Title :
Flexible real-time transmitter at 10 Gbit/s for SCFDMA PONs focusing on low-cost ONUs
Author :
Meder, L. ; Schindler, P.C. ; Agmon, A. ; Meltsin, M. ; Bonk, R. ; Meyer, J. ; Dreschmann, M. ; Tolmachev, A. ; Hilgendorf, R. ; Nazarathy, M. ; Ben-Ezra, S. ; Pfeiffer, T. ; Freude, W. ; Leuthold, J. ; Koos, C. ; Becker, J.
Author_Institution :
Inst. of Inf. Process., Karlsruhe Inst. of Technol. (ITIV), Karlsruhe, Germany
Abstract :
We demonstrate, to the best of our knowledge, the first real-time single-carrier frequency division multiple access transmitter designed to be used in photonic communication networks. It is capable of providing 10 Gbit/s net bitrate at 3.125 GHz slot bandwidth, providing data to nine quasi-Nyquist spectral groups. The transmitter is designed with respect to logic efficiency and a fine user grid allowing the operation of narrow bandwidth, low-cost optical network units. Moreover, it offers runtime flexibility, an efficient 96-point discrete Fourier transform and a multiplier-free differential phase encoder. The article concludes with a presentation of the transmitters hardware setup and an evaluation of its performance in the case of direct electrical AWG-ONU Rx interconnection and the optical back-to-back case.
Keywords :
discrete Fourier transforms; frequency division multiple access; optical interconnections; optical transmitters; passive optical networks; phase coding; AWG-ONU Rx interconnection; ONU; SCFDMA PON; bit rate 10 Gbit/s; discrete Fourier transform; fine user grid; flexible real-time transmitter; frequency 3.125 GHz; multiplier-free differential phase encoder; optical back-to-back case; optical network unit; photonic communication network; quasi-Nyquist spectral group; real-time single-carrier frequency division multiple access transmitter; Bandwidth; Discrete Fourier transforms; OFDM; Optical network units; Optical transmitters; Passive optical networks;
Conference_Titel :
Design and Architectures for Signal and Image Processing (DASIP), 2014 Conference on
DOI :
10.1109/DASIP.2014.7115601