Title :
Bandwidth-Power Aware Cooperative Multipath Routing for Wireless Multimedia Sensor Networks
Author :
Xu, Hongli ; Huang, Liusheng ; Qiao, Chunming ; Zhang, Yindong ; Sun, Quan
Author_Institution :
Sch. of Comput. Sci. & Technol., Univ. of Sci. & Technol. of China, Hefei, China
fDate :
4/1/2012 12:00:00 AM
Abstract :
Cooperative communication is becoming an attractive technology as it can greatly improve the spatial diversity without additional antennas. This novel communication paradigm can effectively reduce power consumption via multi-node cooperation and resource allocation. This paper studies the energy-efficient node-disjoint multi-path routing for a given source-destination pair by joint route construction, relay assignment and power allocation methods. We first define a new bandwidth-power aware cooperative multi-path routing (BP-CMPR) problem, and formally prove its NP-hardness. The paper then presents a polynomial-time heuristic algorithm CMPR to solve the above problem. The algorithm adopts the Suurballe´s method to find k minimal-weight node-disjoint paths from source to destination on a weighted graph. Then, dynamic programming is used to implement relay assignment and power allocation. The theoretical analysis shows that CMPR can reach approximation factors of 2 and frac{4}{3} for BP-CMPR under the amplify-and-forward and decode-and-forward schemes respectively. The distributed version of the algorithm DCMPR is also presented for this problem. We also prove that both CMPR and DCMPR construct the same cooperative multi-path routing, and show via simulations that the performance of the proposed scheme is more than 15% better than that of a traditional multi-path routing scheme, and close to the optimal result for BP-CMPR in variety of situations.
Keywords :
amplify and forward communication; antennas; approximation theory; bandwidth allocation; computational complexity; cooperative communication; decode and forward communication; diversity reception; dynamic programming; energy conservation; graph theory; multimedia communication; multipath channels; resource allocation; telecommunication network routing; wireless sensor networks; BP-CMPR; NP-hardness; Suurballe´s method; amplify-and-forward scheme; antennas; approximation factors; bandwidth-power aware cooperative multipath routing; communication paradigm; cooperative communication; decode-and-forward scheme; dynamic programming; energy-efficient node-disjoint multipath routing; joint route construction; k minimal-weight node-disjoint paths; multinode cooperation; multipath routing scheme; polynomial-time heuristic algorithm CMPR; power allocation methods; power consumption; relay assignment; resource allocation; source-destination pair; spatial diversity; weighted graph; wireless multimedia sensor networks; Bandwidth; Equations; Power demand; Relays; Routing; Wireless communication; Wireless sensor networks; Multi-path routing; cooperative communication; power allocation; relay assignment;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.020812.111265