Performance analysis of wideband DS-CDMA cellular system over Nakagami fading channels
Wonsub Kim, Jin‐Soo Park
Abstract
Wonsub Kim, Jin‐Soo Park
Abstract
DPSK modulation is considered and the channel is modeled as the multipath Nakagami fading type, which has been recently taken as a general model in communication environments. Most recent papers have assumed that the Nakagami fading index (m) of each branch of a RAKE receiver is fixed at the same value. However, the Nakagami fading index (m) of each branch of a RAKE receiver takes several values through communication environments. In this case, the branch which takes a small Nakagami fading index (m) is excluded so that we can improve performance. We also consider phase error and analyze a wideband DS-CDMA cellular system. Also when the Nakagami fading index (m) takes a voluntary value, we analyze the BER of a wideband DS-CDMA cellular system.
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DPSK modulation is considered and the channel is modeled as the multipath Nakagami fading type, which has been recently taken as a general model in communication environments. Most recent papers have assumed that the Nakagami fading index (m) of each branch of a RAKE receiver is fixed at the same value. However, the Nakagami fading index (m) of each branch of a RAKE receiver takes several values through communication environments. In this case, the branch which takes a small Nakagami fading index (m) is excluded so that we can improve performance. We also consider phase error and analyze a wideband DS-CDMA cellular system. Also when the Nakagami fading index (m) takes a voluntary value, we analyze the BER of a wideband DS-CDMA cellular system.
Key concepts: Nakagami distribution, Fading, Rake receiver, Multipath propagation, Fading distribution, Wideband, Rake, Computer science