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Faculté des Sciences appliquées
Faculté des Sciences appliquées
Mémoire

Master thesis : Pre-study and development of a 5 GHz FSK telemetry transmitter

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Delisée, Louise ULiège
Promoteur(s) : Redouté, Jean-Michel ULiège
Date de soutenance : 29-jui-2026/30-jui-2026 • URL permanente : http://hdl.handle.net/2268.2/26087
Détails
Titre : Master thesis : Pre-study and development of a 5 GHz FSK telemetry transmitter
Titre traduit : [fr] Pré-étude et développement d’un transmitter telemesure FSK 5GHz
Auteur : Delisée, Louise ULiège
Date de soutenance  : 29-jui-2026/30-jui-2026
Promoteur(s) : Redouté, Jean-Michel ULiège
Membre(s) du jury : Boulanger, Pierre-Yves 
Vanderheyden, Benoît ULiège
Borlez, Yves 
Langue : Anglais
Nombre de pages : 86
Mots-clés : [en] telemetry
Discipline(s) : Ingénierie, informatique & technologie > Ingénierie électrique & électronique
Institution(s) : Université de Liège, Liège, Belgique
Diplôme : Master : ingénieur civil électricien, à finalité spécialisée en "electronic systems and devices"
Faculté : Mémoires de la Faculté des Sciences appliquées

Résumé

[en] This thesis is conducted within the company Thales. The objective of this work is the study
and development of a telemetry transmitter module compatible with the IRIG 106 telemetry
standard and operating in the C-band frequency range. Telemetry is an essential element for the
validation of system performance during flight for the Laser Guided Rocket (LGR) from Thales.
The first part of this work introduces the principles of telemetry and digital communications
as well as the IRIG 106 telemetry standard, which is widely used in telemetry applications to
ensure interoperability between different equipments and systems. Two modulation schemes
recommended by this standard are presented and compared: PCM/FM and SOQPSK-TG.
The PCM/FM modulation is chosen for its simplicity of integration with the existing ac
quisition system. However, SOQPSK-TG offers higher spectral efficiency, a characteristic often
desired for applications requiring higher bit rates.
The modulating signal containing the data to be transmitted is a 2 Mbps bitstream encoded
as NRZ-L. The implementation of FM modulation is achieved using a Phase-Locked Loop (PLL),
with direct modulation of the Voltage-Controlled Oscillator (VCO).
The FM modulation is first implemented using the evaluation board of the selected PLL. The
modulating signal is injected through a compensator circuit inside the loop filter of the PLL in
order to achieve the required frequency deviation for the FM signal.
A PCB has also been designed to integrate the PLL with other components such as the
microcontroller used to program the registers of the PLL. At this stage, no power amplification
stage has been designed.
The frequency deviation observed at the spectrum analyzer is ±720 kHz which is close to the
optimum frequency deviation recommended by the IRIG 106 standard.
A Software-Defined Radio (SDR) is also used to record and demodulate the FM signal. Al
though this approach was not initially planned within the scope of the project, it provides
promising results for future reception systems. The demodulation correctly reconstructs the
baseband signal. However, data recovery through clock recovery is still not fully functional and
still requires further work.
Only the amplification stage needs to be implemented to use the transmitter in real flight
tests. A study on the available resources to power this amplification must be conducted first.
The introduction of SDR opens the way to the research and development of a reception
solution fully based on SDR instead of the COTS receivers.


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Auteur

  • Delisée, Louise ULiège Université de Liège > Master ingé. civ. électr., à fin. spéc. electr. syst. dev.

Promoteur(s)

Membre(s) du jury

  • Boulanger, Pierre-Yves
  • Vanderheyden, Benoît ULiège Université de Liège - ULiège > Dép. d'électric., électron. et informat. (Inst.Montefiore) > Electronique et microsystèmes
    ORBi Voir ses publications sur ORBi
  • Borlez, Yves








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