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Online Voltage Control in Distribution Systems With Multiple Voltage Regulating Devices

机译:具有多个电压调节装置的配电系统中的在线电压控制

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摘要

Voltage regulation in distribution systems is typically performed with the aid of multiple voltage regulating devices, such as on-load tap changer and step voltage regulators. These devices are conventionally tuned and locally coordinated using Volt/VAR optimization strategies in accordance with the time-graded operation. However, in case of distribution systems with distributed generation (DG), there could be a possibility of simultaneous responses of DG and multiple voltage regulators for correcting the target bus voltage, thereby resulting in operational conflicts. This paper proposes an online voltage control strategy for a realistic distribution system containing a synchronous machine-based renewable DG unit and other voltage regulating devices. The proposed strategy minimizes the operational conflicts by prioritizing the operations of different regulating devices while maximizing the voltage regulation support by the DG. It is tested on an interconnected medium voltage distribution system, present in New South Wales, Australia, through time-domain simulation studies. The results have demonstrated that voltage control for a distribution feeder can effectively be achieved on a real-time basis through the application of the proposed control strategy.
机译:通常借助于多个电压调节装置(例如承载分接开关和阶梯电压调节器)的电压调节。这些设备通常根据时间分级操作使用Volt / VAR优化策略进行调谐和本地协调。然而,在分布式发电(DG)的分配系统的情况下,可以有可能同时响应DG和多个电压调节器以校正目标总线电压,从而导致操作冲突。本文提出了一种用于逼真的分配系统的在线电压控制策略,其包含基于同步电机的可再生DG单元和其他电压调节装置。该策略通过优先考虑不同调节装置的操作,同时最大限度地通过DG最大化电压调节支持,最大限度地减少操作冲突。通过时域仿真研究,在新南威尔士州的互联地电压分布系统上进行测试。结果表明,通过应用所提出的控制策略,可以有效地实现分配馈线的电压控制。

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