Drop-on-demand inkjet printhead performance improvement using robust feedforward control

A. Khalate, B. Bayon, X. Bombois, G. Scorletti, Robert Babuška
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引用次数: 7

Abstract

The printing quality delivered by a Drop-on-Demand (DoD) inkjet printhead is mainly limited due to the residual oscillations in the ink channel. The maximal jetting frequency of a DoD inkjet printhead can be increased by quickly damping the residual oscillations and by bringing in this way the ink-channel to rest after jetting the ink drop. The inkjet channel model obtained is generally subjected to parametric uncertainty. This paper proposes a robust optimization-based method to design the input actuation waveform for the piezo actuator in order to improve the damping of the residual oscillations in the presence of parametric uncertainties in the ink-channel model. Simulation results are presented to show the efficacy of the proposed method.
采用鲁棒前馈控制改进按需滴墨喷头性能
按需滴墨(DoD)喷墨头的打印质量主要受墨道中残留振荡的限制。DoD喷墨喷头的最大喷射频率可以通过快速阻尼残余振荡和以这种方式在喷射墨滴后使墨水通道休息来提高。得到的喷墨通道模型通常具有参数不确定性。本文提出了一种基于鲁棒优化的压电作动器输入驱动波形设计方法,以改善油墨通道模型中存在参数不确定性时残余振荡的阻尼。仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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