A Markov reward model for reliable synchronous dataflow system design

Vinu Vijay Kumar, Rashi Verma, J. Lach, J. Dugan
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引用次数: 7

Abstract

The design of quality digital systems depends on models that accurately evaluate various options in the design space against a set of prioritized metrics. While individual models for evaluating area, performance, reliability, power, etc. are well established, models combining multiple metrics are less mature. This paper introduces a formal methodology for comprehensively analyzing performance, area and reliability in the design of synchronous dataflow systems using a novel Markov Reward Model. A Markov chain system reliability model is constructed for various design options in the presence of possible component failures, and high-level synthesis techniques are used to associate performance and area rewards with each state in the chain. The cumulative reward for a chain is then used to evaluate the corresponding design option with respect to the metrics of interest. Application of the model to a benchmark DSP circuit provides insights into reliable synchronous dataflow system design.
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可靠同步数据流系统设计的马尔可夫奖励模型
高质量数字系统的设计依赖于根据一组优先指标准确评估设计空间中的各种选项的模型。虽然用于评估面积、性能、可靠性、功率等的单个模型已经建立,但结合多个指标的模型还不太成熟。本文介绍了一种利用新颖的马尔可夫奖励模型对同步数据流系统设计中的性能、面积和可靠性进行综合分析的形式化方法。在存在可能的组件故障的情况下,为各种设计选项构建了马尔可夫链系统可靠性模型,并使用高级综合技术将性能和区域奖励与链中的每个状态关联起来。然后使用链的累积奖励来评估与兴趣指标相关的相应设计选项。将该模型应用于基准DSP电路,为可靠的同步数据流系统设计提供了见解。
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