• Optoelectronics Letters
  • Vol. 9, Issue 4, 297 (2013)
Jia-hong ZHANG*, Yong-sheng CAO, Fu-shen CHEN, and Cheng-xin LI
Author Affiliations
  • Key Lab. of Optical Fiber Sensing and Communications, Ministry of Education, School of Communication and Information Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
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    DOI: 10.1007/s11801-013-2413-z Cite this Article
    ZHANG Jia-hong, CAO Yong-sheng, CHEN Fu-shen, LI Cheng-xin. Transmission performance of implicit optical label switching system with coherently detected spectral amplitude code labels[J]. Optoelectronics Letters, 2013, 9(4): 297 Copy Citation Text show less

    Abstract

    A new optical label switching system with coherently detected implicit spectral amplitude code (SAC) labels is proposed in this paper. The implicit SAC labels are recognized using a frequency-swept local light source oscillator. An explicit SAC-label switching system with 40 Gbit/s intensity modulation (IM) payloads and 156 Mbit/s label and an implicit SAC-label switching system with 2.5 Gbit/s IM payloads and 156 Mbit/s label are both considered. Label and payload bit error rate (BER) performance is assessed and compared by simulations. The results reveal that after 80 km transmission and at the BER of 10-9, the received optical power (ROP) values of label and payload are -8.3 dBm and -23.5 dBm in implicit SAC-label switching system, respectively, while those are -18.2 dBm and -18.6 dBm in explicit SAC-label switching system, respectively. As a result, the payloads of 40 Gbit/s and 2.5 Gbit/s in explicit/implicit SAC-label switching system have little influence on the received payload quality at the BER of 10-9 after 80 km transmission. Finally, a payload of 40 Gbit/s can obtain 12.5 dB optical signal-to-noise ratio (OSNR) after 80 km transmission.
    ZHANG Jia-hong, CAO Yong-sheng, CHEN Fu-shen, LI Cheng-xin. Transmission performance of implicit optical label switching system with coherently detected spectral amplitude code labels[J]. Optoelectronics Letters, 2013, 9(4): 297
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