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Implementation of Single-Precision Floating-Point Trigonometric Functions with Small Area

机译:小面积单精度浮点三角函数的实现

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Computation of floating-point trigonometric functions has a relevant importance in a wide variety of scientific applications, where the area cost, error and latency are important requirements to be attended. This paper presents an architecture based on CORDIC algorithm to implement single-precision floating-point trigonometric functions with small area. With mathematical transformation and high-precision fixed-point arithmetic instead of floating point operations, this paper addresses three questions for single-precision floating point trigonometric functions, including the range of angles is not enough, large area and low operating frequency. The method is implemented on the FPGA platform, the results show that this method can reduce the area effectively, and to ensure the accuracy of computation.
机译:浮点三角函数的计算在各种各样的科学应用中具有重要的意义,在这些应用中,面积​​成本,误差和等待时间是需要注意的重要要求。本文提出了一种基于CORDIC算法的体系结构,该体系结构可实现小面积单精度浮点三角函数。本文通过数学变换和高精度定点算法代替浮点运算,解决了单精度浮点三角函数的三个问题,包括角度范围不够,面积大和工作频率低。该方法在FPGA平台上实现,结果表明该方法可以有效减小面积,并保证计算的准确性。

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