Modern network-on-chip (NoC) systems face reliability issues due to process and environmental variations. The power supply noise (PSN) in the power delivery network of a NoC plays a key role in determining reliability. PSN leads to voltage droop, which can cause timing errors in the NoC. This paper makes a novel contribution towards formally analyzing PSN in NoC systems. We present a probabilistic model checking approach to observe the PSN in a generic 2x2 mesh NoC with a uniform random traffic load. Key features of PSN are measured at the behavioral level. To tackle state explosion, we apply incremental abstraction techniques, including a novel probabilistic choice abstraction, based on observations of NoC behavior. The Modest Toolset is used for probabilistic modeling and verification. Results are obtained for several flit injection patterns to reveal their impacts on PSN. Our analysis finds an optimal flit pattern generation with zero probability of PSN events and suggests spreading flits rather than releasing them in consecutive cycles in order to minimize PSN.
翻译:由于过程和环境的变化,现代网络芯片(NOC)系统面临可靠性问题。诺克电力传输网络中的电力供应噪音(PSN)在确定可靠性方面发挥着关键作用。PSN导致电压滴,这可能导致诺克时间错误。本文对正式分析诺克系统中的PSN(NSC)系统中的PSN(NSC)做出了新贡献。我们提出了一个概率模式检查方法,以便在通用的 2x2 网格点点C 中观测PSN(PSN),具有统一的随机交通负荷。PSN的关键特征是在行为层面上测量的。为了应对州爆炸,我们采用了渐进式抽象技术,包括基于诺克行为的观察的新型概率选择抽象技术。模式用于概率模型和验证。为显示其对PSN的影响,取得了一些分流式注射模式的结果。我们的分析发现一种最佳的滑动模式生成方式,PSN事件概率为零,并建议在连续的周期中传播,而不是释放它们,以尽量减少PSN。