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Reactive Power Control of DGs for Distribution Network Voltage Regulation Using Multi-Agent System

机译:使用多功能机系统的分配网络电压调节的DGS无功控制

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Nowadays, with increase the installation of distributed generation (DG) sources in the distribution networks (DNs), the traditional voltage regulation devices with their conventional control abilities face several difficulties to solve the voltage regulation problems. The DG sources that have reactive power capability can greatly help to reduce the stress on the voltage regulation devices in DNs. This paper proposes an effective control strategy for voltage regulation in DNs with high DG penetration based on a multi-agent system (MAS). The proposed strategy is a simple and efficient method for managing the reactive power capability of various types of DG in DNs. The proposed control strategy utilizes voltage/reactive power sensitivity analysis to reduce the overall system voltage deviation. Comprehensive case studies on IEEE 33 test feeders are carried out to demonstrate the effectiveness of the control strategy. The numerical results show that the proposed strategy can significantly mitigate the voltage violation problems in a simple manner.
机译:如今,随着分布网络(DNS)中的分布式发电(DG)源的安装,具有传统控制能力的传统电压调节装置面临若干难以解决电压调节问题。具有无功功率能力的DG源极大地有助于降低DNS中的电压调节装置的应力。本文提出了基于多助理系统(MAS)的DN高DG渗透的DNS中电压调节的有效控制策略。该策略是一种简单而有效的方法,用于管理DNS中各种类型的DG的无功功率能力。所提出的控制策略利用电压/无功敏感性分析来降低整体系统电压偏差。对IEEE 33测试馈线的综合案例研究进行了证明控制策略的有效性。数值结果表明,该策略可以以简单的方式显着降低电压违规问题。

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