Power demand response adjusting method and device, computer device and storage medium
By setting up a demand response device between the electrical equipment and the power line connection, the real-time operating parameters of the electrical equipment are acquired and analyzed, and adjustment commands are generated. This solves the problem of the inability to accurately control electrical equipment in the existing technology and realizes intelligent and rapid demand response adjustment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-25
- Publication Date
- 2026-03-17
AI Technical Summary
Existing demand-side response control methods cannot accurately regulate users' electrical equipment, nor can they adjust responses based on the actual conditions of the electrical equipment.
By setting up a demand response device between the wiring terminals of the electrical equipment and the power line connection, the real-time operating parameters of the electrical equipment are obtained, the real-time response power is analyzed, and the demand response adjustment command is generated by comparing the adjustable total response power of the power supply end with the preset response power to precisely adjust the electrical equipment.
It enables precise demand response adjustment of electrical equipment, improves the intelligence and speed of the adjustment process, ensures user experience, and prevents equipment damage during the adjustment process.
Smart Images

Figure CN114565269B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of power regulation technology, and in particular to a power demand response regulation method, device, computer equipment, storage medium and computer program product. Background Technology
[0002] With the deepening of power market reform and the further promotion of the concept of energy internet, demand-side response has become an effective method for addressing the imbalance between power supply and demand in the field of intelligent power regulation.
[0003] Demand-side response refers to the behavior of electricity users who, when faced with threats to the reliability of the power grid system or rising electricity market prices, change their habitual electricity consumption patterns after receiving direct compensation notices from power suppliers to reduce their load or signals of rising electricity prices. This reduces or shifts their electricity load during a certain period in response to the power supply, thereby ensuring grid stability and suppressing short-term behaviors that could lead to rising electricity prices.
[0004] However, most current demand-side response control methods can only perform macro-level control and cannot differentiate between users' electrical equipment, let alone accurately control the electrical equipment based on its actual situation. Summary of the Invention
[0005] Therefore, it is necessary to provide a power demand response regulation method, device, computer equipment, storage medium, and computer program product that can accurately regulate the demand response of electrical equipment, addressing the aforementioned technical problems.
[0006] In a first aspect, this application provides a power demand response regulation method, applied to a demand response device, wherein the demand response device is disposed between the wiring terminals of the electrical equipment and the power line wiring, the method comprising:
[0007] Obtain the real-time operating parameters of the electrical equipment;
[0008] The real-time operating parameters are analyzed to obtain the real-time response power of the electrical equipment.
[0009] The real-time response power is sent to the power supply end, and the first demand response adjustment command is returned by the power supply end when the adjustment demand is met by comparing the adjustable total response power of the power user unit with the preset response power. The adjustable total response power of the power user unit is determined according to each of the real-time response power.
[0010] Based on the first demand response adjustment command, the electrical equipment is adjusted to meet demand response requirements.
[0011] In one embodiment, the first demand response adjustment command includes the preset response power amount;
[0012] The step of adjusting the demand response of the electrical equipment based on the first demand response adjustment command includes:
[0013] Based on the preset response power and the type of the electrical equipment, the electrical equipment is adjusted to meet demand.
[0014] In one embodiment, adjusting the demand response of the electrical equipment according to the preset response power amount and the type of the electrical equipment includes:
[0015] If the electrical equipment is an adjustable device, then the electrical equipment is adjusted to meet demand based on the preset response power.
[0016] In one embodiment, the method further includes:
[0017] If the real-time response power of the adjustable device reaches a preset adjustment threshold, then the demand response adjustment of the adjustable device is stopped.
[0018] The demand response adjustment result is generated based on the adjusted amount of the adjustable device.
[0019] The demand response adjustment result is sent to the power supply end.
[0020] In one embodiment, adjusting the demand response of the electrical equipment according to the preset response power amount and the type of the electrical equipment further includes:
[0021] Receive a second demand response adjustment command fed back by the power supply terminal after it has adjusted the demand response of all adjustable devices within the range of the power consumption unit;
[0022] If the electrical equipment is a non-adjustable device, then in response to the second demand response adjustment command, the non-adjustable device is adjusted according to its on / off state.
[0023] In one embodiment, the method further includes:
[0024] The real-time adjustment response power of the electrical equipment is sent to the power supply terminal;
[0025] The system receives a response adjustment completion command generated by the power supply terminal when the real-time total adjustment response power reaches the preset response power; the real-time total adjustment response power is generated based on the real-time adjustment response power of the electrical equipment.
[0026] According to the response adjustment completion instruction, the demand response adjustment of the electrical equipment is stopped.
[0027] In one embodiment, the first demand response adjustment command includes the adjustment response power amount of the electrical equipment;
[0028] The step of adjusting the demand response of the electrical equipment based on the first demand response adjustment command includes:
[0029] The electrical equipment is adjusted to meet demand based on the adjusted response power.
[0030] Secondly, this application also provides a power demand response regulation method applied at the power supply end, the method comprising:
[0031] Receive the real-time response power of each electrical device sent by each demand response device; the real-time response power is obtained by analyzing the real-time operating parameters of the electrical device.
[0032] The adjustable total response power of the power-consuming unit is determined based on the real-time response power of each of the aforementioned units;
[0033] The adjustable total response power is compared with the preset response power.
[0034] When it is determined from the comparison results that the power consumption unit meets the regulation requirements, a first demand response regulation command is generated.
[0035] The first demand response adjustment instruction is sent to each of the demand response devices, and the first demand response adjustment instruction instructs each of the demand response devices to perform demand response adjustment on each of the electrical devices.
[0036] In one embodiment, comparing the adjustable total response power with a preset response power includes:
[0037] If the adjustable total response power is greater than the preset response power, then the electrical equipment is determined to meet the adjustment requirements.
[0038] In one embodiment, the method further includes:
[0039] Receive the demand response adjustment results returned by the demand response devices corresponding to all adjustable devices within the scope of the power consumption unit;
[0040] Based on the demand response adjustment results and the preset response power, a second demand response adjustment command is generated and sent to each of the demand response devices.
[0041] In one embodiment, the method further includes:
[0042] Receive the real-time adjustment response power amount returned by each of the aforementioned demand response devices;
[0043] The total real-time regulation response power of the power user unit is calculated based on the real-time regulation response power.
[0044] The real-time total adjustment response power is compared with the preset response power. When the real-time total adjustment response power reaches the preset response power, a response adjustment completion command is generated and sent to each of the demand response adjustment devices. The response adjustment completion command instructs each of the demand response devices to stop demand response adjustment of the electrical equipment.
