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An Algorithm for Effective Mitigation of Commutation Failure in High-Voltage Direct-Current Systems

机译:一种有效减轻高压直流系统换相失败的算法

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摘要

High-voltage direct-current (HVDC) systems are being widely employed in various applications owing to their advantages, such as bulk power transmission, long-distance transmission, and power-flow control. However, HVDC systems suffer from commutation failure, a major drawback that leads to increased device stress, interruptions in transmitted power, and problems related to protection relay setting, in turn, resulting in system instability during operation. Therefore, many studies have investigated the mitigation of commutation failure by considering its underlying factors, that is, ac voltage reduction, dc current increment, and crossing point shifts of phase voltage. However, these approaches are limited in that they are unable to mitigate intermittent commutation failure in a transient state. This study proposes an improved algorithm that mitigates commutation failure by considering the results of previous studies as well as the control characteristics of HVDC systems. The proposed algorithm is tested in various scenarios, and the test results verify its feasibility.
机译:高压直流(HVDC)系统由于具有诸如大功率输电,长距离输电和潮流控制等优点而被广泛应用于各种应用中。但是,HVDC系统存在换向失败的缺点,这是导致设备应力增加,发射功率中断以及与保护继电器设置有关的问题的主要缺点,进而导致操作期间的系统不稳定。因此,许多研究都通过考虑其根本因素,即交流电压降低,直流电流增量和相电压的交叉点偏移,研究了缓解换向故障的方法。然而,这些方法的局限性在于它们不能减轻瞬态下的间歇换向失败。这项研究提出了一种改进的算法,该算法通过考虑先前研究的结果以及HVDC系统的控制特性来减轻换向失败。该算法在各种场景下进行了测试,测试结果验证了该算法的可行性。

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