首页> 外文会议> >Closed-form analysis of adjustable speed drive performance under input voltage unbalance and sag conditions
【24h】

Closed-form analysis of adjustable speed drive performance 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性能的闭式分析

获取原文

摘要

Voltage unbalance or sag conditions generated by the line excitation can cause the input rectifier stage of an adjustable-speed drive (ASD) to enter single-phase rectifier operation. This degradation of the input power quality can have a significant negative impact on the induction machine performance characteristics. This paper provides an approximate closed-form analysis of the impact of line voltage sags and unbalance on the induction machine phase voltages, currents, and torque pulsations for a general-purpose ASD consisting of a three-phase diode bridge rectifier, dc link, and PWM inverter delivering constant volts-per-Hertz excitation. Attention is focused on the impact of the dominant 2nd harmonic of the line frequency that appears in the DC link voltage during the sag/unbalance conditions, neglecting the impact of the other higher-order harmonics. In addition to the closed-form analytical results that assume constant rotor speed, both simulation and experimental results are presented that confirm the key analytical results, including the dominance of the 2nd harmonic in the resulting torque pulsations. The analytical results can be used as a valuable design tool to rapidly evaluate the approximate impact of unbalance/sag conditions on ASD machine performance.
机译:线路激励产生的电压不平衡或跌落情况可能导致可调速驱动器(ASD)的输入整流器级进入单相整流器工作状态。输入功率质量的这种下降可能会对感应电机的性能特征产生重大的负面影响。本文针对由三相二极管桥式整流器,直流母线和直流电组成的通用ASD,提供了线电压骤降和不平衡对感应电机相电压,电流和转矩脉动的影响的近似闭合形式分析。 PWM逆变器提供恒定的每赫兹伏特激励。注意力集中在下垂/不平衡条件下出现在直流母线电压中的线路频率的主要二次谐波的影响上,而忽略了其他高次谐波的影响。除了假定转子速度恒定的闭式分析结果外,还提供了仿真和实验结果,这些结果证实了关键的分析结果,包括在所产生的转矩脉动中二次谐波的优势。分析结果可以用作快速评估不平衡/下垂条件对ASD机器性能的近似影响的有价值的设计工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号