Integrated volt/VAR control on rural distribution systems

D. Farmer, P. B. Ingle, S. H. Morgan
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引用次数: 7

Abstract

The integration of smart grid technologies along with improved feeder monitoring capabilities have led to a renewed focus on voltage and reactive power control on power distribution systems. Economic and operational benefits result from effectively managing the voltage profile and feeder power factor. While monitoring, control, and communications technologies are rapidly evolving, the basic tools and equipment - voltage regulators, shunt capacitors, and engineering changes such as load balancing and reconductoring - are basically the same. The task for the distribution engineer is to select the best mix of solutions based on economic life cycle benefits. For long, voltage constrained rural circuits this is challenging, but recent analyses have proven the viability of maintaining a flat voltage profile on most circuit configurations. This paper addresses the essential tools and techniques associated with managing the distribution voltage profile and reactive power flow to achieve economic and operational benefits. Economic analysis methods used to evaluate the optimum mix of equipment and engineering changes will be reviewed, along with the special challenges of implementing volt/VAR control on rural distribution feeders.
农村配电系统的电压/无功综合控制
智能电网技术的集成以及改进的馈线监控能力使得配电系统的电压和无功控制再次受到关注。有效管理电压分布和馈线功率因数可带来经济和运行效益。虽然监测、控制和通信技术正在迅速发展,但基本的工具和设备——稳压器、并联电容器以及负载平衡和重导等工程变化——基本上是相同的。分配工程师的任务是根据经济生命周期效益选择最佳的解决方案组合。长期以来,电压受限的农村电路这是具有挑战性的,但最近的分析已经证明了在大多数电路配置中保持平坦电压分布的可行性。本文介绍了与管理配电电压分布和无功潮流相关的基本工具和技术,以实现经济和运行效益。将回顾用于评估设备和工程变更的最佳组合的经济分析方法,以及在农村配电馈线上实施伏特/无功控制的特殊挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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