[0045] In one embodiment, the first demand response adjustment command includes the adjustment response power amount of the electrical equipment;
[0046] When it is determined from the comparison results that the electricity user meets the adjustment requirements, a first demand response adjustment command is generated, including:
[0047] When it is determined from the comparison structure that the power consumption unit meets the adjustment requirements, the adjustment response power corresponding to each power consumption device is calculated based on the preset response power and the real-time response power and performance parameters of each power consumption device.
[0048] Based on the aforementioned adjustment response power amount, a corresponding first demand response adjustment command is generated;
[0049] Each of the first demand response adjustment instructions is sent to the corresponding demand response device, and each of the first demand response adjustment instructions instructs the demand response device to adjust the demand response of the electrical equipment.
[0050] Secondly, this application also provides an electricity demand response regulation device, the device comprising:
[0051] The real-time operating parameter acquisition module is used to acquire the real-time operating parameters of electrical equipment;
[0052] The real-time operating parameter analysis module is used to analyze the real-time operating parameters to obtain the real-time response power of the electrical equipment.
[0053] A real-time response power quantity transmission module is used to send the real-time response power quantity to the power supply end, and receive a first demand response adjustment command returned by the power supply end when the adjustment demand is determined by comparing the adjustable total response power quantity of the power consumption unit with the preset response power quantity; the adjustable total response power quantity of the power consumption unit is determined according to each of the real-time response power quantities.
[0054] The demand response adjustment module is used to adjust the demand response of the electrical equipment based on the first demand response adjustment command.
[0055] Thirdly, this application also provides a computer device, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps of the above-described method.
[0056] Fourthly, this application also provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the above-described method.
[0057] Fifthly, this application also provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the above-described method.
[0058] The aforementioned power demand response regulation method, apparatus, computer equipment, storage medium, and computer program products are applied to a demand response device installed between the terminal block of the electrical equipment and the power supply line. This ensures a one-to-one correspondence between the demand response device and the electrical equipment. When demand response regulation is required, the demand response device analyzes the real-time operating parameters of the electrical equipment to obtain its real-time response power, reflecting the actual operating status of the equipment. The power supply side compares the adjustable total response power of the power user with the preset response power. If the comparison result meets the regulation requirements, a first demand response regulation command is returned. The demand response device then performs demand response regulation on the electrical equipment based on the first demand response regulation command. Since the adjustable total response power of the power user is determined based on the real-time response power of the electrical equipment, demand response regulation can be performed based on the actual situation of the electrical equipment, making the entire demand response regulation process more accurate and rapid. Attached Figure Description
[0059] Figure 1 This is a diagram illustrating the application environment of the power demand response regulation method in one embodiment;
[0060] Figure 2 This is a structural block diagram of a demand response device in one embodiment;
[0061] Figure 3 This is a flowchart illustrating a power demand response regulation method in one embodiment;
[0062] Figure 4 This is a flowchart illustrating the power demand response regulation method in another embodiment;
[0063] Figure 5This is a flowchart illustrating the power demand response regulation method in another embodiment;
[0064] Figure 6 This is a flowchart illustrating the step of generating a first demand response adjustment command when it is determined from the comparison results that the power consumption unit meets the adjustment requirements in one embodiment.
[0065] Figure 7 This is a structural block diagram of a power demand response regulation device in one embodiment;
[0066] Figure 8 This is an internal structural diagram of a computer device in one embodiment. Detailed Implementation
[0067] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0068] The power demand response regulation method provided in this application embodiment can be applied to, for example, Figure 1 In the application environment shown, the demand response device 102 is positioned between the wiring terminals of the electrical device 104 and the power supply line. The demand response device 102 communicates with both the electrical device 104 and the power supply terminal 106 via an internal communication module. A data storage system can store the data that the demand response device 102 needs to process. The data storage system is integrated into the demand response device 102. Specifically, the demand response device 102 acquires the real-time operating parameters of the electrical device 104; analyzes the real-time operating parameters to obtain the real-time response power of the electrical device 104; sends the real-time response power to the power supply terminal 106; and receives a first demand response adjustment command from the power supply terminal 106 when the adjustable total response power of the electrical device is compared with a preset response power to determine if the adjustment requirement is met. The adjustable total response power of the electrical device is determined based on each real-time response power. Based on the first demand response adjustment command, the demand response device 102 adjusts the demand response of the electrical device 104.
[0069] Among them, the electrical equipment 104 can be any type of electrical appliance, such as an air conditioner, refrigerator, washing machine, etc. The power supply end 106 can be an electricity meter.
[0070] Understandably, the demand response device 102 can be built into the wiring terminal of the electrical equipment, integrated with the wiring terminal as a whole, with another interface connected to the power cord interface, depending on actual needs; or it can be externally placed between the power socket and the wiring terminal of the electrical equipment, with one interface connected to the wiring terminal of the electrical equipment 104 and the other interface connected to the power cord interface. This application does not limit this.
[0071] In one embodiment, such as Figure 2 As shown, the demand response device 102 is equipped with a controller, a communication module, and an interface module.
[0072] The controller is used to monitor the operating parameters of the electrical equipment 104 in real time, analyze the operating parameters, and control the electrical equipment 104 to adjust its demand response according to the demand response requirements of the power supply terminal 106. It is understood that the controller can be any chip or electronic device with microprocessor capabilities, such as a central processing unit or microcontroller.
[0073] The communication module is used to enable information exchange between the controller and the external electrical equipment 104 and the power supply terminal 106. For example, the controller uses the communication module to monitor the operating parameters of the electrical equipment 104, receive demand response requests from the power supply terminal 106, and reply to the power supply terminal 106 with the status information of the electrical equipment 104. It is understood that the communication module can meet various communication needs and does not limit the communication method between the electrical equipment 104 and the power supply terminal 106, such as wireless communication or carrier communication.
[0074] The interface module is used to set the corresponding communication method and configuration protocol according to the needs of the electrical equipment 104 and the power supply terminal 106, so that the demand response device can be compatible with various electrical equipment using different interface methods.
[0075] In one embodiment, such as Figure 3 As shown, a power demand response regulation method is provided, which can be applied to... Figure 1 Taking demand response device 102 as an example, the following steps are included:
[0076] Step 302: Obtain the real-time operating parameters of the electrical equipment.
[0077] Electrical equipment refers to equipment that consumes electricity. For example, in a household, electrical equipment could include appliances such as air conditioners, televisions, and washing machines.
