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2018 | OriginalPaper | Chapter

Fading Characterization of 73 GHz Millimeter-Wave V2V Channel Based on Real Measurements

Authors : Hui Wang, Xuefeng Yin, Xuesong Cai, Haowen Wang, Ziming Yu, Juyul Lee

Published in: Communication Technologies for Vehicles

Publisher: Springer International Publishing

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Abstract

In this work, a recently conducted measurement campaign for millimeter wave (mm-wave) vehicle to vehicle (V2V) propagation channel characterization is introduced. Two vehicles carrying a transmitter (Tx) and a receiver (Rx) respectively were driven towards each other at an average speed of 60 km/h in an urban area of Jiading District, Shanghai, China. The measurement was conducted with 409.6 MHz bandwidth at center frequency 73 GHz. The parameters investigated include the large-scale fading and small-scale fading coefficients. Specifically, a 2-slope path-loss model was proposed. Six kinds of distributions of analytical expressions were used to fit the fast fading distribution. The results show that the fast fading distribution changes from Rician to Nakagami, finally to lognormal with the distance between the Tx and the Rx increases.

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Literature
1.
go back to reference Giordani, M., Zanella, A., Zorzi, M.: Millimeter wave communication in vehicular networks: challenges and opportunities. In: International Conference on Modern Circuits and Systems Technologies, pp. 1–6 (2017) Giordani, M., Zanella, A., Zorzi, M.: Millimeter wave communication in vehicular networks: challenges and opportunities. In: International Conference on Modern Circuits and Systems Technologies, pp. 1–6 (2017)
2.
go back to reference Viriyasitavat, W., Boban, M., Tsai, H.M., Vasilakos, A.: Vehicular communications: survey and challenges of channel and propagation models. IEEE Veh. Technol. Mag. 10(2), 55–66 (2015)CrossRef Viriyasitavat, W., Boban, M., Tsai, H.M., Vasilakos, A.: Vehicular communications: survey and challenges of channel and propagation models. IEEE Veh. Technol. Mag. 10(2), 55–66 (2015)CrossRef
3.
go back to reference Cheng, X., Yang, L., Shen, X.: D2D for intelligent transportation systems: a feasibility study. IEEE Trans. Intell. Transp. Syst. 16(4), 1784–1793 (2015)CrossRef Cheng, X., Yang, L., Shen, X.: D2D for intelligent transportation systems: a feasibility study. IEEE Trans. Intell. Transp. Syst. 16(4), 1784–1793 (2015)CrossRef
4.
go back to reference Fallgren, M., Timus, B.: Scenarios, requirements and KPIs for 5G mobile and wireless system (2013) Fallgren, M., Timus, B.: Scenarios, requirements and KPIs for 5G mobile and wireless system (2013)
5.
go back to reference Yin, X., Cheng, X.: Propagation Channel Characterization, Parameter Estimation, and Modeling for Wireless Communications. Wiley-IEEE Press (2014) Yin, X., Cheng, X.: Propagation Channel Characterization, Parameter Estimation, and Modeling for Wireless Communications. Wiley-IEEE Press (2014)
6.
go back to reference Cheng, X., Wang, C.X., Laurenson, D.I., Salous, S., Vasilakos, A.V.: An adaptive geometry-based stochastic model for non-isotropic MIMO mobile to mobile channels. IEEE Trans. Wirel. Commun. 8(9), 4824–4835 (2009)CrossRef Cheng, X., Wang, C.X., Laurenson, D.I., Salous, S., Vasilakos, A.V.: An adaptive geometry-based stochastic model for non-isotropic MIMO mobile to mobile channels. IEEE Trans. Wirel. Commun. 8(9), 4824–4835 (2009)CrossRef
7.
go back to reference Patzold, M., Hogstad, B.O., Youssef, N.: Modeling, analysis, and simulation of MIMO mobile to mobile fading channels. IEEE Trans. Wirel. Commun. 7(2), 510–520 (2008)CrossRef Patzold, M., Hogstad, B.O., Youssef, N.: Modeling, analysis, and simulation of MIMO mobile to mobile fading channels. IEEE Trans. Wirel. Commun. 7(2), 510–520 (2008)CrossRef
8.
go back to reference Liang, X., Zhao, X., Li, S., Wang, Q., Lu, W.: A 3D geometry-based scattering model for vehicle to vehicle wideband MIMO relay-based cooperative channels, vol. 13, no. 10, pp. 1–10 (2016) Liang, X., Zhao, X., Li, S., Wang, Q., Lu, W.: A 3D geometry-based scattering model for vehicle to vehicle wideband MIMO relay-based cooperative channels, vol. 13, no. 10, pp. 1–10 (2016)
9.
