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Low-complexity iterative per-antenna MAP equalizer for MIMO frequency selective fading channels

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Author(s)
Gulati, V.Lee, Heung-No
Type
Conference Paper
Citation
GLOBECOM'02 - IEEE Global Telecommunications Conference, pp.1118 - 1123
Issued Date
2002-11
Abstract
We consider the equalization of a (Nt,Nr) MIMO, L + 1-tap fading channel. We first evaluate the performance of a full complexity, vector MAP equalizer which runs the forward/backward algorithm on a trellis which has M states with M transitions from each state when an M - ary constellation is used. This MAP equalizer achieves the Nr × (L+1) diversity benefit while realizing Nt × log2(M) bits/sec/Hz. We then propose a novel Iterative per-antenna MAP(PAMAP) approach which can be used (1) to reduce the complexity and (2) to achieve the full diversity order Nt × Nr × (L + 1) at the rate of log2(M) bits/sec/Hz. The proposed equalizer consists of a probabilistic "signal separator" and a bank of Nt PAMAPs each having M states with M transitions from each state. The signal separator and the PAMAPs exchange extrinsic information during iterations. Simulation results indicate that the proposed receiver closely achieves the performance of the full complexity MAP within 2 to 3 iterations. The proposed scheme saves a significant amount of complexity in uncoded systems with a large number of transmit antennas and a high modulation order. In coded systems, the PAMAP scheme becomes more beneficial when iterative equalization and decoding is used.
Publisher
Proc. of IEEE Globecom
Conference Place
CH
URI
https://scholar.gist.ac.kr/handle/local/29332
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