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Interference Alignment: A Building Block of Coordinated Beamforming Transceiver Designs

Enoch Lu, I-Tai Lu, and Jialing Li
Polytechnic Institute of NYU/Department of Electrical and Computer Engineering, Brooklyn, U.S.A.

Abstract—Interference alignment (IA) has recently been used for the transceiver design of the K-user constant MIMO interference channel. Since this system is a coordinated beamforming system and there are other design criteria, it is important to evaluate IA transceiver designs in light of other designs. In this paper, relationships between
IA and the MMSE, Max Min SIR, Max Sum Capacity, and Min BER transceiver designs are rigorously established for all SR’s and power constraints. A MMSE based transceiver design approach, applicable for general linear
equality power constraints, is also proposed—the first such design for this system. It is used, along with some IA transceiver designs, to demonstrate numerically the derived relationships and to perform a comparison of the designs. One of the main conclusions is that IA is a building block of the traditional transceiver designs considered (MMSE, Max Min SIR, etc.) and generally should not be pursued alone.

Index Terms—Network MIMO, Coordinated Multi-Point Transmission/Reception, CoMP, Coordinated Beamforming, interference alignment, MMSE, Max Min SINR, Max Sum Capacity, Min BER, per-antenna power constraint

Cite:Enoch Lu,  I-Tai Lu, and Jialing Li, "Interference Alignment: A Building Block of Coordinated Beamforming Transceiver Designs," Journal of Communications, vol. 6, no.5, pp.409-419, 2011. Doi: 10.4304/jcm.6.5.409-419
 

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