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Impact on power system transient stability of AC-line-emulation controllers of VSC-HVDC links

机译:对VSC-HVDC链路的AC线仿真控制器的电力系统瞬态稳定性的影响

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High voltage direct current links based on voltage source converters (VSC-HVDC) embedded in alternating current (AC) systems are receiving a great deal of attention recently because they can contribute positively to the flexibilisation of modern power systems. Among several possibilities, AC-line-emulation control has been highlighted as an simple-but-useful alternative for these type of systems. With this strategy, the power flow through the link is controlled proportionally to the angle difference between its two AC terminals and this provides self-adaptation of the power flow in case of contingencies in the parallel AC lines, naturally. Although this controller is mainly concerned with steady state, it can also have an impact on the dynamic behaviour of the system which has not been sufficiently analysed. Along this line, this paper analyses the impact of AC-line-emulation controllers of VSC-HVDC on power system transient stability. Nonlinear time-domain simulations were carried out by using PSS/E on a small test system with an embedded point-to-point VSC-HVDC link. The critical clearing time (CCT) of a test fault has been used to assess transient-stability margins of the whole system. The paper provides recommendations for the design of AC-line-emulation controllers in order to ensure that transient stability is not jeopardised.
机译:基于电压源转换器(VSC-HVDC)的高压直流链路最近嵌入交替电流(AC)系统中接受了大量的关注,因为它们可以对现代电力系统的柔性贡献来贡献。在几种可能性中,AC-Line仿真控制被突出显示为这些系统的简单但有用的替代方案。利用这种策略,通过链路的电力流动按比例地控制到其两个AC端子之间的角度差,并且这提供了在平行交流线路中的突发发生的情况下的电力流自适应。虽然该控制器主要涉及稳态,但它也可能对未充分分析的系统的动态行为产生影响。沿着这条线,本文分析了VSC-HVDC对电力系统瞬态稳定性的交流线仿真控制器的影响。通过使用嵌入点对点VSC-HVDC链路在小型测试系统上使用PSS / E进行非线性时域模拟。测试故障的关键清算时间(CCT)用于评估整个系统的暂态稳定性边缘。本文为AC-Line-仿真控制器设计提供了建议,以确保暂态稳定性不会受到损害。

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