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A New Control Strategy for Distributed Static Compensators Considering Transmission Reactive Flow Constraints

机译:考虑传输无功流量约束的分布式静态补偿器控制新策略

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摘要

This paper presents a new control strategy for a distributed static compensator (also known as distributed STATCOM or DSTATCOM), configured to regulate the reactive (VAr) flow at a point in a transmission system. This new control strategy takes into account the operating VAr limits of that reactive flow in determining the steady-state output of the DSTATCOM. The new control strategy applies a slow reset regulator (SRR) to slowly bias the VAr set point of the DSTATCOM master controller to maintain its steady-state output within a target bandwidth. The operating result maintains an appropriate VAr reserve level from the DSTATCOM for dynamic events in the system. This paper also presents a new algorithm to calculate the operating constraints of the SRR that reflect the VAr flow at the local or remote point in the transmission system and the allowable VAr thresholds for that flow. These allowable thresholds can be utilized to the full extent to lower the steady-state output of the DSTATCOM, maximize its VAr reserve for dynamic events and reduce equipment and associated system operating losses. Modeling, implementation, and simulation of an engineering project show that the new control strategy and algorithm are functioning properly as expected.
机译:本文介绍了一种分布式静态补偿器(也称为分布式STATCOM或DSTATCOM)的新控制策略,该策略配置为调节传输系统中某一点的无功(VAr)流量。这种新的控制策略在确定DSTATCOM的稳态输出时考虑了该无功流量的运行VAr限制。新的控制策略应用了慢速复位调节器(SRR),以缓慢偏置DSTATCOM主控制器的VAr设定点,以将其稳态输出保持在目标带宽内。对于系统中的动态事件,运行结果将维持DSTATCOM的适当VAr储备水平。本文还提出了一种新算法,用于计算SRR的运行约束条件,以反映传输系统本地或远程点的VAr流量以及该流量的允许VAr阈值。这些允许的阈值可以被充分利用,以降低DSTATCOM的稳态输出,最大化其DARCOM用于动态事件的储备并减少设备和相关系统的运行损失。工程项目的建模,实现和仿真表明,新的控制策略和算法可以按预期正常运行。

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