Effects of Preamplifier Nonlinearity on PMD Equalization with Electronic Dispersion Compensation for 43G DQPSK
Author:
Affiliation:
1. NTT Photonics Laboratories, NTT Corporation
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
http://www.jstage.jst.go.jp/article/transele/E94.C/7/E94.C_7_1187/_pdf
Reference11 articles.
1. [1] T. Kataoka, S. Matsuoka, T. Matsuda, H. Maeda, N. Kakaida, T. Kubo, T. Kotanigawa, and T. Kawasaki, “Field transmission by using a commercially-ready 43Gbit/s DWDM system employing RZ-DQPSK transponders in high PMD installed fiber,” OFC2007, JThA45.
2. Electronic Dispersion Compensation
3. [3] S. Wada, R. Ohhira, T. Ito, J. Yamazaki, Y. Amamiya, H. Takeshita, A. Noda, and K. Fukuchi, “Compensation for PMD-induced time-variant waveform distortions in 43-Gbit/s NRZ transmission by ultra-wideband electrical equalizer module,” OFC 2006, OWE2, 2006.
4. [4] E. Yoshida, H. Kawakami, E. Yamada, K. Kubota, Y. Miyagawa, Y. Miyamoto, T. Furuta, T. Itoh, K. Sano, and K. Murata, “Enlargement of PMD tolerance in 43Gbit/s RZ-DQPSK signal using electrical dispersion compensation without adaptive control,” Proc. ECOC 2007 3.1.3, Berlin, Germany, 2007.
5. [5] T. Itoh, K. Sano, H. Fukuyama, and K. Murata, “Study of a PMD tolerance extension by InP HBT analog EDC IC without adaptive control in 43G DQPSK transmission,” IEICE Trans. Electron., vol.E93-C, no.5, pp.573-578, May 2010.
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