DocumentCode :
23220
Title :
Multiple-Antenna Interference Channels With Real Interference Alignment and Receive Antenna Joint Processing Based on Simultaneous Diophantine Approximation
Author :
Zamanighomi, Mahdi ; Zhengdao Wang
Author_Institution :
Dept. of Electr. & Comput. Eng., Iowa State Univ., Ames, IA, USA
Volume :
60
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
4757
Lastpage :
4769
Abstract :
In this paper, the degrees of freedom (DoF) regions of constant coefficient multiple antenna interference channels are investigated. First, we consider a K-user Gaussian interference channel with Mk antennas at transmitter k, 1 ≤ k ≤ K, and Nj antennas at receiver j, 1 ≤ j ≤ K, denoted as a (K, [Mk], [Nj]) channel. Relying on a result of simultaneous Diophantine approximation, a real interference alignment scheme with joint receive antenna processing is developed. The scheme is used to obtain an achievable DoF region. The proposed DoF region includes two previously known results as special cases, namely: 1) the total DoF of (K, [N], [N]) interference channel with K users and N antennas at each node is NK/2 and 2) the total DoF of a (K, [M], [N]) channel is at least KMN/(M+N). We next explore constant-coefficient interference networks with K transmitters and J receivers, all having N antennas. Each transmitter emits an independent message and each receiver requests an arbitrary subset of the messages. Employing the novel joint receive antenna processing, the DoF region for this setup is obtained. We finally consider wireless X networks where each node is allowed to have an arbitrary number of antennas. It is shown that the joint receive antenna processing can be used to establish an achievable DoF region, which is larger than what is possible with antenna splitting. As a special case of the derived achievable DoF region for constant coefficient X network, the total DoF of wireless X networks with the same number of antennas at all nodes and with joint antenna processing is tight while the best inner bound based on antenna splitting cannot meet the outer bound. Finally, we obtain a DoF region outer bound based on the technique of transmitter grouping.
Keywords :
Gaussian channels; antenna arrays; approximation theory; radio receivers; radio transmitters; radiofrequency interference; receiving antennas; DoF regions; K-user Gaussian interference channel; antenna splitting; constant-coefficient interference networks; degrees of freedom regions; independent message; multiple-antenna interference channels; real interference alignment; receive antenna joint processing; receiver; simultaneous diophantine approximation; transmitter grouping; Interference channels; MIMO; Receiving antennas; Transmitting antennas; Diophantine approximation; Interference channels; X network; degrees of freedom region; interference alignment; multiple-input multiple-output;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2014.2327212
Filename :
6822583
Link To Document :
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