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Multi-energy combined peak dispatching system synthetic benefit evaluation based on variable weight theory and matter-element extension model

机译:基于变权理论和物元扩展模型的多能量联合调峰系统综合效益评价

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摘要

Purpose - To improve power system peak dispatching ability, connecting energy-storage device such as electric vehicle (EV) and regenerative electric heater (REH) to power grid is a good choice. Design/methodology/approach - This paper establishes a multi-energy combined peak dispatching system MCPDS which includes EV, REH and wind power. The matter-element extension model based on improved variable weight theory is applied to evaluate MCPDS synthetic benefit. Findings - The research shows that the MCPDS established in this paper performs excellently in security benefit, economic benefit, social benefit and environmental benefit. Originality/value - With the assistance of energy storage devices such as EV and REH, the electrical system peak dispatching ability and power system operation efficiency has improved. More devices with energy-storage ability should be introduced into electrical power system to improve its synthetic benefit.
机译:目的-为了提高电力系统的峰值调度能力,将诸如电动汽车(EV)和蓄热式电加热器(REH)的储能装置连接到电网是一个不错的选择。设计/方法/方法-本文建立了一个多能量组合式峰值调度系统MCPDS,其中包括EV,REH和风力。应用基于改进变权理论的物元扩展模型评价MCPDS综合效益。结果-研究表明,本文建立的MCPDS在安全利益,经济利益,社会利益和环境利益方面表现出色。原创性/价值-借助EV和REH等储能设备,电气系统的峰值调度能力和电力系统的运行效率得到了提高。应将更多具有能量存储能力的设备引入电力系统,以提高其综合效益。

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