Energy optimization regulation method based on ordered electricity user participation

By conducting participation scoring and qualification assessment of electricity users within a power supply region, orderly electricity consumption orders are generated, which solves the problem of uneven resource allocation in existing technologies, realizes the tilting of power grid resources towards high-quality users, standardizes electricity consumption behavior, and improves the operating efficiency of the power grid.

CN115984032BActive Publication Date: 2025-12-05GUANGXI POWER GRID CORP
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Patent Information

Application Number
CN202211477814.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-23
Publication Date
2025-12-05
Estimated Expiration
2042-11-23

AI Technical Summary

Technical Problem

Existing technologies have failed to effectively guide customers to regulate their electricity consumption behavior by formulating orderly electricity dispatch strategies, and have failed to assess the qualifications of electricity users, resulting in resource allocation not favoring high-quality users.

Method used

By using a scoring method based on the participation of orderly electricity users, power supply regions are divided, scores for users and regions are calculated, and orderly electricity consumption records for users and regions are generated. The power control center then conducts power regulation to allocate resources accordingly.

Benefits of technology

It enables the automatic allocation of power resources to high-quality electricity users and major power supply areas, guides customers to regulate their electricity consumption behavior, and improves the safety and economy of power grid operation.

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Abstract

The application discloses an energy optimization regulation method based on ordered power consumption user participation, comprising the following steps: S1, obtaining power consumption participation information of each power consumption user in each power supply area; S2, calculating user scores according to the user participation information of each power consumption user in turn, and generating a user score table; S3, correcting the user score table through a trend factor of each power consumption user, and obtaining a power user ordered power consumption list according to priority sorting; S4, obtaining participation score of each power supply area in turn, generating an area score table, and obtaining an area ordered power consumption list according to score sorting; and S5, performing power regulation according to the area ordered power consumption list and the power user ordered power consumption list. The technical effect of guiding customers to standardize power consumption behavior is achieved by evaluating the qualifications of power consumption users and power supply areas, so that the formulated power dispatching strategy can automatically incline resources to high-quality power consumption users or power supply areas, and by formulating an ordered power consumption dispatching strategy.
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Description

Technical Field

[0001] This invention relates to the field of power dispatching technology, specifically to an energy optimization and control method based on the participation of orderly electricity users. Background Technology

[0002] Orderly electricity use is essentially a redistribution of electricity loads over time. Currently, with energy shortages, various regions are actively exploring orderly electricity use rules tailored to different electricity demands and customers, in order to reflect the principles of "prioritizing essential needs while limiting non-essential ones, and treating different customers differently." To improve user satisfaction and ensure the safety and economy of power grid operation, it is necessary to comprehensively evaluate the value of orderly electricity use for different users. When implementing orderly electricity use, priority should be given to using appropriate control measures for users with lower electricity value assessments to assist in orderly electricity use decision-making, enhance the fairness and scientific rigor of orderly electricity use scheme formulation, and achieve optimal allocation of limited power resources.

[0003] Chinese Patent Publication No. CN105243609A discloses a method for evaluating the value of orderly electricity consumption by users based on fuzzy hierarchical analysis. The method includes establishing a comprehensive evaluation index system for the value of orderly electricity consumption by users; calculating the weight of each index system in the evaluation of the value of orderly electricity consumption by users; acquiring relevant power grid operation data for each index and organizing and analyzing the data; calculating the comprehensive value of orderly electricity consumption by users; and optimizing orderly electricity consumption decisions based on the calculation results. The invention improves the reliability of the formulated orderly electricity consumption strategy by comprehensively evaluating the applicability and importance of the user side. However, the scheme does not consider the impact of user participation in electricity consumption on orderly electricity consumption when formulating the dispatch strategy, nor does it evaluate the qualifications of electricity users. This prevents the power dispatch strategy from automatically allocating resources to high-quality electricity users and from guiding customers to regulate their electricity consumption behavior through the formulation of an orderly electricity consumption dispatch strategy.

