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Source current harmonic analysis of adjustable speed drives under input voltage unbalance and sag conditions

机译:输入电压不平衡和跌落条件下变速驱动器的源电流谐波分析

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Adjustable speed drives (ASDs) have become the primary choice for most new and retrofit precision motor-control applications with increased system efficiencies and reduced system losses. The significant increase in the use of ASDs brings the need for understanding compatibility issues between them and their electrical environment in order to design the electrical systems appropriately. Even though there has been numerous studies on ASD effects on power systems, models for predicting the effect of the source voltage sags or unbalance have been limited. This paper is devoted to analyze the characteristics of input current harmonics on the utility side and the distribution transformer K-factor for practical ASD systems under input voltage unbalance and sag conditions. The relationships between the unbalanced input voltages and input current harmonics, the input inductance and the input current harmonics, transformer K-factor are explored for 5 hp, 100 hp and 600 hp power distribution systems with ASDs. The results can be used as a design guide for power distribution system design with ASDs. Theoretical derivations, simulation and experimental results are presented in this paper.
机译:可调速驱动器(ASD)已成为大多数新的和翻新的精密电机控制应用的主要选择,具有更高的系统效率并减少了系统损耗。 ASD的使用显着增加,因此有必要了解它们与电气环境之间的兼容性问题,以便适当地设计电气系统。即使对ASD对电力系统的影响进行了大量研究,但用于预测电源电压骤降或不平衡影响的模型仍然受到限制。本文致力于分析实际ASD系统在输入电压不平衡和跌落条件下的应用侧输入电流谐波的特性以及配电变压器的K因子。针对具有ASD的5 hp,100 hp和600 hp配电系统,探索了不平衡输入电压和输入电流谐波,输入电感和输入电流谐波,变压器K因子之间的关系。结果可以用作使用ASD进行配电系统设计的设计指南。本文介绍了理论推导,仿真和实验结果。

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