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Power system stabiliser and flexible alternating current transmission systems controller coordinated design using adaptive velocity update relaxation particle swarm optimisation algorithm in multi-machine power system

机译:多机电力系统中基于自适应速度更新松弛粒子群算法的电力系统稳定器与柔性交流输电系统控制器协调设计

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摘要

In this study, power system stabiliser (PSS), static VAR compensator (SVC), and thyristor controlled series capacitor (TCSC) controllers are simultaneously used to increase the stability and damping of the oscillations of a multi-machine power system. By SVC, the transferrable power in the steady state can be increased and the voltage profile can be controlled along the line. TCSC can regulate line impedance and therefore, increase the transferred power of the system. PSS is added to excitation system to enhance the damping of electric power system during low frequency oscillations. SVC, TCSC, and PSS can combine with each other for further damping and stability; therefore, their coordination is very important. Then, adaptive velocity update relaxation particle swarm optimisation algorithm is used to optimise the parameters of PSS, SVC, and TCSC simultaneous controllers. The robustness of the proposed algorithm has been tested on 16-machine 68-bus power system.
机译:在这项研究中,电力系统稳定器(PSS),静态无功补偿器(SVC)和晶闸管控制的串联电容器(TCSC)控制器可同时用于提高多机电力系统的稳定性和阻尼。通过SVC,可以增加稳态下的可传输功率,并且可以沿线路控制电压曲线。 TCSC可以调节线路阻抗,因此可以增加系统的传输功率。 PSS被添加到励磁系统中,以增强低频振荡期间电力系统的阻尼。 SVC,TCSC和PSS可以相互结合以实现进一步的阻尼和稳定性;因此,它们的协调非常重要。然后,采用自适应速度更新松弛粒子群算法对PSS,SVC和TCSC并发控制器的参数进行优化。该算法的鲁棒性已经在16机68总线电源系统上进行了测试。

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