Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs

With the increasing penetration of intermittent renewable energy sources (RESs) into microgrids, the original operation mode of power generation determined by load demand faces severe challenges due to the uncertainties of the RESs power output. The electric springs(ESs), as an emerging technology h...

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Main Authors: Zhao Zhiyu, Wang Keyou, Li Guojie, Jiang Xiuchen, Zhang Yin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201816004004
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spelling doaj-071f04add2d3448492d15376b4a6684d2021-02-02T07:18:38ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011600400410.1051/matecconf/201816004004matecconf_eecr2018_04004Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric SpringsZhao ZhiyuWang KeyouLi GuojieJiang XiuchenZhang YinWith the increasing penetration of intermittent renewable energy sources (RESs) into microgrids, the original operation mode of power generation determined by load demand faces severe challenges due to the uncertainties of the RESs power output. The electric springs(ESs), as an emerging technology has been verified to be effective in enabling load demand to follow power generation and stabilizing fluctuation of RESs output. This paper presents a new mode of economic operation for island microgrids including non-critical loads with embedded electric springs. Its connotation includes that i) the capacity of energy storage can be reduced through the interaction of the energy storage system (ESS) and the electric springs, ii) the electric springs reduce the stress of peak load regulation and operational cost and iii) the demand of microgrids system for ramping ability of generation units is reduced with the buffer of the electric springs. Numerical results show that the coordinated operation between electric springs and energy storage system of microgrids can bring down the investment cost for the ESS and short-term operational cost in the aspect of economic dispatch, reducing requirements for the capacity and ramp ability of the energy storage system in microgrids. Energy buffering can be achieved with lower cost and the load demand can follow power generation in the new operational mode of islanded microgrids using electric springs.https://doi.org/10.1051/matecconf/201816004004
collection DOAJ
language English
format Article
sources DOAJ
author Zhao Zhiyu
Wang Keyou
Li Guojie
Jiang Xiuchen
Zhang Yin
spellingShingle Zhao Zhiyu
Wang Keyou
Li Guojie
Jiang Xiuchen
Zhang Yin
Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
MATEC Web of Conferences
author_facet Zhao Zhiyu
Wang Keyou
Li Guojie
Jiang Xiuchen
Zhang Yin
author_sort Zhao Zhiyu
title Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
title_short Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
title_full Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
title_fullStr Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
title_full_unstemmed Study on a New Operational Mode of Economic Operation of Islanded Microgrids Using Electric Springs
title_sort study on a new operational mode of economic operation of islanded microgrids using electric springs
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description With the increasing penetration of intermittent renewable energy sources (RESs) into microgrids, the original operation mode of power generation determined by load demand faces severe challenges due to the uncertainties of the RESs power output. The electric springs(ESs), as an emerging technology has been verified to be effective in enabling load demand to follow power generation and stabilizing fluctuation of RESs output. This paper presents a new mode of economic operation for island microgrids including non-critical loads with embedded electric springs. Its connotation includes that i) the capacity of energy storage can be reduced through the interaction of the energy storage system (ESS) and the electric springs, ii) the electric springs reduce the stress of peak load regulation and operational cost and iii) the demand of microgrids system for ramping ability of generation units is reduced with the buffer of the electric springs. Numerical results show that the coordinated operation between electric springs and energy storage system of microgrids can bring down the investment cost for the ESS and short-term operational cost in the aspect of economic dispatch, reducing requirements for the capacity and ramp ability of the energy storage system in microgrids. Energy buffering can be achieved with lower cost and the load demand can follow power generation in the new operational mode of islanded microgrids using electric springs.
url https://doi.org/10.1051/matecconf/201816004004
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AT zhangyin studyonanewoperationalmodeofeconomicoperationofislandedmicrogridsusingelectricsprings
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