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

机译:电弹簧孤岛微电网经济运行的新运行模式研究

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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.
机译:随着间歇性可再生能源(RES)逐渐渗透到微电网中,由于RES功率输出的不确定性,由负荷需求决定的原始发电运行模式面临严峻挑战。电动弹簧(ESs)作为一种新兴技术已被证实可有效地使负载需求紧随发电并稳定RESs输出的波动。本文提出了一种新型的岛上微电网经济运行模式,包括带有嵌入式电弹簧的非关键负载。它的含义包括:i)可以通过储能系统(ESS)和电弹簧的相互作用来减少储能的容量,ii)电弹簧减少了峰值负载调节和运营成本的压力,并且iii)需求借助电弹簧的缓冲,减少了微电网系统对发电单元的倾斜能力。数值结果表明,电弹簧与微电网储能系统的协同运行,可以降低ESS的投资成本和经济调度方面的短期运行成本,降低了对储能能力和缓升能力的要求。微电网中的系统。可以以较低的成本实现能量缓冲,并且在使用电弹簧的孤岛微电网的新运行模式下,负荷需求可以跟随发电。

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