用CFOPI-TIDN控制器实现多区域多源电源系统的压频联合控制

Satish Kumar Ramoji, L. Saikia, Biswanath Dekaraja, M. Behera, N. Babu, S. K. Bhagat
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引用次数: 2

摘要

本文揭示了常规情况下三区多源不均匀互联电力系统的电压频率联合控制模式。1区包括热-风联合循环燃气轮机电厂,2区包括热-地热- ev机组,3区包括热水力发电厂- stpp。正在考虑用于热电厂和水电厂的相关GRC和GDB,以及用于CCGT电厂的GRC。分数阶PI控制器级联到带滤波器的倾斜积分导数控制器(CFOPI-TIDN)作为ALFC系统的辅助控制器和AVR系统的核心控制器来抑制频率和电压偏差。最新的元启发式算法Harris Hawks Optimization用于获得FOPI、TIDN和CFOPI-TIDN控制器的最佳增益和其他控制器参数,以实现电力系统的无缝运行。通过比较系统在时域指标下的响应,发现所提出的CFOPI-TIDN控制器具有超越性。分析了CCGT电厂对统一系统的影响。灵敏度研究是通过改变系统非线性的大小和位置来评估的。最后,利用OPAL-RT OP4510硬件设置对系统进行了实时分析。
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Combined Voltage and Frequency control of a Multi-Area Multi-Source Power System using CFOPI-TIDN Controller
This article divulges the coalesced control pattern of voltage and frequency for a three-area multi-source unequal interconnected power system under conventional scenario. Area-1 comprises Thermal-Wind-Combined Cycle Gas Turbine plants, Area-2 comprises Thermal-Geothermal-EV fleets, and Area-3 comprises Thermal-Hydro plants-STPP. Pertinent GRC and GDB for thermal and hydro plants and GRC for CCGT plants are being considered. The Fractional-order PI controller cascaded to Tilt-Integral-Derivative Controller with Filter (CFOPI-TIDN) is utilized as an ancillary controller of ALFC systems and as core controller of AVR systems to curb the frequency and voltage deviations. The most recent metaheuristic algorithm known as Harris Hawks Optimization is used to obtain optimum gains and other controller parameters of FOPI, TIDN, and CFOPI-TIDN controllers for the seamless operation of power systems. The proposed CFOPI-TIDN controller is found transcendent when comparing system responses concerning time-domain indices. Repercussions of the CCGT plants on the unified system are analyzed. The sensitivity study is assessed with changing the magnitude and position of system nonlinearities. Eventually, the system is investigated for real-time analysis with OPAL-RT OP4510 hardware setup.
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