A distributed order PID controller for load frequency control in a two-area diverse-unit power system

I. Moschos, C. Parisses
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引用次数: 3

Abstract

Until recently the conventional PI and PID controllers have been widely used in the load frequency control (LFC) problem. However, in today's modern power system those controllers cannot cope effectively with the increasing complexity of the power system resulting in system performance degradation. To tackle this problem, this paper proposes the application of two distributed order PID (DOPID) controllers which cover the whole range of integrals and derivatives of order -1 to order 1. Those controllers comprise with numerous fractional integrators and differentiators. The gains of the proposed controllers are optimized using the newly introduced marine predators algorithm (MPA). The analysis of the controllers is conducted in a realistic two area interconnected power system having diverse sources of power generation including communication delay, HVDC link and a geothermal power plant (GTPP) in both areas. A performance evaluation is conducted among various controllers like PIDN and FOPID with the proposed controllers and it is found that the DOPID controllers exhibit the best dynamic performance. Moreover, the transient response of the system is tested under the presence of wind power generation (WTG).
一种用于两区多机组电力系统负荷频率控制的分布阶PID控制器
迄今为止,传统的PI和PID控制器被广泛应用于负载频率控制(LFC)问题。然而,在当今的现代电力系统中,这些控制器不能有效地应对日益复杂的电力系统,导致系统性能下降。为了解决这一问题,本文提出了两个分布阶PID (DOPID)控制器的应用,该控制器覆盖了从-1阶到1阶的积分和导数的整个范围。这些控制器由许多分数积分器和微分器组成。采用新引入的海洋掠食者算法(MPA)对控制器的增益进行优化。本文以一个现实的两区互联电力系统为例,该系统具有多种发电来源,包括通信延迟、高压直流链路和两区均有一个地热发电厂(GTPP)。利用所提出的控制器对PIDN和FOPID等多种控制器进行了性能评估,发现DOPID控制器具有最佳的动态性能。此外,还测试了系统在风力发电的作用下的暂态响应。
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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