Abstract
Ultra wideband (UWB) technology has been adopted in many wireless communication and localization systems in indoor and outdoor areas. In this paper, based on the application in outdoor near-ground environments, the main path loss models are discussed according to the analysis of the propagation environment and received UWB signal. The path loss calculation model by combining the multi-waves with the threshold is proposed. With the outdoor experimental measurements and data processing, the path loss exponents are determined and the path loss characteristics are discussed.
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REFERENCES
Win, M.Z. and Scholtz, R.A. Impulse radio: How it works, IEEE Commun. Lett., 1998, vol. 2, no. 2, pp. 36–38.
Fontana, R.J., Recent system applications of short-pulse ultra-wideband (UWB) technology, IEEE Trans. Microwave Theory Tech., 2014, vol. 52, no. 9, pp. 2087–2104.
Karima, R., Minglu, J., Geetali, S., and Yan, Y., Recent advances in UWB systems: Theory and applications, Telecommun. Syst., 2014, vol. 52, pp. 1131–1132.
Al-Samman, A.M., Chude-Okonkwo, U.A.K., Ngah, R., et al., Experimental characterization of an UWB channel in outdoor environment, IEEE 10th International Colloquium on Signal Processing and Its Applications, Kuala Lumpur, 2014, pp. 91–94.
Seun, S., Niranjayan, S., and Andreas, F.M., Ultra wideband near-ground outdoor propagation channel measurements and modeling, 7th European Conference on Antennas and Propagation, Gothenburg, 2013, pp. 3034–3038.
Paul, R., Xiang, W.D., and Shan, D., UWB outdoor channel environment: Analysis of experimental data collection and comparison to IEEE 802.15.4a UWB channel model, Int. J. Ultra Wideband Commun. Syst., 2014, vol. 3, no. 1, pp. 1–7.
Friis, H.T., A note on a simple transmissions formula, Proc. IRE, 1946, vol. 34, no. 5, pp. 254–256.
Rappaport, T.S., Wireless Communications: Principles and Practice, New York: Prentice Hall, 1996.
Kazimierz, S., Bertoni, H., and Scott, M.Y., Relation between multipath and wave propagation attenuation, Electron. Lett., 2003, vol. 39, pp. 142–143.
Shunsuke, S. and Takehiko, K., Path-loss exponents of ultra wideband signals in line-of-sight environments, 2004 IEEE Eighth International Symposium on Spread Spectrum Techniques and Applications, 2004, pp. 488–492.
ITU-R Doc, 1-8/32-E, Protection Distance for UWB Interference, 2003.
Sathit, A., Pichaya, S., Sathaporn, P., and Jun-ichi, T., Path loss expressions of ultra wideband ground reflection channel, International Symposium on Communications and Information Technologies, 2006, pp. 1017–1020.
Porntape, V., Sathaporn, P., Pichaya, S., et al., Ground reflection model in rough surface for UWB impulse radio, IEEE International Symposium on Communications and Information Technology, 2005, pp. 680–683.
Molisch, A.F., Balakrishnan, K., Chong, C.-C., Emami, S., Fort, A., Karedal, J., Kunisch, J., Schantz, H., Schuster, U., and Siwiak, K., IEEE 802.15.4a Channel Model—Final Report, Australian Government Printing Service, 2005.
Alvaro, A., Gustavo, V., Manuel, L., et al., New channel impulse response model for UWB indoor system simulations, IEEE Vehicular Technology Conference, 2003.
Yao, Y.Q., A time-domain ray model for predicting indoor wideband radio channel propagation characteristics, Universal Personal Communications Conference Record, 1997, pp. 848–852.
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Yang Li, Kai, D., Maorong, J. et al. Research and Experiment on UWB Path Loss Characteristics in Outdoor Near-Ground Environments. Aut. Control Comp. Sci. 53, 186–193 (2019). https://doi.org/10.3103/S014641161902010X
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DOI: https://doi.org/10.3103/S014641161902010X