2. Di Renzo M, Graziosi F, Santucci F. Approximating the linear combination of log-normal RVs via pearson type IV distribution for UWB performance analysis. IEEE Transactions on Communications, 2009, 57(2): 388-403
3. Prasad R, Kegel A. Improved assessment of interference limits in cellular radio performance. IEEE Transactions on Vehicular Technolology, 1991, 40(2): 412-419
4. Suzuki H. A statistical model for urban radio propagation. IEEE Transactions on Communications, 1977, 25(7): 673-680
5. Graziosi F, Santucci F. On SIR fade statistics in Rayleigh-lognormal channels. Proceedings of the IEEE International Conference on Communications (ICC’02): Vol 3, Apr 28-May 2, 2002, New York, NY, USA. Piscataway, NJ, USA: IEEE, 2002: 1352-1357
6. Renzo M, Graziosi F, Santucci F. A general formula for log-MGF computation: application to the approximation of log-normal power sum via pearson type IV distribution. Proceedings of the 67th Vehicular Technology Conference (VTC-Spring’08), May 11-14, 2008, Singapore. Piscataway, NJ, USA: IEEE, 2008: 999-1003
7. Schleher D. Generalized gram-charlier series with application to the sum of log-normal variates. IEEE Transactions on Information Theory, 1977, 23(2): 275-280
8. Schwartz S C, Yeh Y S. On the distribution function and moments of power sums with log-normal components. Bell System Technoque Journal, 1982, 61(7): 1441-1462 |