CN114020112A - Main industry power demand side response potential evaluation method based on excitation type - Google Patents

Main industry power demand side response potential evaluation method based on excitation type Download PDF

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CN114020112A
CN114020112A CN202111258306.3A CN202111258306A CN114020112A CN 114020112 A CN114020112 A CN 114020112A CN 202111258306 A CN202111258306 A CN 202111258306A CN 114020112 A CN114020112 A CN 114020112A
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power demand
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equipment device
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CN114020112B (en
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王乐乐
刘爱国
赵一凡
安静
李瑾
白杨
姜瑛
顾晓晔
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Marketing Service Center Of State Grid Ningxia Electric Power Co ltd Metering Center Of State Grid Ningxia Electric Power Co ltd
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Marketing Service Center Of State Grid Ningxia Electric Power Co ltd Metering Center Of State Grid Ningxia Electric Power Co ltd
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Abstract

The invention discloses an excitation-based main industry power demand side response potential evaluation method, relates to the technical field of power demand, and aims to solve the problems that the existing power demand potential evaluation cannot be perfectly known, a complete analysis system does not exist, and meanwhile, equipment for an evaluation system lacks flexibility and is low in stability in the actual use process. The equipment device front end is provided with display screen and input button, and the opening has been seted up to equipment device one side, is provided with the access panel in the opening, is provided with data chip in the equipment device, and data chip contains data model and real-time load data, and access panel one side is provided with the bracket, is provided with the controller in the bracket.

