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Synthesis of workload monitors for on-line stress prediction

机译:综合工作量监视器以进行在线压力预测

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Stringent reliability requirements call for monitoring mechanisms to account for circuit degradation throughout the complete system lifetime. In this work, we efficiently monitor the stress experienced by the system as a result of its current workload. To achieve this goal, we construct workload monitors that observe the most relevant subset of the circuit's primary and pseudo-primary inputs and produce an accurate stress approximation. The proposed approach enables the timely adoption of suitable countermeasures to reduce or prevent any deviation from the intended circuit behavior. The relation between monitoring accuracy and hardware cost can be adjusted according to design requirements. Experimental results show the efficiency of the proposed approach for the prediction of stress induced by Negative Bias Temperature Instability (NBTI) in critical and near-critical paths of a digital circuit.
机译:严格的可靠性要求要求使用监视机制来解决整个系统生命周期中的电路性能下降问题。在这项工作中,我们有效地监视了系统由于当前工作负载而承受的压力。为了实现此目标,我们构造了工作负载监视器,该监视器观察电路的主要输入和伪主要输入的最相关子集,并产生准确的应力近似值。所提出的方法使得能够及时采取适当的对策,以减少或防止与预期电路行为的任何偏差。监控精度和硬件成本之间的关系可以根据设计要求进行调整。实验结果表明,该方法可有效预测数字电路关键路径和接近关键路径中的负偏置温度不稳定性(NBTI)引起的应力。

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