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Damping forced oscillations in power system via interline power flow controller with additional repetitive control

机译:通过额外的重复控制阻尼电力系统中的强制振荡。

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摘要

With the continuous expansion of power systems and the application of power electronic equipment, forced oscillation has become one of the key problems in terms of system safety and stability. In this paper, an interline power flow controller (IPFC) is used as a power suppression carrier and its mechanism is analyzed using the linearized state-space method to improve the system damping ratio. It is shown that although the IPFC can suppress forced oscillation with well-designed parameters, its capability of improving the system damping ratio is limited. Thus, combined with the repetitive control method, an additional repetitive controller (ARC) is proposed to further dampen the forced power oscillation. The ARC control scheme is characterized by outstanding tracking performance to a system steady reference value, and the main IPFC controller with the ARC can provide higher damping, and further reduce the amplitude of oscillations to zero compared with a supplementary damping controller (SDC). Simulation results show that the IPFC with an ARC can not only greatly reduce the oscillation amplitude, but also actively output the compensation power according to the reference value of the ARC tracking system.
机译:随着电力系统的连续扩展和电力电子设备的应用,强制振荡已成为系统安全性和稳定性方面的关键问题之一。在本文中,使用线性化状态空间方法来分析电力流量控制器(IPFC)作为功率抑制载波,其机制进行分析,以提高系统阻尼比。结果表明,尽管IPFC可以用精心设计的参数抑制强制振荡,但其改善系统阻尼比的能力是有限的。因此,结合重复控制方法,提出了一种额外的重复控制器(电弧)以进一步抑制强制功率振荡。电弧控制方案的特征在于,与系统稳定的参考值的优异跟踪性能,并且具有电弧的主IPFC控制器可以提供更高的阻尼,并且与补充阻尼控制器(SDC)相比,进一步将振荡幅度降低到零。仿真结果表明,带电弧的IPFC不仅可以大大降低振荡幅度,而且还根据弧形跟踪系统的参考值主动输出补偿功率。

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