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Optimal preview-based stable-inversion for output tracking of nonminimum-phase linear systems

机译:基于最优预览的稳定反演用于非最小相位线性系统的输出跟踪

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摘要

In this article, a new approach to output tracking of nonminimum-phase systems is proposed. The proposed technique extends the preview-based stable-inversion method to optimally utilize finite-preview (in time) of the future desired output trajectory to find the feedforward input (called the inverse input) for achieving precision output tracking for nonminimum-phase systems. It has been shown that having a large enough preview time is critical to ensure the precision in the preview-based output tracking. The available preview time, however, can be limited due to the physical constraints, and more generally, the associated cost and/or hardware limits. Therefore, we propose obtaining the optimal preview-based inverse input by minimizing, within the preview time window, the predicted tracking error (under the preview-based inverse input) relative to the input energy. A simulation study on a piezoelectric actuator model is used to illustrate the proposed technique.
机译:在本文中,提出了一种新的非最小相位系统输出跟踪方法。所提出的技术扩展了基于预览的稳定反演方法,以最佳地利用未来所需输出轨迹的有限预览(及时)来找到前馈输入(称为逆输入),从而实现非最小相位系统的精确输出跟踪。已经显示出足够长的预览时间对于确保基于预览的输出跟踪的精度至关重要。然而,由于物理限制,并且更一般地,相关联的成本和/或硬件限制,可用预览时间可能受到限制。因此,我们建议通过在预览时间窗口内最小化相对于输入能量的预测跟踪误差(在基于预览的反向输入下)来获得最佳的基于预览的反向输入。通过对压电执行器模型的仿真研究来说明所提出的技术。

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