[0078] Among them, the real-time operating parameters of electrical equipment refer to the parameters generated in real time during the operation of the electrical equipment that can reflect the operating status of the electrical equipment. When the electrical equipment is an air conditioner, the real-time operating parameters can be the air conditioner's operating voltage, operating current, operating power, operating temperature, and power monitoring values, etc.
[0079] Specifically, the demand response device obtains real-time operating parameters that reflect the operating status of electrical equipment through the communication module.
[0080] Step 304: Analyze the real-time operating parameters to obtain the real-time response power of the electrical equipment.
[0081] Among them, power is a value used to reflect the amount of electricity consumed by electrical equipment. Real-time response power is the amount of power responded by electrical equipment when it is in its current operating state, and can be used to reflect the amount of electricity consumed by electrical equipment when it is in its current operating state.
[0082] The real-time response power of the electrical equipment can be obtained by analyzing the real-time operating parameters using the response power calculation formula, or by processing the real-time operating parameters and comparing them with historical processed data. This application does not limit this approach.
[0083] Specifically, the demand response equipment analyzes the real-time operating parameters of the acquired electrical equipment to obtain the real-time response power of the electrical equipment.
[0084] In one embodiment, analyzing real-time operating parameters to obtain the real-time response power of the electrical equipment includes: generating a current operating trend curve of the electrical equipment based on the real-time operating parameters, comparing the current operating trend curve with historical operating trend curves, and obtaining the real-time response power of the electrical equipment.
[0085] The historical operating trend curves are pre-stored in a database and reflect the historical operating status and response power of the electrical equipment. Specifically, by comparing the current operating trend curve generated based on real-time operating parameters with the historical operating trend curves, the real-time response power of the electrical equipment can be obtained.
[0086] Step 306: Send the real-time response power quantity to the power supply end, and receive the first demand response adjustment command returned by the power supply end when the adjustable total response power quantity of the power user unit is determined to meet the adjustment requirements by comparing it with the preset response power quantity; the adjustable total response power quantity of the power user unit is determined according to each real-time response power quantity.
[0087] The preset response power level refers to the required response power level for the power-consuming unit corresponding to the power supply end within a preset time period. It can be understood that the preset response power level is set and issued by the power supply center based on the historical response power levels of the power-consuming unit corresponding to the power supply end.
[0088] The adjustable total response power refers to the adjustable response power of all electrical devices in the power-consuming unit corresponding to the power supply end at the current moment. Specifically, the adjustable total response power of the power-consuming unit is determined based on the real-time response power of all electrical devices in the power-consuming unit.
[0089] Specifically, the demand response device sends the calculated real-time response power to the power supply end and receives the first demand response adjustment command returned by the power supply end. This first demand response adjustment command is returned by the power supply end when it determines that the adjustment demand is met by comparing the adjustable total response power of the power user unit with the preset response power. The adjustable total response power of the power user unit is determined based on the real-time response power of each power user device.
[0090] Step 308: Based on the first demand response adjustment instruction, perform demand response adjustment on the electrical equipment.
[0091] Specifically, the demand response equipment adjusts the demand response of the electrical equipment based on the first demand response adjustment command sent by the power supply.
[0092] In the aforementioned power demand response regulation method, demand response equipment corresponds one-to-one with electrical equipment. When demand response regulation of electrical equipment is required, the demand response equipment analyzes the real-time operating parameters of the electrical equipment to obtain the real-time response power, which reflects the actual operating status of the electrical equipment. The power supply end compares the adjustable total response power of the power user with the preset response power. If the comparison result meets the regulation requirements, it returns a first demand response regulation command. The demand response equipment then performs demand response regulation on the electrical equipment based on the first demand response regulation command. Since the adjustable total response power of the power user is determined based on the real-time response power of the electrical equipment, demand response regulation can be performed based on the actual situation of the electrical equipment, making the entire demand response regulation process more accurate and rapid.
[0093] In one embodiment, the first demand response adjustment instruction includes a preset response power amount; based on the first demand response adjustment instruction, demand response adjustment of the electrical equipment includes: adjusting the demand response of the electrical equipment according to the preset response power amount and the type of the electrical equipment.
[0094] Among them, the types of electrical equipment can be classified according to the magnitude of the response power of the electrical equipment, which can be divided into high-power type and low-power type, or according to whether the response power of the electrical equipment can be adjusted, which can be divided into adjustable electrical equipment and non-adjustable electrical equipment.
[0095] Specifically, the first demand response adjustment command returned by the power supply includes a preset response power amount. When the demand response device receives the first demand response adjustment command, it adjusts the demand response of the electrical equipment according to the preset response power amount in the command and the type of the corresponding electrical equipment. Adjusting the demand response of the electrical equipment based on its type and the preset response power amount allows for more precise adjustment, taking into account the actual situation of the electrical equipment and tailoring the adjustment to its type.
[0096] In one embodiment, demand response adjustment of the electrical equipment is performed according to a preset response power amount and the type of electrical equipment, including: if the electrical equipment is an adjustable device, then demand response adjustment of the electrical equipment is performed according to the preset response power amount.
[0097] If the rated power of an electrical device during operation is within a range, then the electrical device is defined as an adjustable electrical device.
[0098] Specifically, when a demand response device determines that its corresponding electrical equipment is adjustable, it means that adjusting the equipment according to a preset response power level will not significantly impact the user experience due to the adjustability of the equipment. The demand response device adjusts the electrical equipment according to the preset response power level.
[0099] The method in this embodiment determines that the electrical equipment is adjustable before adjusting it according to demand response, which ensures that the adjustment process will not have a significant impact on the user's use, improves the user's electricity experience, and makes the entire demand response adjustment process more intelligent.
[0100] In one embodiment, the demand response adjustment method further includes: if the real-time response power of the adjustable device reaches a preset adjustment threshold, stopping the demand response adjustment of the adjustable device; generating a demand response adjustment result based on the adjusted amount of the adjustable device; and sending the demand response adjustment result to the power supply end.
[0101] The preset adjustment threshold is the maximum adjustable value that the adjustable device can reach when adjusting its demand response. It can be understood that the preset adjustment threshold is generated based on the rated power range of the adjustable electrical equipment. Specifically, adjustable electrical equipment must operate within its rated power range during use. Exceeding the upper limit of the rated power will greatly increase the probability of damage to the equipment; if it falls below the lower limit, the equipment will not function properly. Since the rated power of adjustable electrical equipment is generally a range, the preset adjustment threshold can also include two values: an upper limit and a lower limit. When adjusting the adjustable electrical equipment, the real-time response power of the adjustable equipment must not exceed the adjustment range formed by the upper and lower limits of the preset adjustment threshold.
