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Design of STATCOM Damping Controller Using Teaching Learning Based Optimization

机译:基于教学优化的Statcom Damping控制器设计

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In this paper, power system dynamic stability was enhanced by damping electromechanical oscillations using STATCOM based supplementary power oscillation damping (POD) controller. The non-linear model of the system was derived and then linearized to derive the system closed loop state matrix for eigenvalue analysis. The supplementary POD controller for STATCOM was designed and formulated as an optimization problem and the controller parameters were optimized using teaching-learning-based optimization (TLBO) algorithm. The proposed POD controller performance was verified in time domain simulation. The result shows that the proposed STATCOM POD controller was effective over different operating conditions in enhancing the dynamic stability of power system by damping electromechanical power system oscillations. The TLBO was also compared with other heuristics optimization techniques to validate its superiority.
机译:本文采用STATCOM基于辅助功率振荡阻尼(POD)控制器,通过阻尼机电振荡增强了电力系统动态稳定性。导出系统的非线性模型,然后线性化以导出用于特征值分析的系统闭环状态矩阵。 STATCOM的补充POD控制器被设计和配制为优化问题,并使用基于教学的优化(TLBO)算法进行了优化了控制器参数。在时域仿真中验证了所提出的POD控制器性能。结果表明,通过阻尼机电动力系统振荡提高电力系统的动态稳定性,所提出的STATCOM POD控制器在不同的操作条件下有效。 TLBO也与其他启发式优化技术进行了比较,以验证其优越性。

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