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VSC Based Controller for Damping SSR in Multigenerator System Using Genetic Algorithm and Simulated Annealing

机译:基于VSC的控制器,用于使用遗传算法和模拟退火的多亮剂系统中的SSR

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Sub-synchronous resonance (SSR) has become a serious potential threat for both generators and power grid in the modern power system. To deal with this problem, a voltage source converter (VSC) based controller named sub-synchronous resonance dynamic suppressor (SSRDS) is proposed and designed by genetic algorithm and simulated annealing (GA-SA). The control strategy of the SSRDS and its mechanism of damping SSR are presented and analyzed in this study. To improve the robustness and the damping effect of the SSRDS in the multi-mode and multi-generator system, the GA-SA is adopted to obtain the optimal control parameters. Based on the defined fitness function, the mathematical model of the optimization problem of the SSRDS is established and well solved by GA-SA in MATLAB. The nonlinear simulations based on a real multi-generator system in western China is performed in PSCAD to investigate the effectiveness of the proposed control strategy.
机译:子同步谐振(SSR)已成为现代电力系统中发电机和电网的严重潜在威胁。为了解决这个问题,通过遗传算法和模拟退火(Ga-SA)提出并设计了一种名为Sub-Synchronous谐振动态抑制(SSRD)的电压源转换器(VSC)的控制器。本研究提出和分析了SSRDS的控制策略及其阻尼SSR机制。为了提高SSRDS在多模和多发电机系统中的鲁棒性和阻尼效果,采用GA-SA获得最佳控制参数。基于所定义的健身功能,建立了SSRDS的优化问题的数学模型,并在Matlab中得到了很好的解决。基于中国西部真正的多发电机系统的非线性模拟在PSCAD中进行了研究拟议控制策略的有效性。

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