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Transient Stability Analysis of Power System by Coordinated PSS-AVR Design Based on PSO Technique

机译:基于PSO技术的PSS-AVR协调设计在电力系统暂态稳定分析中的应用

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摘要

In this paper, Power System Stabilizer (PSS) and Automatic Voltage Regulator (AVR) are coordinated to improve the transient stability of generator in power system. Coordinated design problem of AVR and PSS is formulated as an optimization problem. Particle Swarm Optimization (PSO) technique is an advanced robust search method by the swarming or cooperative behavior of biological populations mechanism. The performance of PSO has been certified in solution of highly non-linear objectives. Thus, PSO technique has been employed to optimize the parameters of PSS and AVR in order to reduce the power system oscillations during the load changing conditions in single-machine, infinite-bus power system. The results of nonlinear simulation suggest that, by coordinated design of AVR and PSS based on PSO technique power system oscillations are exceptionally damped. Correspondingly, it's shown that power system stability is superiorly enhanced than the uncoordinated designed of the PSS and the AVR controllers.
机译:本文通过协调电力系统稳定器(PSS)和自动电压调节器(AVR)来提高电力系统中发电机的暂态稳定性。 AVR和PSS的协调设计问题被表述为优化问题。粒子群优化(PSO)技术是一种通过生物种群机制的群聚或协同行为的高级鲁棒搜索方法。 PSO的性能已通过高度非线性目标解决方案的认证。因此,已采用PSO技术优化PSS和AVR的参数,以减少单机,无限母线电力系统中负载变化条件期间的电力系统振荡。非线性仿真结果表明,通过基于PSO技术的AVR和PSS的协同设计,可以极大地抑制电力系统的振荡。相应地,它表明,与PSS和AVR控制器的非协调设计相比,电力系统的稳定性得到了极大的增强。

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