Time of Flight Measurements over Optical Communication Using Field-Programmable Gate Array Multi-Gigabit Transceivers

Master Thesis (2023)
Author(s)

T. Palings (TU Delft - Aerospace Engineering)

Contributor(s)

Stefano Speretta – Mentor (TU Delft - Space Systems Egineering)

Faculty
Aerospace Engineering
Copyright
© 2023 Tijs Palings
More Info
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Publication Year
2023
Language
English
Copyright
© 2023 Tijs Palings
Graduation Date
30-11-2023
Awarding Institution
Delft University of Technology
Programme
Aerospace Engineering
Faculty
Aerospace Engineering
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Abstract

As space technology continues to advance, the landscape of telecommunication is witnessing a transition from traditional radio frequency to laser communication technology, driven by its enhanced efficiency. Notably, laser communication offers the potential for achieving millimeter-level ranging accuracy, thanks to its significantly higher data rates. This thesis presents the design of a system utilizing a field-programmable gate array (FPGA) and commercial off-the-shelf (COTS) multi-gigabit optical transceivers. The system tests laser communication ranging through time-of-flight measurements, leveraging the inherent structure of optical data. Through extensive testing, the thesis aims to characterize the system's maximum achievable accuracy, identifying constraints in the avenues of improvement. The use of COTS components ensures scalability and facilitates seamless integration into future test setups.

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