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首页> 外文期刊>International Journal of Control >Stability of digital control systems implemented in error-recoverable computers
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Stability of digital control systems implemented in error-recoverable computers

机译:在可恢复错误的计算机中实现的数字控制系统的稳定性

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摘要

Safety-critical, real-time applications make use of fault-tolerant digital control systems to achieve their performance goals. Even though these digital control systems are fault-tolerant, they are susceptible to errors induced by common-mode faults, since these errors cannot be masked by standard redundancy provisions. Such errors can be handled by special error correction mechanisms, which could require stopping the control law computations while the errors are removed. Thus, the effect of these special error recovery mechanisms on digital control systems needs to be understood. This paper presents a comprehensive study of the effect of three error recovery mechanisms-rollback, reset and cold restart-on the stability of digital closed-loop control systems. The effect of the faults, detected and handled by these error recovery mechanisms, on the digital control system is modelled by a set of interference maps. It is assumed that the arrival and departure of common-mode faults can be represented by a Markov process. The overall system behaviour is then described by a Markov jump linear model, whose stability is explored using standard techniques from the literature. The result of this analysis is a new metric, the minimum average interarrival spacing (MAIS), which is useful for comparing the performance of different error recovery mechanisms and for designing new fault-tolerant controllers. The theoretical results are illustrated via Monte Carlo simulations that show the effects of common-mode faults on the closed-loop stability of the longitudinal dynamics of an AFTI/F-16 aircraft.
机译:对安全至关重要的实时应用程序利用容错数字控制系统来实现其性能目标。即使这些数字控制系统是容错的,它们也容易受到共模故障引起的错误的影响,因为这些错误不能被标准的冗余规定所掩盖。可以通过特殊的纠错机制来处理此类错误,这可能需要在删除错误时停止控制定律计算。因此,需要了解这些特殊错误恢复机制对数字控制系统的影响。本文全面研究了三种错误恢复机制(回滚,重置和冷重启)对数字闭环控制系统稳定性的影响。由这些错误恢复机制检测和处理的故障对数字控制系统的影响通过一组干扰图来建模。假设共模故障的到达和离开可以用马尔可夫过程来表示。然后,通过马尔可夫跳跃线性模型描述整个系统的行为,使用文献中的标准技术探索其稳定性。该分析的结果是一个新的度量标准,即最小平均到达间隔(MAIS),它对于比较不同错误恢复机制的性能以及设计新的容错控制器很有用。通过蒙特卡洛模拟说明了理论结果,该模拟结果显示了共模故障对AFTI / F-16飞机纵向动力学的闭环稳定性的影响。

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