DocumentCode :
82878
Title :
Space-Time Interference Alignment and Degree-of-Freedom Regions for the MISO Broadcast Channel With Periodic CSI Feedback
Author :
Namyoon Lee ; Heath, Robert W.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
Volume :
60
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
515
Lastpage :
528
Abstract :
This paper characterizes the degree-of-freedom (DoF) regions for the multiuser vector broadcast channel with periodic channel state information (CSI) feedback. As a part of the characterization, a new transmission method called space-time interference alignment is proposed, which exploits both the current and past CSI jointly. Using the proposed alignment technique, an inner bound of the sum-DoF region is characterized as a function of a normalized CSI feedback frequency, which measures CSI feedback speed compared to the speed of user´s channel variations. One consequence of the result is that the achievable sum-DoF gain is improved significantly when a user sends back both current and outdated CSI compared to the case where the user sends back current CSI only. Then, a tradeoff between CSI feedback delay and the sum-DoF gain is characterized for the multiuser vector broadcast channel in terms of a normalized CSI feedback delay that measures CSI obsoleteness compared to channel coherence time. A crucial insight is that it is possible to achieve the optimal DoF gain if the feedback delay is less than a derived fraction of the channel coherence time. This precisely characterizes the intuition that a small delay should be negligible.
Keywords :
broadcast channels; feedback; radiofrequency interference; CSI feedback delay; DoF regions; MISO broadcast channel; channel coherence time; channel state information; channel variations; degree-of-freedom regions; multiuser vector broadcast channel; normalized CSI feedback frequency; periodic CSI feedback; space-time interference alignment; sum-DoF gain; sum-DoF region; transmission method; Coherence; Delays; Gain; Interference; Receivers; Transmitters; Vectors; Delayed channel state information feedback; interference alignment; vector broadcast channel;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2013.2285216
Filename :
6656848
Link To Document :
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