[0102] Specifically, a preset adjustment threshold is set based on the rated power of the adjustable electrical equipment. This preset threshold is pre-stored in the demand response device's data repository. When demand response adjustment is performed on the electrical equipment, if the real-time response power of the adjustable equipment reaches the upper or lower limit of the preset adjustment threshold, the demand response adjustment is stopped. This prevents the electrical equipment from malfunctioning or being damaged due to over-adjustment. Taking a household electric oven as an example, the rated power of a household electric heater is 1000-3000W. Based on its rated power range, the upper limit of its preset adjustment threshold can be set to 2900W, and the lower limit to 1100W. Therefore, the adjustment range of the household electric heater is [1100W, 2900W]. When demand response adjustment of the electric heater is required, if the real-time response power of the electric heater reaches 1100W or 2900W, the demand response adjustment is stopped to prevent damage or malfunction due to over-adjustment.
[0103] After stopping demand response adjustment, the demand response equipment generates demand response adjustment results based on the adjusted amount of the adjustable equipment, and sends the demand response adjustment results to the power supply end to inform the power supply end of the adjustment status of the adjustable equipment at this time.
[0104] In one embodiment, adjusting the demand response of the electrical equipment according to the preset response power and the type of electrical equipment further includes: receiving a second demand response adjustment instruction fed back by the power supply end after adjusting the demand response of all adjustable equipment within the range of the power consumption unit; if the electrical equipment is non-adjustable, responding to the second demand response adjustment instruction, adjusting the demand response of the non-adjustable equipment according to the on / off state of the non-adjustable equipment.
[0105] Among them, non-adjustable equipment refers to electrical equipment that operates at a fixed power level. If you want to adjust its operating power, you can only do so by adjusting the on / off state of the electrical equipment.
[0106] In this context, "all adjustable electrical devices within an electricity-consuming unit" refers to all adjustable electrical devices included in the electricity-consuming unit corresponding to the power supply end. For example, when the electricity-consuming unit is a household, the adjustable electrical devices could be household appliances such as air conditioners, electric ovens, and electric heaters.
[0107] Specifically, adjustable electrical equipment has its corresponding rated power range. When the real-time response power of the adjustable electrical equipment is adjusted to its corresponding preset adjustment threshold (upper limit or lower limit), and the response power of the entire power unit still cannot meet the demand of the power supply end, the power supply end will generate a second demand response adjustment command based on the adjusted amount in the demand response adjustment results returned by all adjustable electrical equipment, and send the second demand response adjustment command to each demand response device. If the electrical equipment corresponding to the demand response device is a non-adjustable device, then the second demand response adjustment command will be responded to, and the demand response adjustment of the non-adjustable electrical equipment will be performed according to the on / off state of the non-adjustable electrical equipment.
[0108] In this example, when it is determined that all adjustable electrical devices within the power consumption unit have been adjusted to the preset adjustment threshold, if the power supply of the entire power consumption unit is still insufficient to meet the preset response power, the power supply will regenerate a demand response adjustment command. This command will then be used to adjust the non-adjustable electrical devices through the demand response equipment. Since non-adjustable devices can only be adjusted based on their on / off state, the method in this embodiment first adjusts the adjustable electrical devices. Only when the adjustable devices cannot be adjusted further are the non-adjustable devices adjusted. This avoids prioritizing powering off the non-adjustable devices, making the entire adjustment process more rational and intelligent, and effectively improving the user experience.
[0109] In one embodiment, demand response adjustment of the non-adjustable device is performed according to the on / off state of the non-adjustable device, including: when the demand response adjustment command is a reduction command and the non-adjustable electrical device is in the on state, controlling the non-adjustable electrical device to turn off.
[0110] Specifically, when the demand response device corresponding to the non-adjustable electrical equipment receives a demand response adjustment command, if the demand response adjustment command is a reduction command and the non-adjustable electrical equipment is in the on state, it controls the non-adjustable electrical equipment to turn off, thereby achieving the effect of reducing the response power of the electrical equipment.
[0111] In one embodiment, responding to a demand response adjustment command and adjusting the non-adjustable electrical equipment according to the on / off state of the non-adjustable electrical equipment, further includes: when the demand response adjustment command is an increase command and the non-adjustable electrical equipment is in a closed state, controlling the non-adjustable electrical equipment to turn on.
[0112] Specifically, when the demand response device corresponding to the non-adjustable electrical equipment receives a demand response adjustment command, if the demand response adjustment command is an increase command and the non-adjustable electrical equipment is in a closed state, it controls the non-adjustable electrical equipment to turn on, thereby increasing the response power of the electrical equipment.
[0113] In one embodiment, the demand response device can generate an on or off command for the electrical equipment and send it to the controller of the electrical equipment to control the electrical equipment to turn on or off.
[0114] In one embodiment, the demand response device is provided with a switch module, which can control the on / off state of the power line to the electrical equipment. The demand response device can directly control the non-adjustable equipment to turn on or off through the switch module.
[0115] In the above embodiments, after the adjustable electrical equipment has been adjusted, the demand response equipment can adjust the switching state of the non-adjustable equipment to meet the demand response adjustment requirements of the power supply side.
[0116] In one embodiment, the power demand response regulation method further includes:
[0117] The real-time adjustment response power of the electrical equipment is sent to the power supply end.
[0118] Specifically, the demand response device will send the real-time response power of the electrical equipment to the power supply end in real time, so that the power supply end can know the real-time response power of each electrical equipment within its corresponding power consumption unit range.
[0119] The receiver receives a response adjustment completion command generated when the real-time total adjustment response power reaches the preset response power; the real-time total adjustment response power is generated based on the real-time adjustment response power of the electrical equipment.
[0120] Upon receiving the real-time response power from each demand response device, the power supply unit calculates the corresponding total real-time regulation response power for that user unit. It then monitors the overall demand response regulation of the user unit based on this total real-time regulation response power. When the total real-time regulation response power reaches the preset response power, it indicates that the user unit's total real-time regulation response power has met the regulation requirements. The power supply unit then generates a regulation completion command and sends it to each demand response device, informing them to cease regulation.
[0121] Specifically, the demand response device receives a response adjustment completion command returned by the power supply end.
[0122] Based on the response adjustment completion instruction, stop the demand response adjustment of the electrical equipment.
[0123] Specifically, the demand response equipment determines that the demand response adjustment has been completed based on the response adjustment completion command sent by the power supply end, and stops the demand response adjustment of the electrical equipment.
