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Effect of unequal power allocation in turbo coded multi-route multi-hop networks

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Języki publikacji
EN
Abstrakty
EN
Multi-hop ad hoc networks are promising candidates for next generation mobile communications. They have sufficient channel capacity to achieve high data rate transmission for large number of users. One advantage of multi-hop networks is to realize multi-route transmissions. Since information bit streams can be transmitted over multiple routes, we can obtain route diversity effect. In order to enhance the route diversity effect, we usually introduce forward error correction schemes. Turbo coding is one of suitable coding methods for multi-hop networks. The turbo encoder generates one message stream and two parity streams whilst the message stream is more important than the parity streams for achieving reliable communications. Thus an unequal power allocation to the message and parity streams could be effective in improving the performance. In this paper, the effect of unequal power allocation for turbo coded multi-hop networks is investigated. Assuming the channel as additive white Gaussian and binary symmetric, we will show considerable performance improvement by unequal power allocation in terms of the bit error rate performance in multi-route multi-hop networks.
Rocznik
Tom
Strony
46--53
Opis fizyczny
Bibliogr. 12 poz., il.
Twórcy
autor
autor
autor
autor
  • Department of Electrical and Electronic Engineering, Shizuoka University Johoku 3-5-1, Hamamatsu, 432-8561 Japan, tetwada@ipc.shizuoka.ac.jp
Bibliografia
  • [1] S. Toumpis and A. J. Goldsmith, “Capacity regions for wireless ad hoc networks”, IEEE Trans. Wirel. Commun., vol. 2, no. 4, pp. 736–748, 2003.
  • [2] A. Nasipuri and S. R. Das, “On-demand multipath routing for mobile ad hoc networks”, in IEEE Int. Conf. Comput. Commun. Netw., Boston, USA, 1999, pp. 64–70.
  • [3] S.-J. Lee and M. Gerla, “Split multipath routing with maximally disjoint paths in ad hoc networks”, in IEEE Int. Conf. Commun., Helsinki, Finland, 2001, pp. 3201–3205.
  • [4] C. Berrou, A. Glavieux, and P. Thitimajshima, “Near Shannon limit error correcting coding and decoding: turbo-codes”, in Int. Conf. Commun., Geneva, Switzerland, 1993, pp. 1064–1070.
  • [5] J. Hokfelt and T. Maseng, “Optimizing the energy of different bit-streams of turbo codes”, in Turbo Cod. Sem. Proc., Lund, Sweden, 1996, pp. 59–63.
  • [6] T. M. Duman and M. Salehi, “On optimal power allocation for turbo codes”, in Int. Symp. Inform. Theory, Ulm, Germany, 1997, p. 104.
  • [7] S.-J. Park and S. W. Kim, “Transmission power allocation in turbo codes”, in Veh. Technol. Conf. 2000, Boston, USA, 2000, pp. 2073–2075.
  • [8] W. E. Ryan, “A turbo code tutorial”, www.ece.arizona.edu/∼ryan/
  • [9] D. Applebaum, Probability and Information. Cambridge: Cam-bridge University Press, 1996.
  • [10] T. Wada, N. Nakagawa, H. Okada, A. Jamalipour, K. Ohuchi, and M. Saito, “Performance improvement of turbo coded multi-route multi-hop networks using parity check codes”, in 2005 IEEE Worksh. High Perform. Switch. Rout., Hong Kong, China, 2005.
  • [11] J. Hagenauer, E. Offer, and L. Papke, “Iterative decoding of binary block and convolutional codes”, IEEE Trans. Inform. Theory, vol. 42, no. 2, pp. 429–445, 1996.
  • [12] C. Zheng, T. Yamazato, H. Okada, M. Katayama, and A. Ogawa, “A study on turbo soft-decision decoding for hard-detected optical communication signals”, IEICE Trans. Commun., vol. 86, no. 3, pp. 1022–1030, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0035-0030
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