2017Unpublished venueRequires access

First investigation and reduction of inter-WSS crosstalk in multiple-arrayed WSSs for large-scale optical node

Hiroki Kawahara, A. Sahara, Yoshiaki Sone, Shingo Kawai, Mitsunori Fukutoki, Yutaka Miyamoto, Keita Yamaguchi, Kenya Suzuki, Toshikazu Hashimoto

Open publisher page 8 citations

Abstract

We conducted the first ever investigation on the impact of inter-wavelength selective switch (WSS) crosstalk in multiple-arrayed WSSs and confirmed that it is a critical issue for an optical signal transmission. To address this issue, we propose a method to reduce inter-WSS crosstalk, taking optical node application into consideration. We demonstrate that the proposed method enables 11-dB crosstalk reduction and 256-Gb/s PDM-16QAM signal transmission without a OSNR penalty.

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What this paper is about

We conducted the first ever investigation on the impact of inter-wavelength selective switch (WSS) crosstalk in multiple-arrayed WSSs and confirmed that it is a critical issue for an optical signal transmission. To address this issue, we propose a method to reduce inter-WSS crosstalk, taking optical node application into consideration. We demonstrate that the proposed method enables 11-dB crosstalk reduction and 256-Gb/s PDM-16QAM signal transmission without a OSNR penalty.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We conducted the first ever investigation on the impact of inter-wavelength selective switch (WSS) crosstalk in multiple-arrayed WSSs and confirmed that it is a critical issue for an optical signal transmission. To address this issue, we propose a method to reduce inter-WSS crosstalk, taking optical node application into consideration. We demonstrate that the proposed method enables 11-dB crosstalk reduction and 256-Gb/s PDM-16QAM signal transmission without a OSNR penalty.

Key concepts: Crosstalk, Optical performance monitoring, Computer science, Optical cross-connect, Electronic engineering, Wavelength-division multiplexing, Optical switch, Optical communication

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