Adaptive Diagnosis of Variants of the Hypercube(Graphs and Networks)
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概要
- 論文の詳細を見る
System-level fault diagnosis deals with the problem of identifying faulty nodes (processors) in a multiprocessor system. Each node is faulty or fault-free, and it can test other nodes in the system, and outputs the test results. The test result from a node is reliable if the node is fault-free, but the result is unreliable if it is faulty. In this paper, we prove that four variants of the hypercube: the crossed cube, the twisted cube, the Mobius cube, and the enhanced cube, are adaptively diagnosed using at most 4 parallel testing rounds, with at most n faulty nodes (for the enhanced cube, with at most n+1 faulty nodes), where each processor participates in at most one test in each round. Furthermore, we propose another diagnosis algorithm for the n-dimensional enhanced cube with at most n+1 faulty nodes, and show that it is adaptively diagnosed with at most 5 rounds in the worst case, but with at most 3 rounds if the number of existing faulty nodes is at most n-「log(n+1)」.
- 社団法人電子情報通信学会の論文
- 2005-03-01
著者
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Shibata Yukio
Department Of Electronic Engineering Tohoku University
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Araki Toru
Dept. Of Computer And Information Sci. Iwate University
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Araki Tadashi
Atr Communication Systems Research Laboratories
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Shibata Yukio
Department Of Computer Science Gunma University
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Shibata Y
Department Of Computer Science Faculty Of Engineering Gunma University
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OKASHITA Aya
Department of Computer Science, Gunma University
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Okashita Aya
Department Of Computer Science Gunma University
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Shibata Yukio
Department Of Computer Science Faculty Of Engineering Gunma University
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Araki T
Dept. Of Computer And Information Sci. Iwate University
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