Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model

In view of the difficulties in optimal dispatch caused by diverse energy and various types of equipment in the regional integrated energy system(RIES), this paper established a generalized energy storage model by extracting the flexibility characteristics of cooling, heat, and electrical load based...

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Main Authors: Yu Shen, Xinyu Liang, Wei Hu, Xiaobo Dou, Fan Yang
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9305295/
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spelling doaj-cffbb401eb044e88958a5ab3b50dccce2021-03-30T14:57:44ZengIEEEIEEE Access2169-35362021-01-0191546155510.1109/ACCESS.2020.30467439305295Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage ModelYu Shen0Xinyu Liang1https://orcid.org/0000-0003-3681-5140Wei Hu2Xiaobo Dou3https://orcid.org/0000-0003-3968-1950Fan Yang4Electric Power Research Institute, State Grid Hubei Electric Power Company, Wuhan, ChinaSchool of Electrical Engineering, Southeast University, Nanjing, ChinaElectric Power Research Institute, State Grid Hubei Electric Power Company, Wuhan, ChinaSchool of Electrical Engineering, Southeast University, Nanjing, ChinaElectric Power Research Institute, State Grid Hubei Electric Power Company, Wuhan, ChinaIn view of the difficulties in optimal dispatch caused by diverse energy and various types of equipment in the regional integrated energy system(RIES), this paper established a generalized energy storage model by extracting the flexibility characteristics of cooling, heat, and electrical load based on abstract equivalence. Instead of reducing the accuracy of regulation, this modeling method can greatly simplify the information interaction between the energy dispatching center and energy consumers, thus cutting down the time of collaborative analysis calculations. With the scheduling characteristics of multiple types of flexible loads in day-ahead and intra-day time scales considered comprehensively, a multi-time-scale optimization scheduling model of RIES is established, which takes into account the economy of system operation and the demand response. The simulation results show that the proposed optimization model can fully tap the load-side scheduling potential, along with effectively reducing the computational complexity. Through the coordination of resources with different characteristics, the pressure of balancing energy supply and demand can be relieved, and the operating cost of the system can be minimized.https://ieeexplore.ieee.org/document/9305295/Regional integrated energy system (RIES)generalized energy storage modelmulti-time-scaleoptimal dispatch
collection DOAJ
language English
format Article
sources DOAJ
author Yu Shen
Xinyu Liang
Wei Hu
Xiaobo Dou
Fan Yang
spellingShingle Yu Shen
Xinyu Liang
Wei Hu
Xiaobo Dou
Fan Yang
Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
IEEE Access
Regional integrated energy system (RIES)
generalized energy storage model
multi-time-scale
optimal dispatch
author_facet Yu Shen
Xinyu Liang
Wei Hu
Xiaobo Dou
Fan Yang
author_sort Yu Shen
title Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
title_short Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
title_full Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
title_fullStr Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
title_full_unstemmed Optimal Dispatch of Regional Integrated Energy System Based on a Generalized Energy Storage Model
title_sort optimal dispatch of regional integrated energy system based on a generalized energy storage model
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description In view of the difficulties in optimal dispatch caused by diverse energy and various types of equipment in the regional integrated energy system(RIES), this paper established a generalized energy storage model by extracting the flexibility characteristics of cooling, heat, and electrical load based on abstract equivalence. Instead of reducing the accuracy of regulation, this modeling method can greatly simplify the information interaction between the energy dispatching center and energy consumers, thus cutting down the time of collaborative analysis calculations. With the scheduling characteristics of multiple types of flexible loads in day-ahead and intra-day time scales considered comprehensively, a multi-time-scale optimization scheduling model of RIES is established, which takes into account the economy of system operation and the demand response. The simulation results show that the proposed optimization model can fully tap the load-side scheduling potential, along with effectively reducing the computational complexity. Through the coordination of resources with different characteristics, the pressure of balancing energy supply and demand can be relieved, and the operating cost of the system can be minimized.
topic Regional integrated energy system (RIES)
generalized energy storage model
multi-time-scale
optimal dispatch
url https://ieeexplore.ieee.org/document/9305295/
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AT xiaobodou optimaldispatchofregionalintegratedenergysystembasedonageneralizedenergystoragemodel
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