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◆ IEEE Transactions on Reliability2026-01-01· Multiprocessing

A Novel Diagnostic Measurement of Structural Faults in Multiprocessor Systems: Based on Component Quantity Analysis

Nengjin Zhuo, Shumin Zhang, Jou–Ming Chang, Bo Zhu

原始摘要(英文原文)· Original abstract
Fault diagnosis is essential for maintaining the regular operation of multiprocessor systems. In this paper, we introduce a novel concept of$r$-component$H$-structure diagnosability, denoted as$t_{s}^{r}(G;H)$, which represents the maximum number of$r$-component$H$-structure faults that system$G$can precisely detect. This parameter enables us to assess the overall diagnosability of the system. Furthermore, we strictly prove that under the PMC and MM* diagnostic models, the following results hold: for$n\geq 7$,$t_{s}^{2}(Q_{n};K_{1,1})=2n-4$; for$n\geq 6$,$t_{s}^{2}(Q_{n};K_{1,2})=n-2$. These results confirm that when the system experiences a$K_{1,1}$-structural fault and is disconnected at this time, the maximum number of detectable$K_{1,1}$-structures within the system is guaranteed to be twice the original number in previous studies.
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