Distributed Optimal Control of Voltages in Weak Sub-transmission Networks with High Penetration of Solar Power

Rongquan Fan, Ting Li, Yuqi Han, Wenhui Zeng, Xingqi He, Zhiyuan Tang
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Abstract

With grid connected solar power plants, the voltages in a weak sub-transmission system are likely to vary significantly and quickly. This paper addresses the problem of voltage variation in the network with load aggregators (LAs) through an optimal dispatch scheme, where the control objective is to maintain voltages of critical buses within predefined ranges with a least total economic cost. In our scheme, rather than sharing global information, the optimal dispatch strategy is achieved in a distributed manner by only exchanging limited information between neighboring LAs, and includes coordination with conventional control to minimize customer disruption. The effectiveness of the proposed control scheme is tested in a modified IEEE 30-bus system.
高太阳能渗透弱子输电网电压分布最优控制
使用并网太阳能发电厂,弱子传输系统中的电压可能会迅速变化。本文通过一种最优调度方案来解决负载聚合器网络中的电压变化问题,该方案的控制目标是以最小的总经济成本将关键母线的电压维持在预定范围内。在我们的方案中,最优调度策略不是共享全局信息,而是通过在相邻的LAs之间仅交换有限的信息以分布式方式实现的,并包括与传统控制的协调以最大限度地减少客户中断。在一个改进的IEEE 30总线系统中测试了所提出的控制方案的有效性。
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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