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Wordlength determination algorithms for hardware implementation of linear time invariant systems with prescribed output accuracy

机译:用于具有规定输出精度的线性时不变系统的硬件实现的字长确定算法

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摘要

This paper proposes two novel algorithms for optimizing the hardware resources in finite wordlength implementation of linear time invariant systems. The hardware complexity is measured by the exact internal wordlength used for each intermediate data. The first algorithm formulates the design problem as a constrained optimization, from which an analytic closed-form solution of the internal wordlengths subject to a prescribed output accuracy can be determined by the Lagrange multiplier method. The second algorithm is based on a discrete optimization method called the Marginal Analysis method, and it yields the desired wordlengths in integer values. Both approaches are found to be very effective and they are well-suited to large scale systems such as software radio receivers. Design examples show that the proposed algorithms offer better results and a lower design complexity than conventional methods. © 2005 IEEE.
机译:本文提出了两种新颖的算法,用于优化线性时不变系统的有限字长实现中的硬件资源。硬件复杂性通过用于每个中间数据的确切内部字长来衡量。第一种算法将设计问题表述为约束优化,由此可以通过拉格朗日乘数法确定受规定输出精度影响的内部字长的解析闭合形式解。第二种算法基于称为“边际分析”方法的离散优化方法,它以整数值产生所需的字长。发现这两种方法都是非常有效的,并且它们非常适合于大型系统,例如软件无线电接收机。设计实例表明,与常规方法相比,所提出的算法提供了更好的结果和更低的设计复杂度。 ©2005 IEEE。

著录项

  • 作者

    Chan SC; Tsui KM;

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  • 年度 2005
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  • 正文语种 eng
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