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Power-system Stability Improvement By Pso Optimized Sssc-based Damping Controller

机译:通过Pso优化的基于Sssc的阻尼控制器改善电力系统的稳定性

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摘要

Power-system stability improvement by a static synchronous series compensator (SSSC)-based damping controller is thoroughly investigated in this article. The design problem of the proposed controller is formulated as an optimization problem, and the particle swarm optimization technique is employed to search for the optimal controller parameters. By minimizing a time-domain-based objective function, in which the deviation in the oscillatory rotor speed of the generator is involved, stability performance of the system is improved. The performance of the proposed controller is evaluated under different disturbances for both a single-machine infinite-bus power system and a multi-machine power system. Results are presented to show the effectiveness of the proposed controller. It is observed that the proposed SSSC-based controller provides efficient damping to power-system oscillations and greatly improves the system voltage profile under various severe disturbances. Furthermore, the simulation results show that in a multi-machine power system, the modal oscillations are effectively damped by the proposed SSSC controller.
机译:本文对基于静态同步串联补偿器(SSSC)的阻尼控制器对电源系统的稳定性进行了深入研究。将提出的控制器的设计问题表述为优化问题,并采用粒子群优化技术搜索最优控制器参数。通过最小化基于时域的目标函数,其中涉及发电机的振荡转子速度的偏差,提高了系统的稳定性能。在单机无限母线电源系统和多机电源系统的不同干扰下,对所提出控制器的性能进行了评估。结果表明了所提出控制器的有效性。可以看出,提出的基于SSSC的控制器为电力系统的振荡提供了有效的阻尼,并在各种严重干扰下大大改善了系统的电压分布。此外,仿真结果表明,在多机电源系统中,所提出的SSSC控制器有效地抑制了模态振荡。

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