Dispersion Analysis within a Measured 1,4 km MIMO Multimode Channel

Andreas Ahrens, Steffen Schröder, Steffen Lochmann

Abstract

In this contribution a signal theoretic Multiple Input Multiple Output (MIMO) system model for estimating modal and chromatic dispersion is developed. Based on channel measurements within a 1,4 km MIMO multimode channel parameters for modal and chromatic dispersion are estimated. Furthermore, taking given parameters of the dispersion into account, the introduced signal theoretic MIMO system model enables a reconstruction of the MIMO specific impulse responses.

References

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Paper Citation


in Harvard Style

Ahrens A., Schröder S. and Lochmann S. (2013). Dispersion Analysis within a Measured 1,4 km MIMO Multimode Channel . In Proceedings of the 4th International Conference on Data Communication Networking, 10th International Conference on e-Business and 4th International Conference on Optical Communication Systems - Volume 1: OPTICS, (ICETE 2013) ISBN 978-989-8565-72-3, pages 391-397. DOI: 10.5220/0004495203910397


in Bibtex Style

@conference{optics13,
author={Andreas Ahrens and Steffen Schröder and Steffen Lochmann},
title={Dispersion Analysis within a Measured 1,4 km MIMO Multimode Channel},
booktitle={Proceedings of the 4th International Conference on Data Communication Networking, 10th International Conference on e-Business and 4th International Conference on Optical Communication Systems - Volume 1: OPTICS, (ICETE 2013)},
year={2013},
pages={391-397},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0004495203910397},
isbn={978-989-8565-72-3},
}


in EndNote Style

TY - CONF
JO - Proceedings of the 4th International Conference on Data Communication Networking, 10th International Conference on e-Business and 4th International Conference on Optical Communication Systems - Volume 1: OPTICS, (ICETE 2013)
TI - Dispersion Analysis within a Measured 1,4 km MIMO Multimode Channel
SN - 978-989-8565-72-3
AU - Ahrens A.
AU - Schröder S.
AU - Lochmann S.
PY - 2013
SP - 391
EP - 397
DO - 10.5220/0004495203910397