Title :
Blind Beamforming Schemes in SC-FDMA Systems With Insufficient Cyclic Prefix and Carrier Frequency Offset
Author :
Liu, Cheng-Yi ; Chen, Yung-Fang ; Li, Chih-Peng
Author_Institution :
Dept. of Commun. Eng., Nat. Central Univ., Taoyuan, Taiwan
Abstract :
In cyclic prefix (CP)-based transmission systems, if the time duration of the cyclic extension is shorter than the channel impulse response duration, system performance is degraded due to the introduction of intersymbol interference (ISI) and intercarrier interference (ICI). In this paper, we propose a blind beamforming algorithm for single-carrier frequency-division multiple-access (SC-FDMA) systems under insufficient CP sceIn cyclic prefix (CP)-based transmission systems, if the time duration of the cyclic extension is shorter than the channel impulse response duration, system performance is degraded due to the introduction of intersymbol interference (ISI) and intercarrier interference (ICI). In this paper, we propose a blind beamforming algorithm for single-carrier frequency-division multiple-access (SC-FDMA) systems under insufficient CP scenarios. In addition, we also consider the effects of carrier frequency offsets (CFOs) in the processing schemes. The simulation results are presented by employing an SC-FDMA uplink signal model to illustrate the efficacy of the proposed algorithms.narios. In addition, we also consider the effects of carrier frequency offsets (CFOs) in the processing schemes. The simulation results are presented by employing an SC-FDMA uplink signal model to illustrate the efficacy of the proposed algorithms.
Keywords :
antenna arrays; array signal processing; frequency division multiple access; intercarrier interference; intersymbol interference; radiofrequency interference; transient response; wireless channels; CFO; CP-based transmission system; ICI; ISI; SC-FDMA uplink communication system; SC-FDMA uplink signal model; antenna array; blind beamforming scheme; carrier frequency offset; channel impulse response duration; cyclic prefix; intercarrier interference; intersymbol interference; simulation result; single-carrier frequency-division multiple-access system; Antenna arrays; beamforming; interference cancellation; single-carrier frequency-division multiple access (SC-FDMA);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2009.2023128