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Grasshopper optimization algorithm for optimal load frequency control considering Predictive Functional Modified PID controller in restructured multi-resource multi-area power system with Redox Flow Battery units

机译:带有预测功能修正PID控制器的带有氧化还原液流电池单元的重组多资源多区域电力系统中的蚱hopper优化算法,用于最优负载频率控制

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摘要

Load frequency control (LFC) is a well-established issue in design and operation of power systems considering to the extension, restructuring, and complexity of the interconnected power systems and also the emergence utilization of renewable energy resources. This paper studies the frequency control of multi-area multi-source power system based on the importance of the LFC in the stability of the power system which includes various generation units of thermal, hydroelectric, wind, natural gas and diesel under the restructured environment. In this system, non-linear physical constraints, governor dead band (GDB) and generation rate constraint (GRC) are considered. In this paper, a new Predictive Functional Modified PID (PFMPID) controller is proposed that the effectiveness of this controller is verified compared to the traditional one. In order to optimize and demonstrate the superiority of the proposed control method, Grasshopper Optimization Algorithm (GOA) is proposed as a suitable solution. To further improve the performance of the under study system, the use of the Redox Flow Battery (RFB) energy storage unit has also been proposed. Since the operation evaluation of the proposed process is necessary in different system conditions, the performance of the proposed method is studied under various disturbances and simulation results are presented.
机译:考虑到互连电源系统的扩展,重组和复杂性以及可再生能源的新兴利用,负载频率控制(LFC)是电力系统设计和运行中公认的问题。本文基于LFC在电力系统稳定性中的重要性研究了多区域多源电力系统的频率控制,该电力系统包括重组环境下的各种热电,水力发电,风能,天然气和柴油发电机组。在该系统中,考虑了非线性物理约束,调速器死区(GDB)和发电率约束(GRC)。本文提出了一种新型的预测功能修正PID(PFMPID)控制器,与传统控制器相比,该控制器的有效性得到了验证。为了优化和证明所提出的控制方法的优越性,提出了蚱hopper优化算法(GOA)作为一种合适的解决方案。为了进一步提高被研究系统的性能,还提出了使用氧化还原液流电池(RFB)能量存储单元的建议。由于在不同的系统条件下对所提出的过程进行操作评估是必要的,因此研究了所提出的方法在各种干扰下的性能,并给出了仿真结果。

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