Giga-Bit MODEM을 위한 BASK 시스템 설계

BASK System Design For Giga-Bit MODEM

  • Eom, Ki-Hwan (Department of Electronic Engineering, Dongguk University) ;
  • Kang, Seong-Ho (Department of Electronic Engineering, Dongguk University)
  • 발행 : 2005.12.01

초록

본 논문에서는 밀리미터파 대역에서의 Giga-bit 모뎀을 위한 BASK 시스템을 제안한다. 제안한 시스템의 송신단은 입력신호의 pulse shaping을 위해 고속의 shutter를 사용하며, ISI(Inter-Symbol Interference)를 최소화 할 수 있고, 수신단은 SNR 개선과 rectangular pulse train을 만들기 위해 repeater를 사용한다. Repeter는 몇 개의 converter로 이루어져 있으며, converter는 low pass filter와 limiter로 구성된다. 또한, 수신된 신호에서 발생하는 랜덤 오류를 정정하기 위해 viterbi 알고리즘을 사용하여 BER을 개선 시켰다. 제안한 시스템은 Direct Conversion 방식으로 IF처리과정이 없으므로 시스템이 매우 간단하다.

We propose a BASK (Binary Amplitude Shift Keying) system for Giga-bit Modem in millimeter band. The proposed system consists of a high speed shutter of the transmitter and a repeater of the receiver. The shutter of the proposed system is introduced for pulse shaping to improve the intersymbol interference (ISI). The repeater consists of several stage converters. A converter is constructed with a low pass filter and a limiter. The repeater can improve the signal-to-noise ratio (SNR) and make the rectangular pulse train. The proposed system is a simple system that uses conversion method without IF (Intermediate Frequency) process.

키워드

참고문헌

  1. Thyagarajan, V. R. M.; Hafez, R. H. M.; Falconer, D. D.; 'Broadband indoor wireless communication in (20~60)GHz band: Signal strength considerations', universal Personal Communication, vol. 2, pp. 894-899. oct. 1993 https://doi.org/10.1109/ICUPC.1993.528508
  2. Theodore S. R., Wireless Communications, Prentice Hall, 2002
  3. Proakis, John G., Digital Communication, McGraw Hill, 1989
  4. Simon Haykin, Communication Systems, 4th edition, John Wiley Inc., 2000
  5. E. Lindskog, A. Paulraj, 'A transmit diversity scheme for channels with intersymbol interference,' IEEE International Conference, Vol. 1, pp. 307-311, June 2000 https://doi.org/10.1109/ICC.2000.853154
  6. Man Guo; Ahmad, M.O.; Swamy, M.N.S.; Chunyan Wang;'An adaptive Viterbi algorithm based on strongly connected trellis decoding'Circuits and Systems, 2002. ISCAS 2002. IEEE International Symposium on Volume 4, 26-29, Page(s):IV-137 - IV-140, May 2002 https://doi.org/10.1109/ISCAS.2002.1010408
  7. Hosemann, M.; Habendorf, R.; Fettweis, G.P.;'Hardware-software codesign of a 14.4 MBit - 64 state - Viterbi decoder for an application-specific digital signal processor' Signal Processing Systems, 2003. SIPS 2003. IEEE Workshop on 27-29 Page(s):45 - 50, Aug.2003
  8. Engin, N.; van Berkel, K.; 'Viterbi decoding on a coprocessor architecture with vector parallelism' Signal Processing Systems, 2003. SIPS 2003. IEEE Workshop on 27-29 Page(s):334 - 339, Aug. 2003