[0004] The information disclosed in the background section is only intended to enhance the understanding of the background of this application, and therefore may include information that does not constitute prior art known to those skilled in the art. Summary of the Invention

[0005] The purpose of this invention is to address the problem that existing technologies cannot guide customers to regulate their electricity consumption behavior by formulating orderly electricity dispatch strategies. It proposes an energy optimization and control method based on orderly electricity user participation. This method scores electricity users in different power supply regions using electricity participation information. By evaluating the qualifications of electricity users and power supply regions, the formulated power dispatch strategy can automatically allocate resources to high-quality electricity users or power supply regions, thereby achieving the technical effect of guiding customers to regulate their electricity consumption behavior through the formulation of orderly electricity dispatch strategies.

[0006] In a first aspect, one technical solution provided in this embodiment of the invention is an energy optimization and control method based on the participation of orderly electricity users, comprising the following steps:

[0007] S1. Based on geographical location information, define several power supply regions and obtain the electricity consumption participation information of each electricity user in each power supply region within the marketing system;

[0008] S2. Calculate user scores based on user participation information of each electricity user in each power supply region, and generate a user score form.

[0009] S3. Correct the scores of the corresponding columns of the user rating form by using the trend factors of each electricity user, and sort the corresponding columns of the corrected user rating form by priority according to the scores from large to small to obtain the orderly electricity consumption order of the electricity user.

[0010] S4. Obtain the participation score of each power supply region according to the orderly electricity consumption order of the user corresponding to the power supply region, and generate the region score form; sort the power supply regions from largest to smallest according to the score value of the region score form to obtain the orderly electricity consumption order of the region.

[0011] S5. The power control center conducts power control based on the orderly electricity consumption orders of the major regions and the orderly electricity consumption orders of the corresponding power supply regions.

[0012] Preferably, the electricity participation information includes the credit rating of electricity users, the electricity consumption ratio, and the complaint rate.

[0013] Preferably, the reputation formula is: Where, η i For the credit rating of the i-th electricity user, m i M represents the amount paid by the i-th electricity user in the previous electricity cycle. i Let t be the total amount payable by the i-th electricity user in the previous electricity cycle. i This represents the overdue payment period for the i-th electricity user in the previous electricity cycle.

[0014] Preferably, the electricity consumption ratio formula is: Where, δ i Let d be the electricity consumption ratio of the i-th electricity user, D be the total electricity consumption of the current power supply region in the previous electricity cycle, and d be the total electricity consumption of the current power supply region in the previous electricity cycle. i This represents the electricity consumption of the i-th electricity user in the previous electricity cycle.

[0015] Preferably, the complaint rate formula is: Where, μ i Let h be the complaint rate of the i-th electricity user. iH represents the number of valid complaints from electricity users during the previous electricity consumption cycle. i This represents the total number of complaints from the i-th electricity user during the previous electricity consumption cycle.

[0016] Preferably, the step of calculating user scores and generating user score forms based on user participation information of each electricity user in each power supply region includes the following steps:

[0017] The formula for calculating user ratings is as follows:

[0018] G i =λ1η i +λ2δ i +λ3μ i

[0019] 1=λ1+λ2+λ3

[0020] Among them, G i The user rating for the i-th electricity user is given, where λ1 is the credit factor, λ2 is the electricity consumption factor, and λ3 is the complaint factor.

[0021] Calculate the user rating for each electricity user in turn and fill it into the corresponding column of the user rating form.

[0022] As a preferred option, the following steps are included:

[0023] The step of correcting the scores of corresponding columns in the user rating form based on trend factors of each electricity user includes:

[0024] The trend factor is calculated using the following formula:

[0025]

[0026] Where, θ i Let N be the trend factor for the i-th electricity user, and N be the total number of cycles corresponding to the i-th electricity user. Give the user rating to the i-th electricity user in the n-th period;

[0027] The column scores are adjusted by multiplying the trend factor by the user ratings of the electricity users. The corresponding columns in the adjusted user rating form are then prioritized according to their scores from highest to lowest to obtain the orderly electricity consumption order L for electricity users; let L = [a1, a2, ..., a...]. i ,···a R ], a i =θ i G i , where R is the number of electricity users in the current power supply region.

