceeding standard judgment result includes:

[0202] According to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, determining whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter;

[0203] When it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, it is determined that the target device currently does not meet the preset energy consumption exceeding standard condition;

[0204] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, it is determined that the target device currently meets the preset energy consumption exceeding standard condition; or,

[0205] When it is determined that the expected energy consumption value is greater than the standard energy consumption value, the energy consumption difference between the expected energy consumption value and the standard energy consumption value is calculated, and the over-standard judgment result is determined based on the energy consumption difference.

[0206] It can be seen that this optional implementation method can determine whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter based on the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and when it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, directly determine that the target device currently does not meet the preset energy consumption exceeding standard condition, thereby improving the determination speed and efficiency of the target device currently not meeting the preset energy consumption exceeding standard condition, and when it is determined that the expected energy consumption value is greater than the standard energy consumption value, choose to directly determine that the target device currently meets the preset energy consumption exceeding standard condition, thereby improving the determination speed and efficiency of the target device currently meeting the preset energy consumption exceeding standard condition, or choose to first calculate the energy consumption difference between the expected energy consumption value and the standard energy consumption value, and then determine the exceeding standard judgment result based on the energy consumption difference, thereby improving the accuracy and reliability of the judgment of whether the target device currently meets the preset energy consumption exceeding standard condition, and when it is determined that the expected energy consumption value is greater than the standard energy consumption value, improve the flexibility of the judgment of whether the target device currently meets the preset energy consumption exceeding standard condition.

[0207] In this optional implementation, the determination module 305 may determine the exceeding-standard judgment result according to the energy consumption difference value in a manner that specifically includes:

[0208] Determine whether the energy consumption difference is less than or equal to a preset energy consumption difference;

[0209] When it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, it is determined that the target device currently does not meet the energy consumption exceeding standard condition;

[0210] When it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition.

[0211] It can be seen that this optional implementation method can also choose to further determine whether the energy consumption difference between the expected energy consumption value and the standard energy consumption value is less than or equal to the preset energy consumption difference when it is determined that the expected energy consumption value is greater than the standard energy consumption value, and only when it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, it is determined that the target device currently does not meet the energy consumption exceeding standard condition, thereby improving the accuracy and reliability of determining that the target device currently does not meet the energy consumption exceeding standard condition, and only when it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition, thereby improving the accuracy and reliability of determining that the target device currently meets the energy consumption exceeding standard condition.

[0212] In another optional embodiment, the prediction module 302 predicts the operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and the method of obtaining the expected operation result corresponding to the target device specifically includes:

[0213] Based on the parameter prediction device, according to the initial operating parameters of the target device, the environmental parameters of the target area under the operating control of the target device and after a preset future time period are predicted as the expected environmental parameters of the target area; and / or,

[0214] According to the initial operating parameters and the preset operating energy consumption relationship coefficient, the energy consumption parameters of the target device in the future time period are predicted to obtain the expected energy consumption parameters corresponding to the target device.

[0215] It can be seen that this optional embodiment can predict the environmental parameters of the target area under the operation control of the target device and after a preset future time period based on the initial operating parameters of the target device based on the parameter prediction device, and use them as the expected environmental parameters of the target area. This can improve the prediction accuracy of the expected environmental parameters of the target area, and predict the energy consumption parameters of the target device in the future time period based on the initial operating parameters and the preset operating energy consumption relationship coefficient to obtain the expected energy consumption parameters corresponding to the target device, which can improve the prediction accuracy of the target expected energy consumption parameters, and is conducive to improving the accuracy and diversity of the expected operating results corresponding to the target device.

[0216] In another optional embodiment, the determination module 303 determines whether the target device meets the preset device operation condition according to the expected operation result, which may specifically include:

[0217] According to the expected environmental parameters included in the expected operation results, it is determined whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system, which is recorded as the first condition; or,

[0218] Based on the parameter collection equipment, the actual environmental parameters of the target area are collected;

[0219] Compare the actual environmental parameters of the target area with the expected environmental parameters in the expected operation results to obtain an environmental parameter comparison result;

[0220] Determine the degree of environmental control of the target device for the target area based on the environmental parameter comparison results;

[0221] According to the environmental control degree of the target device for the target area, determining whether the environmental control degree is within a preset environmental control degree range, which is recorded as the second condition;

[0222] When at least one of the first condition and the second condition is met, it is determined that the target device meets the preset device operating condition.

[0223] It can be seen that this optional embodiment can judge whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system based on the expected environmental parameters included in the expected operating results, which is recorded as the first condition; and based on the parameter acquisition device, the current actual environmental parameters of the target area are collected, and the actual environmental parameters are compared with the expected environmental parameters to obtain the environmental parameter comparison results, which can improve the accuracy of the comparison between the actual environmental parameters and the expected environmental parameters. Subsequently, according to the environmental parameter comparison results, the environmental control degree of the target device for the target area is determined, which can improve the accuracy of determining the environmental control degree corresponding to the target device. Then, based on the accurately determined environmental control degree, it is judged whether the environmental control degree is in the preset range, which is recorded as the second condition. Whether the expected environmental parameters meet the operating environment requirements or whether the environmental control degree is in the preset degree range can improve the accuracy, diversity and flexibility of judging whether the target device meets the preset device operating conditions.

