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Application specific integrated circuit solution for multi-input multi-output piecewise-affine functions

机译:用于多输入多输出分段仿射功能的专用集成电路解决方案

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This paper presents a fully digital architecture and its application specific integrated circuit implementation for computing multi-input multi-output (MIMO) piecewise-affine (PWA) functions. The work considers both PWA functions defined over regular hyperrectangular and simplicial partitions of the input domains and also lattice PWA representations. The proposed architecture is able to implement PWA functions following different realization strategies, using a common structure with a minimized number of blocks, thus reducing power consumption and hardware resources. Experimental results obtained with application specific integrated circuit (ASIC) integrated in a 90-nm complementary metal-oxide semiconductor standard technology are provided. The proposed architecture is compared with other digital architectures in the state of the art habitually used to implement model predictive control applications. The proposal is superior in power consumption (saving up to 86%) and economy of hardware resources (saving up to 40% in comparison with a mere replication of the three representations) to other proposals described in literature, being ready to be used in applications where high-performance and minimum unitary cost are required. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:本文介绍了一种用于计算多输入多输出(MIMO)分段仿射(PWA)函数的全数字架构及其专用集成电路实现。这项工作既考虑了在输入域的规则超矩形和简单分区上定义的PWA函数,又考虑了晶格PWA表示。所提出的体系结构能够使用具有最少数量的块的通用结构,按照不同的实现策略来实现PWA功能,从而减少了功耗和硬件资源。提供了使用集成在90纳米互补金属氧化物半导体标准技术中的专用集成电路(ASIC)获得的实验结果。在惯常用于实现模型预测控制应用程序的现有技术中,将提出的体系结构与其他数字体系结构进行比较。该建议在功耗(节省高达86%)和硬件资源的经济性方面(与仅复制这三种表示相比节省了40%)优于文献中描述的其他建议,可以在应用中使用需要高性能和最低单位成本的地方。版权所有(C)2015 John Wiley&Sons,Ltd.

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