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Configurable DSI partitioned approximate multiplier

机译:可配置的DSI分区近似乘法器

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Approximate computing has been considered for error-tolerant applications that can tolerate some loss of accuracy. It improves metrics such as dynamic power, delay, and area. Multipliers are key elements in arithmetic logic units and used in many applications such as Digital Signal Processing (DSP). Hence, it is vital to develop a robust strategy to take advantage of approximate computing in multipliers. In this paper, a novel algorithm has been presented for the approximate multiplication of unsigned numbers. The proposed approach is error-configurable and provides a trade-off between hardware resources, accuracy, delay, and power. In addition, it can be adjusted based on target systems or applications. The proposed method, compared to the accurate and other configurable algorithm instances, improves the metrics by using a low power configuration. Meanwhile, according to experimental results, the average error rates is 1.04% for 16-bit multiplication. The percentage of improvements for error, delay, area, and dynamic power of the proposed 16-bit multiplier are 0.02% to 16.71%, 23.8% to 70.6%, -11% to 34.1%, and 42.9% to 81.1%, respectively. Moreover, the proposed multiplier has been employed in Discrete Cosine Transform (DCT) applications and has obtained admirable outputs.
机译:近似计算已被考虑用于容忍耐堵塞的应用程序,可以容忍一些精度损失。它改善了动态功率,延迟和区域等度量。乘法器是算术逻辑单元中的关键元素,并且在许多应用中使用,例如数字信号处理(DSP)。因此,开发稳健的策略至关重要,以利用乘法器中的近似计算。本文介绍了一种新的算法,用于无符号数的近似乘法。所提出的方法是错误可配置的,在硬件资源,准确性,延迟和电源之间提供权衡。此外,可以基于目标系统或应用程序进行调整。与准确和其他可配置算法实例相比,所提出的方法通过使用低功率配置来改善度量。同时,根据实验结果,16位乘法的平均误差率为1.04%。所提出的16位倍增器的误差,延迟,面积和动态功率的改善百分比分别为0.02%至16.71%,23.8%至70.6%,-11%至34.1%,分别为42.9%至81.1%。此外,所提出的乘法器已经采用离散余弦变换(DCT)应用,并获得了令人钦佩的输出。

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