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High-Accuracy Fixed-Width Modified Booth Multipliers for Lossy Applications

机译:适用于有损应用的高精度固定宽度修改式展台乘法器

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摘要

The fixed-width multiplier is attractive to many multimedia and digital signal processing systems which are desirable to maintain a fixed format and allow a little accuracy loss to output data. This paper presents the design of high-accuracy fixed-width modified Booth multipliers. To reduce the truncation error, we first slightly modify the partial product matrix of Booth multiplication and then derive an effective error compensation function that makes the error distribution be more symmetric to and centralized in the error equal to zero, leading the fixed-width modified Booth multiplier to very small mean and mean-square errors. In addition, a simple compensation circuit mainly composed of the simplified sorting network is also proposed. Compared to the previous circuits, the proposed error compensation circuit can achieve a tiny mean error and a significant reduction in mean-square error (e.g., at least 12.3% reduction for the 16-bit fixed-width multiplier) while maintaining the approximate hardware overhead. Furthermore, experimental results on two real-life applications also demonstrate that the proposed fixed-width multipliers can improve the average peak signal-to-noise ratio of output images by at least 2.0 dB and 1.1 dB, respectively.
机译:固定宽度乘法器对许多希望保持固定格式并允许输出数据的精度损失很小的多媒体和数字信号处理系统具有吸引力。本文介绍了高精度固定宽度修改型Booth乘法器的设计。为了减少截断误差,我们首先稍微修改Booth乘法的部分积矩阵,然后导出有效的误差补偿函数,该函数使误差分布更加对称并且集中在误差等于零,从而导致固定宽度的修改过的Booth乘以很小的均值和均方误差。另外,还提出了一种主要由简化分类网络组成的简单补偿电路。与先前的电路相比,所提出的误差补偿电路可以实现微小的平均误差,并且可以显着降低均方误差(例如,对于16位固定宽度乘法器至少降低12.3%),同时保持大约的硬件开销。此外,在两个实际应用中的实验结果还表明,所提出的固定宽度乘法器可以分别将输出图像的平均峰值信噪比提高至少2.0 dB和1.1 dB。

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