[0028] Preferably, the step of sequentially obtaining the participation score of each power supply region based on the orderly electricity consumption bills of users corresponding to the power supply region, and generating a region scoring form, includes:

[0029] The participation score for each power supply region is calculated sequentially using the following formula: Among them, K j Score the participation rate of the j-th power supply region;

[0030] The participation scores of the power supply regions are then filled into the corresponding columns of the regional scoring form.

[0031] Preferably, the power control center performs power control based on the regional orderly power consumption order and the orderly power consumption order of power users in the corresponding power supply region, including:

[0032] The power supply region corresponding to the column of the orderly electricity consumption order in the region is identified, and the orderly electricity consumption order of the power user corresponding to the power supply region is embedded into the column of the orderly electricity consumption order in the identified region to obtain the orderly electricity consumption sequence table. The power control center performs power control according to the orderly electricity consumption sequence table.

[0033] The beneficial effects of this invention are as follows: It proposes an energy optimization and control method based on the participation of orderly electricity users. This method scores electricity users in different power supply regions using electricity participation information, and ranks the users' qualifications based on these scores to obtain orderly electricity user orders. Furthermore, by calculating the score for each power supply region separately, the qualifications within each region are ranked to obtain regional orderly electricity user orders. Power dispatch is then performed using these individual and regional orderly electricity user orders. By evaluating the qualifications of electricity users and power supply regions, the formulated power dispatch strategy can automatically allocate resources to high-quality electricity users or power supply regions. This demonstrates the technical effect of guiding customers to regulate their electricity consumption behavior through the formulation of orderly electricity user dispatch strategies.

[0034] The above description of the invention is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention are described below. Attached Figure Description

[0035] Other features, objects, and advantages of the invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings. The drawings are for illustrative purposes only and are not intended to limit the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings.

[0036] Figure 1This is a flowchart of the energy optimization and control method based on orderly electricity user participation of the present invention. Detailed Implementation

[0037] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only one preferred embodiment of this invention and are only used to explain this invention. They do not limit the scope of protection of this invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0038] Before discussing the exemplary embodiments in more detail, it should be mentioned that some exemplary embodiments are described as processes or methods depicted as flowcharts. Although the flowcharts describe the operations (or steps) as sequential processes, many of the operations (or steps) can be performed in parallel, concurrently, or simultaneously. Furthermore, the order of the operations can be rearranged. The process can be terminated when its operation is completed, but it may also have additional steps not included in the figures; the process may correspond to a method, function, procedure, subroutine, subroutine, etc.

[0039] Example: Figure 1 As shown, the energy optimization and control method based on orderly electricity user participation includes the following steps: S1, delineate several power supply regions according to geographical location information, and obtain the electricity participation information of each electricity user in each power supply region in the marketing system.

[0040] As a further explanation of this embodiment, the electricity participation information includes the credit rating of electricity users, the electricity consumption ratio, and the complaint rate.

[0041] It is understandable that the creditworthiness, electricity consumption ratio, and complaint rate of electricity users are key elements in the evaluation of electricity use qualifications or user quality in this application.

[0042] Specifically, the reputation formula is as follows: Where, η i For the credit rating of the i-th electricity user, m i M represents the amount paid by the i-th electricity user in the previous electricity cycle. i Let t be the total amount payable by the i-th electricity user in the previous electricity cycle. i This represents the overdue payment period for the i-th electricity user in the previous electricity cycle.

[0043] Specifically, the formula for the electricity consumption ratio is: Where, δ iLet d be the electricity consumption ratio of the i-th electricity user, D be the total electricity consumption of the current power supply region in the previous electricity cycle, and d be the total electricity consumption of the current power supply region in the previous electricity cycle. i This represents the electricity consumption of the i-th electricity user in the previous electricity cycle.

[0044] Specifically, the complaint rate formula is as follows: Where, μ i Let h be the complaint rate of the i-th electricity user. i H represents the number of valid complaints from electricity users during the previous electricity consumption cycle. i This represents the total number of complaints from the i-th electricity user during the previous electricity consumption cycle.

