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Regulation of Voltage and Frequency in Solid Oxide Fuel Cell-Based Autonomous Microgrids Using the Whales Optimisation Algorithm

机译:基于鲸鱼优化算法的基于固体氧化物燃料电池的自主微电网的电压和频率调节

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This study explores the Whales Optimization Algorithm (WOA)-based PI controller for regulating the voltage and frequency of an inverter-based autonomous microgrid (MG). The MG comprises two 50 kW DGs (solid oxide fuel cells, SOFCs) interfaced using a power electronics-based voltage source inverter (VSI) with a 120-kV conventional grid. Four PI controller schemes for the MG are implemented: (i) stationary PI controller with fixed gain values (Kp and Ki), (ii) PSO tuned PI controller, (iii) GWO tuned PI controller, and (iv) WOA tuned PI controller. The performance of these controllers is evaluated by monitoring the system voltage and frequency during the transition of MG operation mode and changes in the load. The MATLAB/SIMULINK tool is utilised to design the proposed model of grid-tied MG alongside the MATLAB m-file to apply an optimisation technique. The simulation results show that the WOA-based PI controller which optimises the control parameters, achieve 62.7% and 59% better results for voltage and frequency regulation, respectively. The eigenvalue analysis is also provided to check the stability of the proposed controller. Furthermore, the proposed system also satisfies the limits specified in IEEE-1547-2003 for voltage and frequency.
机译:本研究探索了基于鲸鱼优化算法(WOA)的PI控制器,用于调节基于逆变器的自主微电网(MG)的电压和频率。 MG包含两个50 kW DG(固态氧化物燃料电池,SOFC),它们使用基于电力电子技术的电压源逆变器(VSI)与120kV常规电网连接。为MG实现了四种PI控制器方案:(i)具有固定增益值(Kp和Ki)的固定PI控制器,(ii)PSO调整的PI控制器,(iii)GWO调整的PI控制器,(iv)WOA调整的PI控制器。这些控制器的性能通过在MG操作模式转换和负载变化期间监视系统电压和频率来评估。利用MATLAB / SIMULINK工具与MATLAB m文件一起设计提出的并网MG模型,以应用优化技术。仿真结果表明,基于WOA的PI控制器优化了控制参数,分别实现了62.7%和59%的电压和频率调节效果。还提供特征值分析以检查所提出控制器的稳定性。此外,提出的系统还满足IEEE-1547-2003中规定的电压和频率限制。

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