CORDIC-based computation of ArcCos and ArcSin

T. Lang, E. Antelo
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引用次数: 20

Abstract

CORDIC-based algorithms to compute cos/sup -1/(t), sin/sup -1/(t) and /spl radic/(1-t/sup 2/) are proposed. The implementation requires a standard CORDIC module plus a module to compute the direction of rotation, this being the same hardware required for the extended CORDIC vectoring, recently proposed by the authors. Although these functions can be obtained as a special case of this extended vectoring, the specific algorithm we propose here presents two significant improvements: (1) it achieves an angle granularity of 2/sup -n/ using the same datapath width as the standard CORDIC algorithm (about n bits, instead of about 2n which would be required using the extended veetoring), and (2) no repetitions of iterations are needed. The proposed algorithm is compatible with the extended vectoring and, in contrast with previous implementations, the number of iterations and the delay of each iteration are the same as for the conventional CORDIC algorithm.
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基于cordic的ArcCos和ArcSin计算
提出了基于cordic的cos/sup -1/(t)、sin/sup -1/(t)和/spl radial /(1-t/sup 2/)计算算法。该实现需要一个标准的CORDIC模块加上一个计算旋转方向的模块,这与作者最近提出的扩展CORDIC矢量所需的硬件相同。虽然这些函数可以作为这种扩展矢量的特殊情况来获得,但我们在这里提出的具体算法有两个显著的改进:(1)它使用与标准CORDIC算法相同的数据路径宽度(约n位,而不是使用扩展矢量所需的约2n位)实现了2/sup -n/的角度粒度,(2)不需要重复迭代。与传统的CORDIC算法相比,该算法兼容扩展矢量,迭代次数和每次迭代的延迟与传统的CORDIC算法相同。
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