...
首页> 外文期刊>IEEE Transactions on Magnetics >Induction Motor Performance Testing With an Inverter Power Supply: Part 1
【24h】

Induction Motor Performance Testing With an Inverter Power Supply: Part 1

机译:变频电源进行的感应电动机性能测试:第1部分

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The development of high-power density electrical machines continues to accelerate, driven by military, transportation, and industrial needs to achieve more power in a smaller package. Higher speed electrical machines are a recognized path toward achieving higher power densities. Existing industry testing standards describe well-defined procedures for characterizing both synchronous and induction machines. However, these procedures are applicable primarily to fixed-frequency (usually 60 or 50 Hz) power supplies. As machine speeds increase well beyond the 3600-rpm limitation of 60-Hz machines, a need for performance testing at higher frequencies is emerging. An inverter power supply was used to conduct a complete series of tests on two induction motors (0.5 and 1.0 MW) with speeds up to ~5000 rpm. The use of a nonsinusoidal power supply with limited power output capability required the development of measurement techniques and testing strategies quite different than those typically used for 60/50 Hz testing. Instrumentation and techniques for measuring voltage, current, and power on harmonic rich waveforms with accuracies approaching 1% are described. Locked-rotor and breakdown torque tests typically require large kVA input to the motor, much higher than the rated load requirement. An inverter sized for the rated load requirements of the motor was adapted to perform locked-rotor and breakdown torque tests. Inverter drive protection features, such as anti-hunting and current limit that were built into the inverter had to be factored into the test planning and implementation. Test results are presented in two companion papers. This paper (Part 1) correlates test results with the results of an algorithmic induction motor analysis program. Part 2 presents the test results compared with a Matlab simulation program and also provides a comprehensive discussion of the instrumentation that was essential to achieve testing accuracy. Correlating test results with calculated valu-es confirmed that the testing techniques developed during this testing program are useful for evaluating high-speed, high-power density electrical machinery
机译:在军事,运输和工业需求的驱动下,高功率密度电机的发展继续加速,以较小的封装实现更大的功率。更高速度的电机是实现更高功率密度的公认途径。现有的行业测试标准描述了用于定义同步电机和感应电机特性的明确定义的程序。但是,这些过程主要适用于固定频率(通常为60或50 Hz)的电源。随着机器速度的增加远远超过60 Hz机器的3600 rpm的限制,对更高频率的性能测试的需求正在出现。逆变器电源用于对两台感应电机(0.5和1.0 MW)进行完整的系列测试,速度高达〜5000 rpm。使用功率输出能力有限的非正弦电源需要开发不同于通常用于60/50 Hz测试的测量技术和测试策略。描述了用于测量富谐波波形上的电压,电流和功率的仪器和技术,其准确度接近1%。堵转转矩和击穿转矩测试通常需要向电动机输入较大的kVA,远高于额定负载要求。尺寸适合电机额定负载要求的逆变器适用于执行转子堵转和击穿扭矩测试。逆变器内置的逆变器驱动保护功能(例如防寻线和限流)必须纳入测试计划和实施中。测试结果在两篇配套论文中介绍。本文(第1部分)将测试结果与算法感应电动机分析程序的结果相关联。第2部分介绍了与Matlab仿真程序相比的测试结果,还提供了对仪器的全面讨论,这对于实现测试精度至关重要。将测试结果与计算得出的值进行关联,证实了此测试程序中开发的测试技术可用于评估高速,高功率密度的电机

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