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The effect of converter configurations of HVDC links on sub- and super-synchronous disturbances to turbine units

机译:高压直流输电线路的变流器配置对涡轮机组的次同步和超同步干扰的影响

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摘要

In this paper, the rotor torque disturbances to turbine-generator units arising from harmonic interactions between converters of a HVDC system are studied. It is shown that a distinct-pulse converter configuration will be a better choice for avoiding sub- or super-synchronous resonance. For an asynchronous HVDC link, the risk of electromechanical resonance could be completely got rid of on either side of the link, no matter what directions the powers flow, if an 18-pulse converter were used on the 60 Hz side and a 12-pulse converter on the 50 Hz side. Such a configuration could still perform well even under the large frequency deviations. Furthermore, it shows that power system type plays a significant role on the possible excitation of resonance and on the probably damaging sections of a turbine-generator unit. Good match of the converter configuration and power system type is significant for a HVDC link to exempt from sub- and super-synchronous resonance.
机译:本文研究了高压直流输电系统换流器之间的谐波相互作用引起的汽轮发电机组转子转矩扰动。结果表明,不同脉冲转换器的配置将是避免次同步或超同步谐振的更好选择。对于异步HVDC链路,如果在60 Hz侧使用18脉冲转换器和12脉冲,则无论功率沿哪个方向流动,都可以完全消除链路两侧的机电共振风险50 Hz侧的转换器。即使在较大的频率偏差下,这种配置仍然可以很好地执行。此外,它表明,动力系统的类型在可能的共振激发以及涡轮发电机单元可能损坏的部分中起着重要作用。转换器配置和电源系统类型的良好匹配对于HVDC链路免于次同步和超同步谐振非常重要。

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