部分同步下的近似分布式监控:平衡速度与精度

Borzoo Bonakdarpour, Anik Momtaz, Dejan Ničković, N. Ege Saraç
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引用次数: 0

摘要

在具有不共享全局时钟的进程的分布式系统中,emph{部分同步}是通过时钟同步来实现的,时钟同步保证了所有应用之间有界的时钟偏移。现有的针对时态逻辑规范的部分同步下分布式运行时间验证解决方案是精确的,但存在巨大的计算开销。在本文中,我们提出了一种针对信号时态逻辑(STL)的精确{近似}分布式监控算法,通过抽象潜在的交错行为来缓解这一问题。这种保守的抽象使分布式监控器的速度显著提高,但同时也带来了不准确性。我们采用将近似监控器与精确监控器相结合的方法来解决这个问题,从而在不牺牲精度的情况下提高了效率。我们通过多个实验评估了我们的方法,展示了它在实际应用和合成示例中的功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approximate Distributed Monitoring under Partial Synchrony: Balancing Speed and Accuracy
In distributed systems with processes that do not share a global clock, \emph{partial synchrony} is achieved by clock synchronization that guarantees bounded clock skew among all applications. Existing solutions for distributed runtime verification under partial synchrony against temporal logic specifications are exact but suffer from significant computational overhead. In this paper, we propose an \emph{approximate} distributed monitoring algorithm for Signal Temporal Logic (STL) that mitigates this issue by abstracting away potential interleaving behaviors. This conservative abstraction enables a significant speedup of the distributed monitors, albeit with a tradeoff in accuracy. We address this tradeoff with a methodology that combines our approximate monitor with its exact counterpart, resulting in enhanced efficiency without sacrificing precision. We evaluate our approach with multiple experiments, showcasing its efficacy in both real-world applications and synthetic examples.
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