A probabilistic approach to fault diagnosis in linear lightwave networks
The application of probabilistic reasoning to fault diagnosis in linear lightwave networks (LLNs) is investigated. The LLN inference model is represented by a Bayesian network (or causal network). An inference algorithm is proposed that is capable of conducting fault diagnosis (inference) with incom...
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sg-smu-ink.sis_research-11072019-04-02T03:19:28Z A probabilistic approach to fault diagnosis in linear lightwave networks DENG, Robert H. Lazar, A. A. WANG, W. The application of probabilistic reasoning to fault diagnosis in linear lightwave networks (LLNs) is investigated. The LLN inference model is represented by a Bayesian network (or causal network). An inference algorithm is proposed that is capable of conducting fault diagnosis (inference) with incomplete evidence and on an interactive basis. Two belief updating algorithms are presented which are used by the inference algorithm for performing fault diagnosis. The first belief updating algorithm is a simplified version of the one proposed by Pearl (1988) for singly connected inference models. The second belief updating algorithm applies to multiply connected inference models and is more general than the first. The authors also introduce a t-fault diagnosis system and an adaptive diagnosis system to further reduce the computational complexity of the fault diagnosis process 1993-12-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/108 info:doi/10.1109/49.257935 https://ink.library.smu.edu.sg/context/sis_research/article/1107/viewcontent/A_Probabilistic_Approach_to_Fault_Diagnosis_in_Linear_Lightwave_Networks.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Information Security |
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Information Security DENG, Robert H. Lazar, A. A. WANG, W. A probabilistic approach to fault diagnosis in linear lightwave networks |
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The application of probabilistic reasoning to fault diagnosis in linear lightwave networks (LLNs) is investigated. The LLN inference model is represented by a Bayesian network (or causal network). An inference algorithm is proposed that is capable of conducting fault diagnosis (inference) with incomplete evidence and on an interactive basis. Two belief updating algorithms are presented which are used by the inference algorithm for performing fault diagnosis. The first belief updating algorithm is a simplified version of the one proposed by Pearl (1988) for singly connected inference models. The second belief updating algorithm applies to multiply connected inference models and is more general than the first. The authors also introduce a t-fault diagnosis system and an adaptive diagnosis system to further reduce the computational complexity of the fault diagnosis process |
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text |
author |
DENG, Robert H. Lazar, A. A. WANG, W. |
author_facet |
DENG, Robert H. Lazar, A. A. WANG, W. |
author_sort |
DENG, Robert H. |
title |
A probabilistic approach to fault diagnosis in linear lightwave networks |
title_short |
A probabilistic approach to fault diagnosis in linear lightwave networks |
title_full |
A probabilistic approach to fault diagnosis in linear lightwave networks |
title_fullStr |
A probabilistic approach to fault diagnosis in linear lightwave networks |
title_full_unstemmed |
A probabilistic approach to fault diagnosis in linear lightwave networks |
title_sort |
probabilistic approach to fault diagnosis in linear lightwave networks |
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Institutional Knowledge at Singapore Management University |
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1993 |
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https://ink.library.smu.edu.sg/sis_research/108 https://ink.library.smu.edu.sg/context/sis_research/article/1107/viewcontent/A_Probabilistic_Approach_to_Fault_Diagnosis_in_Linear_Lightwave_Networks.pdf |
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