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Fast computation of arctangent functions for embedded applications: A comparative analysis

机译:嵌入式应用中反正切函数的快速计算:比较分析

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Inverse tangent or arctangent function has many applications, for example, in estimating the phase angle of complex number utilized in electrical ac circuit analysis, power systems analysis, etc. Therefore, fast and accurate computation of the arctangent function is of great importance. Implementation of the arctan or atan2 using series expansions is accurate when computational cost is not an issue. However, for embedded applications such implementations cannot be used. As alternative, different approximations are proposed. In this paper, we present an efficient implementation using look-up table with 101-points. The accuracy is then increased by linear interpolation. The arctangent computation is extended to four quadrant operation using particular properties of arctan. The proposed scheme is implemented in a 60MHz microcontroller platform, typical for embedded applications. Comparative evaluations show that the accuracy of the proposed method is better than the reported approximation techniques. The time consumption of the proposed method is significantly less than that of the library function of the same microcontroller platform.
机译:反正切或反正切函数具有许多应用,例如,在估计用于交流电路分析,电力系统分析等中的复数的相角时。因此,快速和准确地计算反正切函数非常重要。当计算成本不成问题时,使用级数展开实现arctan或atan2是准确的。但是,对于嵌入式应用程序,无法使用此类实现。作为替代,提出了不同的近似值。在本文中,我们提出了一种使用具有101点的查找表的有效实现方式。然后通过线性插值提高精度。使用arctan的特定属性,反正切计算扩展到四个象限运算。所提出的方案是在60MHz微控制器平台上实现的,该平台通常用于嵌入式应用。比较评估表明,该方法的准确性优于所报道的近似技术。所提出的方法的时间消耗明显少于相同微控制器平台的库函数的时间消耗。

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