Title :
Cross-Layer Design of Wireless Multihop Backhaul Networks With Multiantenna Beamforming
Author :
Kim, Seung-Jun ; Wang, Xiaodong ; Madihian, Mohammad
Author_Institution :
NEC Lab. America, Inc., Princeton
Abstract :
A cross-layer design approach is considered for joint routing and resource allocation for the physical (PHY) and the medium access control (MAC) layers in multihop wireless backhaul networks. The access points (APs) are assumed to be equipped with multiple antennas capable of both transmit and receive beamforming. A nonlinear optimization problem is formulated, which maximizes the fair throughput of the APs in the network under the routing and the PHY/MAC constraints. Dual decomposition is employed to decouple the original problem into smaller subproblems in different layers, which are coordinated by the dual prices. The network layer subproblem can be solved in a distributed manner and the PHY layer subproblem in a semidistributed manner. To solve the PHY layer subproblem, an iterative minimum mean square error (IMMSE) algorithm is used with the target link signal-to-interference-and-noise-ratio (SINR) set dynamically based on the price generated from the upper layers. A scheduling heuristic is also developed, which improves the choice of the transmission sets over time. Simulation results illustrate the efficacy of the proposed cross-layer design.
Keywords :
access protocols; antenna arrays; iterative methods; least mean squares methods; radio networks; telecommunication network routing; cross-layer design; iterative minimum mean square error; joint routing; medium access control; multiantenna beamforming; resource allocation; signal-to-interference-and-noise-ratio; wireless multihop backhaul networks; Array signal processing; Constraint optimization; Cross layer design; Media Access Protocol; Physical layer; Receiving antennas; Resource management; Routing; Spread spectrum communication; Transmitting antennas; Wireless backhaul networks; beamforming; cross-layer design; dual decomposition; scheduling;
Journal_Title :
Mobile Computing, IEEE Transactions on
DOI :
10.1109/TMC.2007.1052