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Operating-Condition-Based Voltage Control Algorithm of Distributed Energy Storage Systems in Variable Energy Resource Integrated Distribution System

机译:可变能源集成系统中分布式能量存储系统的基于工作条件的电压控制算法

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摘要

Penetration of variable energy resource (VER) is limited by voltage constraints in distribution systems. Hence, distributed energy storage systems (ESS) have been considered to be a promising solution owing to their fast and flexible control capability. This paper proposes a voltage control algorithm of the distributed ESS based on the varying operating conditions of the distribution systems. In the proposed algorithm, the required responses of the distributed ESS are controlled for regulating the monitored voltage on the distribution system by using the matched Jacobian element derived from the operating conditions as its control gain. In addition, each required response is readjusted by allocating the violated voltage to distributed ESS respectively based on the portion of its Jacobian element and its available state of charge (SoC). The effectiveness of the proposed algorithm is verified through time-series simulation by employing one of the actual distribution systems with a high penetration of VER in Korea.
机译:可变能源(Ver)的渗透受分配系统中的电压约束的限制。因此,由于其快速灵活的控制能力,分布式能量存储系统(ESS)被认为是有希望的解决方案。本文提出了一种基于分布式系统的变化操作条件的分布式ESS的电压控制算法。在所提出的算法中,通过使用从操作条件导出的匹配的Jacobian元素作为其控制增益,控制分布式ESS的所需响应来调节分配系统上的监测电压。另外,通过将违规的电压分布在其雅各比元素的部分及其可用充电状态(SOC)分布到分布式ESS来重新调整每个所需响应。通过使用韩国高度渗透的实际分配系统之一,通过时间序列仿真来验证所提出的算法的有效性。

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