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Design of a Damping Controller Using the SCA Optimization Technique for the Improvement of Small Signal Stability of a Single Machine Connected to an Infinite Bus System

机译:使用SCA优化技术设计防潮控制器,提高了连接到无限巴士系统的单机的小信号稳定性

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摘要

This paper discusses the use of a stochastic metaheuristic population-based optimization algorithm known as the sine cosine algorithm (SCA) to design the parameters of a power system stabilizer (PSS) for damping electromechanical oscillations in a single machine connected to a large power system. The design of the PSS parameters was formulated as an optimization problem to minimize the objective function value. The SCA was used to obtain the best values of the PSS parameters under the objective function. Simulation was carried out by a linearized power system model. The lead lag controller was used as the PSS structure and the results from that were compared with those obtained by moth flame optimization and evolutionary programming. The results showed that the SCA is more effective than are the other techniques in exploration and exploitation to tune the PSS parameters and enhance the power system stability by damping oscillations in a range of loading conditions.
机译:本文讨论了已知作为正弦余弦算法(SCA)的随机成逐群体的优化算法来设计用于在连接到大型电力系统的单机中阻尼机电振荡的电力系统稳定器(PSS)的参数。将PSS参数的设计配制成优化问题,以最小化目标函数值。 SCA用于在目标函数下获得PSS参数的最佳值。通过线性化电力系统模型进行仿真。引线滞后控制器用作PSS结构,并将其与通过蛾火焰优化和进化编程获得的结果进行比较。结果表明,SCA比勘探和开采中的其他技术更有效,以调谐PSS参数,并通过在一系列装载条件下阻尼振荡来提高电力系统稳定性。

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