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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A Fast and Low-Complexity Operator for the Computation of the Arctangent of a Complex Number
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A Fast and Low-Complexity Operator for the Computation of the Arctangent of a Complex Number

机译:用于计算复数反正切的快速低复杂度算子

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The computation of the arctangent of a complex number, i.e., the atan2 function, is frequently needed in hardware systems that could profit from an optimized operator. In this brief, we present a novel method to compute the atan2 function and a hardware architecture for its implementation. The method is based on a first stage that performs a coarse approximation of the atan2 function and a second stage that improves the output accuracy by means of a lookup table. We present results for fixed-point implementations in a field-programmable gate array device, all of them guaranteeing last-bit accuracy, which provide an advantage in latency, speed, and use of resources, when compared with well-established fixed-point options.
机译:硬件系统中经常需要计算复数的反正切值,即atan2函数,这可以从优化的运算符中获利。在本文中,我们提出了一种新颖的方法来计算atan2函数以及用于实现该函数的硬件体系结构。该方法基于第一阶段和第二阶段,第一阶段执行atan2函数的粗略近似,第二阶段通过查找表提高输出精度。我们提供了现场可编程门阵列设备中定点实现的结果,与完善的定点选项相比,所有这些保证了最后位的准确性,这在等待时间,速度和资源使用方面都具有优势。

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