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HVDC system DC loop resonance analysis based on time domain simulation

机译:基于时域仿真的HVDC系统直流回路谐振分析

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In HVDC systems, power converters are well known the generators of harmonics on both ac and dc side. Because of the interaction between ac and dc systems, some kinds of disturbances in the ac or dc side may cause the fundamental or second harmonic current on the dc side. When the dc loop of the HVDC system has natural resonant frequencies on the fundamental or the second harmonic frequencies, the low-order harmonic current oscillation will arise, which will damage the station equipment. In order to move the natural resonant frequencies at DC side far away from the fundamental and the second harmonic frequencies, the characteristics of the system harmonic impedance should be studied through varying the parameters of some elements of the HVDC system. In this paper, the DC loop impedance at any frequency is defined, and an approach to calculate the DC loop impedance is proposed, which is based on the test signal method and time domain simulation. Through a typical ± 500 kV HVDC sample system, the impacts of some important factors on the DC loop resonant characteristics are studied. Those important factors include the short circuit ratio of the AC systems, the capacity and type of the AC filters, the short circuit voltage drop of the converter transformers, the firing angle of the converters, the transmitted power of the HVDC system, the inductance of the smoothing reactor, the number of the DC filters, the length of the DC transmission line, as well as the operation mode of the HVDC system. Furthermore, based on the proposed approach, the resonant characteristics of the DC loop of the Nuozhadu-Guangdong ± 800kV UHVDC project is analyzed. The results are very useful when the DC loop resonant characteristics needs to be changed through varying the parameters of some elements of the HVDC system.
机译:在高压直流输电系统中,众所周知,功率转换器在交流和直流侧都产生谐波。由于交流和直流系统之间的相互作用,交流或直流侧的某些干扰可能会导致直流侧的基波或二次谐波电流。当HVDC系统的直流回路在基波或二次谐波频率上具有自然谐振频率时,将出现低阶谐波电流振荡,这将损坏站设备。为了使直流侧的固有谐振频率远离基波和二次谐波频率,应通过更改高压直流输电系统某些元件的参数来研究系统谐波阻抗的特性。本文定义了在任何频率下的直流回路阻抗,并基于测试信号方法和时域仿真,提出了一种计算直流回路阻抗的方法。通过典型的±500 kV HVDC采样系统,研究了一些重要因素对直流回路谐振特性的影响。这些重要因素包括交流系统的短路率,交流滤波器的容量和类型,变流器变压器的短路电压降,变流器的点火角,HVDC系统的传输功率,平滑电抗器,直流滤波器的数量,直流传输线的长度以及HVDC系统的运行模式。此外,基于提出的方法,分析了糯扎渡-广东±800kV特高压直流输电工程直流回路的谐振特性。当需要通过更改HVDC系统某些元件的参数来更改DC环路谐振特性时,该结果非常有用。

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