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On the degrees-of-freedom of the MIMO interference channel

Publication ,  Conference
Parker, PA; Bliss, DW; Tarokh, V
Published in: CISS 2008, The 42nd Annual Conference on Information Sciences and Systems
September 22, 2008

The high signal-to-noise ratio capacity of the symmetric MIMO interference channel is characterized as a function of the interference-to-noise ratio. This work is a multiple antenna extension of the degrees of freedom expressions derived by Etkin et al. for the single antenna case. This characterization considers the case where the number of receive antennas is greater than or equal to the number of transmit antennas and shows the number of degrees of freedom available for communication as a function of log(INR)/log(SNR). © 2008 IEEE.

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CISS 2008, The 42nd Annual Conference on Information Sciences and Systems

DOI

Publication Date

September 22, 2008

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62 / 67
 

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Parker, P. A., Bliss, D. W., & Tarokh, V. (2008). On the degrees-of-freedom of the MIMO interference channel. In CISS 2008, The 42nd Annual Conference on Information Sciences and Systems (pp. 62–67). https://doi.org/10.1109/CISS.2008.4558496
Parker, P. A., D. W. Bliss, and V. Tarokh. “On the degrees-of-freedom of the MIMO interference channel.” In CISS 2008, The 42nd Annual Conference on Information Sciences and Systems, 62–67, 2008. https://doi.org/10.1109/CISS.2008.4558496.
Parker PA, Bliss DW, Tarokh V. On the degrees-of-freedom of the MIMO interference channel. In: CISS 2008, The 42nd Annual Conference on Information Sciences and Systems. 2008. p. 62–7.
Parker, P. A., et al. “On the degrees-of-freedom of the MIMO interference channel.” CISS 2008, The 42nd Annual Conference on Information Sciences and Systems, 2008, pp. 62–67. Scopus, doi:10.1109/CISS.2008.4558496.
Parker PA, Bliss DW, Tarokh V. On the degrees-of-freedom of the MIMO interference channel. CISS 2008, The 42nd Annual Conference on Information Sciences and Systems. 2008. p. 62–67.

Published In

CISS 2008, The 42nd Annual Conference on Information Sciences and Systems

DOI

Publication Date

September 22, 2008

Start / End Page

62 / 67