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Error Control Schemes for On-chip Communication Links: the energy-reliability trade-off

机译:片上通信链路的错误控制方案:能量可靠性的权衡

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摘要

On-chip interconnection networks for future systems on chip (SoC) will have to deal with the increasing sensitivity of global wires to noise sources such as crosstalk or power supply noise. Hence, transient delay and logic faults are likely to reduce the reliability of across-chip communication. Given the reduced power budgets for SoCs, in this paper, we develop solutions for combined energy minimization and communication reliability control. Redundant bus coding is proved to be an effective technique for trading off energy against reliability, so that the most efficient scheme can be selected to meet predefined reliability requirements in a low signal-to-noise ratio regime. We model on-chip interconnects as noisy channels and evaluate the impact of two error recovery schemes on energy efficiency: correction at the receiver stage versus retransmission of corrupted data. The analysis is performed in a realistic SoC setting, and holds both for shared communication resources and for peer-to-peer links in a network of interconnects. We provide SoC designers with guidelines for the selection of energy efficient error-control schemes for communication architectures.
机译:未来的片上系统(SoC)的片上互连网络将不得不应对全球布线对噪声源(如串扰或电源噪声)日益敏感的问题。因此,瞬态延迟和逻辑故障可能会降低跨芯片通信的可靠性。鉴于SoC的功耗预算减少,我们在本文中开发了用于能量最小化和通信可靠性控制相结合的解决方案。冗余总线编码被证明是一种权衡能量与可靠性的有效技术,因此可以选择最有效的方案,以在低信噪比的情况下满足预定义的可靠性要求。我们将片上互连建模为嘈杂的通道,并评估两种错误恢复方案对能效的影响:接收器阶段的校正与损坏数据的重传。该分析是在现实的SoC设置中执行的,既适用于共享通信资源,又适用于互连网络中的对等链接。我们为SoC设计人员提供了有关选择通信体系结构的节能错误控制方案的指南。

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