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Real-Time Generation of Time-Optimal Commands for Rest-to-Rest Motion of Flexible Systems

机译:实时生成用于柔性系统静止运动的时间最优命令

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摘要

This brief presents an analysis of the time-optimal control for rest-to-rest motion of flexible structures with lightly damped modes. For such systems, the switch command timings are shown to be periodic, and the repeat time of the solution set is derived as a function of the natural mode frequencies. Based on this result, we formulate a new approach for the quick generation of time-optimal commands for any given reference move where a finite set of these periodic solutions are computed offline, and are later used to derive time-optimal profiles by solving a much reduced subset of original problem in real-time. This provides large computational benefit over existing schemes, which require expensive computations where nonconvex and nonlinear parametric optimization problems are solved for every reference move. The proposed approach is compared with existing input shaping-based schemes in terms of computational requirement and system performance. Extensions are provided for systems with multiple flexible modes, and with different limits on maximum acceleration and deceleration.
机译:本摘要介绍了对具有轻微阻尼模式的柔性结构的静止运动的最佳时间控制的分析。对于这样的系统,开关命令时序显示为周期性,并且解集的重复时间是根据自然模式频率得出的。基于此结果,我们为任何给定的参考移动制定了一种快速生成时间最佳命令的新方法,其中离线计算这些周期解的有限集合,然后通过求解大量时间来导出时间最佳轮廓实时减少原始问题的子集。与现有方案相比,这提供了巨大的计算优势,现有方案需要昂贵的计算,其中对于每个参考移动都解决了非凸和非线性参数优化问题。在计算需求和系统性能方面,将所提出的方法与现有的基于输入整形的方案进行了比较。提供了具有多种灵活模式且最大加速度和减速度具有不同限制的系统扩展。

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