Title :
Spectral Efficiency Study of QC-CHPCs in Multirate Optical CDMA System
Author :
Chang, Cheng-Yuan ; Chen, Hung-Ta ; Yang, Guu-Chang ; Kwong, Wing C.
Author_Institution :
Nat. Chung-Hsing Univ., Taichung
fDate :
12/1/2007 12:00:00 AM
Abstract :
Quadratic-congruence carrier-hopping prime codes (QC-CHPCs) with zero autocorrelation sidelobes, cross-correlation values of at most two, and expanded cardinality were recently constructed for wavelength-time "multicode-keying" optical code division multiple access (O-CDMA) for improved data throughput and code obscurity. To support multimedia services with different discrete bit-rate requirements, "multiple-length" QC-CHPCs are constructed algebraically in this paper. In contrary to conventional single-length codes, our analysis shows that the performance of these multiple-length codes improves as the code length decreases, thus supporting services prioritization in O-CDMA. Moreover, the relationship of the normalized spectral efficiency (NSE) and code lengths of the multiple-length QC-CHPCs is studied. Our results show that the NSE improves as the number of simultaneous users with short code matrices increases, which, however, decreases the total number of simultaneous users in the system. The choice of which code-length distribution to use depends on whether system efficiency or total number of simultaneous users is more important.
Keywords :
code division multiplexing; cross correlation values; multirate optical CDMA system; normalized spectral efficiency; quadratic congruence carrier hopping prime codes; wavelength time multicode keying optical code division multiple access; zero autocorrelation sidelobes; Autocorrelation; Multiaccess communication; Neutron spin echo; Optical fibers; Optical pulses; Optical variables control; Passive optical networks; Performance analysis; Telecommunication traffic; Throughput;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC-OCN.2007.028706