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Improvement and Analysis of Carrier-Interferometry Orthogonal Frequency Division Multiplexing System

Improvement and Analysis of Carrier-Interferometry Orthogonal Frequency Division Multiplexing System
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摘要 This paper proposes to use Fast Fourier Transform ( FFT ) / Inverse Fast Fourier Transform (IFFT), instead of vector-matrix multiplication, to implement the spreading/despreoding in Carrier-Interferometry Orthogonal Frequency Division Multiplexing ( CI/OFDM) and Pseudo-Orthogonal Carrier lnterferometry OFDM (PO-CI/OFDM). That can improve the signal processing efficiency of CI/OFDM and PO-CI/OFDM systems by about 2N/log2N and 2N/( 1 + log2 N) times respectively and dose not make any difference to the system function and performance. Moreover, the effi- ciency benefits will increase with the increase of the number of sub-carriers. In addition to that, we point out that the transmitter of CI/OFDM is actually technically equivalent to that of a single-carrier system with cyclic-prefix and the receiver of CI/OFDM is a typical OFDM receiver with CI despreading. Hence the low Peak-to-Average Power Ratio (PA- PR) property and high anti-fading performance of CI/OFDM system can be well explained . This paper proposes to use Fast Fourier Transform ( FFT ) / Inverse Fast Fourier Transform (IFFT), instead of vector-matrix multiplication, to implement the spreading/despreoding in Carrier-Interferometry Orthogonal Frequency Division Multiplexing ( CI/OFDM) and Pseudo-Orthogonal Carrier lnterferometry OFDM (PO-CI/OFDM). That can improve the signal processing efficiency of CI/OFDM and PO-CI/OFDM systems by about 2N/log2N and 2N/( 1 + log2 N) times respectively and dose not make any difference to the system function and performance. Moreover, the effi- ciency benefits will increase with the increase of the number of sub-carriers. In addition to that, we point out that the transmitter of CI/OFDM is actually technically equivalent to that of a single-carrier system with cyclic-prefix and the receiver of CI/OFDM is a typical OFDM receiver with CI despreading. Hence the low Peak-to-Average Power Ratio (PA- PR) property and high anti-fading performance of CI/OFDM system can be well explained .
出处 《The Journal of China Universities of Posts and Telecommunications》 EI CSCD 2005年第4期38-42,共5页 中国邮电高校学报(英文版)
基金 Paper supported by the Teaching and Research Award Programfor Outstanding Young Professor in High Education Institute, MOE,P.R.C.
关键词 OFDM Carrier Interferometry (CI) Pseudo-Orthogonal Carrier-Interfer ometry (PO-CI) Fast Fourier Transform (FFT) Inverse Fast Fourier Transform (IFFT) Code Division Multiplexing (CDM) OFDM-CDM OFDM Carrier Interferometry (CI) Pseudo-Orthogonal Carrier-Interfer ometry (PO-CI) Fast Fourier Transform (FFT) Inverse Fast Fourier Transform (IFFT) Code Division Multiplexing (CDM) OFDM-CDM
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  • 1[1]WU Yi-yan, ZOU W Y. Orthogonal frequency division multiplexing: a multi-carrier modulation scheme[J]. IEEE Trans on Consumer Electronics, 1995, 41(3): 392 - 399.
  • 2[2]de COUASNON T, MONNIER R, RAULT J B. OFDM for digital TV broadcasting[J]. Signal Processing, 1994, 39(1~2): 1-32.
  • 3[3]WARING D L, LECHLEIDER J W, HSING T R. Digital subscriber line technology facilitates a graceful transition from copper to fiber [ J ]. IEEE Trans on Communication,1991, 29(3): 96- 104.
  • 4[4]NAKAHARA S, OKANO M, TAKADA M, et al. Digital transmission scheme for ISDB-T and reception characteristics of digital terrestrial television broadcasting system in Japan [J]. IEEE Trans on Consumer Electronics, 1999, 45(3):563 - 570.
  • 5[5]LI Xin-rong, PAHLAVAN K, LATVA-AHO M, et al.Indoor geolocation using OFDM signals in HIPERLAN/2 wireless LANs[A]. Proceedings of the 11th IEEE International Symposium on PIMRC 2000, Vol 2 [ C]. Piscataway (NJ): IEEE, 2000. 1449- 1453.
  • 6[6]IEEE Std 802.11a-1999. Supplement to IEEE Standard for Information Technology Telecommunications and Information Exchange Between Systems-Local and Metropolitan Area Networks-Specific Requirements. Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications: High-Speed Physical Layer in the 5 GHz Band[S]. 1999.
  • 7[7]Van NEE R, de Wild A. Reducing the peak-to-average power ratio of OFDM[A]. Proceeding of IEEE Vehicular Technology Conference, Vol 3 [C]. New York: IEEE,1998. 2072- 2076.
  • 8[9]WIEGANDT D A, NASSAR C R. High performance OFDM via carrier interferometry[A]. Proceedings of 2001 International Conference on Third Generation Wireless and Beyond[C]. Piscataway(NJ): IEEE, 2001. 404-409.
  • 9[10]WIEGANDT D A, NASSAR C R, Z Wu. Overcoming peak-to-average power ratio issues in OFDM via carrier-interferometry codes [ A ]. Proceeding of IEEE Vehicular Technology Conference, 2001 Fall, Vol 2[C]. Piscataway (NJ): IEEE, 2001. 660-663.
  • 10[11]WIEGANDT D A, NASSAR C R. Peak-to-average power reduction in high-performance, high-throughput OFDM via pseudo-orthogonal carrier-interferometry coding [ A]. Proceeding of 2001 IEEE Pacific Rim Conference on Communieations Computers and Signal Processing, Vol 2 [ C].Victoria(Canada): IEEE, 2001. 453-456.

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