Simplified information geometry approach for massive MIMO-OFDM channel estimation - Part I: Algorithm and fixed point analysis

Yang, Jiyuan; Chen, Yan; Lu, An-An; Zhong, Wen; Gao, Xiqi; You, Xiaohu; Xia, Xiang-Gen; Slock, Dirk
Submitted to ArXiV, 4 January 2024

In this two-part paper, we investigate the channel estimation for massive multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems. In Part I, we revisit the information geometry approach (IGA) for massive MIMO-OFDM channel estimation. By using the constant magnitude property of the entries of the measurement matrix in the massive MIMO-OFDM channel estimation and the asymptotic analysis, we find that the second-order natural parameters of the distributions on all the auxiliary manifolds are equivalent to each other at each iteration of IGA, and the first-order natural parameters of the distributions on all the auxiliary manifolds are asymptotically equivalent to each other at the fixed point of IGA. Motivated by these results, we simplify the iterative process of IGA and propose a simplified IGA for massive MIMO-OFDM channel estimation. It is proved that at the fixed point, the a posteriori mean obtained by the simplified IGA is asymptotically optimal. The simplified IGA allows efficient implementation with fast Fourier transformation (FFT). Simulations confirm that the simplified IGA can achieve near the optimal performance with low complexity in a limited number of iterations.

 

Type:
Journal
Date:
2024-01-04
Department:
Communication systems
Eurecom Ref:
7558
Copyright:
© EURECOM. Personal use of this material is permitted. The definitive version of this paper was published in Submitted to ArXiV, 4 January 2024 and is available at :
See also:

PERMALINK : https://www.eurecom.fr/publication/7558