[0124] In this embodiment, the demand response device provides real-time feedback to the power supply end on the response adjustment status of the electrical equipment. When the power supply end determines that the real-time total adjustment response power of its power-consuming unit has reached the preset response power, it generates a demand response adjustment completion command and sends it to the demand response device. After receiving the command, the demand response device stops adjusting the demand response of the electrical equipment. The entire adjustment process is intelligent, precise and rapid.
[0125] In practical demand response regulation, besides sending the preset response power amount directly to the demand response device so that it can adjust the power consumption according to the preset power amount, you can also send the required adjustment power amount directly to the demand response device so that it can adjust the power consumption according to the precise adjustment power amount.
[0126] In one embodiment, the first demand response adjustment instruction includes the adjustment response power amount of the electrical equipment; adjusting the demand response of the electrical equipment based on the first demand response adjustment instruction includes: adjusting the demand response of the electrical equipment according to the adjustment response power amount.
[0127] Among them, the regulating response power of electrical equipment is the response power that the electrical equipment needs to achieve in this demand response adjustment. It can be understood that the regulating response power can be calculated by the power supply end based on the preset response power, the real-time response power of each electrical device, and performance parameters.
[0128] Specifically, the first demand response adjustment command returned by the power supply end includes the adjustment response power amount of the electrical equipment. When the demand response device receives the first demand response adjustment command, it directly performs precise demand response adjustment on the electrical equipment according to the adjustment response power amount of the electrical equipment in the first demand response adjustment command.
[0129] In one embodiment, such as Figure 4 As shown, a power demand response regulation method is provided, applied at the power supply end, including the following steps:
[0130] Step 402: Receive the real-time response power of each electrical device sent by each demand response device; the real-time response power is obtained by analyzing the real-time operating parameters of the electrical devices.
[0131] Specifically, the power supply end receives the real-time response power of each electrical device sent by all demand response devices within the scope of the application unit. The real-time response power is obtained by analyzing the real-time operating parameters of the electrical devices.
[0132] Step 404: Determine the adjustable total response power of the power-consuming unit based on the real-time response power quantities.
[0133] The power supply unit stores the performance parameters of each electrical device within its corresponding power-consuming unit. Based on these performance parameters and the current real-time response power of each device, the power supply unit can calculate the adjustable response power of each device. From these adjustable response power values, the total adjustable response power of the corresponding power-consuming unit can be calculated. In essence, the power supply unit can sum these adjustable response power values to obtain the total adjustable response power of the corresponding power-consuming unit.
[0134] Specifically, the power supply end determines the adjustable total response power that the corresponding power-consuming unit can currently achieve based on the real-time response power of each power-consuming device.
[0135] Step 406: Compare the adjustable total response power with the preset response power.
[0136] The preset response power level refers to the required response power level for the power-consuming unit corresponding to the power supply end within a preset time period. It can be understood that the preset response power level is set and issued by the power supply center based on the historical response power levels of the power-consuming unit corresponding to the power supply end.
[0137] Specifically, after calculating the adjustable total response power of the power user, the power supply end needs to compare the adjustable total response power with the preset response power to determine whether the power user meets the adjustment requirements. Understandably, if the power user does not meet the adjustment requirements, the power supply end will send a "cannot adjust" command to the power supply center.
[0138] Step 408: When it is determined from the comparison results that the power consumption unit meets the regulation requirements, a first demand response regulation command is generated.
[0139] Specifically, the power supply end determines that the power consumption unit meets the adjustment requirements based on the comparison between the adjustable total response power and the preset response power, and then generates the first demand response adjustment command.
[0140] Step 410: Send the first demand response adjustment instruction to each demand response device. The first demand response adjustment instruction instructs each demand response device to adjust the demand response of each electrical device.
[0141] Specifically, the power supply end sends a first demand response adjustment command to each demand response device within its application power unit range, and the first demand response adjustment command instructs each demand response device to perform demand response adjustment for each power-consuming device.
[0142] In this embodiment, the power supply first determines the adjustable total response power of the power user unit based on the real-time response power of each power user device. Then, it compares the adjustable total response power with a preset response power to determine whether the power user unit meets the adjustment requirements. If the power user unit meets the adjustment requirements, a first demand response adjustment command is generated and sent to each demand response device, instructing each demand response device to adjust the demand response of each power user device. Since the adjustable total response power of the power user unit is determined based on the real-time response power of the power user device, the demand response adjustment of the power user device can be based on the actual situation of the power user device, making the entire demand response adjustment process more accurate and rapid.
[0143] In one embodiment, comparing the adjustable total response power with the preset response power includes: if the adjustable total response power is greater than the preset response power, then determining that the electrical equipment meets the adjustment requirements.
[0144] Specifically, if the total adjustable response power is greater than the preset response power, it means that demand response adjustment of the electrical equipment in the power-consuming unit can achieve the preset response power, confirming that the power-consuming unit meets the adjustment requirements. If the total adjustable response power is less than the preset response power, it means that even if all the electrical equipment in the power-consuming unit is adjusted to its corresponding maximum adjustable value, the preset response power required by the power supply cannot be met. In this case, it is determined that the power-consuming unit does not meet the adjustment requirements, and the power supply sends an inability to adjust command to the power supply center. In this embodiment, the total adjustable response power is compared with the preset response power. By comparing the magnitudes of the total adjustable response power and the preset response power, it can be determined in advance whether the power-consuming unit meets the adjustment requirements before adjustment, avoiding situations where demand response adjustment of the power-consuming unit fails to meet the adjustment requirements.
[0145] In one embodiment, the power demand response adjustment method further includes: receiving demand response adjustment results returned by demand response devices corresponding to all adjustable devices within the power consumption unit's range; generating a second demand response adjustment instruction based on each demand response adjustment result and a preset response power amount; and sending the second demand response adjustment instruction to each demand response device.
[0146] Among them, each demand response adjustment result is generated by the demand response device corresponding to the adjustable device after the adjustable device has reached the preset adjustment threshold and stopped adjusting, based on the adjusted amount of the adjustable device.
[0147] Specifically, the power supply end receives the demand response adjustment results returned by the demand response devices corresponding to all adjustable devices within the power consumption unit's area. Based on the adjusted amounts of each adjustable device in the demand response adjustment results, it obtains the total adjusted amount for the current power consumption unit after all adjustable devices have finished adjusting. Based on the difference between the total adjusted amount and the preset response power amount, it generates a second demand response adjustment command and sends the second demand response adjustment command to each demand response device. It can be understood that the second demand response adjustment command instructs the demand response devices corresponding to the non-adjustable devices in the power consumption unit to perform demand response adjustment on the non-adjustable devices.
