Combined ALFC-AVR Control of Diverse Energy Source Based Interconnected Power System using Cascade Controller

Biswanath Dekaraja, L. Saikia, Satish Kumar Ramoji
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Abstract

This article presents a novel fractional-order (FO) cascade controller named FO tilt-derivative with filter cascaded to FO proportional-derivative with filter (CFOTDN-FOPDN) controller for unified automatic load frequency control study considering automatic voltage regulator loop. The considered system includes hydro and dish-Stirling solar thermal system in area-1 and area-2 consists of thermal and solar thermal power plant. Pertinent physical constraints are provided to the thermal and hydro units. The communication time delay (CTD) among load dispatch center and location of the power generation unit is considered. The optimization method named artificial flora algorithm is utilized to accomplish superlative solution. Investigations reveal that the proposed controller outperforms the PIDN and TIDN controllers. Analysis reflects that the higher value of CTD degrades the system performance. Moreover, the system performance improves with the higher value of the solar insolation. Lastly, the sensitivity analysis divulges the AFA optimized controller parameters are more robust against wide variations of system loading.
基于级联控制器的多能量互联电力系统ALFC-AVR联合控制
本文提出了一种新型分数阶(FO)级联控制器,即考虑自动调压回路的FO倾斜导数带滤波器级联到FO比例导数带滤波器(CFOTDN-FOPDN)控制器,用于统一自动负荷频率控制研究。所考虑的系统包括1区水能和碟式斯特林太阳能热系统,2区由热电站和太阳能热电站组成。对热力和水力装置提供了相应的物理约束。考虑了负荷调度中心与发电机组所在地之间的通信时延。利用人工植物群算法的优化方法实现最优解。研究表明,所提出的控制器优于PIDN和TIDN控制器。分析表明,CTD值越高,系统性能越差。而且,系统的性能随日照量的增大而提高。最后,灵敏度分析表明,AFA优化后的控制器参数对系统负载变化具有更强的鲁棒性。
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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