1. Martens, A. L., J. F. Bolte, J. Beekhuizen, H. Kromhout, T. Smid, and R. C. Vermeulen, "Validity of at home model predictions as a proxy for personal exposure to radiofrequency electromagnetic fields from mobile phone base stations," Progress In Environmental Research, Vol. 142, 221-226, 2015.
doi:10.1016/j.envres.2015.06.029 Google Scholar
2. Plets, D., W. Joseph, K. Vanhecke, and L. Martens, "Exposure optimization in indoor wireless networks by heuristic network planning," Progress In Electromagnetics Research, Vol. 139, 445-478, 2013.
doi:10.2528/PIER13013003 Google Scholar
3. Beekhuizen, J., G. B. Heuvelink, A. Huss, A. B¨urgi, H. Kromhout, and R. Vermeulen, "Impact of input data uncertainty on environmental exposure assessment models: A case study for electromagnetic field modelling from mobile phone base stations," Progress In Environmental Research, Vol. 135, 148-155, 2014.
doi:10.1016/j.envres.2014.05.038 Google Scholar
4. Miclaus, S., P. Bechet, and C. Iftode, "The application of a channel-individualized method for assessing long-term, realistic exposure to radiofrequency radiation emitted by mobile communication base station antennas," Measurement, Vol. 46, No. 3, 1355-1362, 2013. Google Scholar
5. Ozdemir, A. R., M. Alkan, and M. Gulsen, "Time dependence of environmental electric field measurements and analysis of cellular base stations," IEEE Electromagnetic Compatibility Magazine, Vol. 3, No. 3, 43-48, 2014.
doi:10.1109/MEMC.2014.6924327 Google Scholar
6. Urbinello, D., W. Joseph, L. Verloock, L. Martens, and M. Roosli, "Temporal trends of radio-frequency electromagnetic field (RF-EMF) exposure in everyday environments across European cities," Progress In Environmental Research, Vol. 134, 134-142, 2014.
doi:10.1016/j.envres.2014.07.003 Google Scholar
7. Koprivica, M., M. Petric, M. Popovic, J. Milinkovic, S. Niksic, and A. Neskovic, "Long-term variability of electromagnetic field strength for GSM 900 MHz downlink band in Belgrade urban area," 2014 22nd IEEE Telecommunications Forum Telfor (TELFOR), 9-12, 2014.
doi:10.1109/TELFOR.2014.7034346 Google Scholar
8. He, Q. Q., W. C. Yang, and Y. X. Hu, "Accurate method to estimate EM radiation from a GSM base station," Progress In Electromagnetics Research M, Vol. 34, 19-27, 2014.
doi:10.2528/PIERM13091301 Google Scholar
9. Hu, Z., Y. C. Chen, L. Qiu, G. Xue, H. Zhu, N. Zhang, and C. He, "An in-depth analysis of 3G traffic and performance," Proceedings of the 5th Workshop on All Things Cellular: Operations, Applications and Challenges, 1-6, ACM, 2015.
doi:10.1145/2785971.2785981 Google Scholar
10. Romero, J. P., O. Sallent, R. Agusti, and M. A. Diaz-Guerra, Radio Resource Management Strategies in UMTS, John Wiley & Sons, 2005.
doi:10.1002/0470022795.ch1
11. Neskovic, N., M. Koprivica, A. Neskovic, and G. Paunovic, "Improving the efficiency of measurement procedures for assessing human exposure in the vicinity of mobile phone (GSM/DCS/UMTS) base stations," Radiation Protection Dosimetry, ncr248, 2011. Google Scholar
12. Olivier, C. and L. Martens, "Optimal settings for narrow-band signal measurements used for exposure assessment around GSM base stations," IEEE Transactions on Instrumentation and Measurement, Vol. 54, No. 1, 311-317, 2005.
doi:10.1109/TIM.2004.838114 Google Scholar
13. Olivier, C. and L. Martens, "Optimal settings for frequency-selective measurements used for the exposure assessment around UMTS base stations," IEEE Transactions on Instrumentation and Measurement, Vol. 56, No. 5, 1901-1909, 2007.
doi:10.1109/TIM.2007.903617 Google Scholar
14. Nan, E., X. Chu, W. Guo, and J. Zhang, "User data traffic analysis for 3G cellular networks," 2013 IEEE Conference on 8th International ICST Communications and Networking in China (CHINACOM), 468-472, 2013.
doi:10.1109/ChinaCom.2013.6694641 Google Scholar
15. Suli, E. and D. F. Mayers, An Introduction to Numerical Analysis, Cambridge University Press, 2003.
doi:10.1017/CBO9780511801181