[0148] In this embodiment, after receiving the demand response adjustment result returned by the demand response device after the adjustable device has completed its adjustment, the power supply end generates a second demand response adjustment command based on the demand response adjustment result and a preset response power amount. This second demand response adjustment command is then sent to each demand response device, instructing them to adjust the non-adjustable electrical equipment accordingly. Since non-adjustable devices can only be adjusted based on their on / off state, the method in this embodiment first adjusts the adjustable electrical equipment. Only when the adjustable devices cannot be adjusted further are the non-adjustable electrical equipment adjusted. This avoids prioritizing powering off the non-adjustable devices, making the entire adjustment process more rational and intelligent, effectively improving the user experience.
[0149] In one embodiment, such as Figure 5 As shown, a power demand response regulation method further includes the following steps:
[0150] Step 502: Receive the real-time adjustment response power returned by each demand response device.
[0151] Specifically, the power supply end monitors the real-time response power of the electrical equipment corresponding to each demand response device by receiving the real-time adjustment response power returned by each demand response device.
[0152] Step 504: Calculate the total real-time regulation response power of the power user unit based on the real-time regulation response power.
[0153] Specifically, after receiving the real-time response power from each demand response device, the power supply end calculates the real-time total regulation response power of the corresponding power user unit based on the real-time response power, and monitors the overall demand response regulation of the corresponding power user unit based on the real-time total regulation response power.
[0154] Step 506: Compare the real-time total regulation response power with the preset response power. When the real-time total regulation response power reaches the preset response power, generate a response regulation completion command and send the response regulation completion command to each demand response regulation device. The response regulation completion command instructs each demand response device to stop demand response regulation of the electrical equipment.
[0155] Specifically, when the power supply terminal detects that the real-time total response power of the power user unit has reached the preset response power, it indicates that the real-time total adjustment response power of the power user unit has met the adjustment requirements. The power supply terminal immediately generates a response adjustment completion command and sends the response adjustment completion command to each demand response adjustment device. The response adjustment completion command instructs each demand response device to stop adjusting the demand response of the power user equipment.
[0156] In this embodiment, the power supply end receives real-time feedback from the demand response device on the response adjustment status of the power-consuming equipment. When it is determined that the real-time total adjustment response power of the power-consuming unit has reached the preset response power, a demand response adjustment completion command is generated and sent to the demand response device. After receiving the command, the demand response device stops the demand response adjustment of the power-consuming equipment. The entire adjustment process is intelligent, accurate and rapid.
[0157] In one embodiment, such as Figure 6 As shown, the first demand response adjustment command includes the adjustment response power of the electrical equipment; when it is determined from the comparison results that the electrical unit meets the adjustment demand, the first demand response adjustment command is generated, including the following steps:
[0158] Step 602: When it is determined from the comparison results that the power consumption unit meets the regulation requirements, the regulation response power of each power consumption device is calculated based on the preset response power, the real-time response power of each power consumption device, and the performance parameters.
[0159] Among them, the performance parameters of electrical equipment include the rated operating power value of the electrical equipment.
[0160] Specifically, based on the preset response power, the real-time response power of the corresponding electrical equipment, and the performance parameters of each electrical equipment, the adjustment response power that each electrical equipment should adjust in this demand response adjustment is calculated. The preset response power is then allocated to each electrical equipment, while ensuring that each electrical equipment does not malfunction due to exceeding its rated operating power when adjusting according to the adjustment response power.
[0161] Step 604: Generate the corresponding first demand response adjustment command based on the power of each adjustment response.
[0162] Specifically, the power supply end writes the power quantities of each regulation response into the first demand response regulation command.
[0163] Step 606: Send each first demand response adjustment instruction to the corresponding demand response device. Each first demand response adjustment instruction instructs the demand response device to adjust the demand response of each electrical device.
[0164] Specifically, the power supply end sends each first demand response adjustment command to the corresponding demand response device. Each demand response device adjusts the demand response of each electrical device according to its corresponding first demand response adjustment command, adjusting the real-time operating response power of each electrical device to its corresponding adjustment response power.
[0165] In this embodiment, the adjustment response power of each electrical device is calculated based on a preset response power, the real-time response power of the corresponding electrical device, and the performance parameters of each electrical device. This adjustment response power is then directly written into the first demand response adjustment command, instructing the demand response device to adjust the real-time operating power of the electrical device to its corresponding adjustment response power. Because the performance parameters of each electrical device are considered during the calculation, it can be ensured that the adjustment will not cause a fault due to exceeding the rated operating power value when the electrical device is adjusted according to the adjustment response power.
[0166] In one embodiment, a power demand response regulation method is provided, applied to a demand response device, which is disposed between the wiring terminals of the electrical equipment and the power line wiring. The demand response device internally includes a controller, a communication module, an interface module, and a switch module.
[0167] The demand response device communicates with the electrical equipment and the electricity meter through its internal communication module.
[0168] First, the demand response device feeds back the real-time response power of its corresponding electrical equipment to the electricity meter. Specifically, the demand response device acquires the real-time operating parameters of the electrical equipment, analyzes these parameters, and obtains the real-time response power of the equipment. This real-time response power is then sent to the electricity meter.
[0169] When the meter receives the preset response power amount from the power supply center, it determines the total adjustable response power amount of the power user unit based on the real-time response power amount of each electrical device. The meter compares the total adjustable response power amount with the preset response power amount. If the total adjustable response power amount is less than the preset response power amount, it is determined that the power user unit does not meet the adjustment requirements, and the meter will generate an adjustment failure command and return it to the power supply center. If the total adjustable response power amount is greater than the preset response power amount, it is determined that the power user unit meets the adjustment requirements, and the meter writes the preset response power amount into the first demand response adjustment command and sends the first demand response adjustment command to each demand response device of the power user unit.
[0170] After receiving the first demand response adjustment command, the demand response device first determines the type of the corresponding electrical equipment. If the electrical equipment is non-adjustable, no adjustment is made temporarily. If the electrical equipment is adjustable, the demand response device is adjusted according to the preset response power amount. During the adjustment process, the demand response device continuously returns the real-time response power amount of the electrical equipment to the electricity meter.
[0171] The meter calculates the real-time total regulation response power of the power user unit based on the real-time response power returned by each demand response device, and continuously compares the real-time total regulation response power with the preset response power. Once the real-time total regulation response power reaches the preset response power, the meter will generate a response regulation completion command and send the response regulation completion command to the demand response device. The demand response device responds to the command and stops the demand response regulation of the power user equipment.
[0172] When the demand response device adjusts the real-time response power of the adjustable electrical equipment to the preset adjustment threshold, the demand response device will stop adjusting the demand response of the adjustable electrical equipment, and generate a demand response adjustment result based on the adjustment amount already completed by the adjustable electrical equipment, and return the demand response adjustment result to the electricity meter.
