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Investigation of Reductions in Motor Efficiency and Power caused by Stator Faults when operated from an Inverter Drive under Open Loop and Sensorless Vector Modes

机译:开环和无传感器矢量模式下变频器运行时定子故障引起的电机效率和功率降低的研究

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摘要

The introduction of Variable Speed Drives (VSD) motor driven systems in industry is driven by the desire to increase motor efficiencies in plant. The efficiency savings are usually determined by initial energy assessments which consider factors such as the motor load type and operating conditions where the motor actual load may also be measured. However, once the system is installed and in operation, the designed-in energy efficiency of these systems may remain unchecked throughout the lifetime of the installation. Efficiency reductions may be caused by mechanical or electrical degradation of equipment that could remain undetected by the drive or user whilst the equipment appears to operate as normal. On larger systems, the financial cost of reduced efficiency can be significant. The aim of this paper is to simulate minor deteriorations in the operating conditions of a standard motor controlled from a VSD and ascertain if the worsening condition can be detected at an early stage. The deterioration in motor condition will be small enough to remain undetected by the VSD and not cause a drive fault. This paper also reviews the effect of the introduced motor imbalance on motor efficiency and introduces power factor measurement methods which can be a useful indicator of increased operating costs for equipment. Test results from the two drive operating modes of Volts/Hertz (v/f) and Sensorless Vector (SV) are compared. This is to determine if there is any noticeable difference in the measurements obtained for efficiency and power factor between drive operating modes.
机译:在工业中引入变速驱动器(VSD)电动机驱动系统的原因是希望提高工厂的电动机效率。效率节省通常由初始能量评估来确定,该初始能量评估考虑了诸如电动机负载类型和还可测量电动机实际负载的运行条件等因素。但是,一旦系统安装并投入运行,这些系统的设计能效在整个安装生命周期中都可能无法得到检查。设备的机械或电气性能下降可能导致效率降低,而驱动器或用户在设备看起来正常运行时可能无法察觉。在大型系统上,降低效率的财务成本可能是巨大的。本文的目的是模拟由VSD控制的标准电动机的运行状况中的轻微恶化,并确定是否可以在早期阶段检测到恶化情况。电动机状况的恶化将非常小,以至于VSD无法检测到,并且不会引起驱动器故障。本文还回顾了引入的电动机不平衡对电动机效率的影响,并介绍了功率因数测量方法,这些方法可以作为增加设备运行成本的有用指标。比较了两种驱动器工作模式(伏/赫兹(v / f)和无传感器矢量(SV))的测试结果。这是为了确定在驱动器运行模式之间获得的效率和功率因数的测量值之间是否存在明显差异。

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