主动式可控整流器在市电电压畸变模式下的工作效率

D. Krylov, O. Kholod
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引用次数: 4

摘要

的目标。在三相三线供电网络电压深度畸变条件下,用不同控制系统对有源整流器的效率进行检验。方法。作者使用Matlab/Simulink软件环境创建了一个具有各种类型控制系统的有源整流器模型,作为频率电驱动的一部分。我们进行了一系列的模拟有源整流器与各种控制系统的工作模式,当电源电压失真。结果。当有源整流器在非调节模式下工作时,电流和电源电压的畸变超过最大允许值。市电电流和市电电压的质量指标明显高于正常允许值。在供电网络中不存在电压畸变的情况下,有源整流器的运行可以有效地消除市电电流的畸变,无论有源整流器的控制系统类型如何。在供电网络电压严重畸变的情况下,采用矢量控制系统的有源整流器比采用参数控制系统的有源整流器工作效率更高。创意。提出了确定电路连接点用电质量的标准。现实意义。建议已开发使用有源整流器控制系统时,工作与扭曲的电源电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Efficiency of the Active Controlled Rectifier Operation in the Mains Voltage Distortion Mode
Goal. Checking the efficiency of the active rectifier with differences types of control systems in conditions of deep voltage distortions of a three-phase three-wire supply network. Methodology. The authors have used the Matlab/Simulink software environment to create a model of an active rectifier with various types of control systems as part of a frequency electric drive. We performed a series of simulations of the operating modes of an active rectifier with various control systems when the supply voltage is distorted. Results. When the active rectifier is operating in an unregulated mode, the distortions of the current and mains voltage exceed the maximum permissible values. The quality indicators of the mains current and mains voltage are significantly higher than the normally permissible values. In the absence of voltage distortions in the supply network, the operation of the active rectifier can effectively eliminate the distortions of the mains current, regardless of the type of control system of the active rectifier. In conditions of deep distortions of the supply network voltage, the operation of an active rectifier with a vector control system is more efficient than with a parametric control system. Originality. Criteria for determining the quality of consumed electricity at the connection point of the circuit are proposed. Practical significance. Recommendations have been developed for the use of active rectifier control systems when working with a distorted power supply voltage.
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