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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Modified control of the matrix converter-based drive for voltage sag impact reduction
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Modified control of the matrix converter-based drive for voltage sag impact reduction

机译:改进的基于矩阵转换器的驱动器控制,可降低电压骤降的影响

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摘要

Faults in transmission and distribution networks often cause voltage sags. Direct matrix converter (DMC)-based drives are a new generation of electrical drives. Unlike the conventional two-stage diode supply-side inverter drive, the DMC drive has no direct current (DC) link capacitor and no capacitor charging-time delay before operation. The absence of a DC link makes the DMC-based drive more sensitive to voltage sags. The above-mentioned faults in transmission and distribution networks could degrade the DMC drive's performance and reliability. This paper investigates possible kinds and levels of voltage sags, dependency on network configuration, and the behavior of the DMC-based drive under abnormal input line-voltage conditions. Modification of the DMC drive control to reduce the influence of voltage sags is proposed and verified.
机译:输配电网络中的故障通常会导致电压骤降。基于直接矩阵转换器(DMC)的驱动器是新一代的电气驱动器。与传统的两级二极管电源侧逆变器驱动器不同,DMC驱动器没有直流(DC)链接电容器,而且在运行之前没有电容器充电时间延迟。直流链路的缺失使基于DMC的驱动器对电压骤降更加敏感。传输和分配网络中的上述故障可能会降低DMC驱动器的性能和可靠性。本文研究了电压骤降的可能种类和水平,对网络配置的依赖性以及在异常输入线电压条件下基于DMC的驱动器的行为。提出并验证了DMC驱动控制的修改,以减少电压骤降的影响。

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