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Energy management system based on fuzzy fractional order PID controller for transient stability improvement in microgrids with energy storage

机译:基于模糊分数阶pID控制器的能量存储微电网暂态稳定性能量管理系统

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摘要

The need to reduce greenhouse effect using distributed energy resources has significantly increased in recent years, particularly with the advent of deregulated market. Climate changes cause large swings in output power of renewable resources and the resulting fluctuations in frequency in the islanded microgrid (MG). To increase performance for a wide range of power system operating conditions, an energy management system is proposed based on a fuzzy fractional order proportional–integral–derivative (PID) (FFOPID) controller. It is able to analyze and simulate the dynamic behavior in grid-connected MGs. This controller is proposed in the MG encompassing distributed generation resources with “plug and play” ability. The performance of FFOPID controller is verified for frequency control purposes and to support internal bus voltage in both islanded and grid-connected operating modes in accordance with the failure time. Energy storage is used to improve the system dynamic response, reduce the distortion, and provide damping for frequency oscillations caused by renewable resources. Energy storage overload capacity is utilized for rapid initial control of frequency in MG. To achieve this goal, energy management system based on fuzzy decision mechanism combined with a PID controller and FFOPID is implemented according to the characteristics and limitations of overloading and state of charge. The obtained results show good performance of FFOPID controllers by improving the transient stability following a fault that has caused the islanded operation. Simulation results have validated the effectiveness of FFOPID controllers in the system under several scenarios with superior stabilization and more robustness in comparison with the fuzzy logic PID (FLPID) controller and PID controller
机译:近年来,使用分布式能源减少温室效应的需求已大大增加,特别是随着市场管制放松的出现。气候变化导致可再生资源的输出功率大幅波动,并导致孤岛微电网(MG)的频率波动。为了在广泛的电力系统运行条件下提高性能,提出了一种基于模糊分数阶比例-积分-微分(PID)(FFOPID)控制器的能源管理系统。它能够分析和模拟并网MG中的动态行为。 MG中提出了该控制器,该控制器包含具有“即插即用”功能的分布式发电资源。 FFOPID控制器的性能经过验证,可用于频率控制,并可以根据故障时间在孤岛运行和并网运行模式下支持内部总线电压。能量存储用于改善系统动态响应,减少失真并为可再生资源引起的频率振荡提供阻尼。储能过载能力用于MG中频率的快速初始控制。为了实现这一目标,根据过载和充电状态的特点和局限性,实现了基于模糊决策机制结合PID控制器和FFOPID的能源管理系统。通过改善引起孤岛操作的故障后的瞬态稳定性,获得的结果显示了FFOPID控制器的良好性能。与模糊逻辑PID(FLPID)控制器和PID控制器相比,仿真结果验证了FFOPID控制器在几种情况下具有出色的稳定性和更强的鲁棒性的有效性。

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  • 作者

    Marzband, Mousa;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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