带变桥/半桥结构电子换向器的永磁无刷直流电机效率及功率损耗

K. Krykowski, A. Bodora
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引用次数: 4

摘要

在实践中,我们经常遇到电气驱动,在负载扭矩小于额定扭矩的情况下,需要以更高的速度运行。这种类型的操作称为恒功率操作,可以定义为电机自然转矩-转速特性的第二范围。当用永磁体激励电动机时,磁通量是恒定的,当电源电压保持恒定时,电动机的转速也(近似)保持恒定。在实践中,尝试了不同的解决方案,以实现在降低转矩下提高无刷电机的转速。其中一种使永磁无刷直流电动机实现增速减转矩运行的方法是采用可切换桥-半桥结构的电子换向器。本文研究的是由变结构换向器驱动的无刷电机的损耗和效率的估计。理论分析、计算机仿真和实验室试验结果表明,采用电子变结构换向器,在不增加电机功率和电源功率的情况下,可以在第二转速范围内运行,但对整体驱动效率的降低不显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency and power losses in PM BLDC motor with variable bridge/half-bridge structure electronic commutator
In practice we often meet with electrical drives, where it is necessary to operate with higher speed, while load torque is less than rated torque. This type of operation is called ldquoconstant power operationrdquo and may be defined as second range of natural motor torque-speed characteristic. In case of motors excited with permanent magnets magnetic flux is constant, and while supply voltage remains constant, motor speed is also (approximately) kept constant. In practice, different solutions are attempted in order to achieve increased rotating speed of brushless motors at decreased torque. One of the methods, which make possible PM BLDC motor operation at increased speed and decreased torque, is use of electronic commutator with switchable bridge-half-bridge structure. The investigation presented in the paper has been aimed at estimation of losses and efficiency in the drive consisting of brushless motor operating with variable structure commutator. Results of theoretical analysis, computer simulations and laboratory tests have shown that application of electronic variable structure commutator, which makes possible operation in the second speed range without increasing motor power and supply source power, causes an insignificant decrease in overall drive efficiency.
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