Emmanuelle Peter
7 Papers
Emmanuelle Peter is an academic researcher. The author has contributed to research in topics: Gyroscope & Computer science. The author has an hindex of 1, co-authored 1 publications.
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Papers
The fiber optic gyro 'adventure' at Photonetics, iXsea and now iXblue
Herve Lefevre,Adrien Steib,Alain Claire,Alex Sekeriyan,André Couderette,Anne-Laure Pointel,Annie Viltard,Antoine Bonnet,Arnaud Frénois,Arnaud Gandoin,Arnaud Laurent,Augustin Luton,Aurélie Galbès,Aurore Ecarnot,Benoît Cadier,Benoît Kerouanton,Bertrand Lhermitte,Brigitte Bonnafé,Carine Stuber,Carmen Ortiz,Cédric Moluçon,Chantal Allano,Charles Dunette,Christophe Ollivier,Clément Guyot,Clément Vercambre,Damien Ponceau,David Ramecourt,Elliot de Toldi,Emmanuelle Peter,Eric Ducloux,Eva Vassilakis,Fabien Colliou,Fabien Napolitano,Florence Lauvinerie,Frédéric Guattari,Gaëtan Fauquert,Gilles Mélin,Guillaume Hardy,Guillaume Lecamp,Henri Porte,Hervé Jaheny,Hugo Boiron,Jean-Jacques Bonnefois,Jean-Philippe Michel,Jean-Philippe Périot,Jérémie Pillon,J. Hauden,Joachin Honthaas,Karl Aubry,Kévin Gauthier,Laurent Lablonde,Laurent Ly,Louis Lhomme,Luc Poulain,Marc Girault,Marco Mancini,Marie Goudron,Marie-Lise Duplaquet,Marilyne Bernasconi,Matthieu Collignon,Matthieu Dacheux,Maxime Rattier,Miguel Marta,Nicolas Faussot,Nicolas Grossard,Nicolas Pirrone,Olivier Jolly,Olivier Rabine,Pascal Guitton,Pascal Mollier,Pascal Simonpiétri,Pierre Buisson,Pierrick Cheiney,Priyoshi Chakma,Rachid Taibi,Robert Blondeau,Saloomeh Shariati,Sébastien Boisgontier,Sébastien Ferrand,Sébastien Keller,Sophie Huet,Stéphane Chouvin,Stéphane Meyer,Stéphane Puille,Stéphane Ustaze,Sylvain Bénard,Sylvain Clémenceau,Théo Laudat,Thérèse Guettler-Sergeant,Thibault Dos Santos,Thidakun Peou-Sanson,Thierry Robin,Thomas Buret,Thomas Loret,Thomas Villedieu,Valérie Ferreira,Van Dong Pham,Victor Rumoroso,Yves Paturel,Hervé J. Arditty +100 more
- 13 May 2020
TL;DR: Based on the experience acquired early from pioneering work at Stanford University and Thomson-CSF starting in the mid 70s, fiber optic gyro (FOG) R&D began at Photonetics in the late 80s to yield OCTANS, a FOG-based inertial strapdown system providing attitude and gyro compassing, at the end of the 90s.
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UmiX series: How to miniaturize FOG technology
Sébastien Ferrand,Maxime Rattier,Cédric Molucon,Kevin Gautier,Pierrick Cheiney,Emmanuelle Peter,Marco Mancini +6 more
- 08 May 2022
TL;DR: This paper will present the sensor miniaturization strategy for FOG and accelerometers embedded in the UmiX IMU and discuss the performances achieved by the sensors.
6
Rayleigh-OFDR Strain Distribution Measurement of a Self-Standing Fiber-Gyroscope Coil
H. Boiron,J. Pillon,Emmanuelle Peter,Emmanuel Marin,Matthieu Collignon,Adriana Morana,Sylvain Girard,Herve Lefevre +7 more
- 08 May 2022
TL;DR: In this article , the authors used Rayleigh-Optical Frequency Domain Reflectometry (Rayleigh-OFDR) technique to improve the understanding of the longitudinal strain distribution along the optical fiber of a quadrupolar sensing coil of a fiber-optic gyroscope (FOG).
2
Distributed Strain Analysis of a Quadrupolar Fiber-Optic Gyroscope Coil by Brillouin-OTDA and Rayleigh-OFDR
H. Boiron,J. Pillon,Emmanuelle Peter,M. Rattier,Emmanuel Marin,Adriana Morana,Matthieu Collignon,Sylvain Girard,Herve Lefevre +8 more
- 01 Jan 2022
TL;DR: In this paper , the longitudinal strain distribution along the optical fiber of a quadrupolar sensing coil of a fiber-optic gyroscope was analyzed using Brillouin-Optical Time Domain Analysis (TDA) and Rayleigh Optical Frequency Domain Reflectometry (RODS).
1
Moisture-Induced Mechanical Strain in Gyroscope Optical Fiber Coil
H. Boiron,J. Pillon,M. Rattier,Emmanuel Marin,François Louf,Nominoë Lorriere,Adriana Morana,Pierre-Alain Boucard,Emmanuelle Peter,Sylvain Girard,Herve Lefevre +10 more
TL;DR: In this article , a full theoretical approach to determine the strain field into the sensing coil induced by a moisture loading is proposed, which consists in solving an analytical Fickian diffusion model in a semi-infinite medium, to implement a semi analytical mechanical model of the moisture diffusion effect.