Title :
Joint power control and scheduling algorithm for Wi-Fi Ad-hoc networks
Author :
Oh, Sangho ; Gruteser, Marco ; Jiang, Daniel ; Chen, Qi
Author_Institution :
WINLAB, Rutgers Univ., North Brunswick, NJ, USA
Abstract :
Power control is a widely used technique in improving the throughput and the quality of services in wireless communications. In this paper, a power control method based on a utility maximization method is applied to Ad-hoc networks built on Wi-Fi radios. First, a fully distributed power control algorithm is developed considering the different characteristics of discrete multi-rate Wi-Fi radios, then a novel joint power control and scheduling algorithm is proposed to maximize the network throughput without sacrificing fairness. The proposed algorithm has a linear complexity degree while other utility based sub-optimal algorithms have exponential complexity. Lastly, as a preliminary step for an application for real Wi-Fi networks, the SINR model of Wi-Fi radios is verified through an experimental research based on the power capture effects.
Keywords :
ad hoc networks; power control; wireless LAN; Wi-Fi ad-hoc networks; distributed power control algorithm; power capture effect; power scheduling algorithm; suboptimal algorithms; utility maximization method; Ad hoc networks; Closed-form solution; Decoding; Diversity reception; Fading; Power control; Power system relaying; Protocols; Relays; Scheduling algorithm;
Conference_Titel :
Wireless Internet Conference (WICON), 2010 The 5th Annual ICST
Conference_Location :
Singapore
Electronic_ISBN :
978-963-9799-86-8