Multilevel Signaling Technology for Increasing Transmission Capacity in High-Speed Short-Distance Optical Fiber Communication

Author:

KIKUCHI Nobuhiko1

Affiliation:

1. Connectivity Systems Dept., Center for Technology Innovation-Electronics, Research & Development Group, Hitachi Ltd.

Publisher

Institute of Electronics, Information and Communications Engineers (IEICE)

Subject

Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials

Reference39 articles.

1. [1] Cisco, “Cisco Global Cloud Index: Forecast and Methodology, 2016-2021 WhitePaper,” https://www.cisco.com/c/en/us/solutions/collateral/service-provider/global-cloud-index-gci/white-paper-c11-738085.html.

2. [2] S. Bhoja, “Study of PAM modulation for 100GE over a single laser,” IEEE 802.3 Next Generation 40Gb/s and 100Gb/s OpticalEthernet Study Group, Interim Meeting, Newport Beach, CA, USA, Jan. 2012.

3. [3] B. Welch, G. Nicholl, K. Conroy, J.J. Maki, and D. Lewis, “400G-PSM4: A Proposal for the 500m Objective using 100 Gb/s per Lane Signaling,” IEEE 802.3 400 Gb/s Ethernet Task Force, Plenary Meeting, San Antonio, TX, USA, Nov. 2014.

4. [4] C. Cole, J.J. Maki, A. Srivastava, and P. Stassar, “400Gb/s 2km & 10km duplex SMF PAM-4 PMD Baseline Specifications,” IEEE 802.3 400 Gb/s Ethernet Task Force, Interim Meeting, Pittsburgh, PA, USA, May 2015.

5. [5] N. Kikuchi and R. Hirai, “Intensity-Modulated/Direct-Detection (IM/DD) Nyquist Pulse-Amplitude Modulation (PAM) Signaling for 100-Gbit/s/λ Optical Short-reach Transmission,” Proc. ECOC 2014, Canne, France, P.4.12, Sept. 2014.

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