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Control Strategies and Economic Analysis of an LTO Battery Energy Storage System for AGC Ancillary Service

机译:AGC辅助服务LTO电池储能系统的控制策略及经济分析

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摘要

With the rapid growth of renewable energy and the DC fast charge pile of the electric vehicle, their inherent volatility and randomness increase a power system’s unbalance of instantaneous power. The need for power grid frequency regulation is increasing. The energy storage system (ESS) can be used to assist the thermal power unit so that a better frequency regulation result is obtained without changing the original operating mode of the unit. In this paper, a set of different charging/discharging control strategies of the lithium titanate battery (LTO) is proposed, which are chosen according to the interval of the State of energy (SOE) to improve the utilization rate of the ESS. Finally, the cost-benefit model of the ESS participating in automatic generation control ancillary service is established. Case analysis proves that after a 1.75 MWh ESS is configured for a 600 MW thermal power unit, Kp and D is increased from 1.42 to 6.38 and 2857 to 6895 MW. The net daily income is increased from 20,284 yuan to 199,900 yuan with a repayment period of 93 days. The results show that the control strategies and the energy configuration method can improve the performance and economic return of the system.
机译:随着可再生能源的快速增长和电动车的直流快速充电桩,其固有的波动性和随机性增加了动力系统的瞬时电力的不平衡。对电网频率调节的需求增加。能量存储系统(ESS)可用于辅助热功率单元,使得获得更好的频率调节结果而不改变本机的原始操作模式。在本文中,提出了一组不同的钛酸锂电池(LTO)的不同充电/放电控制策略,其根据能量状态(SOE)的间隔来选择以提高ESS的利用率。最后,建立了参与自动生成控制辅助服务的ES的成本效益模型。案例分析证明,在1.75 MWHES为600 MW火电机单元配置后,KP和D从1.42增加到6.38和2857至6895 MW。净日收入从20,284元增加到199,900元,偿还期限为93天。结果表明,控制策略和能源配置方法可以提高系统的性能和经济回报。

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