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An improved algorithm for assessing the overall quantisation error in FPGA based CORDIC systems computing a vector magnitude

机译:一种用于评估基于FPGA的CORDIC系统中矢量量化幅度的整体量化误差的改进算法

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摘要

The CORDIC (coordinate rotation digital computer) algorithm is an iterative technique that can be used to compute many arithmetic functions using mainly shifts and additions making it ideal for FPGA implementation. In the early 1990s, Yu Hen Hu developed an equation for the overall quantisation error (OQE) experienced by the CORDIC algorithm when computing a vector magnitude. This equation could be used to find the most efficient architecture that would give a desired level of accuracy thus avoiding a trial and error approach. In this paper, we note that in fact the OQE overestimates the error in many cases, thus yielding inefficient architectures. Hence, this paper presents an updated equation for the OQE which is more accurate in predicting the error. To illustrate the improved accuracy of the new OQE expression, comparisons are made between CORDIC systems found using both versions of the OQE algorithm and Direct systems computing a vector magnitude. This comparison is of interest as it shows that CORDIC systems based on the new OQE expression use considerably fewer FPGA resources than CORDIC systems found using the original algorithm or equivalent direct designs. Given the widespread use of CORDIC in FPGA designs, particularly in DSP, this is significant.
机译:CORDIC(坐标旋转数字计算机)算法是一种迭代技术,主要用于移位和加法运算,可用于计算许多算术函数,因此非常适合FPGA实现。在1990年代初期,Yu Hen Hu开发了一个方程,用于计算矢量幅值时CORDIC算法遇到的总体量化误差(OQE)。该方程式可用于找到最有效的体系结构,该体系结构可提供所需的准确性,从而避免了反复试验的方法。在本文中,我们注意到实际上OQE在许多情况下都高估了误差,从而导致效率低下的体系结构。因此,本文提出了一种更新的OQE公式,该公式可以更准确地预测误差。为了说明新OQE表达式提高的准确性,对使用两种版本的OQE算法找到的CORDIC系统与计算矢量幅值的Direct系统进行了比较。这种比较很有趣,因为它表明基于新OQE表达式的CORDIC系统使用的FPGA资源比使用原始算法或等效直接设计的CORDIC系统要少得多。鉴于CORDIC在FPGA设计(尤其是DSP)中的广泛使用,这一点意义重大。

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