[0045] S2. Calculate user scores based on user participation information of each electricity user in each power supply region, and generate a user score form.

[0046] Specifically, the user rating calculation formula is as follows:

[0047] G i =λ1η i +λ2δ i +λ3μ i

[0048] 1=λ1+λ2+λ3

[0049] Among them, G i The user rating for the i-th electricity user is given, where λ1 is the credit factor, λ2 is the electricity consumption factor, and λ3 is the complaint factor.

[0050] Calculate the user rating for each electricity user in turn and fill it into the corresponding column of the user rating form.

[0051] Understandably, the scores for λ1 (credit factor), λ2 (electricity consumption factor), and λ3 (complaint factor) can differ depending on the policy orientation of different regions. For example, when the electricity consumption assessment places more emphasis on customer quality, the weighting factors from largest to smallest are λ1 > λ2 > λ3; for example, λ1 = 0.5; λ2 = 0.3; λ3 = 0.2.

[0052] S3. Correct the scores of the corresponding columns in the user rating form by using the trend factors of each electricity user, and sort the corresponding columns of the corrected user rating form by priority according to the scores from large to small to obtain the orderly electricity consumption order of the electricity users.

[0053] Specifically, the scores for the corresponding sections of the user rating form are adjusted based on the trend factors of each electricity user. This includes calculating the trend factors using the following formula:

[0054]

[0055] Where, θ iLet N be the trend factor for the i-th electricity user, and N be the total number of cycles corresponding to the i-th electricity user. Give the user rating to the i-th electricity user in the n-th period;

[0056] The column scores are adjusted by multiplying the trend factor by the user ratings of the electricity users. The corresponding columns in the adjusted user rating form are then prioritized according to their scores from highest to lowest to obtain the orderly electricity consumption order L for electricity users; let L = [a1, a2, ..., a...]. i ,···a R ], a i =θ i G i , where R is the number of electricity users in the current power supply region.

[0057] S4. Obtain the participation score of each power supply region according to the orderly electricity consumption order of the user corresponding to the power supply region, and generate the region score form; sort the power supply regions from largest to smallest according to the score value of the region score form to obtain the orderly electricity consumption order of the region.

[0058] Specifically, the participation scores for each power supply region are obtained sequentially based on the orderly electricity consumption records of users in the corresponding power supply regions, and a regional score form is generated, including:

[0059] The participation score for each power supply region is calculated sequentially using the following formula: Among them, K j Score the participation rate of the j-th power supply region;

[0060] The participation scores of the power supply regions are then filled into the corresponding columns of the regional scoring form.

[0061] S5. The power control center conducts power control based on the orderly electricity consumption orders of the major regions and the orderly electricity consumption orders of the corresponding power supply regions.

[0062] Specifically, the power supply region corresponding to the column of the orderly electricity consumption order in the region is identified, and the orderly electricity consumption order of the power user corresponding to the power supply region is embedded into the column of the orderly electricity consumption order in the identified region to obtain the orderly electricity consumption sequence table. The power control center performs power control based on the orderly electricity consumption sequence table.

[0063] Through the above specific implementation methods, the technical effects that this application can achieve are as follows: Electricity users in different power supply regions are scored based on electricity participation information; the qualifications of electricity users are ranked according to the scores to obtain orderly electricity consumption orders for electricity users; furthermore, by calculating the score for each power supply region separately, the qualifications within the power supply region are ranked to obtain orderly electricity consumption orders for the region; power dispatch is carried out using orderly electricity consumption orders for electricity users and orderly electricity consumption orders for the region; by evaluating the qualifications of electricity users and power supply regions, the formulated power dispatch strategy can automatically allocate resources to high-quality electricity users or power supply regions, thereby guiding customers to regulate their electricity consumption behavior through the formulation of orderly electricity consumption dispatch strategies.

[0064] The specific embodiments described above are preferred embodiments of the energy optimization and control method based on orderly electricity user participation of the present invention, and are not intended to limit the specific scope of the present invention. The scope of the present invention includes but is not limited to the specific embodiments described above. All equivalent changes made in accordance with the shape and structure of the present invention are within the protection scope of the present invention.

