DocumentCode :
769263
Title :
Performance analysis of optical synchronous CDMA communication systems with PPM signaling
Author :
Shalaby, H.M.H.
Author_Institution :
Dept. of Electr. Eng., Alexandria Univ., Egypt
Volume :
43
Issue :
38020
fYear :
1995
Firstpage :
624
Lastpage :
634
Abstract :
Direct-detection optical synchronous code-division multiple-access (CDMA) systems with M-ary pulse-position modulation (PPM) signaling are investigated. Optical orthogonal codes are used as the signature sequences of our system. A union upper bound on the bit error rate is derived taking into account the effect of the background noise, multiple-user interference, and receiver shot noise. The performance characteristics are then discussed for a variety of system parameters. Another upper bound on the probability of error is also obtained (based on Chernoff inequality). This bound is utilized to derive achievable expressions for both the maximum number of users that can communicate simultaneously with asymptotically zero error rate and the channel capacity. Our results show that under average power and bit error rate constraints, there always exists a pulse position multiplicity that permit all the subscribers to communicate simultaneously.<>
Keywords :
channel capacity; code division multiple access; codes; coding errors; error statistics; optical communication; optical signal detection; pulse position modulation; shot noise; synchronisation; telecommunication signalling; Chernoff inequality; M-ary pulse-position modulation; PPM signaling; asymptotically zero error rate; background noise; bit error rate; channel capacity; code-division multiple-access; direct-detection systems; error probability; multiple-user interference; optical orthogonal codes; optical synchronous CDMA; performance analysis; performance characteristics; receiver shot noise; signature sequences; system parameters; union upper bound; Background noise; Bit error rate; Code division multiplexing; Multiaccess communication; Optical modulation; Optical noise; Optical receivers; Performance analysis; Pulse modulation; Upper bound;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/26.380081
Filename :
380081
Link To Document :
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