低噪音和高效率的电机驱动运动控制

Y. Yokokura, K. Ohishi, S. Katsura
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引用次数: 2

摘要

本文研制了用于运动控制的g类功率放大器。一般的b类功率放大器由于功率效率问题,不能用于驱动大功率执行器。另一方面,典型的d类功率放大器由于PWM的存在,虽然功率效率很高,但在产生开关噪声的同时也会产生期望的电流。PWM逆变器产生的开关噪声降低了电机的控制性能。总之,典型的b类和d类功放不适合高级运动控制。采用g类放大器,既能解决功率效率问题,又能解决噪声问题。因此,g类放大器提高了运动控制电流控制器的控制性能。进行了g类功率放大器的驾驶试验。电流控制器和力控系统在FPGA上实现。通过实验,验证了采用g类功率放大器进行电流控制和力控制的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-noise and fine-efficiency motor drive for motion control
In this paper, Class-G power amplifiers for motion control are developed. General Class-B power amplifier cannot be used for driving high-power actuators because of power efficiency. On the other hand, due to PWM, typical Class-D power amplifier generates switching noise as well as desired current, though the power efficiency is very high. The switching noise cased by PWM inverter degrades the control performance of the motor. In short, typical Class-B and Class-D power amplifiers are not suitable for advanced motion control. By using Class-G amplifier, problem of both power efficiency and noise is able to be solved. Therefore, Class-G amplifier enhances the control performance of current controller for motion control. Driving test of Class-G power amplifiers is conducted. The current controller and force control system are implemented in FPGA. By the experiments, validity of the current control and force control with Class-G power amplifier is verified.
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