Description

Main industry power demand side response potential evaluation method based on excitation type
Technical Field
The invention relates to the technical field of power demand, in particular to an excitation-based main industry power demand side response potential evaluation method.
Background
The demand of electric power is one of the industries which are used and consumed more in the society at present and is one of the difficulties which need to be overcome at present, and the used and the demand are usually predicted and analyzed at regular intervals, but the demand is also increased continuously as the society develops and progresses.
The electric power demand is to carry out the guess to report user and general survey user and predict, makes electric power marketing enterprise have more clear potentiality prediction system to user's power consumption condition, is the important index that improves enterprise skill and service, and current electric power demand potentiality aassessment can not perfect learn, and does not have complete analytic system, and the equipment that is used for the evaluation system lacks the flexibility in the in-service use simultaneously, and stability is not high.
Disclosure of Invention
The invention aims to provide an excitation-based main industry power demand side response potential evaluation method, and aims to solve the problems that the existing power demand potential evaluation provided by the background art cannot be perfectly known, a complete analysis system does not exist, and equipment for the evaluation system is poor in flexibility and stability in the actual use process.
In order to achieve the purpose, the invention provides the following technical scheme: the main industry power demand side response potential assessment method based on the excitation type comprises an equipment device, wherein a display screen and an input key are arranged at the front end of the equipment device, an opening is formed in one side of the equipment device, an overhaul board is arranged in the opening, a data chip is arranged in the equipment device, the data chip contains a data model and real-time load data, a bracket is arranged on one side of the overhaul board, and a controller is arranged in the bracket.
Through adopting above-mentioned technical scheme, the user data that will evaluate is carried out the input through the input button, is analyzed and is estimated it by the data model, for equipment convenient to use has set up the access panel in equipment device one side more in the future, can be convenient for open inside periodic maintenance, and the bracket separates inside data chip and controller and does not influence each other and provide the guarantee for using.
Furthermore, the data chip is located in the bracket and located on one side of the controller, the access panel is fixedly connected with the bracket, the data model can be used for data analysis, and the data analysis comprises predicted load, load range, predicted evaluation, actual data, correction evaluation and evaluation results.
By adopting the technical scheme, the data model analyzes the data corresponding to the input user, the data analysis comprises the predicted load, the load range, the predicted evaluation, the actual data, the correction evaluation and the evaluation result, and the data basis for providing the demand response is improved through the flow of the column.
Further, first recess has been seted up on access panel outside surface, the bracket is cross, a plurality of equidistance's vent has been seted up on the horizontal plate surface of bracket.
Through adopting above-mentioned technical scheme, the bracket can be with the operation of inside spare part separately, mutual noninterference, for using the guarantee that provides, and the vent can provide heat radiation structure when the operation.
Furthermore, two second grooves are formed in the vertical plate of the bracket, and a plurality of radiating plates which are distributed at equal intervals are arranged in the two second grooves.
Through adopting above-mentioned technical scheme, the second recess and the heating panel of seting up in the riser of bracket can increase the heat conduction effect, accelerate the life of heat dissipation improve equipment.
Further, a first sliding groove is formed in the bottom of the equipment device, second sliding grooves are formed in two sides of the inner wall of the first sliding groove, a first sliding block is arranged at the lower end of the bracket and movably connected with the first sliding groove, symmetrical second sliding blocks are arranged on two sides of the first sliding block, and the second sliding blocks are movably connected with the second sliding grooves.
Through adopting above-mentioned technical scheme, first spout and the first slider of seting up in equipment device can be convenient for can improve the flexibility ratio with the outside pulling of bracket when later stage maintenance, and second spout and second slider can improve gliding stability.
Further, the equipment device lower extreme is provided with the fixed plate, set up the mounting hole that a plurality of equidistance distribute in the fixed plate.
By adopting the technical scheme, the fixing plate and the mounting hole can fix the equipment device at a position convenient to use.
Further, the back of the equipment device is provided with a plurality of equally spaced lugs, a third sliding groove is formed in each lug, and a third sliding block is arranged at the upper end of the fixing plate through the third sliding groove.
Through adopting above-mentioned technical scheme, the back sets up the lug and can increase the frictional force between equipment device and the wall body, rocks or unstable during avoiding using.
An evaluation method for response potential of a main industry power demand side based on an incentive type is characterized by comprising the following steps:
step 1: firstly, inputting basic information of a client through display of an input key and a display screen, and performing primary prejudgment on user use, wherein the prejudgment is based on performing data analysis according to a data model of equipment and a comparison baseline load, simulating a predicted load according to the data analysis, and performing estimation load range on the predicted load to obtain prediction estimation;
step 2: based on the prediction evaluation, actual data results of the users are compared, and correction evaluation is performed according to the final data, so that the accuracy of the final result can be improved, the efficiency and the accuracy of potential evaluation are improved, and the finally obtained evaluation result is real-time load data;
and step 3: finally, the system of the predicted load and the load range can be perfected by comparing the real-time load data with the initial data model.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the excitation-based main industry power demand side response potential evaluation method, data corresponding to input users are analyzed through a data model, the data analysis comprises predicted load, load range, predicted evaluation, actual data, correction evaluation and evaluation results, and the data basis for providing demand response is improved through the process of the column.
2. According to the excitation-based main industry power demand side response potential assessment method, the maintenance board is arranged on one side of the equipment device for facilitating the use of the equipment in the future, the inside can be opened conveniently for periodic maintenance, the bracket separates the internal data chip and the controller, the influence on the data chip and the controller is avoided, the use is guaranteed, the vent is arranged, the heat dissipation structure can be provided during operation, the heat conduction effect can be improved through the second groove arranged in the vertical plate of the bracket and the heat dissipation plate, and the service life of the equipment is prolonged through heat dissipation acceleration.
