Title :
Robust Downlink Beamforming With Partial Channel State Information for Conventional and Cognitive Radio Networks
Author :
Wajid, I. ; Pesavento, Marius ; Eldar, Yonina C. ; Ciochina, Dana
Author_Institution :
Tech. Univ. Darmstadt, Darmstadt, Germany
Abstract :
We address the problem of robust multiuser downlink beamforming under the assumption that the transmitter has partial covariance-based channel state information (CSI). In our approach, the uncertainty on the channel covariance matrices is assumed to be confined in an ellipsoid of given size and shape, where prior knowledge about the statistical distribution of the CSI mismatch is taken into account. The goal is to minimize the transmitted power under the worst-case quality-of-service (QoS) constraints. We extend the developed robust problem to downlink beamforming in cognitive radio (CR) networks where QoS constraints apply to the users of the secondary network (SN) and interference leaked to the primary users (PUs) is required to be below a given interference threshold. We avoid the coarse approximations used by previous solutions and obtain exact reformulations for both worst-case problems based on Lagrange duality. The resulting problems can then be approximated using semidefinite relaxation (SDR). Further, we consider a popular alternative robust approach that is based on probabilistic QoS and interference constraints and show that both approaches are generally equivalent. Computer simulations show that the proposed techniques provide substantial performance improvements over earlier robust downlink beamforming techniques for both the conventional and the CR scenarios.
Keywords :
approximation theory; array signal processing; cognitive radio; covariance matrices; quality of service; radio transmitters; statistical distributions; wireless channels; CR networks; CSI mismatch; SDR approximation; channel covariance matrices; cognitive radio networks; computer simulations; partial channel state information; partial covariance-based CSI; partial covariance-based channel state information; primary users; probabilistic QoS constraints; probabilistic interference constraints; radio transmitter; robust multiuser downlink beamforming techniques; secondary interference threshold; secondary network; semidefinite relaxation approximation; statistical distribution; worst-case QoS constraints; worst-case quality-of-service constraints; Downlink beamforming; cognitive radio; convex optimization; user quality-of-service;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2013.2265682