[0173] If, after all adjustable electrical devices have been adjusted to the preset adjustment threshold, the real-time total adjustment response power of the electricity user still has not reached the preset response power, the meter generates a second demand response adjustment command based on the adjustment amounts already completed by all adjustable electrical devices and the preset response power, and sends the second demand response adjustment command to each demand response device. At this time, the demand response device corresponding to the non-adjustable electrical device will respond to the second demand response adjustment command and adjust the real-time response power of the non-adjustable device by controlling the on / off state of the electrical device.
[0174] Similarly, during the demand response adjustment of non-adjustable electrical equipment, once the real-time total adjustment response power of the power user reaches the preset response power, the meter will generate a response adjustment completion command and send the response adjustment completion command to the demand response device. The demand response device will then respond to the command and stop the demand response adjustment of the electrical equipment.
[0175] It should be understood that although the steps in the flowcharts of the embodiments described above are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the embodiments described above may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.
[0176] Based on the same inventive concept, this application also provides a power demand response regulation device for implementing the power demand response regulation method described above. The solution provided by this device is similar to the solution described in the above method; therefore, the specific limitations in one or more power demand response regulation device embodiments provided below can be found in the limitations of the power demand response regulation method described above, and will not be repeated here.
[0177] In one embodiment, such as Figure 7 As shown, a power demand response regulation device 700 is provided, including: a real-time operating parameter acquisition module 701, a real-time operating parameter analysis module 702, a real-time response power transmission module 703, and a demand response regulation module 704, wherein:
[0178] The real-time operating parameter acquisition module 701 is used to acquire the real-time operating parameters of the electrical equipment.
[0179] The real-time operating parameter analysis module 702 is used to analyze real-time operating parameters to obtain the real-time response power of the electrical equipment.
[0180] The real-time response power transmission module 703 is used to send the real-time response power to the power supply end and receive the first demand response adjustment command returned by the power supply end when it determines that the adjustment requirements are met by comparing the adjustable total response power of the power user unit with the preset response power. The adjustable total response power of the power user unit is determined according to each real-time response power.
[0181] The demand response adjustment module 704 is used to adjust the demand response of electrical equipment based on the first demand response adjustment command.
[0182] The aforementioned power demand response regulation device, when demand response regulation of electrical equipment is required, analyzes the real-time response power of the electrical equipment based on its real-time operating parameters to reflect the actual operating status of the equipment. The power supply end compares the adjustable total response power of the power user with the preset response power. If the comparison result meets the regulation requirements, it returns a first demand response regulation command. The demand response device then performs demand response regulation on the electrical equipment based on the first demand response regulation command. Since the adjustable total response power of the power user is determined based on the real-time response power of the electrical equipment, demand response regulation can be performed based on the actual situation of the electrical equipment, making the entire demand response regulation process more accurate and rapid.
[0183] In one embodiment, the demand response adjustment module further includes: adjusting the demand response of the electrical equipment according to a preset response power amount and the type of electrical equipment.
[0184] In one embodiment, the demand response adjustment module further includes: if the electrical equipment is an adjustable device, adjusting the demand response of the electrical equipment according to a preset response power amount.
[0185] In one embodiment, the power demand response regulation device further includes: a demand response regulation result sending module, configured to stop demand response regulation of the adjustable device if the real-time response power of the adjustable device reaches a preset regulation threshold; generate a demand response regulation result based on the adjusted amount of the adjustable device; and send the demand response regulation result to the power supply end.
[0186] In one embodiment, the demand response adjustment module further includes: receiving a second demand response adjustment instruction fed back by the power supply end after performing demand response adjustment on all adjustable devices within the power consumption unit's range; if the power consumption device is a non-adjustable device, then responding to the second demand response adjustment instruction, and performing demand response adjustment on the non-adjustable device according to the on / off state of the non-adjustable device.
[0187] In one embodiment, the power demand response regulation device further includes: a demand response regulation stop module, configured to send the real-time regulation response power of the electrical equipment to the power supply end; receive a response regulation completion command generated by the power supply end when the real-time total regulation response power reaches a preset response power; the real-time total regulation response power is generated based on the real-time regulation response power of the electrical equipment; and stop the demand response regulation of the electrical equipment according to the response regulation completion command.
[0188] In one embodiment, the demand response adjustment module further includes: adjusting the demand response of the electrical equipment according to the adjustment response power amount.
[0189] Each module in the aforementioned power demand response regulation device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in or independent of the processor in a computer device, or stored in the memory of a computer device as software, so that the processor can call and execute the corresponding operations of each module.
[0190] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 8As shown, the computer device includes a processor, memory, and a network interface connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and a database. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The database stores data such as preset response power values and response power adjustment ranges. The network interface communicates with external terminals via a network connection. When the computer program is executed by the processor, it implements a power demand response regulation method.
[0191] Those skilled in the art will understand that Figure 8 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.
[0192] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the power demand response regulation methods of the above embodiments.
[0193] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, which, when executed by a processor, implements the steps of the power demand response regulation methods of the above embodiments.
[0194] In one embodiment, a computer program product is provided, including a computer program that, when executed by a processor, implements the steps in the power demand response regulation methods of the above embodiments.
[0195] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties.
[0196] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.
[0197] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0198] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A method of power demand response regulation, characterized by, The method is applied to a demand response device arranged between a connection terminal of an electrical equipment and a power supply line, and comprises the following steps: acquiring real-time operation parameters of the electrical equipment; analyzing the real-time operation parameters to obtain real-time response power of the electrical equipment; sending the real-time response power to a power supply end, receiving a first demand response adjustment instruction returned by the power supply end when the power supply end determines that an adjustable total response power of a power consumption unit corresponding to the power supply end meets an adjustment demand based on a preset response power, wherein the adjustable total response power of the power consumption unit is determined according to the real-time response power, and the preset response power is a response power value required by the power consumption unit corresponding to the power supply end and set and issued by a power supply center according to historical response power of the power consumption unit corresponding to the power supply end; adjusting the electrical equipment based on the first demand response adjustment instruction; the first demand response adjustment instruction comprises the preset response power, and the adjusting the electrical equipment based on the first demand response adjustment instruction comprises adjusting the electrical equipment based on the preset response power if the electrical equipment is an adjustable device; receiving a second demand response adjustment instruction fed back by the power supply end after the power supply end adjusts all adjustable devices in the power consumption unit range; if the electrical equipment is a non-adjustable device, the non-adjustable device is controlled to be turned off if the second demand response adjustment instruction is a decrease instruction and the non-adjustable device is in an on state; if the electrical equipment is a non-adjustable device, the non-adjustable device is controlled to be turned on if the second demand response adjustment instruction is an increase instruction and the non-adjustable device is in an off state.
