This paper deals with the design of a Multi-radio Hybrid node that performs traffic splitting over a Multi-Hop Ad-hoc wireless network. The multiradio nodes have a WiMAX and a WiFi Radio that are used in transmitting data traffic over two different radio channels. Data traffic is split statically over a node and transmitted over the two radio channels. In the present work we consider the mobility aspect of the network. The hybrid nodes are built to be mobile and respond to changes in the network scenario. We implement the AODV Routing protocol and the BeeHive Routing algorithm on these nodes and compare the Throughput and End-to-End delay for data transmission in the network. © 2013 IEEE
Multi-radio Wireless Mesh Networks (WMN) are gaining lot of popularity owing to their increased appl...
The objective of this thesis includes: Understand the concept of ad hoc networks. Studying the me...
Ad hoc networks typically require a significant amount of routing and control information to be dist...
Rapid changes in communication technology coupled with problem of congestion has led to increase in ...
WiFi and WiMAX are two popular wireless standards, where WiFi is a wireless LAN standard and WiMAX i...
IEEE 802.16 (WiMAX) and IEEE 802.11 (WiFi) are different wireless access technologies with the forme...
This paper deals with the design of an infrastructure based network consisting of Multi-radio...
Wireless Mesh Networks (WMNs), based on commodity hardware, present a promising technology for a wid...
Abstract — A mobile ad hoc network is a collection of wireless mobile nodes that dynamically form a ...
Ad hoc networks typically require a significant amount of routing and control information to be dist...
Due to their self-configuring and self-healing capabilities, as well as their low equipment and depl...
Mobile Ad hoc networks are deployed in 1990’s and have been widely researched for many years since t...
In this paper, fault tolerance in a multi-radio network is discussed. Fault tolerance is achieved us...
Abstract — Nodes in multi-hop wireless networks, and specif-ically in ad-hoc and mesh networks, are ...
Due to their self-configuring and self-healing capabilities, as well as their low equipment and depl...
Multi-radio Wireless Mesh Networks (WMN) are gaining lot of popularity owing to their increased appl...
The objective of this thesis includes: Understand the concept of ad hoc networks. Studying the me...
Ad hoc networks typically require a significant amount of routing and control information to be dist...
Rapid changes in communication technology coupled with problem of congestion has led to increase in ...
WiFi and WiMAX are two popular wireless standards, where WiFi is a wireless LAN standard and WiMAX i...
IEEE 802.16 (WiMAX) and IEEE 802.11 (WiFi) are different wireless access technologies with the forme...
This paper deals with the design of an infrastructure based network consisting of Multi-radio...
Wireless Mesh Networks (WMNs), based on commodity hardware, present a promising technology for a wid...
Abstract — A mobile ad hoc network is a collection of wireless mobile nodes that dynamically form a ...
Ad hoc networks typically require a significant amount of routing and control information to be dist...
Due to their self-configuring and self-healing capabilities, as well as their low equipment and depl...
Mobile Ad hoc networks are deployed in 1990’s and have been widely researched for many years since t...
In this paper, fault tolerance in a multi-radio network is discussed. Fault tolerance is achieved us...
Abstract — Nodes in multi-hop wireless networks, and specif-ically in ad-hoc and mesh networks, are ...
Due to their self-configuring and self-healing capabilities, as well as their low equipment and depl...
Multi-radio Wireless Mesh Networks (WMN) are gaining lot of popularity owing to their increased appl...
The objective of this thesis includes: Understand the concept of ad hoc networks. Studying the me...
Ad hoc networks typically require a significant amount of routing and control information to be dist...