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{"references": ["ETSI, \"Digital Video Broadcasting (DVB): Framing structure, channel coding and modulation for digital terrestrial television\", EN 300 744, V. 1.4.1, January 2001.", "ETSI, \"Radio broadcasting systems: Digital audio broadcasting (DAB) to mobile, portable and fixed receivers\", EN 300 401, V. 1.3.2, September 2000.", "A. Armada, \"Understanding the effects of phase noise in orthogonal frequency division multiplexing (OFDM)\", IEEE Transactions on Broadcasting, Vol. 47, No. 2, pp. 153-159, June 2001.", "P. Robertson, S. Kaiser, \"Analysis of the effects of phase-noise in orthogonal frequency division multiplex (OFDM) systems\", IEEE International Conference on Communications, ICC95, pp. 1652-1657, June 1995.", "D. Petrovic, W. Rave, G. Fettweis, \"Phase noise suppression in OFDM including intercarrier interference\", International OFDM Workshop (InOWo),pp. 219-224, September 2003.", "M. Gholami, S. Nader-Esfahani, A. Eftekhar, \"A new method of phase noise compensation in OFDM\", IEEE International Conference on Communications, ICC2003,pp. 3443-3446, May 2003.", "V.S. Anishchenko, T.E. Vadivasova., G.A. Okrokvertskhov, G.I. Strelkova, \"Correlation analysis of dynamical chaos\", Elseiver, Physical A 325, pp. 199-212, 2003."]}
The aim of this paper is to emphasize and alleviate the effect of phase noise due to imperfect local oscillators on the performances of a Multi-Carrier CDMA system. After the cancellation of Common Phase Error (CPE), an iterative approach is introduced which iteratively estimates Inter-Carrier Interference (ICI) components in the frequency domain and cancels their contribution in the time domain. Simulation are conducted in order to investigate the achievable performances for several parameters, such as the spreading factor, the modulation order, the phase noise power and the transmission Signal-to-Noise Ratio.
Phase noise., Inter-carrier Interference, Orthogonal Frequency Division Multiplexing, Multi-Carrier Code DivisionMultiple Access
Phase noise., Inter-carrier Interference, Orthogonal Frequency Division Multiplexing, Multi-Carrier Code DivisionMultiple Access
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