2. The method of claim 1, wherein, The method further comprises: stopping the demand response adjustment of the adjustable device if the real-time response power of the adjustable device reaches a preset adjustment threshold; generating a demand response adjustment result according to an adjusted amount of the adjustable device; sending the demand response adjustment result to the power supply end.
3. The method of claim 1 or 2, wherein, The method further comprises: sending real-time adjustment response power of the electrical equipment to the power supply end; receiving a response adjustment completion instruction generated by the power supply end when a real-time total adjustment response power reaches the preset response power, wherein the real-time total adjustment response power is generated according to the real-time adjustment response power of the electrical equipment; stopping the demand response adjustment of the electrical equipment according to the response adjustment completion instruction.
4. The method of claim 1, wherein, The first demand response adjustment instruction comprises adjustment response power of the electrical equipment. The adjusting the electrical equipment based on the first demand response adjustment instruction comprises: According to the adjusted response power amount, the power utilization device is adjusted in demand response.
5. A method of power demand response regulation, characterized by, The method is applied to a power supply end, and the method comprises the following steps: Receiving real-time response power amounts of each power utilization device sent by each demand response device; the real-time response power amount is obtained according to real-time operation parameters of the power utilization device; Determining an adjustable total response power amount of a power utilization unit according to each real-time response power amount; the adjustable total response power amount of the power utilization unit is the response power amount that can be adjusted by all power utilization devices of the power utilization unit corresponding to the power supply end at the current time, and is determined according to each real-time response power amount; Comparing the adjustable total response power amount with a preset response power amount; the preset response power amount refers to a response power amount value that needs to be reached by the power utilization unit corresponding to the power supply end, and is set and issued by the power supply center according to historical response power amounts of the power utilization unit corresponding to the power supply end; When it is determined that the power utilization unit meets the adjustment demand according to the comparison result, a first demand response adjustment instruction is generated; The first demand response adjustment instruction is sent to each demand response device, and the first demand response adjustment instruction instructs each demand response device to adjust the power utilization device in demand response; the first demand response adjustment instruction comprises the preset response power amount, and if the power utilization device is an adjustable device, the first demand response adjustment instruction instructs the demand response adjustment device to adjust the adjustable device in demand response according to the preset response power amount; Receiving each demand response adjustment result returned by the demand response device corresponding to all adjustable devices within the power utilization unit; According to each demand response adjustment result and the preset response power amount, a second demand response adjustment instruction is generated, and the second demand response adjustment instruction is sent to each demand response device; the second demand response adjustment instruction instructs the demand response adjustment device to adjust the non-adjustable device in demand response.
6. The method of claim 5, wherein, The comparison of the adjustable total response power amount with the preset response power amount comprises the following steps: If the adjustable total response power amount is greater than the preset response power amount, it is determined that the power utilization device meets the adjustment demand.
7. The method according to claim 5 or 6, characterized in that, The method further comprises the following steps: Receiving real-time adjustment response power amounts returned by each demand response device; Calculating a real-time total adjustment response power amount of the power utilization unit according to the real-time adjustment response power amount; Comparing the real-time total adjustment response power amount with the preset response power amount, and when the real-time total adjustment response power amount reaches the preset response power amount, a response adjustment completion instruction is generated, and the response adjustment completion instruction is sent to each demand response adjustment device; the response adjustment completion instruction instructs each demand response device to stop adjusting the power utilization device in demand response.
8. The method of claim 5, wherein, The first demand response adjustment instruction comprises an adjustment response power amount of the power utilization device. The generation of the first demand response adjustment instruction when it is determined that the power utilization unit meets the adjustment demand according to the comparison result comprises the following steps: When it is determined that the power consumption unit meets the adjustment requirement according to the comparison result, the adjustment response power amount corresponding to each of the power consumption devices is calculated according to the preset response power amount and the real-time response power amount and performance parameter corresponding to each of the power consumption devices; According to each of the adjustment response power amount, a corresponding first demand response adjustment instruction is generated; Each of the first demand response adjustment instruction is sent to the corresponding demand response device, and each of the first demand response adjustment instruction instructs the demand response device to perform demand response adjustment on each of the power consumption devices.
9. A power demand response conditioning device, characterized by, The device comprises: A real-time operation parameter acquisition module is configured to acquire real-time operation parameters of the power consumption device; A real-time operation parameter analysis module is configured to analyze the real-time operation parameters to obtain real-time response power amounts of the power consumption device; A real-time response power amount sending module is configured to send the real-time response power amounts to a power supply end, and receive a first demand response adjustment instruction returned by the power supply end when it is determined that a preset response power amount meets an adjustment requirement based on a total adjustable response power amount of a power consumption unit; the total adjustable response power amount of the power consumption unit is the response power amount that can be adjusted by all power consumption devices corresponding to the power supply end at the current time, and is determined according to each of the real-time response power amounts; the preset response power amount refers to a response power amount value that needs to be reached by the power consumption unit corresponding to the power supply end, and is set and issued by the power supply center according to historical response power amounts of the power consumption unit corresponding to the power supply end; A demand response adjustment module is configured to perform demand response adjustment on the power consumption device based on the first demand response adjustment instruction; The first demand response adjustment instruction comprises the preset response power amount; the demand response adjustment module is configured to: if the power consumption device is an adjustable device, perform demand response adjustment on the power consumption device according to the preset response power amount; receive a second demand response adjustment instruction fed back by the power supply end after performing demand response adjustment on all adjustable devices within the power consumption unit; the second demand response adjustment instruction is generated by the power supply end when it is determined that the real-time response power of the adjustable power consumption device is adjusted to a corresponding preset adjustment threshold, and the response power amount of the entire power consumption unit still cannot meet the requirement of the power supply end; in the case that the power consumption device is a non-adjustable device, if the second demand response adjustment instruction is a decrease instruction, and the non-adjustable device is in an open state, the non-adjustable device is controlled to be closed; if the second demand response adjustment instruction is an increase instruction, and the non-adjustable device is in a closed state, the non-adjustable device is controlled to be opened.
10. A computer device comprising a memory and a processor, the memory storing a computer program, characterized in that, The processor executes the computer program to implement the steps of the method of any one of claims 1 to 8.
11. A computer readable storage medium having stored thereon a computer program, characterized in that The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 8.
12. A computer program product comprising a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 8.
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