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Individual Channel Analysis of the Thyristor-Controlled Series Compensator Performance

机译:晶闸管控制串联补偿器性能的单个通道分析

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摘要

The TCSC is the electronically-controlled counterpart of the conventional series bank of capacitors. A mature member of the FACTS technology, the TCSC has the ability to regulate power flows along the compensated line and to rapidly modulate its effective impedance. In this paper its performance is evaluated using Individual Channel Analysis and Design. Fundamental analysis is carried out to explain the generator dynamic behavior as affected by the TCSC. Moreover, a control system design for the system is presented, with particular emphasis in the closed-loop performance and stability and structural robustness assessment. It is formally shown that the incorporation of a TCSC operating in its capacitive range improves the dynamical performance of the synchronous machine by decreasing the electrical distance and therefore considerably reducing the awkward switchback characteristic exhibited by synchronous generators. It is also formally proven in the paper that the inductive operation should be avoided as it impairs system operation. In general, the TCSC inclusion brings on fragility into the global system, making it non-minimum phase and introducing adverse dynamics in the speed channel of the synchronous machine. Moreover, it is shown that the minimum-phase condition may also be present in cases featuring high capacitive compensation levels.
机译:TCSC是传统系列电容器的电子控制形式。 TCSC是FACTS技术的成熟成员,能够调节沿补偿线路的功率流并快速调节其有效阻抗。在本文中,其性能是使用“单个渠道分析和设计”进行评估的。进行基本分析以解释受TCSC影响的发电机动态行为。此外,提出了一种针对该系统的控制系统设计,尤其着重于闭环性能和稳定性以及结构鲁棒性评估。正式表明,在其电容范围内工作的TCSC的引入通过减小电气距离改善了同步电机的动态性能,因此大大降低了同步发电机表现出的笨拙的折返特性。本文还正式证明,应避免感应操作,因为它会损害系统操作。通常,TCSC的包含会给全局系统带来脆弱性,使其成为非最小相位,并在同步电机的速度通道中引入不利的动力。此外,表明在具有高电容补偿水平的情况下也可能存在最小相位条件。

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