Title :
Joint carrier phase and symbol timing synchronization for burst satellite communications
Author :
Fan, Yigang ; Chakravarthi, Prakash
Author_Institution :
COMSAT Lab., Clarksburg, MD, USA
Abstract :
This paper presents an estimation scheme for joint carrier and symbol clock acquisition using a preamble based on the maximum likelihood principle. Using this principle, the symbol-timing estimate is first obtained by solving a one-dimensional optimization problem. The carrier phase trajectory can then be estimated using the obtained symbol timing and the frequency outset is extracted from the carrier phase trajectory using a least mean square error approach. The obtained carrier and symbol clock synchronizer is evaluated via computer simulation. The corresponding performance is compared with the Cramer-Rao bound. Since most of the maximum-likelihood synchronization work in the current literature only focuses on a single parameter estimation scheme, this paper provides a unified approach for joint carrier phase frequency offset and clock synchronization
Keywords :
least mean squares methods; maximum likelihood estimation; optimisation; phase estimation; satellite communication; synchronisation; burst satellite communications; carrier phase; carrier phase trajectory; estimation scheme; frequency outset; least mean square error approach; maximum likelihood; maximum-likelihood synchronization; one-dimensional optimization problem; performance; symbol clock acquisition; symbol-timing estimate; synchronization; AWGN; Clocks; Computer simulation; Frequency estimation; Frequency synchronization; Maximum likelihood estimation; Phase estimation; Quadrature phase shift keying; Satellite communication; Timing;
Conference_Titel :
MILCOM 2000. 21st Century Military Communications Conference Proceedings
Conference_Location :
Los Angeles, CA
Print_ISBN :
0-7803-6521-6
DOI :
10.1109/MILCOM.2000.904098