On quantifying fault patterns of the mesh interconnect networks

F. Safaei*, M. Fathy, A. Khonsari, M. Ould-Khaoua, H. Shafiei, S. Khosravipour

*المؤلف المقابل لهذا العمل

نتاج البحث: Conference contribution

ملخص

One of the key issues in the design of Multiprocessors System-on-Chip (MP-SoCs), multicomputers, and peer-to-peer networks is the development of an efficient communication network to provide high throughput and low latency and its ability to survive beyond the failure of individual components. Generally, the faulty components may be coalesced into fault regions, which are classified into convex and concave shapes. In this paper, we propose a mathematical solution for counting the number of common fault patterns in a 2-D mesh interconnect network including both convex (I-shape, II-shape, □-shape) and concave (L-shape, U-shape, T-shape, +-shape, H-shape) regions. The results presented in this paper which have been validated through simulation experiments can play a key role when studying, particularly, the performance analysis of fault-tolerant routing algorithms and measure of a network fault-tolerance expressed as the probability of a disconnection.

اللغة الأصليةEnglish
عنوان منشور المضيفProceedings - 21st International Conference on Advanced Information Networking and Applications, AINA 2007
الصفحات956-961
عدد الصفحات6
المعرِّفات الرقمية للأشياء
حالة النشرPublished - 2007
منشور خارجيًانعم
الحدث21st International Conference on Advanced Information Networking and Applications, AINA 2007 - Niagara Falls, ON, Canada
المدة: مايو ٢١ ٢٠٠٧مايو ٢٣ ٢٠٠٧

سلسلة المنشورات

الاسمProceedings - International Conference on Advanced Information Networking and Applications, AINA
رقم المعيار الدولي للدوريات (المطبوع)1550-445X

Other

Other21st International Conference on Advanced Information Networking and Applications, AINA 2007
الدولة/الإقليمCanada
المدينةNiagara Falls, ON
المدة٥/٢١/٠٧٥/٢٣/٠٧

ASJC Scopus subject areas

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