go back to reference Cheng, X., Yao, Q., Wen, M., Wang, C.X., Song, L.Y., Jiao, B.L.: Wideband channel modeling and intercarrier interference cancellation for vehicle-to-vehicle communication systems. IEEE J. Sel. Areas Commun. 31(9), 434–448 (2013)CrossRef Cheng, X., Yao, Q., Wen, M., Wang, C.X., Song, L.Y., Jiao, B.L.: Wideband channel modeling and intercarrier interference cancellation for vehicle-to-vehicle communication systems. IEEE J. Sel. Areas Commun. 31(9), 434–448 (2013)CrossRef
10.
go back to reference Zhao, X., Liang, X., Li, S., Ai, B.: Two-cylinder and multi-ring GBSSM for realizing and modeling of vehicle-to-vehicle wideband MIMO channels. IEEE Trans. Intell. Transp. Syst. 17(10), 2787–2799 (2016)CrossRef Zhao, X., Liang, X., Li, S., Ai, B.: Two-cylinder and multi-ring GBSSM for realizing and modeling of vehicle-to-vehicle wideband MIMO channels. IEEE Trans. Intell. Transp. Syst. 17(10), 2787–2799 (2016)CrossRef
11.
go back to reference Li, Y., He, R., Lin, S., Guan, K., He, D., Wang, Q., Zhong, Z.: Cluster-based non- stationary channel modeling for vehicle-to-vehicle communications. IEEE Antennas Wirel. Propagation Lett. PP(99), 1 (2016) Li, Y., He, R., Lin, S., Guan, K., He, D., Wang, Q., Zhong, Z.: Cluster-based non- stationary channel modeling for vehicle-to-vehicle communications. IEEE Antennas Wirel. Propagation Lett. PP(99), 1 (2016)
12.
go back to reference Yuan, Y., Wang, C.X., He, Y., Alwakeel, M.M., Aggoune, E.H.M.: 3D wideband non-stationary geometry-based stochastic models for non-isotropic MIMO vehicle to vehicle channels. IEEE Trans. Wirel. Commun. 14(12), 6883–6895 (2015)CrossRef Yuan, Y., Wang, C.X., He, Y., Alwakeel, M.M., Aggoune, E.H.M.: 3D wideband non-stationary geometry-based stochastic models for non-isotropic MIMO vehicle to vehicle channels. IEEE Trans. Wirel. Commun. 14(12), 6883–6895 (2015)CrossRef
13.
go back to reference Guan, K., Ai, B., Nicolas, M.L., Geise, R., Muller, A., Zhong, Z., Kurner, T.: On the influence of scattering from traffic signs in vehicle-to-x communications. IEEE Trans. Veh. Technol. 65(8), 5835–5849 (2016)CrossRef Guan, K., Ai, B., Nicolas, M.L., Geise, R., Muller, A., Zhong, Z., Kurner, T.: On the influence of scattering from traffic signs in vehicle-to-x communications. IEEE Trans. Veh. Technol. 65(8), 5835–5849 (2016)CrossRef
14.
go back to reference Ghazal, A., Yuan, Y., Wang, C.X., Zhang, Y., Yao, Q., Zhou, H., Duan, W.: A non-stationary IMT-advanced MIMO channel model for high-mobility wireless communication systems (2017)CrossRef Ghazal, A., Yuan, Y., Wang, C.X., Zhang, Y., Yao, Q., Zhou, H., Duan, W.: A non-stationary IMT-advanced MIMO channel model for high-mobility wireless communication systems (2017)CrossRef
15.
go back to reference Azpilicueta, L., Aguirre, E., Falcone, F., Lopez-Iturri, P., Alejos, A.V.: Radio channel characterization of vehicle-to-infrastructure communications at 60 GHz. In: International Conference on Electromagnetics in Advanced Applications (2015) Azpilicueta, L., Aguirre, E., Falcone, F., Lopez-Iturri, P., Alejos, A.V.: Radio channel characterization of vehicle-to-infrastructure communications at 60 GHz. In: International Conference on Electromagnetics in Advanced Applications (2015)
16.
go back to reference He, R., Renaudin, O., Kolmonen, V.M., Haneda, K., Zhong, Z., Ai, B., Oestges, C.: A dynamic wideband directional channel model for vehicle to vehicle communications. IEEE Trans. Industr. Electron. 62(12), 7870–7882 (2015)CrossRef He, R., Renaudin, O., Kolmonen, V.M., Haneda, K., Zhong, Z., Ai, B., Oestges, C.: A dynamic wideband directional channel model for vehicle to vehicle communications. IEEE Trans. Industr. Electron. 62(12), 7870–7882 (2015)CrossRef
17.
go back to reference Ibdah, Y., Ding, Y.: Mobile-to-mobile channel measurements at 1.85 GHz in suburban environments. IEEE Trans. Commun. 63(2), 466–475 (2015)CrossRef Ibdah, Y., Ding, Y.: Mobile-to-mobile channel measurements at 1.85 GHz in suburban environments. IEEE Trans. Commun. 63(2), 466–475 (2015)CrossRef
18.
go back to reference Cheng, L., Henty, B.E., Stancil, D.D., Bai, F., Mudalige, P.: Mobile vehicle-to-vehicle narrow-band channel measurement and characterization of the 5.9 GHz dedicated short range communication (DSRC) frequency band. IEEE J. Sel. Areas Commun. 25(8), 1501–1516 (2007)CrossRef Cheng, L., Henty, B.E., Stancil, D.D., Bai, F., Mudalige, P.: Mobile vehicle-to-vehicle narrow-band channel measurement and characterization of the 5.9 GHz dedicated short range communication (DSRC) frequency band. IEEE J. Sel. Areas Commun. 25(8), 1501–1516 (2007)CrossRef
