ENHANCED AODV ROUTING PROTOCOL FOR BLUETOOTH SCATTERNET PDF
Bluetooth is one of the most widespread technologies for personal area networks that allow portable devices to form multi-hop Bluetooth ad hoc. An Enhanced Protocol for Bluetooth Scatternet Formation and Routing For routing, AODV is modified to address the constraints of scatternets. It improves the. However, no routing protocol has yet been defined for Bluetooth scatternets. switching (AMSS), and an enhanced AODV algorithm for ad hoc routing. We have.
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Bluetooth Routing Hoc programming language. Integrated ad hoc routing and time-slot scheduling in bluetooth networks. All communication between slaves is done via the masters.
The scatternet phase of the protocol works on the principle of leader election. Skip to search form Skip to main content. Proceeding of the 14 th IEEE international….
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In Ruting 2 piconet formation in Bluetooth is discussed. There are many real life applications that implicitly require non sxatternet deployment of Bluetooth-enabled devices.
For instance, in a conference hall, Bluetooth-equipped users are seated in groups. LeeTarek N. Another application can be smart offices where more Bluetooth-enabled sensors can be placed at certain areas in comparison to others.
A node can be a master in one piconet and slave in another at different time instants.
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Enhanced AODV routing protocol for Bluetooth scatternet – Semantic Scholar
Forthcoming, Available for Pre-Order. Bluetooth Search for additional papers on this topic. The first phase is of topology discovery where nodes acquire knowledge of its one and two – hop neighbours by forming temporary piconets. BSFRP divides the nodes into a number of components and each component has a leader.
Complete Article List Search this Journal: SivakumarKaoru Sezaki Proceedings. Topics Discussed in This Paper. The Bluetooth standard allows to form a one-hop network called a piconet consisting of one master and maximum 7 active slaves bluetooth. The scattrnet thus formed does not contain any master-slave bridgewhereas most of the existing works on scatternet formation contains master-slave bridges.
This is followed by simulation results in Section 5 and Section 6 concludes. Citations Publications citing ror paper. It is a distributed protocol that handles node mobility and enables multi-hop communication. BSFRP defines rules for topology discovery, scatternet formation and routing. Scatternet formed by joining piconet 1 and 2 by an M-S Bridge and Piconets 1 and 3 byS-S Bridge; the circles represent transmission range of masters.
Routing is one of the challenges enhancef scatternets because of its impact on the performance of the network.
Hence an efficient scatternet formation protocol should minimize the roles assigned to the nodes, without losing network connectivity. Personal digital assistant Overhead computing.
Showing of 13 extracted citations. For routing, AODV is modified to address the constraints of scatternets. Efficient multihop communications in bluetooth scatternets. References Publications referenced by this paper. Network and Computer Applications Bluetooth allows different activity states for the nodes: It should focus on reducing the power consumption in the network because most of the nodes are battery-operated portable devices.
It improves the AODV route discovery phase by considering hop count, residual node’s power, and route lifetime for best route selection. When ordering directly through IGI Global’s Online Bookstore, receive the complimentary e-books for the first, second, and third editions with the purchase of the Encyclopedia of Information Science and Technology, Fourth Edition e-book.
Showing of 19 references. bluteooth
Constructing efficient bluetooth scatternets. It allows multi-hop communication among Bluetooth enabled devices thus allowing the provision of a number of new services. Abstract Formation of scatternet using Bluetooth devices increases device tractability thereby inviting new networking applications to be designed on it. To expand the physical size of the lower class short range Bluetooth networks, the piconets can be joined to form scatternets via Slave-Slave SS bridge a common slave node connected to multiple piconets on a time-sharing basis or Master-Slave MS bridge a link is established between nodes of multiple piconets as shown in Figure 1.
This is followed by brief discussion on related works in Section 3.