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Improving Architectures of Binary Signed-Digit CORDIC With Generic/Specific Initial Angles

机译:用通用/特定初始角度改善二进制签名数字CORDIC的体系结构

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Coordinate rotation digital computer (CORDIC) is widely used in digital signal processing (DSP) to calculate functions. One of the elegant ways to accelerate CORDIC is employment of the redundant binary signed-digit (BSD) number systems, so-called BSD-CORDIC. This paper aims to achieve efficient BSD-CORDIC structures for generic/specific initial angles. First, three generic BSD-CORDIC algorithms are optimized by exploiting a suitable data gating technique as well as appropriate BSD encodings. The synthesis results demonstrate that for generic CORDIC, the proposed BSD-CORDIC schemes enhance the existing ones in terms of speed, power consumption, and area overhead. Second, the look-ahead BSD-CORDIC is proposed as a special case of BSD-CORDIC with specific initial angles. We also show that for the applications like fast Fourier transform (FFT), where the initial angles are known in advance, the proposed look-ahead BSD-CORDIC with the posibit-negabit encoding, as our best presenting structure, noticeably improves speed, power consumption, and area overhead.
机译:坐标旋转数字计算机(CORDIC)广泛用于数字信号处理(DSP)以计算功能。加速CORDIC的优雅方式之一是就业的冗余二进制签名 - 数字(BSD)编号系统,所谓的BSD-CORDIC。本文旨在实现通用/特定初始角度的高效BSD码结构。首先,通过利用合适的数据门控技术以及适当的BSD编码来优化三种通用BSD-CORDIC算法。合成结果表明,对于通用CORDIC,所提出的BSD-CORDIC计划在速度,功耗和面积开销方面增强了现有的。其次,提出了前瞻性BSD-CORDIC作为具有特定初始角度的BSD-CORDIC的特殊情况。我们还表明,对于快速傅里叶变换(FFT)等应用,其中初始角度提前已知,所提出的展望与PoSibit-Negabit编码,作为我们最佳的呈现结构,明显提高速度,功率消费和面积开销。

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