DocumentCode :
40816
Title :
On the Achievable Degrees-of-Freedom by Distributed Scheduling in (N,K)-User Interference Channels
Author :
Seong Ho Chae ; Bang Chul Jung ; Wan Choi
Author_Institution :
Dept. of Electr. Eng., Korea Adv. Inst. of Sci. & Technol. (KAIST), Daejeon, South Korea
Volume :
61
Issue :
6
fYear :
2013
fDate :
Jun-13
Firstpage :
2568
Lastpage :
2579
Abstract :
We investigate achievable degrees-of-freedom (DoF) of an (N, K)-user interference channel where only K user (transmitter-receiver) pairs among N user pairs are allowed to simultaneously communicate in a dense network (N ≫ K). Each node is assumed to have M antennas and to be randomly located. We propose a distributed scheduling protocol to achieve the maximum DoF (i.e., MK), which sequentially and opportunistically selects a user pair causing/receiving interference lower than a pre-determined threshold to/from already selected user pairs in each step. It is proven that the proposed protocol achieves the maximum DoF, MK, in the (N, K)-user interference channel with less stringent network size N, compared with the conventional centralized protocol which has been known as the best. With zero-forcing detector at receiver, we prove that it is sufficient that the network size N scales at least as ω(SNR(M2)K(K-1)) to achieve the maximum number of DoF MK, where SNR denotes the received signal-to-noise ratio. We also investigate the required feedback overheads of the proposed protocol and show that it is quite small when the network is strongly interference-limited because only a small number of users are required to transmit their signaling. Our numerical results show that our proposed scheme controls interference more effectively than the centralized protocol.
Keywords :
ad hoc networks; antennas; diversity reception; interference suppression; protocols; radio receivers; telecommunication signalling; wireless channels; DoF; degree of freedom; dense network; distributed scheduling protocol; random antenna location; receiver; signal-to-noise ratio; signaling; user interference channel; user pair causing interference; user pair receiving interference; zero forcing detector; Interference channels; Protocols; Receivers; Signal to noise ratio; Transmitters; Vectors; Interference channel; degrees-of-freedom; distributed scheduling; multi-user diversity; wireless ad hoc network;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2013.042313.120400
Filename :
6510015
Link To Document :
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