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首页> 外文期刊>Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on >Low Energy yet Reliable Data Communication Scheme for Network-on-Chip
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Low Energy yet Reliable Data Communication Scheme for Network-on-Chip

机译:片上网络的低能耗而可靠的数据通信方案

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摘要

In this paper, a low energy yet reliable communication scheme for network-on-chip is suggested. To reduce the communication energy consumption, we invoke low-swing signals for transmitting data, as well as data encoding techniques, for minimizing both self and coupling switching capacitance activity factors. To maintain the communication reliability of communication at low-voltage swing, an error control coding (ECC) technique is exploited. The decision about end-to-end or hop-to-hop ECC schemes and the proper number of detectable errors are determined through high-level mathematical analysis on the energy and reliability characteristics of the techniques. Based on the analysis, the extended single error correction double-error detecting end-to-end coding technique with three bits of error detection is used in the network layer. For minimization of the self and coupling switching capacitance activity factors, the odd, even, full invert scheme is employed in the data link layer. This coding has an inherent error detection probability for the flits, which is exploited in the suggested technique. The efficiency of the scheme is studied by using both synthetic and real traffic scenarios. The study reveals savings of up to 43% and 58%, for power dissipation and energy consumption, respectively, without any significant performance degradation and overhead in the network interface.
机译:本文提出了一种低功耗而又可靠的片上网络通信方案。为了降低通信能量消耗,我们调用低摆幅信号来传输数据以及数据编码技术,以最小化自耦和耦合开关电容的活动因子。为了在低电压摆幅下保持通信的通信可靠性,采用了错误控制编码(ECC)技术。通过对技术的能量和可靠性特征进行高级数学分析,可以确定有关端到端或跳到跳ECC方案的决定以及可检测错误的适当数量。在分析的基础上,在网络层采用了扩展的单纠错双误码检测三比特误码检测端到端编码技术。为了最小化自耦和耦合开关电容的活动因子,在数据链路层采用了奇数,偶数,全反相方案。这种编码具有针对码片的固有错误检测概率,这在建议的技术中得到了利用。通过使用综合和实际交通场景来研究该方案的效率。该研究表明,分别在功耗和能耗方面分别节省了多达43%和58%的成本,而网络接口的性能却没有任何明显的下降。

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