TY - GEN
T1 - YE-KBÇE sisteminin frekansta seçici genelleş tirilmiş gamma yavaş sönümlemeli kanallarda M-Seviyeli i̇şaretleşme için analizi
AU - Yilmaz, Ferkan
AU - Kucur, Oǧuz
PY - 2007
Y1 - 2007
N2 - In this study, the performance of Quasi synchronous DS-CDMA (QS-CDMA) communication system with a maximal ratio combiner (MRC) over a frequency selective time non-selective multipath Generalized Gamma (GG) fading channel is derived for not only any deterministic spreading sequence but also any chip-limited chip waveform. Numerical and simulation results show that the performance of QS-CDMA is as good as or slightly better than synchronous CDMA (S-CDMA) when the maximum quasisynchronous delays do not need to be less than some specific values depending on the path power scattering. With this flexibility of quasisynchronous delays for the better performance, both the transmitter and receiver complexity is reduced as quasisynchronous communication is a challenging task for researchers. Lastly, a measure, Partial Power Ratio (PPR), is defined based on the partial autocorrelation functions, to select or design a chip waveform for quasisynchronous communication. Results show that QS-CDMA using the chip waveform whose PPR is greater, has better performance.
AB - In this study, the performance of Quasi synchronous DS-CDMA (QS-CDMA) communication system with a maximal ratio combiner (MRC) over a frequency selective time non-selective multipath Generalized Gamma (GG) fading channel is derived for not only any deterministic spreading sequence but also any chip-limited chip waveform. Numerical and simulation results show that the performance of QS-CDMA is as good as or slightly better than synchronous CDMA (S-CDMA) when the maximum quasisynchronous delays do not need to be less than some specific values depending on the path power scattering. With this flexibility of quasisynchronous delays for the better performance, both the transmitter and receiver complexity is reduced as quasisynchronous communication is a challenging task for researchers. Lastly, a measure, Partial Power Ratio (PPR), is defined based on the partial autocorrelation functions, to select or design a chip waveform for quasisynchronous communication. Results show that QS-CDMA using the chip waveform whose PPR is greater, has better performance.
UR - http://www.scopus.com/inward/record.url?scp=50249177159&partnerID=8YFLogxK
U2 - 10.1109/SIU.2007.4298588
DO - 10.1109/SIU.2007.4298588
M3 - Konferans katkısı
AN - SCOPUS:50249177159
SN - 1424407192
SN - 9781424407194
T3 - 2007 IEEE 15th Signal Processing and Communications Applications, SIU
BT - 2007 IEEE 15th Signal Processing and Communications Applications, SIU
T2 - 2007 IEEE 15th Signal Processing and Communications Applications, SIU
Y2 - 11 June 2007 through 13 June 2007
ER -