19.
go back to reference Walter, M., Fiebig, U.C., Zajic, A.: Experimental verification of the non-stationary statistical model for V2V scatter channels. In: Vehicular Technology Conference, pp. 1–5 (2014) Walter, M., Fiebig, U.C., Zajic, A.: Experimental verification of the non-stationary statistical model for V2V scatter channels. In: Vehicular Technology Conference, pp. 1–5 (2014)
20.
go back to reference Shemshaki, M., Lasser, G., Ekiz, L., Mecklenbrauker, C.: Empirical path loss model fit from measurements from a vehicle-to-infrastructure network in Munich at 5.9 GHz. In: IEEE International Symposium on Personal, Indoor, and Mobile Radio Communications, pp. 181–185 (2015) Shemshaki, M., Lasser, G., Ekiz, L., Mecklenbrauker, C.: Empirical path loss model fit from measurements from a vehicle-to-infrastructure network in Munich at 5.9 GHz. In: IEEE International Symposium on Personal, Indoor, and Mobile Radio Communications, pp. 181–185 (2015)
21.
go back to reference He, R., Molisch, A.F., Tufvesson, F., Wang, R., Zhang, T., Li, Z., Zhong, Z., Ai, B.: Measurement-based analysis of relaying performance for Vehicle-to-Vehicle communications with large vehicle obstructions. In: Vehicular Technology Conference, pp. 1–6 (2017) He, R., Molisch, A.F., Tufvesson, F., Wang, R., Zhang, T., Li, Z., Zhong, Z., Ai, B.: Measurement-based analysis of relaying performance for Vehicle-to-Vehicle communications with large vehicle obstructions. In: Vehicular Technology Conference, pp. 1–6 (2017)
22.
go back to reference Petrov, V., Kokkoniemi, J., Moltchanov, D., Lehtomaki, J., Juntti, M., Koucheryavy, Y.: The impact of interference from the side lanes on mmwave/THz band V2V communication systems with directional antennas. IEEE Trans. Veh. Technol. PP(99), 1 (2018) Petrov, V., Kokkoniemi, J., Moltchanov, D., Lehtomaki, J., Juntti, M., Koucheryavy, Y.: The impact of interference from the side lanes on mmwave/THz band V2V communication systems with directional antennas. IEEE Trans. Veh. Technol. PP(99), 1 (2018)
23.
go back to reference Blumenstein, J., Prokes, A., Vychodil, J., Pospisil, M., Mikulasek, T.: Time-varying k factor of the mm-wave vehicular channel: velocity, vibrations and the road quality influence. In: 2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), pp. 1–5, October 2017 Blumenstein, J., Prokes, A., Vychodil, J., Pospisil, M., Mikulasek, T.: Time-varying k factor of the mm-wave vehicular channel: velocity, vibrations and the road quality influence. In: 2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), pp. 1–5, October 2017
24.
go back to reference Park, J.J., Lee, J., Liang, J., Kim, K.W., Lee, K.C., Kim, M.D.: Millimeter wave vehicular blockage characteristics based on 28 GHz measurements. In: 2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), pp. 1–5, September 2017 Park, J.J., Lee, J., Liang, J., Kim, K.W., Lee, K.C., Kim, M.D.: Millimeter wave vehicular blockage characteristics based on 28 GHz measurements. In: 2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), pp. 1–5, September 2017
25.
go back to reference Cai, X., Peng, B., Yin, X., Perez, A.: Hough-transform-based cluster identification and modeling for V2V channels based on measurements. IEEE Trans. Veh. Technol. PP(99), 1 (2017) Cai, X., Peng, B., Yin, X., Perez, A.: Hough-transform-based cluster identification and modeling for V2V channels based on measurements. IEEE Trans. Veh. Technol. PP(99), 1 (2017)
26.
go back to reference Millard, J., Kurz, L.: The Kolmogorov-Smirnov tests in signal detection (corresp.). IEEE Trans. Inf. Theory 13(2), 341–342 (1967)CrossRef Millard, J., Kurz, L.: The Kolmogorov-Smirnov tests in signal detection (corresp.). IEEE Trans. Inf. Theory 13(2), 341–342 (1967)CrossRef
27.
go back to reference Goldsmith, A.: Wireless Communications (2007) Goldsmith, A.: Wireless Communications (2007)
Metadata
Title
Fading Characterization of 73 GHz Millimeter-Wave V2V Channel Based on Real Measurements
Authors
Hui Wang
Xuefeng Yin
Xuesong Cai
Haowen Wang
Ziming Yu
Juyul Lee
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-90371-2_16

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