DocumentCode :
1529397
Title :
Cooperative Interference Management With MISO Beamforming
Author :
Zhang, Rui ; Cui, Shuguang
Author_Institution :
Inst. for Infocomm Res., A*STAR, Singapore, Singapore
Volume :
58
Issue :
10
fYear :
2010
Firstpage :
5450
Lastpage :
5458
Abstract :
In this correspondence, we study the downlink transmission in a multi-cell system, where multiple base stations (BSs) each with multiple antennas cooperatively design their respective transmit beamforming vectors to optimize the overall system performance. For simplicity, it is assumed that all mobile stations (MSs) are equipped with a single antenna each, and there is one active MS in each cell at one time. Accordingly, the system of interests can be modeled by a multiple-input single-output (MISO) Gaussian interference channel (IC), termed as MISO-IC, with interference treated as noise. We propose a new method to characterize different rate-tuples for active MSs on the Pareto boundary of the achievable rate region for the MISO-IC, by exploring the relationship between the MISO-IC and the cognitive radio (CR) MISO channel. We show that each Pareto-boundary rate-tuple of the MISO-IC can be achieved in a decentralized manner when each of the BSs attains its own channel capacity subject to a certain set of interference-power constraints (also known as interference-temperature constraints in the CR system) at the other MS receivers. Furthermore, we show that this result leads to a new decentralized algorithm for implementing the multi-cell cooperative downlink beamforming.
Keywords :
Gaussian channels; MIMO communication; antenna arrays; cellular radio; cognitive radio; radiofrequency interference; telecommunication network management; MISO beamforming; Pareto-boundary rate-tuple; cognitive radio; cooperative interference management; downlink transmission; interference-power constraints; interference-temperature constraints; mobile stations; multicell cooperative downlink beamforming; multiple antennas; multiple base stations; multiple-input single-output Gaussian interference channel; transmit beamforming vectors; Array signal processing; Base stations; Chromium; Design optimization; Downlink; Integrated circuit modeling; Integrated circuit noise; Interference constraints; System performance; Transmitting antennas; Beamforming; Pareto optimal; cooperative multi-cell system; interference channel; multi-antenna; rate region;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2010.2056685
Filename :
5504193
Link To Document :
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