3. According to the incentive-based main industry power demand side response potential assessment method, the first sliding groove and the first sliding block which are formed in the equipment device can facilitate the bracket to be pulled outwards during later maintenance so as to improve flexibility, and the second sliding groove and the second sliding block can improve sliding stability.
Drawings
FIG. 1 is a schematic diagram of the system of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a first cross-sectional view of the present invention;
fig. 4 is a schematic cross-sectional structure diagram of the present invention.
In the figure: 1. an equipment device; 2. a display screen; 3. inputting a key; 4. an opening; 5. an access panel; 6. a data model; 7. a bracket; 8. a data chip; 9. a controller; 10. real-time load data; 11. analyzing data; 12. predicting the load; 13. a load range; 14. predicting and evaluating; 15. actual data; 16. correction evaluation; 17. evaluating the result; 18. a first groove; 19. a vent; 20. a second groove; 21. a heat dissipation plate; 22. a first chute; 23. a second chute; 24. a first slider; 25. a second slider; 26. a fixing plate; 27. mounting holes; 28. a bump; 29. a third chute; 30. and a third slide block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1 and 2, an embodiment of the present invention is shown: a main industry power demand side response potential evaluation method based on excitation comprises an equipment device 1, a display screen 2 and an input key 3 are arranged at the front end of the equipment device 1, an opening 4 is formed in one side of the equipment device 1, an overhaul board 5 is arranged in the opening 4, a data chip 8 is arranged in the equipment device 1, the data chip 8 comprises a data model 6 and real-time load data 10, a bracket 7 is arranged on one side of the overhaul board 5, a controller 9 is arranged in the bracket 7, the data chip 8 is positioned in the bracket 7 and positioned on one side of the controller 9, the overhaul board 5 is fixedly connected with the bracket 7, the data model 6 can carry out data analysis 11, the data analysis 11 comprises a predicted load 12, a load range 13, a predicted evaluation 14, actual data 15, a corrected evaluation 16 and an evaluation result 17, the data analysis 11 corresponds to an input user through the data model 6, and the data analysis 11 comprises a predicted load 12, The load range 13, the predictive assessment 14, the actual data 15, the corrective assessment 16 and the assessment result 17, the data basis for providing the demand response is improved by this column of procedures.
Referring to fig. 3 and 4, the outer side surface of the access panel 5 is provided with a first groove 18, the bracket 7 is cross-shaped, the surface of the transverse plate of the bracket 7 is provided with a plurality of ventilation openings 19 distributed at equal intervals, the vertical plate of the bracket 7 is provided with two second grooves 20, the two second grooves 20 are both provided with a plurality of heat dissipation plates 21 distributed at equal intervals, the bottom of the equipment device 1 is provided with a first sliding groove 22, the two sides of the inner wall of the first sliding groove 22 are provided with second sliding grooves 23, the lower end of the bracket 7 is provided with a first sliding block 24, the first sliding block 24 is movably connected with the first sliding groove 22, the two sides of the first sliding block 24 are provided with symmetrical second sliding blocks 25, the two second sliding blocks 25 are movably connected with the second sliding grooves 23, the lower end of the equipment device 1 is provided with a fixing plate 26, the fixing plate 26 is provided with a plurality of mounting holes 27 distributed at equal intervals, the back of the equipment device 1 is provided with a plurality of bumps 28 distributed at equal intervals, the bumps 28 are provided with third sliding grooves 29, the third sliding block 30 is arranged at the upper end of the fixing plate 26 through the third sliding groove 29, the service panel 5 is arranged on one side of the equipment device 1 for facilitating the use of the equipment in the future, the internal regular maintenance can be facilitated, the bracket 7 separates the internal data chip 8 and the controller 9 without influencing each other, and provides a guarantee for the use, the vent 19 is arranged to provide a heat dissipation structure during the operation, the second groove 20 and the heat dissipation plate 21 arranged in the vertical plate of the bracket 7 can increase the heat conduction effect, the service life of the equipment is prolonged through heat dissipation, the first sliding groove 22 and the first sliding block 24 arranged in the equipment device 1 can facilitate the outward pulling of the bracket 7 during the later maintenance, so that the flexibility is improved, and the second sliding groove 23 and the second sliding block 25 can improve the sliding stability.
A main industry power demand side response potential assessment method based on excitation is characterized by comprising the following steps: the electricity purchasing and selling combination method for the electricity selling company specifically comprises the following steps:
step 1: firstly, inputting basic information of a client through the display of an input key 3 and a display screen 2, and performing primary prejudgment on the use of a user, wherein the prejudgment is based on performing data analysis 11 according to a data model 6 of equipment and contrasting a baseline load, simulating a predicted load 12 according to the data analysis 11, and evaluating a load range 13 of the predicted load 12 to obtain a predicted evaluation 14;
step 2: based on the prediction evaluation 14, comparing the actual data 15 results of the user, and performing correction evaluation 16 according to the final data, thereby improving the accuracy of the final result and the efficiency and accuracy of the potential evaluation, wherein the final evaluation result 17 is the real-time load data 10;
and step 3: finally, the system of predicted loads 12 and load ranges 13 can also be refined by comparing the real-time load data 10 with the initial data model 6.
The working principle is as follows: when in use, basic information of a client is input through the display of the input key 3 and the display screen 2, a preliminary prejudgment is carried out on the use of a user, the prejudgment is based on carrying out data analysis 11 according to a baseline load according to a data model 6 of equipment, simulating a predicted load 12 according to the data analysis 11, evaluating a load range 13 of the predicted load 12 to obtain a predicted evaluation 14, actual data 15 results of the user are compared based on the predicted evaluation 14, and correction evaluation 16 is carried out according to final data, so that the accuracy of final results can be improved, the efficiency and the accuracy of potential evaluation are improved, the finally obtained evaluation result 17 is real-time load data 10, and finally, the real-time load data 10 is compared with an initial data model 6 to complete a system of the predicted load 12 and the load range 13, in order to ensure that the system flow can be stably used for a long time, the maintenance board 5 is arranged on the equipment structure, the bracket 7 inside the equipment can be exposed by pulling outwards, regular maintenance is convenient, the heat conduction effect can be improved by the second groove 20 and the heat dissipation plate 21 which are formed in the vertical plate of the bracket 7, the service life of the heat dissipation improving equipment is prolonged, the equipment can be fixed on a proper position through the fixing plate 26 at the lower end, the friction force between the equipment device 1 and a wall body can be increased by arranging the convex block 28 on the back surface, and shaking or instability during use is avoided.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (8)

