DocumentCode
2734462
Title
Performance improvement of a CDMA physical layer over Rayleigh fading channels
Author
Apurva, K. ; Atul, A.S. ; Umesh, M.N. ; Mukhopadhyay, T. ; Natesh, K. ; Sanjoy, S. ; Arun, Abhishek
Author_Institution
Performance Modeling Group, Silicon Autom. Syst. (India) Pvt. Ltd., Bangalore, India
fYear
1999
fDate
1999
Firstpage
179
Lastpage
182
Abstract
This paper investigates performance of a CDMA physical layer based on TIA/EIA/IS-95A over correlated flat and frequency-selective fading channels in the presence of channel interleaving. The effect of mobile speed on frame error and bit error rate (FER and BER) is taken into account by changing the Doppler frequency. The properties of CDMA spreading codes are used in improving the signal-to-noise ratio at the RAKE receiver by resolving the multipath components. The performance of IS-95A reverse link power control is evaluated. A soft-decision Viterbi decoder is used with non-coherent orthogonal demodulation. Simulation results for FER and BER using different code rates in the convolutional encoder are obtained. The performance of various types of channel interleavers for different fading conditions is evaluated. The tradeoff between FER and bandwidth efficiency by puncturing the base rate convolution code is considered. Some simulation results for TIA/EIA/IS-99, a data standard for CDMA are given. These serve as criteria for deciding upon the tradeoff. A method for increasing TCP bit-rate throughput for IS-95A-based data standards is suggested
Keywords
Rayleigh channels; Viterbi decoding; channel coding; code division multiple access; convolutional codes; correlation theory; data communication; demodulation; error statistics; interleaved codes; mobile radio; multipath channels; packet radio networks; power control; radio links; radio receivers; spread spectrum communication; telecommunication control; BER; CDMA physical layer; Doppler frequency; FER; RAKE receiver; Rayleigh fading channels; TCP bit-rate; TIA/EIA/IS-95A; bandwidth efficiency; bit error rate; channel interleaving; convolutional encoder; correlated flat fading channels; data standard; frame error rate; frequency-selective fading channels; mobile speed; multipath components; non-coherent orthogonal demodulation; performance improvement; puncturing; reverse link power control; signal-to-noise ratio; soft-decision Viterbi decoder; spreading codes; Bit error rate; Convolution; Frequency; Frequency-selective fading channels; Interleaved codes; Multiaccess communication; Multipath channels; Physical layer; Signal resolution; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Personal Wireless Communication, 1999 IEEE International Conference on
Conference_Location
Jaipur
Print_ISBN
0-7803-4912-1
Type
conf
DOI
10.1109/ICPWC.1999.759611
Filename
759611
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