Optimizing spatial reuse by dynamic power control
Zhen Tong, Martin Haenggi · 2012
This paper first presents a geometric analysis of the convergence condition for the Foschini-Miljanic power control algorithm. Then, based on the analysis, the Dynamic Distributed Power Control MAC (D2PC-MAC) scheme is proposed for wireless networks. D2PC-MAC achieves high spatial reuse, since power control enables nesting of concurrent links, thereby achieving a high density of successful links. The MAC scheme starts by trying to accommodate all links and then eliminating transmitters causing too much interference in two stages, a local stage and a global stage. Both stages operate in a fully distributed manner. Simulation results confirm the expected gains relative to standard MAC schemes: the spatial density of successful links is increased by about a factor of 4 compared to CSMA and about a factor of 8 compared to ALOHA.