Title :
On the generalized degrees of freedom region of the MIMO interference channel with no CSIT
Author :
Vaze, Chinmay S. ; Karmakar, Sanjay ; Varanasi, Mahesh K.
Author_Institution :
Dept. of Electr., Comput., & Energy Eng., Univ. of Colorado, Boulder, CO, USA
fDate :
July 31 2011-Aug. 5 2011
Abstract :
The generalized degrees of freedom region (GDoF) of the multiple-input multiple-output (MIMO) interference channel (IC) is studied under the “no CSIT” assumption under which there is perfect channel state information (CSI) at the receivers and no CSI at the transmitters (CSIT). In the very weak interference regime, where the ratio of channel gains (in dB) of the interfering and direct links, α, is ≤ 0.5, the GDoF regions are characterized for the two classes of the MIMO ICs defined by (a) M1 = N1 >; M2 ≥ N2 and (b) M1 = N1 >; N2 >; M2 (where Mi is the number of antennas at transmitter i and Ni is the number of antennas at receiver i, i ∈ {1, 2}). In particular, inner-bounds are obtained by developing CSI-independent coding schemes using which it is shown that for each of the two classes a significant portion of the perfect-CSIT GDoF region can be achieved even without CSIT. Furthermore, tight outer-bounds to the no-CSIT GDoF regions are obtained that simultaneously account for the interference encountered by both the receivers. These bounds are thus fundamentally different from those derived in earlier works which deal with the case of α = 1, i.e., the degrees of freedom (DoF) regions. Interestingly, it is found that the loss of DoFs due to lack of CSIT is much less pronounced for the α ≤ 1 over 2 than it is for α = 1.
Keywords :
MIMO communication; adjacent channel interference; antenna arrays; radio transmitters; transmitting antennas; MIMO interference channel; antennas; channel gains; channel state information; generalized degrees of freedom region; multiple-input multiple-output; Integrated circuits; Interference channels; MIMO; Receiving antennas; Transmitters; Generalized degrees of freedom; MIMO; interference channel; outer bound;
Conference_Titel :
Information Theory Proceedings (ISIT), 2011 IEEE International Symposium on
Conference_Location :
St. Petersburg
Print_ISBN :
978-1-4577-0596-0
Electronic_ISBN :
2157-8095
DOI :
10.1109/ISIT.2011.6034236