DocumentCode
1964743
Title
A comparative study of interference alignment schemes with LTE-compliant turbo coding
Author
Papaharalabos, Stylianos ; Alexandropoulos, George C. ; Papadias, Constantinos B.
Author_Institution
Broadband Wireless & Sensor Networks Group, Athens Inf. Technol. (AIT), Athens, Greece
fYear
2013
fDate
9-13 June 2013
Firstpage
159
Lastpage
163
Abstract
It was recently theoretically shown that the sum capacity of the K-user interference channel scales linearly with a factor of K/2 in the high signal-to-noise ratio (SNR) regime. This scaling can be accomplished with interference alignment (IA), which is a transmission technique that requires perfect global channel state information to be available at all transceivers. For the general case of K > 3 users, a number of different iterative algorithms for achieving the IA sum-rate scaling at high SNRs has been lately proposed. These algorithms compute transmit and receive filters aiming at optimizing a certain performance objective, thus ranging in sum-rate performance vs. complexity tradeoffs. However, most of the performance evaluation studies to date do not include error correction coding, thus taking away from our ability to quantify the true sum-rate potential of the various aforementioned algorithms in practice. In this paper, we perform a comparative study of several IA schemes in the spatial dimension when combined with an error correction coding scheme. Our results shed light into how IA would perform in LTE-compliant systems.
Keywords
Long Term Evolution; channel coding; error correction codes; iterative methods; performance evaluation; radiofrequency interference; telecommunication channels; turbo codes; K-user interference channel; LTE-compliant systems; LTE-compliant turbo coding; SNR regime; complexity tradeoffs; error correction coding; global channel state information; interference alignment schemes; receive filters; signal-to-noise ratio regime; sum-rate performance; transceivers; transmission technique; transmit filters; Fading; Interference; Long Term Evolution; MIMO; Phase shift keying; Signal to noise ratio; Turbo codes;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications Workshops (ICC), 2013 IEEE International Conference on
Conference_Location
Budapest
Type
conf
DOI
10.1109/ICCW.2013.6649220
Filename
6649220
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