TR2015-016
Coded Modulation Design for Finite-Iteration Decoding and High-Dimensional Modulation
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- "Coded Modulation Design for Finite-Iteration Decoding and High-Dimensional Modulation", Optical Fiber Communication Conference (OFC), DOI: 10.1364/OFC.2015.W4K.1, March 2015.BibTeX TR2015-016 PDF
- @inproceedings{Koike-Akino2015mar,
- author = {Koike-Akino, T. and Millar, D.S. and Kojima, K. and Parsons, K.},
- title = {Coded Modulation Design for Finite-Iteration Decoding and High-Dimensional Modulation},
- booktitle = {Optical Fiber Communication Conference (OFC)},
- year = 2015,
- month = mar,
- doi = {10.1364/OFC.2015.W4K.1},
- isbn = {978-1-55752-937-4},
- url = {https://www.merl.com/publications/TR2015-016}
- }
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- "Coded Modulation Design for Finite-Iteration Decoding and High-Dimensional Modulation", Optical Fiber Communication Conference (OFC), DOI: 10.1364/OFC.2015.W4K.1, March 2015.
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MERL Contacts:
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Research Area:
Abstract:
We show how to design capacity-approaching LDPC codes under different modulation formats and different decoding methods. With EXIT chart analysis for finite-iteration BICM-ID of various HDM, we achieve 2dB gain from a code optimized for 1D modulation.
Related News & Events
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NEWS Toshiaki Koike-Akino gave invited talk at MIT Lincoln Laboratory by IEEE Boston Photonics Society Chapter Date: January 14, 2016
Where: MIT Lincoln Laboratory
MERL Contact: Toshiaki Koike-Akino
Research Area: CommunicationsBrief- Toshiaki Koike-Akino gave an invited talk on recent advances in LDPC Codes for high-speed optical communications in IEEE Boston Photonics Workshop.
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NEWS Papers presented at OFC 2015 optical communications conference Date: March 25, 2015
MERL Contacts: Kieran Parsons; Toshiaki Koike-Akino
Research Areas: Communications, Electronic and Photonic Devices, Signal ProcessingBrief- Six papers from the Optical Comms team will be presented at the 2015 Optical Fiber Conference (OFC) being held in LA, USA in March 2015. The papers relate to high-dimensional modulation, signal processing, coding for coherent optical links and semiconductor laser linewidth measurement.