Title :
Bubble routing: A scalable algorithm with guaranteed delivery in 3D sensor networks
Author :
Xia, Su ; Jin, Miao ; Wu, Hongyi ; Zhou, Hongyu
Author_Institution :
Center for Adv. Comput. Studies, Univ. of Louisiana at Lafayette, Lafayette, LA, USA
Abstract :
Compared with its 2D counterpart, the scalability problem is greatly exacerbated in a 3D wireless sensor network. In this paper, we propose a scalable routing algorithm, dubbed Bubble Routing. It preprocesses global knowledge via a distributed algorithm, such that a node only needs to store a small constant information to make correct and efficient local routing decisions and achieve guaranteed delivery at the same time. More specifically, the proposed bubble routing algorithm first decompose a 3D network into a set of hollow spherical cells (HSCs). A continuous and one-to-one mapping is applied and a virtual tree structure is established inside each HSC to enable greedy routing. On the other hand, routing across HSCs is guided by a small routing table whose size is bounded by the number of interior holes. Our simulation results show that bubble routing can achieve guaranteed data delivery, low stretch factor, and well balanced traffic load.
Keywords :
distributed algorithms; telecommunication network reliability; telecommunication network routing; telecommunication traffic; wireless sensor networks; 3D wireless sensor networks; HSC; bubble routing algorithm; data delivery; distributed algorithm; efficient local routing decisions; global knowledge; hollow spherical cells; low stretch factor; one-to-one mapping; scalability problem; scalable algorithm; traffic load; Complexity theory; Face; Load management; Peer to peer computing; Routing; Routing protocols; Scalability;
Conference_Titel :
Sensor, Mesh and Ad Hoc Communications and Networks (SECON), 2012 9th Annual IEEE Communications Society Conference on
Conference_Location :
Seoul
Print_ISBN :
978-1-4673-1904-1
Electronic_ISBN :
2155-5486
DOI :
10.1109/SECON.2012.6275784