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Nonconcurrent error detection and correction in fault-tolerant discrete-time LTI dynamic systems

机译:容错离散时间LTI动态系统中的非并发错误检测和纠正

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This paper develops resource-efficient alternatives to modular redundancy for fault-tolerant discrete-time (DT) linear time-invariant (LTI) dynamic systems. The proposed method extends previous approaches that are based on embedding the state of a given DT LTI dynamic system into the redundant state-space of a DT LTI dynamic system of higher state dimension. These embeddings, as well as the embeddings studied in this paper, preserve the state evolution of the original system in some linearly encoded form and allow error detection and correction to be performed through concurrent parity checks (i.e., parity checks that are evaluated at the end of each time step). The novelty of the approach developed in this paper relies on carefully choosing the redundant dynamics of the fault-tolerant implementation in a way that allows parity checks to capture the evolution of errors in the system and, based on nonconcurrent parity checks (e.g., parity checks that are evaluated periodically), uniquely determine the initial value of each error, the time step at which it took place and the state variable it originally affected. The resulting error detection, identification, and correction procedures can be performed periodically and can significantly reduce the overhead, complexity and reliability requirements on the checking mechanism.
机译:本文为容错离散时间(DT)线性时不变(LTI)动态系统开发了模块化冗余的资源有效替代方案。所提出的方法扩展了先前的方法,这些方法基于将给定的DT LTI动态系统的状态嵌入到状态状态更高的DT LTI动态系统的冗余状态空间中。这些嵌入以及本文研究的嵌入,以某种线性编码形式保留了原始系统的状态演化,并允许通过并发的奇偶校验(即最后评估的奇偶校验)执行错误检测和纠正。每个时间步骤)。本文开发的方法的新颖性在于仔细选择容错实现的冗余动态,该方式允许奇偶校验捕获系统中错误的演变,并基于非并行奇偶校验(例如,奇偶校验) (定期进行评估),唯一地确定每个错误的初始值,错误发生的时间步以及最初影响的状态变量。由此产生的错误检测,识别和纠正过程可以定期执行,并且可以大大减少检查机制的开销,复杂性和可靠性要求。

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