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Resource Efficient ILC: Enabling Large Tasks on an Industrial Position-Dependent Flatbed Printer

机译:资源高效的ILC:在与工业位置相关的平板打印机上启用大型任务

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Abstract: Norm-optimal ILC enables high performance for systems that execute repeating tasks. Lifting techniques provide an analytic expression for the optimal feedforward signal. However, for large tasks the computational load increases rapidly for increasing task length. The aim of this paper is to show the benefits of a Riccati-based approach, which is developed in this paper for a general performance criterion and is applicable to both linear time-invariant (LTI) and linear time-varying (LTV) systems. The approach is implemented on an industrial position-dependent flatbed printer with large tasks which cannot be implemented using lifted ILC. Compared to lifted ILC, the proposed resource-efficient ILC provides the same high performance, but at a significantly smaller computational load ( O ( N ) vs O ( N 3 )) making it more suitable for practical implementation.
机译:摘要:规范最佳ILC为执行重复任务的系统提供了高性能。提升技术提供了最佳前馈信号的解析表达式。但是,对于大型任务,计算量会随着任务长度的增加而迅速增加。本文的目的是展示基于Riccati的方法的优点,该方法是针对常规性能标准在本文中开发的,适用于线性时不变(LTI)和线性时变(LTV)系统。该方法在具有较大任务的工业位置相关平板打印机上实施,而大型任务无法使用提升式ILC实施。与提升的ILC相比,所提议的资源高效的ILC具有相同的高性能,但计算负载(O(N)vs O(N 3))明显较小,这使其更适合实际实施。

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