分布式发电对38kV配电系统电压分布的影响

Donal Caples, S. Boljevic, M. Conlon
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引用次数: 24

摘要

本文介绍了一个将大量分布式发电(DG)集成到弱配电网(DN)中的案例研究。它解决了DG连接DN时电压上升的缓解问题。重点比较了提高DG与DN集成能力的方法以及从配电系统运营商(DSO)的角度提出的技术要求。本文考虑了现实生活中包含不同类型DG的DN中的电压上升问题,例如热电联产(CHP)和风力发电。本研究的目的是提出一种方法来证明DN组件对DG连接引起的电压分布违和的影响。所提出的方法的目的不是控制母线电压,而是保证单独的DG注入不会导致显著的电压上升:在这种解决方案中,DNs保持其传统的负载需求电压调节任务。从有效性和充分性的角度对该方法进行了探讨。该研究通过ERAC潮流分析软件在一个七母线DN上进行验证,该DN类似于由若干DG机组在38kV电压水平连接的真实网络的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of distributed generation on voltage profile in 38kV distribution system
This paper presents a case study of the integration of a relatively large amount of distributed generation (DG) into a weak distribution network (DN). It addresses the problem of voltage rise mitigation in DN with DG connected. The main focus is on a comparison of methods to increase the integration capacity of DG into DN and the technical requirements from the Distribution System Operator (DSO)'s point of view. The paper considers voltage rise issues in real-life DN that incorporate different types of DG such as Combined Heat and Power (CHP) and wind power generation. The objective of this study is to propose an approach that will demonstrate the impact of DN components on voltage profile violation caused by the connection of DG. The aim of the proposed approach is not to control the bus voltage but to guarantee that DG injection alone will not cause a significant voltage rise: a solution in which DNs are kept to their traditional task of voltage regulation for load demand. The approach is discussed from the perspective of effectiveness and adequacy. Validation of the study is carried out by using the ERAC power flow analysis software on a seven busbars DN which resembles a part of a real network consisting of number of DG units connected at the 38kV voltage level.
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