伺服系统机械共振的在线检测与抑制

J. Kang, Songlin Chen, X. Di
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引用次数: 19

摘要

机械共振往往会使伺服系统性能恶化,甚至导致系统不稳定。针对伺服系统中普遍存在的机械共振现象,提出了一种机械共振在线检测与抑制策略。采用位移离散傅立叶平移(SDFT)实时检测机械共振的存在及其信息,并利用该信息确定陷波滤波器的参数。为了消除陷波滤波器动态输入时控制输入的跳变,提出了一种基于参数逐渐变化和重复离散化滤波器的新方法。当机械谐振随载荷变化、部件老化和机械耦合松动等条件发生变化时,实时SDFT可以自动检测到新的振动信息,并通过调整陷波滤波器的参数来抑制振动。在转台伺服系统上的实验结果充分证明了该策略的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Online detection and suppression of mechanical resonance for servo system
Mechanical resonance can often deteriorate the performance of servo system and even cause instable. For the ubiquitous phenomenon in servo system, this paper proposes a strategy for online detection and suppression of mechanical resonance. The Shifted Discrete Fourier Translations (SDFT) is employed to detect the existence of mechanical resonance and its information in real time, which is used to determine the parameters of the notch filter. To eliminate the jump of control input while the notch filter is put in the system dynamically, a new method based on gradually changing parameters and repeatedly discretizing filter is proposed. When the mechanical resonant varies with the conditions of load change, component ageing and mechanical coupling looseness, the real-time SDFT can detect the new vibration information automatically and adjust the parameter of the notch filter to suppress the vibration consequently. The experimental results on the turntable servo system show sufficiently that this proposed strategy is feasible and effective.
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