[0224] Embodiment 4

[0225] See also Figure 4 , Figure 4 FIG. 1 is a schematic diagram of the structure of another regional equipment operation control device based on a photovoltaic storage and charging microgrid system disclosed in an embodiment of the present invention. Figure 4 As shown, the regional equipment operation control device based on the photovoltaic storage and charging microgrid system may include:

[0226] A memory 401 storing executable program codes;

[0227] a processor 402 coupled to the memory 401;

[0228] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the regional equipment operation control method based on the photovoltaic storage and charging microgrid system described in the first embodiment of the present invention or the second embodiment of the present invention.

[0229] Embodiment 5

[0230] An embodiment of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the steps in the regional equipment operation control method based on the photovoltaic storage and charging microgrid system described in Embodiment 1 or Embodiment 2 of the present invention.

[0231] Embodiment 6

[0232] An embodiment of the present invention 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 enable a computer to execute the steps in the regional equipment operation control method based on a photovoltaic storage and charging microgrid system described in Example 1 or Example 2.

[0233] The device embodiments described above are only illustrative, wherein the modules described as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical modules, i.e., they may be located in one place, or they may be distributed on multiple network modules. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Those of ordinary skill in the art may understand and implement it without creative work.

[0234] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on such an understanding, the above technical solution can be essentially or partly contributed to the prior art in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, and the storage medium 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 electronically erasable rewritable read-only memory (EEPROM), a compact disc (CD-ROM) or other optical disc storage, magnetic disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.

[0235] Finally, it should be noted that the regional equipment operation control method and device based on the photovoltaic storage and charging microgrid system disclosed in the embodiment of the present invention discloses only the preferred embodiment of the present invention, which is only used to illustrate the technical solution of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that it is still possible to modify the technical solutions recorded in the aforementioned embodiments, or to replace some of the technical features therein by equivalents. However, 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 various embodiments of the present invention.

Claims

1. A regional equipment operation control method based on a photovoltaic storage and charging microgrid system, characterized in that: The method comprises: Acquire initial operating parameters of a target device in a target area where the photovoltaic storage and charging microgrid system is located, wherein the target device is a device capable of controlling environmental parameters of the target area; According to the initial operating parameters of the target device, predict the operating result of the target device after a preset future time period, and obtain the expected operating result corresponding to the target device, wherein the expected operating result includes the expected environmental parameters of the target area; the expected operating result corresponding to the target device also includes the expected energy consumption parameters corresponding to the target device; According to the expected operation result, determining whether the target device meets the preset device operation condition; When it is determined that the target device meets the device operation condition, controlling the target device to operate according to the initial operation parameters; When it is determined that the target device does not meet the device operating condition, determining the operation control requirement corresponding to the target device according to the expected operation result; According to the operation regulation requirement, the initial operation parameters are regulated to obtain target operation parameters of the target device, and the target device is controlled to operate according to the target operation parameters; Wherein, determining the operation control requirements corresponding to the target device according to the expected operation result includes: Determining a first operation control requirement for the target device according to the expected environmental parameters of the target area; According to the expected energy consumption parameters of the target device and the preset standard energy consumption parameters, determine whether the target device meets the preset energy consumption exceeding standard condition, and obtain an exceeding standard determination result; Determining a second operation control requirement for the target device according to the exceeding-standard judgment result; Obtaining a user's regional environmental requirement for the target area and a user's operating energy consumption requirement for the target device, and determining, based on the regional environmental requirement and the operating energy consumption requirement, a first weight coefficient corresponding to the first operating regulation requirement under the regional environmental requirement and a second weight coefficient corresponding to the second operating regulation requirement under the operating energy consumption requirement; The operation regulation requirement corresponding to the target device is determined according to the first operation regulation requirement, the second operation regulation requirement, the first weight coefficient, and the second weight coefficient.

2. The regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to claim 1 is characterized in that: Determining a second operation regulation requirement for the target device according to the exceeding-standard judgment result includes: When the result of the exceeding standard judgment is that the target device currently does not meet the energy consumption exceeding standard condition, the prior operation regulation demand of the target device for the prior energy consumption parameter obtained is determined as the second operation regulation demand for the target device, the prior energy consumption parameter is the energy consumption parameter corresponding to the target device before the future time period, and the prior operation regulation demand is the operation regulation demand corresponding to the target device before the future time period; When the exceeding-standard judgment result is that the target device currently meets the energy consumption exceeding-standard condition, determining an energy consumption interval that matches the expected energy consumption parameter; According to the energy consumption range that matches the expected energy consumption parameter, select an energy consumption control strategy that matches the expected energy consumption parameter from one or more pre-set energy consumption control strategies; According to the energy consumption regulation strategy, the acquired prior operation regulation demand is adjusted to obtain an adjusted prior operation regulation demand, and the adjusted prior operation regulation demand is determined as a second operation regulation demand for the target device.

