Title :
Distributed coexistence-aware channel allocation for future unlicensed high-rate WPAN
Author :
Khalil, Ayman ; Crussière, Matthieu ; Hélard, Jean-François
Author_Institution :
INSA, Eur. Univ. of Brittany (UEB), Rennes, France
Abstract :
We study in this paper the resource allocation matter for unlicensed multiband ultra-wideband (UWB) users in the context of high-rate wireless personal area network (WPAN). The problem is viewed as a coexistence problem with existing licensed systems. The QoS support and the interference mitigation are jointly considered in this study to derive a novel interference power control mechanism that differentiates between the unlicensed users. The objective of this paper is twofold. First, a constrained multiuser optimization problem is studied and optimal sub-band and power allocation functions are derived. Second, in the scope of a joint QoS-aware channel allocation and interference control mechanism, we propose two solutions for the optimization problem. The first one is based on a high-complexity iterative process for the search of the optimal solution, and another low-complexity suboptimal solution based on a distributed cross-layer approach. Simulation results demonstrate that the optimal and suboptimal solutions perform close and that the allocation scheme makes a good tradeoff between the QoS satisfaction of high-priority UWB users and the limitation of the interference affecting the licensed users.
Keywords :
channel allocation; interference suppression; iterative methods; optimisation; personal area networks; power control; quality of service; telecommunication control; ultra wideband communication; QoS-aware channel allocation; distributed coexistence-aware channel allocation; distributed cross-layer approach; high-complexity iterative process; high-rate wireless personal area network; interference mitigation; interference power control mechanism; low-complexity suboptimal solution; multiuser optimization problem; power allocation function; resource allocation; ultrawideband user; Interference; OFDM; Optimization; Phase shift keying; Quality of service; Resource management; Signal to noise ratio; Interference control; QoS; UWB; cross-layer;
Conference_Titel :
Signal Processing and Communication Systems (ICSPCS), 2010 4th International Conference on
Conference_Location :
Gold Coast, QLD
Print_ISBN :
978-1-4244-7908-5
Electronic_ISBN :
978-1-4244-7906-1
DOI :
10.1109/ICSPCS.2010.5709718