Performance Analysis of Path Loss Models: Comparison Among Different Path Loss Models and Its Application in Cellular Communication Systems - Purno Mohon Ghosh - Kirjat - LAP LAMBERT Academic Publishing - 9783659168208 - maanantai 16. heinäkuuta 2012
Mikäli Kansi ja otsikko eivät täsmää, on otsikko oikein

Performance Analysis of Path Loss Models: Comparison Among Different Path Loss Models and Its Application in Cellular Communication Systems

Purno Mohon Ghosh

Hinta
¥ 8.817,60

Tilattu etävarastosta

Arvioitu toimitus to - pe 3. - 11. heinä
Lisää iMusic-toivelistallesi
Eller

Performance Analysis of Path Loss Models: Comparison Among Different Path Loss Models and Its Application in Cellular Communication Systems

Various path-loss models of radio wave propagation are compared in this work. Path-loss with different distances are calculated by using Hata-Okumura, Walfisch-Ikegami and Lee models at different environment. The calculated results are used to design a suitable cellular link. It is observed from the compared results that the Walfisch-Ikegami models is more appropriate in urban area for designing a suitable cellular link on the other hand Hata-Okumura model for suburban and rural areas. A suitable cellular link is designed for Rajshahi City Corporation, Bangladesh, that divided into 7 cell reuse pattern in 13 clusters by using Walfisch-Ikegami model. The optimum values of co-channel reuse ratio 4.58 and co-channel interference ratio is 17.35 dB. The cell radius is 1.25 Km and co-channel distance is 5.7 Km. It was also observed that the co-channel reuse ratio is exponentially correlated to the co-channel interference ratio. BER depend on SNR and information rate. It was also observed that BER performance is improved by 23.08 dB in the case of BPSK from 16PSK at SNR 6 dB.

Media Kirjat     Paperback Book   (Kirja pehmeillä kansilla ja liimatulla selällä)
Julkaisupäivämäärä maanantai 16. heinäkuuta 2012
ISBN13 9783659168208
Tuottaja LAP LAMBERT Academic Publishing
Sivujen määrä 124
Mitta 150 × 7 × 226 mm   ·   203 g
Kieli German