References
- Rappaport, T.S., Wireless Communications, Prentice-Hall, Upper Saddle River, New Jersey, Ch. 3 & 4, 1996.
- Chu, M.J. & Stark, W.E., "Effect of mobile velocity on communications in fading channels," IEEE Trans. on Veh. Techn 49(1): 202-210, 2000. https://doi.org/10.1109/25.820712
- Linnartz, J.P., "Narrowband Land-Mobile Radio Networks," Artech house, 1993.
- Cox et al., "800MHz Attenuation measured in and around suburban houses," Bell Laboratory Technical Journal 673(6): 921-954, 1984.
- Laitinen, E. et al., "Access point significance Measures in WLAN-based location," in Proc. of the 9th Workshop on Positioning, Navigation and Communication (WPNC), 2012.
- Honcharenko, W. & Bertoni, H. L., "Transmission and reflection characteristics at concrete block walls in the UHF band proposed for future PCS," IEEE Trans. Antennas Propagation 42: 232-239, 1994. https://doi.org/10.1109/8.277217
- Obot, A et al., "Comparative Analysis of Pathloss Prediction Models for Urban Microcellular," Nigerian Journal of Technology 30(3): 50-59, 2011.
- Bi, Q et al., "Wireless mobile communications at the start of the 21st century," IEEE Commun. Mag 39: 110-116, 2001.
- Oeting, J., "Cellular Mobile Radio - An Emerging Techonology," IEEE Communications Magazine: 10-15, 1983.
- Keenan, J.M. & Motley, AJ., "Radio coverage in buildings," Er. Telerom. Technol. J., 8, (l): 19-24, 1990.
- Seidel, S.Y. & Rappaport, T.S., "914 MHz path loss prediction models for indoor wireless communications in multifloored buidlings," IEEE Trans. Antennas & Propagation, AP-40, (2): 207-217, 1992.
- Hashemi, H., "Impulse response modelling of indoor radio propagation channels," IEEE J. Sel. Areas Commun, SAC-1 1: 1788-1796, 1993.
- Rizk, K et al., Lamppost and panel scattering compared to building reflection and diffraction in COST 259 TD, Turin, Italy: 158-167, 1993.
- Llacer, L. Juan & Cardona, N., "UTD solution for the multiple building diffraction attenuation function for mobile radiowave propagation," Electron. Lett 33(1): 92-93, 1997. https://doi.org/10.1049/el:19970058
- Erceg, V et al., "An empirically based path loss model for wireless channels in suburban environments," IEEE Journal on Selected Areas of Communications 17: 1205-1211, 1999. https://doi.org/10.1109/49.778178
- Saunders R.S et al., "Making Wireless Networks deliver," Ingenia of the Royal Academy of Engineering (12): pp 36-40, 2002.
- Satvir Singh Sidhu et al., "Implementation of 3-D Ray Tracing Propagation Model for Indoor Wireless Communication," International Journal of Electronics Engineering 4 (1): 43-47, 2012.
- Isabona, J et al., "Radio Field Strength Propagation Data and Pathloss calculation Methods in UMTS Network," Advances in Physics Theories and Applications, 21: 54-68, 2013.
- Samimi, M. K & Rappaport T. S., "3-D Statistical Channel Model for Millimeter-Wave Outdoor Mobile Broadband Communications, in Proc. of 2015 IEEE International Conference on Communications (ICC), 2015.
- Seybold, J., Introduction to RF Propagation. John Wiley and Sons, 2005.
- Alam, Md et al., "Performance Evaluation of Different Frequency Bands of WiMAX and Their Selection Procedure," International Journal of Advanced Science and Technology 62: 1-18, 2014. https://doi.org/10.14257/ijast.2014.62.01
- Jadhav, A.N. & Kale, S., "Suburban Area Path loss Propagation Prediction and Optimisation Using Hata Model at 2375 MHz," International Journal of Advanced Research in Computer and Communication Engineering 3(1), 2014.
- Maksymyuk, T et al., "Stochastic Geometry Models for 5G Heterogeneous Mobile Networks," Smart Computing Review, vol. 5, no. 2, pp. 89-101, 2015.
- Maksymyuk, T et al., "Fractal Modeling for Multi-Tier Heterogeneous Networks with Ultra-High Capacity Demands," Smart Computing Review, vol. 5, no. 3, pp. 346-355, 2015.
- Sun, S et al., "Propagation Path Loss Models for 5G Urban Microand Macro-Cellular Scenarios," in Proc. of 2016 IEEE 83rd Vehicular Technology Conference (VTC2016-Spring), 2016.
- Maksymyuk, T et al., "Fractal geometry based resource allocation for 5G heterogeneous networks," in Proc. of IEEE Second International Scientific-Practical Conference on Problems of Info communications Science and Technology (PIC S&T), pp. 69-72, 2016.
Cited by
- Path Loss Determination Using Linear and Cubic Regression Inside a Classic Tomato Greenhouse vol.16, pp.10, 2017, https://doi.org/10.3390/ijerph16101744
- Propagation Measurements and Calculation of Path Loss Exponent for Outdoor Cellular Communication Systems at 3.5 GHz vol.64, pp.5, 2021, https://doi.org/10.3103/s0735272721050034
- Developed channel propagation models and path loss measurements for wireless communication systems using regression analysis techniques vol.45, pp.1, 2017, https://doi.org/10.1186/s42269-021-00509-x