Frequency Control of Islanded Multi-Microgrids Under Different Disturbances

Basant Bahr, H. Keshta, Mahmoud N. Ali, M. Ebrahim
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Abstract

The intermittent nature of renewable energy sources, solar and wind, may affect the system dynamic performance and stability. Operation of an isolated hybrid micro-grid (HMG) system requires frequency regulating as well as the voltage. The frequency and power generation control in a power system is usually referred to as a load frequency control. In this paper, the biomass power plant is the main balancing mechanism of the proposed hybrid micro-grid. Speed governor of biomass power plant is implemented using both conventional proportional-integral- derivative (PID) and Proportional-Integral-Derivative-Acceleration (PIDA) based controllers to track system uncertainties and enhancing the performance of HMG. Atom search optimization (ASO) is applied to fine tune the proposed PID and PIDA controllers by minimizing the integral of time multiplied absolute error (ITAE). The proposed HMG and its controllers are applied and tested in the MATLAB/Simulink based simulation environment. In this paper, PID and the PIDA controller have been compared between them to notice the fluctuation behavior of frequency under various system uncertainties scenarios, it is concluded that the PIDA controller scheme provides more reliable system frequency than conventional PID controller.
不同扰动下孤岛多微电网的频率控制
太阳能和风能等可再生能源的间歇性可能会影响系统的动态性能和稳定性。隔离型混合微电网(HMG)系统的运行不仅需要电压调节,还需要频率调节。在电力系统中,频率和发电量的控制通常被称为负荷频率控制。本文将生物质发电厂作为混合微电网的主要平衡机制。采用传统的比例-积分-导数(PID)控制器和基于比例-积分-导数-加速度(PIDA)控制器实现生物质发电厂的调速,以跟踪系统的不确定性,提高HMG的性能。利用原子搜索优化(ASO)最小化时间乘绝对误差(ITAE)的积分,对PID和PIDA控制器进行微调。在基于MATLAB/Simulink的仿真环境中对所提出的HMG及其控制器进行了应用和测试。本文比较了PID和PIDA控制器在各种系统不确定性情况下的频率波动行为,得出PIDA控制器方案比传统PID控制器提供更可靠的系统频率。
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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