Successive Approximation Algorithm for Complex Number Magnitude and Argument Computation

P. Kubinec, J. Púc̆ik, M. Hagara, E. Cocherová, O. Ondrácek
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Abstract

Determination of complex number modulus and argument is commonly encountered task in digital signal processing. According to definition, this task requires evaluation of square root and inverse tangent functions. When computing hardware resources are limited, e.g. in real-time applications, an approximation by basic arithmetic and logical operations are of interest. We propose method for modulus approximation that uses addition, scaling and comparison, and provides also argument information. At each additional level of our algorithm, modulus approximation error decreases by factor of 4 and argument error by factor of 8.
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复数大小的逐次逼近算法及参数计算
复数模和参数的确定是数字信号处理中经常遇到的问题。根据定义,这个任务需要求平方根和正切反函数的值。当计算硬件资源有限时,例如在实时应用中,通过基本的算术和逻辑运算进行近似是有意义的。我们提出了一种使用加法、缩放和比较的模数近似方法,并提供了参数信息。在我们算法的每一个附加级别上,模近似误差减少4倍,参数误差减少8倍。
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