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Improved matrix multiplier design for high-speed digital signal processing applications

机译:改进的矩阵乘法器设计,适用于高速数字信号处理应用

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A transistor level implementation of an improved matrix multiplier for high-speed digital signal processing applications based on matrix element transformation and multiplication is reported in this study. The improvement in speed was achieved by rearranging the matrix element into a two-dimensional array of processing elements interconnected as a mesh. The edges of each row and column were interconnected in torus structure, facilitating simultaneous implementation of several multiplications. The functionality of the circuitry was verified and the performance parameters for example, propagation delay and dynamic switching power consumptions were calculated using spice spectre using 90 nm CMOS technology. The proposed methodology ensures substantial reduction in propagation delay compared with the conventional algorithm, systolic array and pseudo number theoretic transformation (PNTT)-based implementation, which are the most commonly used techniques, for matrix multiplication. The propagation delay of the implemented 4 ?? 4 matrix multiplier was only ~2 ??s, whereas the power consumption of the implemented 4 ?? 4 matrix multiplier was ~3.12 mW only. Improvement in speed compared with earlier reported matrix multipliers, for example, conventional algorithm, systolic array and PNTT-based implementation was found to be ~67, ~56 and ~65%, respectively.
机译:这项研究报告了基于矩阵元素变换和乘法的,用于高速数字信号处理应用的改进矩阵乘法器的晶体管级实现。通过将矩阵元素重新排列为互连成网格的处理元素的二维阵列,可以提高速度。每行和每列的边缘都以环形结构相互连接,从而有利于同时执行多个乘法。验证了电路的功能,并使用香料光谱仪(使用90 nm CMOS技术)计算了性能参数,例如传播延迟和动态开关功耗。与传统的算法,基于脉动阵列和基于伪数论变换(PNTT)的实现方法(最常用的矩阵乘法)相比,所提出的方法可确保大幅减少传播延迟。实现的传播延迟为4 ?? 4矩阵乘法器仅为〜2 ?? s,而实现的4 ?? s的功耗4矩阵乘数仅为〜3.12 mW。与早期报道的矩阵乘法器相比,例如传统算法,脉动阵列和基于PNTT的实现方式的速度提高分别为〜67%,〜56%和〜65%。

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