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Improving Reliability of Real-Time Systems through Value and Time Voting

机译:通过价值和时间投票提高实时系统的可靠性

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Critical systems often use N-modular redundancy to tolerate faults in subsystems. Traditional approaches to N-modular redundancy in distributed, loosely-synchronised, real-time systems handle time and value errors separately: a voter detects value errors, while watchdog-based health monitoring detects timing errors. In prior work, we proposed the integrated Voting on Time and Value (VTV) strategy, which allows both timing and value errors to be detected simultaneously. In this paper, we show how VTV can be harnessed as part of an overall fault tolerance strategy and evaluate its performance using a well-known control application, the Inverted Pendulum. Through extensive simulations, we compare the performance of Inverted Pendulum systems which employs VTV and alternative voting strategies to demonstrate that VTV better tolerates well-recognised faults in this realistically complex control problem.
机译:关键系统通常使用N模块冗余来容忍子系统中的故障。分布式,松散同步的实时系统中的N模块冗余的传统方法分别处理时间和值错误:投票者检测值错误,而基于看门狗的运行状况监视则检测定时错误。在先前的工作中,我们提出了综合的时间和价值投票(VTV)策略,该策略允许同时检测时间和价值错误。在本文中,我们展示了如何将VTV用作整体容错策略的一部分,并使用著名的控制应用程序“倒立摆”评估其性能。通过广泛的仿真,我们比较了采用VTV和其他表决策略的倒立摆系统的性能,以证明VTV在这种现实复杂的控制问题中能更好地容忍公认的故障。

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