Impact of Distributed Generation in Single area load frequency control on system frequency

Jyoti Chauhan, B. S. Surjan
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引用次数: 4

Abstract

In Power system prime objective is to match both power generated at generation end with power demand at consumer side. However, with development need of consumer is changing load demand incessantly. So, there is a continuous need to monitor and fulfill the load demand. Any mismatch between Power demand and Power generation will affect the system frequency. In modern power system the inclusion of renewable energy sources (RES) has been in rise. The flexibility of installing RES opens up opportunities to energy producers and energy consumers to opt for energy transaction, from economical point of view. Apart from this RES area also associated with impact on existing power systems. In the present paper for load frequency control, isolated Power-System is modeled. The distributed generation has also been modeled and embedded into existing model to observe its impact on Power system Load frequency characteristics. In this paper firstly, Single area load frequency control (LFC) is considered using integral Controller. Secondly, Single area LFC is analyzed with Distributed generation (DG). In both the cases Impact on system frequency is observed using MATLAB Simulink and we get appropriate gain of PI controller and effect of increasing penetration level of DG on system frequency. Also frequency deviations area observed while introducing various controllers in single area LFC with and without DG embedded to the system.
单区负荷调频中分布式发电对系统频率的影响
电力系统的主要目标是使发电端发电量与用户端电力需求相匹配。然而,随着发展的需要,用户的负荷需求也在不断变化。因此,需要持续监控和满足负载需求。电力需求和发电量之间的任何不匹配都会影响系统频率。在现代电力系统中,可再生能源的使用越来越多。从经济角度来看,可再生能源的灵活性为能源生产商和能源消费者选择能源交易提供了机会。除此之外,可再生能源领域还会对现有电力系统产生影响。本文针对负载频率控制问题,对隔离电力系统进行了建模。本文还对分布式发电进行了建模,并将其嵌入到现有模型中,观察其对电力系统负荷频率特性的影响。本文首先考虑采用积分控制器进行单区负荷频率控制。其次,采用分布式发电(DG)对单区域LFC进行了分析。在这两种情况下,利用MATLAB Simulink观察了对系统频率的影响,得到了PI控制器的适当增益以及增加DG渗透水平对系统频率的影响。在单个区域LFC中引入不同的控制器时,也观察到频率偏差,其中有或没有DG嵌入到系统中。
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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