DocumentCode :
1786388
Title :
Optimisation of Wi-Fi Mesh Network for small cell backhaul
Author :
Yuzhen Ma ; Jie Zhang
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Sheffield, Sheffield, UK
fYear :
2014
fDate :
1-3 Nov. 2014
Firstpage :
89
Lastpage :
93
Abstract :
In the design of Wireless Mesh Network (WMN) for small cell backhaul, deployment cost and reliability are important considerations and are mainly determined by network topology. Reliability ensures the network quality for clients and cost is a major concern in telecom operators. In practice, increasing redundant network links improves the reliability of a backhaul network, but increases the cost substantially. Generally, network reliability and cost are considered separately. In this paper, we propose two algorithms based on minimum spanning tree (MST) and the shortest path (TSP) constructing reliable backhaul infrastructure that resists the disabled single mesh nodes with low cost. Via a case study, we show the relationship between deployment cost and reliability. The proposed optimization model provides the backhaul network operators with reliable and costs trade-off solutions and compared deploy cost in different bandwidth.
Keywords :
cellular radio; telecommunication network reliability; telecommunication network topology; trees (mathematics); wireless LAN; wireless mesh networks; MST; TSP; WMN; Wi-Fi mesh network optimisation; backhaul network operators; backhaul network reliability; deployment cost; minimum spanning tree; network quality; network topology; optimization model; redundant network links; single-mesh nodes; small-cell backhaul; telecom operators; the-shortest path; wireless mesh network; Computer architecture; Mesh networks; Network topology; Optimization; Reliability; Topology; Wireless communication; Wi-Fi; backhaul; cost; mesh network; reliability; small cell;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Mobility Wireless Communications (HMWC), 2014 International Workshop on
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/HMWC.2014.7000220
Filename :
7000220
Link To Document :
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