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Energy-Efficient Multiple-Precision Floating-Point Multiplier for Embedded Applications

机译:嵌入式应用的高能效多精度浮点乘法器

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摘要

Floating-point (FP) multipliers are the main energy consumers in many modern embedded digital signal processing (DSP) and multimedia systems. For lossy applications, minimizing the precision of FP multiplication operations under the acceptable accuracy loss is a well-known approach for reducing the energy consumption of FP multipliers. This paper proposes a multiple-precision FP multiplier to efficiently trade the energy consumption with the output quality. The proposed FP multiplier can perform low-precision multiplication that generates 8−, 14−, 20−, or 26-bit mantissa product through an iterative and truncated modified Booth multiplier. Energy saving for low-precision multiplication is achieved by partially suppressing the computation of mantissa multiplier. In addition, the proposed multiplier allows the bitwidth of mantissa in the multiplicand, multiplier, and output product to be dynamically changed when it performs different FP multiplication operations to further reduce energy consumption. Experimental results show that the proposed multiplier can achieve 59 %, 71 %, 73 %, and 82 % energy saving under 0.1 %, 1 %, 5 %, and 11 % accuracy loss, respectively, for the RGB-to-YUV & YUV-to-RGB conversion when compared to the conventional IEEE single-precision multiplier. In addition, the results also exhibit that the proposed multiplier can obtain more energy reduction than previous multiple-precision iterative FP multipliers.
机译:在许多现代嵌入式数字信号处理(DSP)和多媒体系统中,浮点(FP)乘法器是主要的能源消耗者。对于有损应用,在可接受的精度损失下使FP乘法运算的精度最小化是一种众所周知的减少FP乘法器能耗的方法。本文提出了一种多精度FP乘法器,可以有效地将能耗与输出质量进行权衡。所提出的FP乘法器可以执行低精度乘法,该低精度乘法通过迭代且截短的修改后的Booth乘法器生成8位,14位,20位或26位尾数乘积。通过部分抑制尾数乘法器的计算,可实现低精度乘法的节能。此外,当乘法器执行不同的FP乘法运算时,可以动态改变被乘数,乘数和输出乘积中的尾数位宽,以进一步降低能耗。实验结果表明,对于RGB-to-YUV和YUV精度损失,建议的乘法器可以分别实现59%,71%,73%和82%的节能,而准确度分别为0.1%,1%,5%和11%。与常规IEEE单精度乘法器相比,可以实现RGB转换。此外,结果还表明,与以前的多精度迭代FP乘法器相比,所提出的乘法器可减少更多能量。

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