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Demand response implementation effect assessment-based commercial building response capacity allocation method

A technology of demand response and capacity allocation, which is applied in the field of power services to achieve scientific allocation and improve the effect of demand response implementation

Inactive Publication Date: 2017-08-11
NANJING UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, with the diversified development of commercial building energy consumption, the participation method that only takes air conditioning load as the control object ignores the reduction potential of other types of loads

Method used

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  • Demand response implementation effect assessment-based commercial building response capacity allocation method
  • Demand response implementation effect assessment-based commercial building response capacity allocation method
  • Demand response implementation effect assessment-based commercial building response capacity allocation method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0092] Step 1. Determine various response parameters, including the number of buildings participating in load reduction, the implementation period of this demand response, the total response capacity of this demand response, and the allocated response capacity of each building in the last demand response; for example:

[0093] Determine the number of buildings participating in this demand response I = 10, and number them from 1 to 10;

[0094] Set area reduction capacity Q=50kWh;

[0095] Determine the demand response time period t 1 to t 2 , usually two hours (ie t 2 -t 1 =2h):10:00-12:00;

[0096]Step 2, establish a comprehensive index system for the evaluation of the implementation effect of building demand response, including the evaluation index of the implementation of the reduction capacity assigned by it and the evaluation index of the load reduction effect after the implementation of the response; among them,

[0097] Response capacity performance metrics include...

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Abstract

The invention provides a demand response implementation effect assessment-based commercial building response capacity allocation method. The method comprises the steps of determining various response parameters; establishing a comprehensive index system of demand response implementation effect assessment of buildings; collecting load data of the buildings participating in a current response during a previous response period and load data of the buildings not implementing the response during the same period, and assessing a reduction effect of a previous demand response of the buildings through a fuzzy comprehensive assessment method to obtain an implementation effect assessment result of each building; and according to the demand response implementation effect assessment result of each building and an allocation principle that the better the assessment result is, the smaller the next reduction capacity is, calculating final reduction capacity of the current demand response of each building. According to the method, the demand response implementation effect of the buildings can be effectively assessed, the demand response execution capability of the buildings can be further reflected, and the demand response implementation effect of the buildings can be further improved.

Description

technical field [0001] The invention belongs to the technical field of electric power services, and in particular relates to a commercial building response capacity allocation method based on demand response implementation effect evaluation. Background technique [0002] With the increasing connotation of commercial buildings, commercial buildings are transformed from functional to commercial, and commercial facilities are also developing in the direction of complex functions and large scale. In recent years, the electricity consumption of commercial buildings has also shown a significant upward trend. According to the survey, the power consumption per unit area of ​​large public buildings reaches 70-300kW·h / year, which is 4-6 times that of ordinary public buildings and 10-20 times that of residential buildings. Although the multifunctional development of commercial buildings has caused the continuous growth of building loads, at the same time, the development of intelligen...

Claims

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Application Information

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IPC IPC(8): G06Q10/06G06Q50/08
Inventor 史媛张俊芳毕月许辉林莎褚智亮
Owner NANJING UNIV OF SCI & TECH
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