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High-speed and low-power reconfigurable architectures of 2-digit two-dimensional logarithmic number system-based recursive multipliers

机译:基于2位二维对数数系统的递归乘法器的高速和低功耗可重构体系结构

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In new DSP applications, reconfigurable architectures have emerged to provide a flexible, highperformance, high-speed and low-power implementation platform for wireless embedded devices. Since some DSP algorithms rely heavily on multiplication, there are still demands for more efficient multiplication structures. In this study, two reconfigurable recursive multipliers are presented. The authors¿ architectures combine some of the flexibility of software with the high performance of hardware through implementing different levels of recursive multiplication schemes on a two-dimensional logarithmic number system (2DLNS) processing structure. The data are split into a number of smaller sections, where each section is converted to a 2-digit 2DLNS (2 bases) representation. The dynamic range reduction and logarithmic characteristics of computing with two orthogonal base exponents in this number system allows multiplication to be implemented with simple parallel small adders. The authors¿ architectures are able to perform single and double precision multiplications, as well as fault tolerant and dual throughput single precision operations. The implementations demonstrate the efficiency of 2DLNS in multiplication intensive DSP applications and show outstanding results in terms of operation delay and dynamic power consumption.
机译:在新的DSP应用中,可重构架构应运而生,以为无线嵌入式设备提供灵活,高性能,高速和低功耗的实现平台。由于某些DSP算法严重依赖乘法,因此仍然需要更有效的乘法结构。在这项研究中,提出了两个可重构递归乘法器。作者的体系结构通过在二维对数数字系统(2DLNS)处理结构上实现不同级别的递归乘法方案,将软件的某些灵活性与硬件的高性能相结合。数据被分成多个较小的部分,每个部分都转换为2位2DLNS(2个基数)表示形式。在此数字系统中使用两个正交基指数进行计算的动态范围缩小和对数特性允许使用简单的并行小加法器来实现乘法。作者的体系结构能够执行单精度和双精度乘法,以及容错和双吞吐量单精度运算。这些实施方案证明了2DLNS在乘法密集型DSP应用中的效率,并在操作延迟和动态功耗方面显示了出色的结果。

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