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Joint channel and Doppler spread estimation over time-varying flat-fading channels
Conference paper

Joint channel and Doppler spread estimation over time-varying flat-fading channels

Kai-Jie Yang, Chin-Liang Wang and Yuh-Ren Tsai
IEEE Vehicular Technology Conference, 6240216
2012

Abstract

channel estimation Doppler spread expectation-maximization (EM) maximum-likelihood (ML) time-varying channel
In time-varying flat-fading environments, time domain channel correlations are required for accurate channel estimation and interpolation. However, the correlation property, which depends on the Doppler spread, is hard to be extracted from corrupted channel responses within a short channel estimation interval. In this work, based on an approximate channel model via the Taylor expansion, we propose a joint channel and Doppler spread estimation scheme over time-varying flat-fading channels. It employs the expectation-maximization (EM) algorithm to iteratively attain the maximum-likelihood (ML) channel and Doppler spread estimates. Simulation results show that the proposed scheme achieves accurate performance of both channel estimation and Doppler spread estimation within a short estimation interval. © 2012 IEEE.

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