Gravitational Search and Sine Cosine Algorithms to Enhance the VSC-HVDC System Performance Under Different Disturbances

M. S. Ghayad, N. Badra, M. Attia, A. Abdelaziz, S. Sushanth Kumar, Sachin Kumar, R. K. Saket
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引用次数: 2

Abstract

This paper focuses in studying the dynamic response of the voltage source converters high-voltage direct current (VSC-HVDC) connected to grid. In order to get faster response the magnitude of the active power, reactive power and the DC link voltage should be controlled. Optimizing the parameters of PI (proportional & integration) controller is necessary to control the said quantities. In this context meta-heuristic optimization methods i.e. gravitational search algorithm (GSA) and sine cosine algorithm (SCA) are used to obtain optimal parameters of PI controller. GSA algorithm is based on the gravity law for Newton while SCA depends on mathematical model based on cosine and sine functions. It is worthy to mention these algorithms have an efficient global search capability. Using MATLAB™ Simulink, model of VSC-HVDC system is presented. This system is exposed to different disturbances for demonstrating its dynamic response. Simulation results exhibit the dynamic response is improved with the optimal gains than that of default ones.
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重力搜索和正弦余弦算法提高VSC-HVDC系统在不同扰动下的性能
本文重点研究了电压源变流器高压直流并网时的动态响应。为了得到更快的响应,需要对有功功率、无功功率和直流链路电压的大小进行控制。优化PI(比例与积分)控制器的参数是控制上述数量的必要条件。在此背景下,采用引力搜索算法(GSA)和正弦余弦算法(SCA)等元启发式优化方法来获得PI控制器的最优参数。GSA算法基于牛顿引力定律,而SCA算法依赖于基于余弦函数和正弦函数的数学模型。值得一提的是,这些算法具有高效的全局搜索能力。利用MATLAB™Simulink建立了VSC-HVDC系统的模型。该系统暴露在不同的干扰下,以演示其动态响应。仿真结果表明,与默认增益相比,动态响应得到了优化。
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