Claims

1. An energy optimization regulation method based on ordered electricity user participation, characterized in that: The method comprises the following steps: S1, delimiting several power supply areas according to geographic position information, and obtaining power consumption participation information of each power consumption user in each power supply area in a marketing system; S2, calculating user scores according to the user participation information of each power consumption user in each power supply area, and generating a user score table; S3, correcting the scores of corresponding columns of the user score table by using trend factors of each power consumption user, and performing priority ordering on the corresponding columns of the corrected user score table according to the scores from large to small to obtain a power user ordered power consumption list; S4, obtaining participation scores of each power supply area according to the user ordered power consumption list corresponding to the power supply area, and generating a district score table; and performing ordering on the power supply areas according to the score values of the district score table from large to small to obtain a district ordered power consumption list; S5, the power regulation center performs power regulation according to the district ordered power consumption list and the power user ordered power consumption list corresponding to the power supply area. The correction of the scores of corresponding columns of the user score table by using trend factors of each power consumption user comprises: The trend factor is calculated according to the following formula: ; wherein, is a trend factor of the th electricity user, is a total cycle number corresponding to the th electricity user, is a user score of the th electricity user in the th cycle; wherein the user score is obtained by weighted summation of the credit factor, the electricity factor and the complaint factor corresponding to the credit rate, the electricity rate and the complaint rate of the electricity user. The column score is corrected according to the product of the trend factor and the user score of the power user, and the corresponding column of the corrected user score table form is prioritized according to the score from large to small to obtain an ordered power user electricity consumption single L; L=[a1, a2,..., an] is recorded. i ,..., an R ], wherein R is the number of power users in the current power supply area.

2. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 1, characterized in that: The power consumption participation information comprises credit, power consumption rate and complaint rate of the power consumption user.

3. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 2, characterized in that: The credibility formula is: ; wherein, is the credit level of the nth electricity user, is the paid amount of the last electricity period of the nth electricity user, is the total amount of the last electricity period of the nth electricity user, is the overdue time of the last electricity period of the nth electricity user, and is the overdue time of the last electricity period of the nth electricity user.​​​ 4. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 3, characterized in that: The power consumption ratio formula is: ; wherein, is the total power consumption of the current power supply region in the current power consumption period, is the power consumption rate of the i-th power consumer, is the total power consumption of the current power supply region in the last power consumption period, is the power consumption of the i-th power consumer in the last power consumption period, is the power consumption of the i-th power consumer in the last power consumption period.

5. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 4, characterized in that: The complaint rate formula is: ; wherein, is the complaint rate of the th electricity user, is the valid complaint number of the th electricity user in the last electricity period, is the total complaint number of the th electricity user in the last electricity period.

6. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 5, characterized in that: The calculation of the user scores according to the user participation information of each power consumption user in each power supply area and the generation of the user score table comprise the following steps: The user score calculation formula is as follows: ; ; wherein, is a user score for the nth electricity consumer, is a credit factor, is an electricity factor, is a complaint factor; The user scores of each power consumption user are calculated in sequence and filled into the corresponding columns of the user score table.

7. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 1, characterized in that: The generation of the district score table according to the participation scores of each power supply area comprises: The participation score of each power supply area is calculated in sequence, and the formula is: ; wherein, is a participation score for the nth power supply zone; The participation scores of each power supply area are filled into the corresponding columns of the district score table in sequence.

8. The energy optimization regulation method based on ordered power consumption user participation degree according to claim 1, characterized in that: The power regulation by the power regulation center according to the district ordered power consumption list and the power user ordered power consumption list corresponding to the power supply area comprises: The power supply area corresponding to the corresponding column of the district ordered power consumption list is identified, the power user ordered power consumption list corresponding to the power supply area is embedded into the corresponding column of the district ordered power consumption list to obtain an ordered power consumption sequence table, and the power regulation center performs power regulation according to the ordered power consumption sequence table.

Citation Information

Patent Citations

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