Journal of shanghai Jiaotong University (Science) ›› 2015, Vol. 20 ›› Issue (3): 363-369.doi: 10.1007/s12204-015-1638-3
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BAI Lu* (白璐), DU Cheng-lie (杜承烈), GUO Yang-ming (郭阳明)
Published:
2015-06-11
Contact:
BAI Lu (白璐)
E-mail:bailu614@sohu.com
CLC Number:
BAI Lu* (白璐), DU Cheng-lie (杜承烈), GUO Yang-ming (郭阳明). A Fuzzy Fault Diagnosis Method for Large Radar Based on Directed Graph Model[J]. Journal of shanghai Jiaotong University (Science), 2015, 20(3): 363-369.
[1] | Zhang B Y, Li S H, Yan W. An efficient scheduling method for phased array radars with limited time resources [C]// Proceedings of the IET International Radar Conference. Guilin, China: Institution of Engineering and Technology. 2009: 1-4. |
[2] | Mir H S, Wilkinson J D. Task scheduling algorithm for an air and missile defense radar [C]// Proceedings of the IEEE Radar Conference. Rome, Italy: Institute of Electrical and Electronics Engineers. 2008: 1-6. |
[3] | Rao N S V. On parallel algorithms for single-fault diagnosis in fault propagation graph systems [J]. IEEE Transactions on Parallel and Distributed Systems,1996, 7(12): 1217-1223. |
[4] | Kokawa M, Miyazaki S, Shingai S. Fault location using digraph and inverse direction search with application[J]. Automatica, 1983, 19(6): 729-735. |
[5] | Deb S, Parttipati K R, Reghavan V. Multi signal flow graphs: A novel approach for system testability analysis and fault diagnosis [J]. IEEE Aerospace and Electronics Magazine, 1995, 10(5): 14-25. |
[6] | Maurya M R, Rengaswamy R. A signed directed graph-based systematic framework for steady-state malfunction diagnosis inside control loops [J]. Chemical Engineering Science, 2006, 61(6): 1790-1810. |
[7] | Azam M S, Tu F, Pattipati K R. A dependency model-based approach for identifyling and evaluating power quality problems [J]. IEEE Transactions on Power Delivery, 2004, 19(3): 1154-1166. |
[8] | Song Qi-jiang, Xu Min-qiang, Wang Ri-xin. Spacecraft fault diagnosis based on hierarchical digraphs [J].Acta Aeronautica et Astronautica Sinica, 2009, 30(6):1058-1062 (in Chinese). |
[9] | Wu Yu-bin, Zhang He-xin, L¨u Yong-jia. Application of fault propagation digraph for ground power fault diagnosis [J]. Modern Defence Technology, 2012,40(1):154-159 (in Chinese). |
[10] | Sehgal R, Gandhi O P, Angra V. Fault location of tribo-mechanical systems — A graph theory and matrix approach [J]. Reliability Engineering and System Safety, 2000, 70(1): 1-14. |
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