A VLSI implementation of logarithmic and exponential functions using a novel parabolic synthesis methodology compared to the CORDIC algorithm

P. Pouyan, E. Hertz, P. Nilsson
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引用次数: 21

Abstract

High performance implementations of unary functions are important in many applications e.g. in the wireless communication area. This paper shows the development and VLSI implementation of unary functions like the logarithmic and exponential function, by using a novel approximation methodology based on parabolic synthesis, which is compared to the well known CORDIC algorithm. Both designs are synthesized and implemented on an FPGA and as an ASIC. The results of such implementations are compared with metrics such as performance and area. The performance in the parabolic architecture is shown to exceed the CORDIC architecture by a factor 4.2, in a 65 nm Standard-VT ASIC implementation.
与CORDIC算法相比,采用新的抛物线合成方法实现对数和指数函数的VLSI实现
一元功能的高性能实现在许多应用中都很重要,例如在无线通信领域。本文展示了一元函数(如对数和指数函数)的发展和VLSI实现,通过使用基于抛物综合的新型近似方法,与众所周知的CORDIC算法进行了比较。这两种设计都是在FPGA和ASIC上合成和实现的。这些实现的结果将与性能和面积等指标进行比较。在65nm标准vt ASIC实现中,抛物线架构的性能比CORDIC架构高出4.2倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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