A System Design Method of High-Frequency Class-D Inverter for Wideband Current Control

Hiroki Kurumatani, S. Katsura
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Abstract

This paper reports a system design method of high-frequency class-D inverter for wideband current control for robotics in human society. There is a problem that conventional inverters are restricted by a switching frequency and hence the motor can not drive in a high-frequency range. Since a control system requires a severe condition as for a phase lag, such restriction should be removed. To overcome this problem, the paper designs a system with providing three pillars: a controller to attain a robustness, hardware improvement and a modulation technique to increase a bandwidth, and design policy for a processor to treat a high-frequency signal. Then, a GaN-HEMT-based class-D inverter and an FPGA-based controller are prepared to support these pillars. The paper proves an importance of the integrated design.
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一种用于宽带电流控制的高频d类逆变器系统设计方法
本文报道了一种用于人类社会机器人宽带电流控制的高频d类逆变器的系统设计方法。有一个问题,传统的逆变器受到开关频率的限制,因此电机不能在高频范围内驱动。由于控制系统需要相位滞后的严格条件,因此应该消除这种限制。为了克服这个问题,本文设计了一个系统,提供了三个支柱:一个控制器来实现鲁棒性,硬件改进和调制技术来增加带宽,以及处理器处理高频信号的设计策略。然后,准备了基于gan - hemt的d类逆变器和基于fpga的控制器来支持这些支柱。本文论证了一体化设计的重要性。
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