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Jens C. Rasmussen

Jens C. Rasmussen

Overview

Jens C. Rasmussen is affiliated with Socionext Europe in Germany, focusing on research within the fields of Engineering and Environmental Science. Their work spans several subfields, including Automotive Engineering, Global and Planetary Change, and Computational Mechanics.

The scientist has contributed to topics covering Vehicle Emissions and Performance, Impact of Light on Environment and Health, and Surface Roughness and Optical Measurements. These areas reflect a cross-disciplinary approach integrating environmental concerns with engineering applications.

The recent publication by Jens C. Rasmussen is titled "24.3: Understanding and Achieving Reproducibility for the Evaluation of Display Sparkle Contrast", published in 2021 in the SID Symposium Digest of Technical Papers. This work explores reproducibility in technical evaluations related to display technology.

Frequent collaborators in their research include Ingo Rotscholl, Christoph Rickers, Julia Brinkmann, Bob Liu, and U. Krüger. These coauthors have contributed alongside Rasmussen to various projects and publications, indicating a collaborative research environment.

The main publication venue listed for Rasmussen's work is the SID Symposium Digest of Technical Papers, which aligns with the research interest in surface and optical measurements, as well as technical reproducibility in displays.

  • Vehicle emissions and performance
  • Impact of Light on Environment and Health
  • Surface Roughness and Optical Measurements

  • Engineering
  • Environmental Science

  • Automotive Engineering
  • Global and Planetary Change
  • Computational Mechanics

  • 24.3: Understanding and Achieving Reproducibility for the Evaluation of Display Sparkle Contrast, 2021, SID Symposium Digest of Technical Papers

  • Ingo Rotscholl
  • Christoph Rickers
  • Julia Brinkmann
  • Bob Liu
  • U. Krüger

  • SID Symposium Digest of Technical Papers

Best Publications

  • Multiplier-Free Intrachannel Nonlinearity Compensating Algorithm Operating at Symbol Rate

    Zhenning Tao;Liang Dou;Weizhen Yan;Lei Li

  • Optical add/drop multiplexer

    Yuichi Akiyama;Takafumi Terahara;Hiroki Ooi;Jens C. Rasmussen

  • Experimental Demonstration of 448-Gbps+ DMT Transmission over 30-km SMF

    Toshiki Tanaka;Masato Nishihara;Tomoo Takahara;Weizhen Yan

  • 100 Gb/s optical IM-DD transmission with 10G-class devices enabled by 65 GSamples/s CMOS DAC core

    Weizhen Yan;T. Tanaka;Bo Liu;M. Nishihara

  • Optical transmitting apparatus, optical receiving apparatus, and optical communication system comprising them

    Yuichi Fujitsu Limited Akiyama;Takeshi Fujitsu Limited Hoshida;Akira Fujitsu Limited Miura;Yutaka Fujitsu Limited Kai

  • Implementation efficient nonlinear equalizer based on correlated digital backpropagation

    Lei Li;Zhenning Tao;Liang Dou;Weizhen Yan

  • Wide-range, Accurate and Simple Digital Frequency Offset Compensator for Optical Coherent Receivers

    Lei Li;Zhenning Tao;Shoichiro Oda;Takeshi Hoshida

  • Initial tap setup of constant modulus algorithm for polarization de-multiplexing in optical coherent receivers

    Ling Liu;Zhenning Tao;Weizhen Yan;Shoichiro Oda

  • 112 Gb/s DP-QPSK transmission using a novel nonlinear compensator in digital coherent receiver

    Shoichiro Oda;Takahito Tanimura;Takeshi Hoshida;Chihiro Ohshima

  • Simple Fiber Model for Determination of XPM Effects

    Zhenning Tao;Weizhen Yan;Ling Liu;Lei Li

  • SDN-Enabled Sliceable BVT Based on Multicarrier Technology for Multiflow Rate/Distance and Grid Adaptation

    Michela Svaluto Moreolo;Josep M. Fabrega;Laia Nadal;Francisco Javier Vilchez

  • Low complexity digital perturbation back-propagation

    Weizhen Yan;Zhenning Tao;Liang Dou;Lei Li

  • 80 km IM-DD transmission for 100 Gb/s per lane enabled by DMT and nonlinearity management

    Weizhen Yan;Lei Li;Bo Liu;Hao Chen

  • Laser-Linewidth-Tolerant Feed-Forward Carrier Phase Estimator With Reduced Complexity for QAM

    Jianqiang Li;Lei Li;Z. Tao;T. Hoshida

  • Discrete Multi-Tone for 100 Gb/s optical access networks

    Tomoo Takahara;Toshiki Tanaka;Masato Nishihara;Yutaka Kai

  • Digital clock recovery algorithm for Nyquist signal

    Meng Yan;Zhenning Tao;Liang Dou;Lei Li

  • Digital phase estimating device, digital phase-locked loop and light coherent receiver

    Lei Li;Zhenning Tao;Rasmussen Jens C

  • Spectrally Efficient Quadrature Duobinary Coherent Systems With Symbol-Rate Digital Signal Processing

    Jianqiang Li;Zhenning Tao;Huijian Zhang;Weizhen Yan

  • Experimental comparison of pulse amplitude modulation (PAM) and discrete multi-tone (DMT) for short-reach 400-Gbps data communication

    Yutaka Kai;Masato Nishihara;Toshiki Tanaka;Tomoo Takahara

  • Polarization demultiplexing based on independent component analysis in optical coherent receivers

    H. Zhang;Z. Tao;L. Liu;S. Oda

Frequent Co-Authors

Takeshi Hoshida
Takeshi Hoshida Fujitsu (Japan)
Ken-ichi Kitayama
Ken-ichi Kitayama Osaka University
Dimitra Simeonidou
Dimitra Simeonidou University of Bristol
Takehiro Tsuritani
Takehiro Tsuritani Furukawa Electric (United Kingdom)
Naoya Wada
Naoya Wada National Institute of Information and Communications Technology
Akihiro Maruta
Akihiro Maruta Osaka University
Itsuro Morita
Itsuro Morita Waseda University

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