首页> 外文期刊>Renewable Power Generation, IET >Automatic generation control of a solar thermal and dish-stirling solar thermal system integrated multi-area system incorporating accurate HVDC link model using crow search algorithm optimised FOPI Minus FODF controller
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Automatic generation control of a solar thermal and dish-stirling solar thermal system integrated multi-area system incorporating accurate HVDC link model using crow search algorithm optimised FOPI Minus FODF controller

机译:太阳能热和碟式搅拌太阳能热系统的集成集成多区域系统的自动发电控制,该系统结合了精确的HVDC链接模型,并使用了经过优化的FOPI Minus FODF控制器的乌鸦搜索算法

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摘要

This article demonstrates the automatic generation control of a multi-area system incorporating various sources. Area-1 and area-2 consist of thermal and parabolic trough solar thermal plant (PTSTP) of fixed and random solar insolation, respectively, and area-3 comprises of thermal and realistic dish-stirling solar thermal system units. A maiden effort has been made to use a fractional order (FO) proportional-integral minus FO derivative with filter coefficient (FOPI-FODF) controller as a secondary controller. The controller gains are optimised using a novel algorithm called crow search algorithm. Comparisons of system dynamic response with and without renewable energy sources for FOPI-FODF, and for some commonly used integer order and FO controller's reveals the better performance of FOPI-FODF controller. A study comparing both fixed and random solar insolation in PTSTP of different areas have been tested. An accurate high-voltage direct current (AHVDC) line model is designed using inertia emulation strategy and is placed instead of AC tie line, and with parallel AC tie lines resulting in better system dynamic performances than AC tie line alone. The selection of the optimum location of AHVDC line in parallel AC tie line exposes the AHVDC line connected with the area where the system is disturbed.
机译:本文演示了结合了各种资源的多区域系统的自动生成控制。 Area-1和Area-2分别由固定日照和随机日照的热槽和抛物槽式太阳能热电厂(PTSTP)组成,而Area-3由热和实际的碟式搅拌太阳能热系统单元组成。尽力使用带有滤波器系数的分数阶(FO)比例积分减去FO导数(FOPI-FODF)控制器作为辅助控制器。控制器增益使用一种称为乌鸦搜索算法的新颖算法进行了优化。对于FOPI-FODF,以及一些常用的整数阶和FO控制器,在有无可再生能源的情况下,系统动态响应的比较揭示了FOPI-FODF控制器的更好性能。已经测试了比较不同地区的PTSTP中固定日照和随机日照的研究。使用惯性仿真策略设计了一种精确的高压直流(AHVDC)线路模型,该模型代替了交流联络线,并且与平行的交流联络线相比,具有比单独的交流联络线更好的系统动态性能。在并联AC联络线中选择AHVDC线的最佳位置会使AHVDC线与系统受干扰的区域相连。

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