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Closed loop control of voltage source converters during faults in high voltage DC transmission system

机译:电压源转换器的闭环控制在高压直流传输系统中的故障期间

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摘要

High voltage DC transmission is very cost effective alternate solution for high voltage AC transmission. High voltage DC transmission towers occupy less space and poles carry more current compared to high voltage AC system. High voltage DC transmission lines are emerging as an alternate solution for flexible AC transmissions (FACTS) technology. Earlier either thyristor valves or mercury valves were used in converters. Voltage source converter has replaced conventional converter in high voltage DC system because of their flexible control, black start capability, and they can work with weak AC system. Switching at higher frequency is also an added advantage. In voltage source converter-based high voltage DC transmission, both real and reactive power transmitted can be controlled whereas in conventional line commutated converter-based high voltage DC transmission system, only the real power transmitted was controlled. There may be chances of grid faults in sending end and receiving end stations. The typical faults are single line fault, double line to ground fault and three phase fault. The faults in one high voltage DC station should not affect the other end station. Necessary control should be initiated to take care of AC faults on both the sides that are before rectification in the sending end station and after inversion in the receiving end station. To handle such faults, the voltage source converters should be controlled to regulate the power transmitted through the line in such a way that the fault in one grid will not affect the parameters of the other grid. This paper presents closed loop control of both voltage source converters to take care of line to ground fault. The controller uses PQ theory. The behavior of high voltage DC system during fault without and with controller is presented in this paper. This simulation study is used to educate electrical transmission and faults detection to the trainees, they can easily understand.
机译:高压直流传输是高压AC变速器的高压备用解决方案。与高压AC系统相比,高压直流传动塔占用较少的空间,杆子携带更多电流。高压直流传输线作为柔性AC变速器(事实)技术的替代解决方案。早期晶闸管阀门或汞阀门用于转换器中。由于灵活的控制,黑色启动能力,电压源转换器已在高压DC系统中取代了传统转换器,并且可以使用弱交流系统。以较高频率切换也是一个额外的优势。在基于电压源转换器的高压DC变速器中,在传统的线路换向转换器的高压DC传输系统中,可以控制透射的实际和无功功率,只有透射的实际功率。发送端和接收端站可能有网格故障的机会。典型的故障是单线故障,双线到接地故障和三相故障。一个高压DC站中的故障不应影响另一个终端站。应启动必要的控制,以在发送端站中的整流之前和接收结束站中的反转后照顾两侧的AC故障。为了处理这些故障,应控制电压源转换器以调节通过线路传输的电力,使得一个网格中的故障不会影响另一个网格的参数。本文介绍了两个电压源转换器的闭环控制,以照顾地面故障。控制器使用PQ理论。本文介绍了在故障和控制器的故障期间的高压DC系统的行为。该仿真研究用于教育电力传输和故障检测,他们很容易理解。

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