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The Economical PAPR Minization Scheme for Combinative Coding Technique Applied OFDM Communication System
Authors:Do Horng Guo  Chau Yun Hsu
Affiliation:(1) Graduate Institute of Communication Engineering, Tatung University, NO. 326, Sec. 1, Schuan Rd., Banchiau City, Taipei, 220, Taiwan, R.O.C.;(2) Graduate Institute of Communication Engineering, Tatung University, 40, Chungshan N. Rd., 3rd Sec., Taipei, 104, Taiwan, R.O.C.
Abstract:In this paper, we propose a new combinative scheme to combine with parity check and block coding methods for the reduction of the peak to average power ratio (PAPR) of orthogonal frequency division multiplexing (OFDM) system. In the proposed schemes, the simulation results shown that Peak-to-Average Power Ratio (PAPR) can be reduced by 3.502 dB. The results of this mapped can be shown that PAPR is reduced. The principle of the scheme is illustrated with the specific example of an eight-carriers signal and its computer simulation results. All simulation results have compare with ideal channel case and AWGN case separately; both of cases are shown the PAPR reduced indeed. Do Horng Guo received his B.S. Degree in Electronic Engineering from National Taiwan Marine Science University, Keelung, Taiwan, in 1983, and M.S. Degree in Computer Communication from Northrop University, Los Angeles, USA, in 1986. He is enrolled in Ph.D program in Graduate Institute of Communication Engineering of Tatung University from 2001. His current interest includes wireless communication system and digital signal processing. Chau-Yun Hsu received his B.S. degree M.S. and Ph.D in Electrical Engineering from Tatung Institute of Technology, Taipei, Taiwan, in 1981, 1983 and 1988, respectively. He was the lecturer in Department of Electrical Engineering of Tatung University from 1983 to 1985. From 1988 to 1997, he served as the Associate professor of Tatung University. Since 1998, he has been the Chair Professor of Graduate Institute of Communication Engineering of Tatung University. Now he is also the chair of department of Electrical Engineering of Tatung University. His current interest includes Wireless Channel Model and Estimation, Machine Learning, Digital Signal Processing and Image Processing.
Keywords:Discrete Multi-Tone (DMT)  Peak-to-Average Power Ratio (PAPR)  Binary Phase Shift Keying (BPSK)  Peak Envelop Power (PEP)
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