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Area-Time Efficient Scaling-Free CORDIC Using Generalized Micro-Rotation Selection

机译:使用广义微旋转选择的时空有效无标度CORDIC

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摘要

This paper presents an area-time efficient CORDIC algorithm that completely eliminates the scale-factor. By suitable selection of the order of approximation of Taylor series the proposed CORDIC circuit meets the accuracy requirement, and attains the desired range of convergence. Besides we have proposed an algorithm to redefine the elementary angles for reducing the number of CORDIC iterations. A generalized micro-rotation selection technique based on high speed most-significant-1-detection obviates the complex search algorithms for identifying the micro-rotations. The proposed CORDIC processor provides the flexibility to manipulate the number of iterations depending on the accuracy, area and latency requirements. Compared to the existing recursive architectures the proposed one has 17% lower slice-delay product on Xilinx Spartan XC2S200E device.
机译:本文提出了一种时域有效的CORDIC算法,该算法完全消除了比例因子。通过适当选择泰勒级数的近似阶数,提出的CORDIC电路可以满足精度要求,并达到所需的收敛范围。此外,我们提出了一种重新定义基本角度的算法,以减少CORDIC迭代的次数。一种基于高速最显着1检测的广义微旋转选择技术,消除了用于识别微旋转的复杂搜索算法。提出的CORDIC处理器提供了根据精度,面积和等待时间要求来操纵迭代次数的灵活性。与现有的递归架构相比,拟议的架构在Xilinx Spartan XC2S200E器件上的切片延迟产品降低了17%。

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