Challenges and solutions of protecting variable speed drive motors

Angelo D'Aversa, B. Hughes, Subhas Patel
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引用次数: 8

Abstract

Variable frequency drives (VFDs), also known as variable speed drives, provide significant advantages for the operation of induction motors. These advantages include reduced starting currents, adjustable speed control, and improved energy efficiency. However, VFDs create additional challenges for motor operation and protection that are not present in line-connected motors. The protection challenges are solved by new protection elements available in an electronic motor protection relay. Traditional motor protection elements use fundamental frequency measurements for operating current. VFD-operated motors have a fundamental frequency that changes rapidly in response to speed adjustments. Additionally, the synthesized sine waves produced by the VFD contain significant harmonic content. The new protection elements use true rms (fundamental plus harmonics) operating current. True rms measurements are not dependent on having a fixed fundamental frequency. True rms measurements properly account for the motor heating caused by harmonic currents. Conventional single-speed motor protection uses a fixed value for the full-load amperes (FLA) of the motor. This single FLA assumes that a fixed cooling rate is available to the motor. Commonly used low-voltage motors have shaft-coupled cooling fans that spin at the same speed as the motor. At reduced operating speeds, the cooling air provided by the fan is significantly reduced. In order to prevent overheating of the motor, the protection elements should compensate for the reduced cooling. The new protection elements dynamically compensate for the reduced cooling available at reduced speed operation. VFDs are typically installed in motor control centers (MCCs). Because of the large available fault current, MCCs can have significant arc-flash hazard potential. The safety of VFD-operated motors can be improved using arc-flash protection elements. VFDs are often installed in large numbers at industrial facilities. This makes it impractical to manually monitor and control each motor as a standalone device. A centralized motor management system solves this problem. This paper describes novel protection elements that accommodate the unique protection, monitoring, and control challenges of VFD-operated motors.
变速驱动电机保护的挑战与解决方案
变频驱动器(vfd),也称为变速驱动器,为感应电机的运行提供了显著的优势。这些优点包括减少启动电流,可调速度控制,提高能源效率。然而,vfd为电机操作和保护带来了额外的挑战,而这在直线连接电机中是不存在的。电子电机保护继电器中的新型保护元件解决了保护方面的挑战。传统的电机保护元件使用基频测量工作电流。变频器操作的电机有一个基本频率,响应速度调整迅速变化。此外,由变频器产生的合成正弦波含有显著的谐波含量。新的保护元件使用真有效值(基波加谐波)工作电流。真正的均方根测量不依赖于固定的基频。真正的均方根测量正确地考虑了谐波电流引起的电机加热。传统的单速电机保护使用一个固定值为电机的满载安培(FLA)。这个单一的FLA假设电机有一个固定的冷却速率。常用的低压电机有轴联冷却风扇,旋转速度与电机相同。在降低运行速度时,风扇提供的冷却空气显著减少。为了防止电机过热,保护元件应补偿减少的冷却。新的保护元件动态补偿在减速运行时可用的减少冷却。变频器通常安装在电机控制中心(mcc)。由于有效故障电流大,控制元件可能具有显著的电弧闪蒸危险。采用电弧闪光保护元件可以提高变频调速电机的安全性。变频器通常大量安装在工业设施中。这使得手动监控和控制每个电机作为一个独立的设备是不切实际的。一个集中的电机管理系统解决了这个问题。本文介绍了适应变频调速电机独特的保护、监测和控制挑战的新型保护元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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