Title :
Quadratic-Congruence Carrier-Hopping Prime Code for Multicode-Keying Optical CDMA
Author :
Kwong, Wing C. ; Cheng-Yuan Chang ; Hung-Ta Chenf ; Guu-Chang Yang
Author_Institution :
Hofstra Univ., Hempstead
Abstract :
In this paper, we study a new family of carrier-hopping prime codes (CHPCs), so-called quadratic- congruence CHPC (QC-CHPC), with expanded code cardinality by relaxing the maximum cross-correlation function to two (i.e., lambdac = 2). An application of the new code is for multicode keying in wavelength-time optical code-division multiple access (O-CDMA), in which each user is assigned M = 2m code matrices to represent m data bits per symbol. The advantages are that 1) a lower baud multicode-keying O-CDMA system can support a higher bit rate and 2) user\´s code obscurity is enhanced, as compared to the transmission of one code matrix (per user) for each data bit one in conventional "on-off keying" O-CDMA systems. Our performance analysis shows that there is a trade-off between the code performance and hardware complexity/speed related to the choice of M, for a given bit rate.
Keywords :
amplitude shift keying; code division multiple access; codes; correlation methods; matrix algebra; code matrix; maximum cross-correlation function; multicode keying; on-off keying; optical code-division multiple access; quadratic-congruence carrier-hopping prime code; Autocorrelation; Bit rate; Communications Society; Decoding; Filtering theory; Hardware; Multiaccess communication; Multiple access interference; Performance analysis; USA Councils;
Conference_Titel :
Communications, 2007. ICC '07. IEEE International Conference on
Conference_Location :
Glasgow
Print_ISBN :
1-4244-0353-7
DOI :
10.1109/ICC.2007.355