1. An incentive-based major industry power demand side response potential assessment method, comprising an equipment device (1), characterized in that: the equipment is characterized in that a display screen (2) and an input key (3) are arranged at the front end of the equipment device (1), an opening (4) is formed in one side of the equipment device (1), an overhaul board (5) is arranged in the opening (4), a data chip (8) is arranged in the equipment device (1), the data chip (8) contains a data model (6) and real-time load data (10), a bracket (7) is arranged on one side of the overhaul board (5), and a controller (9) is arranged in the bracket (7).
2. The incentive-based major industry electric power demand side response potential assessment method according to claim 1, wherein: the data chip (8) is located in the bracket (7) and located on one side of the controller (9), the service panel (5) is fixedly connected with the bracket (7), the data model (6) can perform data analysis (11), and the data analysis (11) comprises a predicted load (12), a load range (13), a predicted evaluation (14), actual data (15), a correction evaluation (16) and an evaluation result (17).
3. The incentive-based major industry electric power demand side response potential assessment method according to claim 1, wherein: first recess (18) have been seted up on access panel (5) outside surface, bracket (7) are cross, vent (19) that a plurality of equidistance distributed are seted up to the horizontal plate surface of bracket (7).
4. The incentive-based major industry electric power demand side response potential assessment method according to claim 3, wherein: two second grooves (20) are formed in the vertical plate of the bracket (7), and a plurality of radiating plates (21) which are distributed at equal intervals are arranged in the second grooves (20).
5. The incentive-based major industry electric power demand side response potential assessment method according to claim 1, wherein: first spout (22) have been seted up to the bottom in equipment device (1), second spout (23) have been seted up to first spout (22) inner wall both sides, bracket (7) lower extreme is provided with first slider (24), first slider (24) and first spout (22) swing joint, first slider (24) both sides are provided with symmetrical second slider (25), two second slider (25) and second spout (23) swing joint.
6. The incentive-based major industry electric power demand side response potential assessment method according to claim 1, wherein: the equipment device (1) lower extreme is provided with fixed plate (26), seted up mounting hole (27) that a plurality of equidistance distributed in fixed plate (26).
7. The incentive-based major industry electric power demand side response potential assessment method according to claim 6, wherein: the back of the equipment device (1) is provided with a plurality of equally spaced lugs (28), a third sliding groove (29) is formed in each lug (28), and a third sliding block (30) is arranged at the upper end of the fixing plate (26) through the third sliding groove (29).
8. An evaluation method for response potential of a main industry power demand side based on an incentive type is characterized by comprising the following steps:
step 1: firstly, inputting basic information of a client through the display of an input key (3) and a display screen (2), and carrying out primary prejudgment on the use of a user, wherein the prejudgment is based on carrying out data analysis (11) according to a data model (6) of equipment and contrasting a baseline load, simulating a predicted load (12) according to the data analysis (11), and evaluating a load range (13) of the predicted load (12) to obtain a predicted evaluation (14);
step 2: based on the prediction evaluation (14), comparing the actual data (15) results of the user, and performing correction evaluation (16) according to the final data, so that the accuracy of the final result can be improved, the efficiency and the accuracy of the potential evaluation can be improved, and the finally obtained evaluation result (17) is real-time load data (10);
and step 3: finally, the system of the predicted load (12) and the load range (13) can also be refined by comparing the real-time load data (10) with the initial data model (6).
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CN212160592U (en) * 2020-07-13 2020-12-15 赣南医学院 Noiseless computer heat radiator

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