An Overly Architecture for throughput Optimal Routing using Cluster Based network
M ARCHANA
, AJAY KUSHWAHA , DHARMENDRA ROY
Cluster based,overlay networks, bequest network, network control, back pressure routing
Cluster-based network control structures endorse more capable utilize of resources in controlling large dynamic networks. Therefore they are very good candidates for ad hoc networks. There are many types of cluster-based architectures proposed in the literature for definite purposes. Of them link-cluster architecture is specifically designed for transmission management in ad hoc networks. Bequest networks are frequently planned to operate with plain single-path routing, like the shortest path, which is known to be throughput suboptimal. On the other hand, earlier proposed throughput optimal policies (i.e., backpressure) need each machine in the network to make active routing decisions. We study overlay architecture for dynamic routing; only a subset of devices (overlay nodes) require to make the dynamic routing decisions. We conclude the necessary compilation of nodes that must bifurcate traffic for achieving the utmost multi-commodity network throughput
"An Overly Architecture for throughput Optimal Routing using Cluster Based network", IJSDR - International Journal of Scientific Development and Research (www.IJSDR.org), ISSN:2455-2631, Vol.3, Issue 6, page no.426 - 430, June-2018, Available :https://ijsdr.org/papers/IJSDR1806069.pdf
Volume 3
Issue 6,
June-2018
Pages : 426 - 430
Paper Reg. ID: IJSDR_180460
Published Paper Id: IJSDR1806069
Downloads: 000347206
Research Area: Engineering
Country: BHILAI, CHHATTISGARH, India
ISSN: 2455-2631 | IMPACT FACTOR: 9.15 Calculated By Google Scholar | ESTD YEAR: 2016
An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 9.15 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator
Publisher: IJSDR(IJ Publication) Janvi Wave