loading...
 This Article 
   
 Share 
   
 Bibliographic References 
   
 Add to: 
 
Digg
Furl
Spurl
Blink
Simpy
Google
Del.icio.us
Y!MyWeb
 
 Search 
   
Sixth IEEE International Symposium on a World of Wireless Mobile and Multimedia Networks (WoWMoM'05)
Power Control is not Required for Wireless Networks in the Linear Regime
Taormina - Giardini Naxos, Italy
June 13-June 16
ISBN: 0-7695-2342-0
We consider the design of optimal strategies for joint power adaptation, rate adaptation and scheduling in a multi-hop wireless network. Most existing strategies control either power and scheduling, or rates and scheduling, but not all three together as we do. We assume the underlying physical layer is in the linear regime (the rate of a link can be approximated by a linear function of the signal-to-interference-and-noise ratio), like in time hopping UWB (TH-UWB) and low gain CDMA systems, and that it allows fine-grained rate adaptation, like in 802.11a/g, HDR/CDMA, TH-UWB. The goal is to find properties of the power control in an optimal joint design. Our main finding is that optimal power control is simple 0 - _PMAX power control, i.e. when a node is sending it uses the maximum transmitting power allowed. We consider both high rate networks where the goal is to maximize rates under power constraints and low power networks where the goal is to minimize average consumed power while meeting minimum rate constraints. We prove analytically that in both scenarios the optimal can always be attained with 0-_PMAX power allocation. Moreover, we prove that, when maximizing rates, and if power constraints are on peak and not average, 0 - _PMAX is the only optimal power control strategy, and any other is strictly suboptimal.
Citation:
Božidar Radunović, Jean-Yves Le Boudec, "Power Control is not Required for Wireless Networks in the Linear Regime," wowmom, vol. 1, pp.417-427, Sixth IEEE International Symposium on a World of Wireless Mobile and Multimedia Networks (WoWMoM'05), 2005
Usage of this product signifies your acceptance of the Terms of Use.