Performance Analysis of the CP-OFDM-Based and the TDS-OFDM-Based Digital Television Terrestrial Broadcasting Transmission Systems in the Presence of Nonlinear Distortions and Phase Noise
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Performance Analysis of the CP-OFDM-Based and the TDS-OFDM-Based Digital Television Terrestrial Broadcasting Transmission Systems in the Presence of Nonlinear Distortions and Phase Noise
ZHENG Zi-Wei, YANG Zhi-Xing, ZHU Yi-Sheng, et al. Performance Analysis of the CP-OFDM-Based and the TDS-OFDM-Based Digital Television Terrestrial Broadcasting Transmission Systems in the Presence of Nonlinear Distortions and Phase Noise[J]. Acta Electronica Sinica, 2004, 32(10): 1625-1629.
DOI:
ZHENG Zi-Wei, YANG Zhi-Xing, ZHU Yi-Sheng, et al. Performance Analysis of the CP-OFDM-Based and the TDS-OFDM-Based Digital Television Terrestrial Broadcasting Transmission Systems in the Presence of Nonlinear Distortions and Phase Noise[J]. Acta Electronica Sinica, 2004, 32(10): 1625-1629.DOI:
Performance Analysis of the CP-OFDM-Based and the TDS-OFDM-Based Digital Television Terrestrial Broadcasting Transmission Systems in the Presence of Nonlinear Distortions and Phase Noise
The performance effects of the digital television terrestrial broadcasting (DTTB)transmission systems caused by the nonlinear distortions and the phase noise are summarized
a uniform model is used to express the complex envelope of orthogonal frequency division multiplexing (OFDM) signal for both the cyclic prefix OFDM(CP-OFDM) and the time domain synchronous OFDM (TDS-OFDM)
the fact that cyclic prefix and large amount of training sequences make the CP-OFDM-based DTTB transmission systems have less symbol signal to noise performance than the TDS-OFDM-based DTTB transmission systems is theoretically analyzed
a uniform symbol signal to noise model is thoroughly derived and a performance degradation measure is defined and expressed for both the CP-OFDM system and the TDS-OFDM system in the presence of nonlinear distortions and phase noise
the performance degradations of the CP-OFDM-based and the TDS-OFDM-based DTTB transmission systems in the presence of nonlinear distortions and phase noise are comparatively analyzed both theoretically and by computer simulations.