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Extending the Constant Power Speed Range of the Brushless DC Motor Through Dual-Mode Inverter Control

机译:通过双模逆变器控制扩展无刷直流电动机的恒定功率速度范围

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摘要

An inverter topology and control scheme has been developed and tested to demonstrate that it can drive low-inductance, surface mounted permanent magnet motors over the wide constant power speed range (CPSR) required in electric vehicle applications. This new controller, called the dual-mode inverter controller (DMIC) [1], can drive both the Permanent Magnet Synchronous Machine with sinusoidal back emf, and the brushless dc machine (BDCM) with trapezoidal emf as a motor or generator. Here we concentrate on the application of the DMIC to the operation of the BDCM in the motoring mode. Simulation results, supported by closed form analytical expressions, show that the CPSR of the DMIC driven BDCM is infinite when all of the motor and inverter loss mechanisms are neglected. The expressions further show that the ratio of high-to-low motor inductances accommodated by the DMIC is 11 making the DMIC compatible with both low- and high-inductance BDCMs. Classical hysteresis-band motor current control used below base speed is integrated with DMICs phase advance above base speed. The power performance of the DMIC is then simulated across the entire speed range. Laboratory testing of a low-inductance, 7.5-hp BDCM driven by the DMIC demonstrated a CPSR above 6:1. Current peak and rms values remained controlled below rated values at all speeds. A computer simulation accurately reproduced the results of lab testing showing that the limiting CPSR of the test motor is 8:1.
机译:已经开发并测试了逆变器拓扑和控制方案,以证明其可以在电动汽车应用所需的宽恒定功率速度范围(CPSR)范围内驱动低电感,表面安装的永磁电动机。这种称为双模逆变器控制器(DMIC)[1]的新型控制器既可以驱动正弦反电动势的永磁同步电机,也可以驱动带有梯形电动势的无刷直流电机(BDCM)作为电动机或发电机。在这里,我们集中讨论DMIC在电动模式下BDCM的运行中的应用。由闭式分析表达式支持的仿真结果表明,当忽略所有电动机和逆变器的损耗机制时,DMIC驱动的BDCM的CPSR无限大。表达式进一步表明,DMIC容纳的高/低电机电感比为11,这使得DMIC与低电感和高电感BDCM兼容。基本速度以下使用的经典磁滞带电动机电流控制与DMIC高于基本速度的相位超前集成在一起。然后在整个速度范围内模拟DMIC的功率性能。由DMIC驱动的低电感,7.5 hp BDCM的实验室测试表明CPSR高于6:1。在所有速度下,电流峰值和均方根值均保持在额定值以下。计算机仿真准确地再现了实验室测试的结果,表明测试电机的极限CPSR为8:1。

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