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Area-Time Efficient Self-Checking ALU Based on Scalable Error Detection Coding

机译:基于可伸缩误差检测编码的区域时间高效自检ALU

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In this paper, we propose a self-checking ALU based on Scalable Error Detection Coding (SEDC) algorithm which is capable of detecting 100% unidirectional errors. The SEDC encoded ALU is scalable based on the input data length. The area overhead increases only by a small factor with increase in data length while the computational latency remains constant irrespective of the binary data length. We show that the proposed scheme is faster and easily scalable compared with the previous implementations based on Berger and Bose-Lin codes and also more area efficient than Berger Check Prediction based ALU.
机译:在本文中,我们提出了一种基于可伸缩误差检测编码(SEDC)算法的自我检查ALU,其能够检测100%单向误差。 SEDC编码ALU基于输入数据长度可扩展。 区域开销仅增加了数据长度的小因素,而计算延迟随着二进制数据长度而保持恒定。 我们表明,与基于BERGER和BOSE-LIN代码的先前实现相比,所提出的方案比以前的实施方式更快,并且还比基于BERGER检查预测的ALU更高的区域效率。

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