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Digital VLSI Implementation of Piecewise-Affine Controllers Based on Lattice Approach

机译:基于格方法的分段仿射控制器数字VLSI实现

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摘要

This paper presents a small, fast, low-power consumption solution for piecewise-affine (PWA) controllers. To achieve this goal, a digital architecture for very-large-scale integration (VLSI) circuits is proposed. The implementation is based on the simplest lattice form, which eliminates the point location problem of other PWA representations and is able to provide continuous PWA controllers defined over generic partitions of the input domain. The architecture is parameterized in terms of number of inputs, outputs, signal resolution, and features of the controller to be generated. The design flows for field-programmable gate arrays and application-specific integrated circuits are detailed. Several application examples of explicit model predictive controllers (such as an adaptive cruise control and the control of a buck–boost dc–dc converter) are included to illustrate the performance of the VLSI solution obtained with the proposed lattice-based architecture.
机译:本文提出了一种小型,快速,低功耗的分段仿射(PWA)控制器解决方案。为了实现该目标,提出了用于超大规模集成电路(VLSI)的数字架构。该实现基于最简单的晶格形式,它消除了其他PWA表示形式的点位置问题,并且能够提供在输入域的通用分区上定义的连续PWA控制器。根据输入,输出,信号分辨率和要生成的控制器的功能,对体系结构进行参数化。详细说明了现场可编程门阵列和专用集成电路的设计流程。包括几个显式模型预测控制器的应用示例(例如自适应巡航控制和降压-升压DC-DC转换器的控制),以说明通过所提出的基于格架结构获得的VLSI解决方案的性能。

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