3. The regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to claim 1 or 2 is characterized in that: The step of determining whether the target device meets a preset energy consumption exceeding standard condition based on the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, and obtaining an exceeding standard determination result, includes: According to the expected energy consumption parameter of the target device and the preset standard energy consumption parameter, determining whether the expected energy consumption value represented by the expected energy consumption parameter is less than or equal to the standard energy consumption value represented by the standard energy consumption parameter; When it is determined that the expected energy consumption value is less than or equal to the standard energy consumption value, determining that the target device currently does not meet a preset energy consumption exceeding standard condition; When it is determined that the expected energy consumption value is greater than the standard energy consumption value, determining that the target device currently meets a preset energy consumption exceeding standard condition; or, When it is determined that the expected energy consumption value is greater than the standard energy consumption value, the energy consumption difference between the expected energy consumption value and the standard energy consumption value is calculated, and the over-standard judgment result is determined based on the energy consumption difference.

4. The regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to claim 3 is characterized in that: Determining the exceeding-standard judgment result according to the energy consumption difference includes: Determining whether the energy consumption difference is less than or equal to a preset energy consumption difference; When it is determined that the energy consumption difference is less than or equal to the preset energy consumption difference, determining that the target device currently does not meet the energy consumption exceeding standard condition; When it is determined that the energy consumption difference is greater than the preset energy consumption difference, it is determined that the target device currently meets the energy consumption exceeding standard condition.

5. The regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to any one of claims 1, 2 and 4, characterized in that: The step of predicting the operation result of the target device after a preset future time period according to the initial operation parameters of the target device to obtain the expected operation result corresponding to the target device includes: Based on the parameter prediction device, according to the initial operating parameters of the target device, the environmental parameters of the target area under the operating control of the target device and after a preset future time period are predicted as the expected environmental parameters of the target area; and / or, According to the initial operating parameters and the preset operating energy consumption relationship coefficient, the energy consumption parameters of the target device in the future time period are predicted to obtain the expected energy consumption parameters corresponding to the target device.

6. The regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to claim 5 is characterized in that: The determining, according to the expected operation result, whether the target device meets a preset device operation condition includes: According to the expected environmental parameters included in the expected operation result, it is determined whether the expected environmental parameters meet the preset operating environment requirements of the photovoltaic storage and charging microgrid system, which is recorded as the first condition; or, Based on the parameter collection device, collect the current actual environmental parameters of the target area; Comparing the actual environmental parameters of the target area with the expected environmental parameters in the expected operation result to obtain an environmental parameter comparison result; Determining the degree of environmental control of the target device for the target area according to the environmental parameter comparison result; According to the environmental control degree of the target device for the target area, determining whether the environmental control degree is within a preset environmental control degree range, which is recorded as a second condition; When at least one of the first condition and the second condition is met, it is determined that the target device meets a preset device operating condition.

7. A regional equipment operation control device based on a photovoltaic storage and charging microgrid system, characterized in that: The device is used to execute the regional equipment operation control method based on the photovoltaic storage and charging microgrid system according to any one of claims 1 to 6, and the device includes: An acquisition module is used to acquire initial operating parameters of a target device in a target area where the photovoltaic storage and charging microgrid system is located, wherein the target device is a device capable of controlling environmental parameters of the target area; A prediction module, configured to predict an operation result of the target device after a preset future time period according to the initial operation parameters of the target device, and obtain an expected operation result corresponding to the target device, wherein the expected operation result includes an expected environmental parameter of the target area; A judgment module, used to judge whether the target device meets the preset device operation conditions according to the expected operation result; a control module, configured to control the target device to operate according to the initial operating parameters when the determination module determines that the target device meets the device operating conditions; A determination module, configured to determine, when the determination module determines that the target device does not meet the device operation condition, an operation control requirement corresponding to the target device according to the expected operation result; The control module is further used to adjust the initial operating parameters according to the operation regulation requirements, obtain the target operating parameters of the target device, and control the target device to operate according to the target operating parameters.

8. A regional equipment operation control device based on a photovoltaic storage and charging microgrid system, characterized in that: The device comprises: A memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the regional equipment operation control method based on the photovoltaic storage and charging microgrid system as described in any one of claims 1-6.

9. A computer storage medium, characterized in that The computer storage medium stores computer instructions, which, when called, are used to execute the regional equipment operation control method based on the photovoltaic storage and charging microgrid system as described in any one of claims 1 to 6.

Citation Information

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