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Influence of PWM Schemes and Commutation Methods for DC and Brushless Motors and Drives

机译:PWM方案和换向方法对直流和无刷电机和驱动的影响

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Currently, many different types of dedicated PWM motor control lC's are available in the market to control DC and brushless DC motors. Unfortunately, switching schemes of these IC's are either fixed or limited in flexibility, resulting in higher noise and poor efficiency in many cases. In this article, more than 5 different switching schemes are presented and relative advantages and drawbacks of each mode are compared. It was found that selection of the switching scheme affects performance characteristics such as current ripples in DC link, line current harmonics, and losses in the motors and drives. Based on the motor parameters and application requirements, selection of optimal switching scheme and PWM frequency can improve operating efficiency and motor/drive sizing. In addition, a simple DSP-based programmable brushless motor controller design capable to select any one of the above 5 switching schemes or Hall sensor-based sinusoidal scheme is demonstrated.
机译:目前,市场上可提供许多不同类型的专用PWM电机控制LC来控制DC和无刷直流电机。不幸的是,这些IC的切换方案是固定的或有限的灵活性,导致许多情况下的噪音更高,效率差。在本文中,提出了超过5种不同的开关方案,并比较了每种模式的相对优势和缺点。发现切换方案的选择会影响电机和驱动器中的直流链路,线路电流谐波和损耗中的电流纹波等性能特性。基于电机参数和应用要求,选择最佳开关方案和PWM频率可以提高运行效率和电机/驱动尺寸。此外,还证明了一种简单的基于DSP的可编程无刷电动机控制器设计,可选择上述5个开关方案或基于霍尔传感器的正弦方案中的任何一个。

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