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Flexible piecewise function evaluation methods with application to explicit model predictive control

机译:灵活的分段功能评估方法,应用于显式模型预测控制

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This paper addresses efficient evaluation of piecewise functions defined over polyhedral partitions which is a vital problem in many areas such as control applications. As an important application, the explicit model predictive control (eMPC) problem is considered which requires a piecewise affine (PWA) control law to be evaluated online. The proposed method combines an Orthogonal Truncated Binary Search Tree (OTBST) and lattice representation for PWA functions in a unified structure enjoying the advantages of both approaches. The proposed Lattice-based OTBST (LOTBST) method enables the designer to trade-off between preprocessing time, storage requirement and online computation time. Using examples it is shown that the proposed LOTBST leads to a considerably less preprocessing time and memory requirement comparing to the pure BST and less online computation time comparing to the pure lattice representation.
机译:本文解决了对多面体分区定义的分段函数的有效评估,这是控制应用等许多领域的重要问题。 作为一个重要的应用,考虑了显式模型预测控制(EMPC)问题,其需要在线评估分段仿射(PWA)控制法。 所提出的方法将正交截短的二进制搜索树(OTBST)和晶格表示与PWA功能相结合,享受两种方法的优点。 所提出的基于格子的OTBST(LOTBST)方法使设计人员能够在预处理时间,存储需求和在线计算时间之间进行权衡。 使用示例,示出了所提出的LOTBST导致与与纯晶格表示相比的纯BST和更少的在线计算时间相比的预处理时间和内存要求。

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