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引用次数: 2

摘要

此时,可调速驱动器(ASD)正得到广泛应用。这些驱动器,特别是那些使用脉宽调制的驱动器,对被馈电的电机的绕组绝缘施加了严重的压力。电机制造商越来越意识到与“驱动责任”相关的新故障机制。采用了几项测试,以确保即使在这些更有压力的条件下也能可靠地使用电动机。增加的应力大部分集中在电机的匝绝缘和相绝缘上,因此对这些绝缘的测试是本文的重点。浪涌试验被广泛用于保证这些绝缘材料的质量。新技术已经开发出来,可以模拟PWM驱动器施加的应力,并测量绝缘承受应力的能力,特别是匝间放电和电晕。现在有几种测量工具可用于在浪涌测试期间检测和量化这些放电。描述了检测电路,并给出了一种用于测量放电起始电压和确定电机绕组是否适合“驱动工作”的技术的测试结果。
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Winding tests for "Drive duty" induction motor stators
Adjustable speed drives (ASD) are being widely used at this time. These drives, particularly those utilizing pulse width modulation, impose severe stress on the winding insulation of the motors being fed. Motor manufacturers are increasingly aware of new failure mechanisms associated with "drive duty". Several tests have been adopted to assure reliable motors even under these more stressful conditions. Much of the increased stress is centered on the turn and phase insulation of the motors, so the tests on these insulations are the focus of this paper. The surge test is widely used to assure the quality of these insulations. New techniques have been developed to simulate the stresses imposed by PWM drives and measure the ability of the insulation to withstand that stress, particularly inter-turn discharging and corona. Several measurement tools are now available to detect and quantify these discharges during the surge test. The detection circuit is described and test results presented for one technique being used to measure a discharge inception voltage and determine the suitability of a motor winding for "drive duty".
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