分散发电的电压稳定性后果和智能控制的可能性

J. F. Baalbergen, M. Gibescu, L. V. D. Sluis
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引用次数: 6

摘要

如今,许多分散式发电技术已经成熟。对于荷兰的电力系统,预计到2020年,分散式发电机(dg)将占总生产能力的主要部分(约35%)。这种期望在全世界都是正确的。大份额的DG会影响系统的电压稳定性。本文的目的是给出一个清晰的概述,在输电水平上遇到的典型电压稳定问题的后果dg。没有特定的DG将被研究,但将概述如果DG是基于某种发电机类型会发生什么。在理论预期的基础上,本研究的仿真结果表明,对于一个典型的输电系统,加入DG通常有利于电压稳定。DG对电压稳定性的影响主要有三个重要因素:有功支持、无功消耗和电压支持。考虑到这些好处,需要对dg进行智能控制。
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Voltage stability consequences of decentralized generation and possibilities for intelligent control
Many decentralized generation technologies are mature today. For the Dutch power system it is expected that in 2020 Decentralized Generators (DGs) form a major (about 35 %) part of the total production capacity. This expectation is true all over the world. A large share of DG will influence the voltage stability of the system. The objective of this paper is to give a clear overview of the consequences of DGs for typical voltage stability problems encountered at transmission level. No particular DG will be studied, but an overview will be given what happens if a DG is based on a certain generator type. Based on theoretical expectations the simulations done in this study show for a typical transmission system that adding DG is generally beneficial for the voltage stability. Mainly three factors are important for the consequence DG has on voltage stability: active power support, reactive power consumption, and voltage support. Taking these benefits into account requires intelligent control of the DGs.
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