Discrete-time adaptive pole placement control of a multi-inertia system with high-frequency resonance and time-delay

Toshiki Seki, Y. Masui, Nobumasa Ushiro, N. Uchiyama
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Abstract

This paper presents a design method of a discrete-time adaptive control system for a multi-inertia system with highfrequency resonance and time-delay, which combines an internal loop of torque feedback by pole placement and PI control of angular velocity feedback. By appropriately placing poles of the control system, an output feedback control system that converges rapidly to a reference value can be designed. Furthermore, by extending the control system to adaptive control, the system can be operated under plant fluctuations. The effectiveness of the proposed system was confirmed by simulation.
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具有高频谐振和时滞的多惯量系统的离散自适应极点放置控制
本文提出了一种针对具有高频共振和时滞的多惯量系统的离散时间自适应控制系统的设计方法,该系统将转矩内环的极点反馈与角速度反馈的PI控制相结合。通过适当地设置控制系统的极点,可以设计出快速收敛到参考值的输出反馈控制系统。此外,通过将控制系统扩展为自适应控制,使系统能够在工厂波动下运行。仿真结果验证了该系统的有效性。
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