Optimization-algorithm addressing voltage and power quality in distributed grid control systems

N. Grass, Anja Woelfel
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引用次数: 3

Abstract

The transition from centralized grid control towards distributed and cellular control requires new methods and intelligent solutions for power generation, storage and transmission. Due to temporary occurrence of reversed power flow during low load conditions in distribution grids, the grid voltage may reach or may exceed voltage limits. Data centers and telecom facilities, which are equipped with batteries, generation units and power electronic grid interfaces are highly appropriate to offer services to the grid operators to solve this problem. One possible option to keep grid voltages within the limits is the transmission of reactive power over critical grid lines, generated at the connection points of renewable sources. Additionally, reactive power sources need to be provided at transformer stations to avoid additional reactive power flow towards the MV grid. The paper shows results of an ongoing research project, where four partners cooperate to demonstrate the effects and the automatic voltage optimization in a real existing low voltage grid. Research partners are Technische Hochschule Esslingen, KBR Kompensationsanlagenbau GmbH, Schwabach and VWEW-Energie, Kaufbeuren. The equipment has already been installed into the grid and is currently operated in the test phase.
分布式电网控制系统中电压和电能质量寻址的优化算法
从集中式电网控制向分布式和蜂窝式控制过渡,需要新的发电、存储和传输方法和智能解决方案。配电网在低负荷状态下,由于临时出现的反向潮流,电网电压可能达到或超过电压限值。配备电池、发电机组和电力电子电网接口的数据中心和电信设施非常适合为电网运营商提供服务来解决这一问题。将电网电压保持在限制范围内的一个可能选择是在可再生能源连接点产生的关键电网线路上传输无功功率。此外,需要在变电站提供无功电源,以避免额外的无功功率流向中压电网。本文展示了一个正在进行的研究项目的结果,该项目由四个合作伙伴合作,在实际的现有低压电网中演示了自动电压优化的效果和自动电压优化。研究合作伙伴是Technische Hochschule Esslingen, KBR komenationsanlagenbau GmbH, Schwabach和vwew - energy, Kaufbeuren。该设备已经安装到电网中,目前正处于测试阶段。
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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