DocumentCode :
2368763
Title :
On interference alignment for symmetrically connected interference networks with line of sight channels at finite powers
Author :
Ganesan, Abhinav ; Rajan, B. Sundar
Author_Institution :
Dept. of ECE, IISc, Bangalore, India
fYear :
2012
fDate :
10-15 June 2012
Firstpage :
2255
Lastpage :
2259
Abstract :
In this work, interference alignment for a class of Gaussian interference networks with general message demands, having line of sight (LOS) channels, at finite powers is considered. We assume that each transmitter has one independent message to be transmitted and the propagation delays are uniformly distributed between 0 and (L - 1) (L >; 0). If receiver-j, j ∈{1,2,..., J}, requires the message of transmitter-i, i ∈ {1, 2, ..., K}, we say (i, j) belongs to a connection. A class of interference networks called the symmetrically connected interference network is defined as a network where, the number of connections required at each transmitter-i is equal to ct for all i and the number of connections required at each receiver-j is equal to cr for all j, for some fixed positive integers ct and cr. For such networks with a LOS channel between every transmitter and every receiver, we show that an expected sum-spectral efficiency (in bits/sec/Hz) of at least K/(e+c1-1)(ct+1) (ct/ct+1)ct log2 (1+min(i, j)∈c|hi, j|2 P/WN0) can be achieved as the number of transmitters and receivers tend to infinity, i.e., K, J →∞ where, C denotes the set of all connections, hij is the channel gain between transmitter-i and receiver-j, P is the average power constraint at each transmitter, W is the bandwidth and N0 W is the variance of Gaussian noise at each receiver. This means that, for an LOS symmetrically connected interference network, at any finite power, the total spectral efficiency can grow linearly with K as K, J →∞. This is achieved by extending the time domain interference alignment scheme proposed by Grokop et al. for the k-user Gaussian interference channel to interference networks.
Keywords :
Gaussian channels; Gaussian noise; interference suppression; message passing; radio receivers; radio transmitters; spectral analysis; Gaussian interference channel; Gaussian interference network; Gaussian noise; LOS; finite power; interference alignment; line of sight channel; message transmission; power constraint; propagation delays; receiver; spectral efficiency; symmetrically connected interference network; transmitter; Bandwidth; Gaussian noise; Interference channels; Receivers; Transmitters; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2012 IEEE International Conference on
Conference_Location :
Ottawa, ON
ISSN :
1550-3607
Print_ISBN :
978-1-4577-2052-9
Electronic_ISBN :
1550-3607
Type :
conf
DOI :
10.1109/ICC.2012.6363953
Filename :
6363953
Link To Document :
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