153 lines
5.8 KiB
BibTeX
153 lines
5.8 KiB
BibTeX
@InProceedings{dehaeze18_sampl_stabil_tomog_exper_presen,
|
|
author = {T. Dehaeze and M. Magnin-Mattenet and C. Collette},
|
|
title = {{Sample Stabilization for Tomography Experiments in Presence
|
|
of Large Plant Uncertainty}},
|
|
booktitle = {Proc. 10th Mechanical Engineering Design of Synchrotron
|
|
Radiation Equipment and Instrumentation Int. Conf. (MEDSI'18)},
|
|
year = 2018,
|
|
pages = {153--157},
|
|
doi = {10.18429/JACoW-MEDSI2018-WEOAMA02},
|
|
language = {english},
|
|
month = {Jun.},
|
|
paper = {WEOAMA02},
|
|
publisher = {JACoW Publishing},
|
|
venue = {Paris, France},
|
|
}
|
|
|
|
@article{souleille18_concep_activ_mount_space_applic,
|
|
author = {{Souleille}, A. and {Lampert}, T. and {Lafarga}, V. and
|
|
{Hellegouarch}, S. and {Rondineau}, A. and {Rodrigues}, G. and
|
|
{Collette}, C.},
|
|
title = {{A Concept of Active Mount for Space applications}},
|
|
journal = {CEAS Space Journal},
|
|
volume = 10,
|
|
number = 2,
|
|
pages = {157-165},
|
|
year = 2018,
|
|
doi = {10.1007/s12567-017-0180-6},
|
|
keywords = {Launcher disturbances, Vibration damping, Active mount},
|
|
month = jun,
|
|
}
|
|
|
|
@article{dehaeze21_activ_dampin_rotat_platf_using,
|
|
author = {T. Dehaeze and C. Collette},
|
|
title = {{Active Damping of Rotating Platforms Using Integral Force
|
|
Feedback}},
|
|
journal = {Engineering Research Express},
|
|
volume = 3,
|
|
number = 1,
|
|
pages = 015036,
|
|
year = 2021,
|
|
doi = {10.1088/2631-8695/abe803},
|
|
month = {mar},
|
|
publisher = {{IOP} Publishing},
|
|
}
|
|
|
|
@phdthesis{rankers97_machin,
|
|
author = {A.M. Rankers},
|
|
day = 13,
|
|
isbn = {90-365-0957-2},
|
|
language = {English},
|
|
month = 6,
|
|
publisher = {Universiteit Twente},
|
|
school = {University of Twente},
|
|
title = {{Machine Dynamics in Mechatronic Systems, an Engineering
|
|
Approach}},
|
|
year = 1997,
|
|
}
|
|
|
|
@book{schmidt20_desig_high_perfor_mechat,
|
|
author = {Schmidt, R. Munnig and Schitter, G. and Rankers, A. and Van
|
|
Eijk, J.},
|
|
title = {{The Design of High Performance Mechatronics: High-Tech
|
|
Functionality by Multidisciplinary System Integration}},
|
|
year = 2020,
|
|
publisher = {IOS Press},
|
|
edition = {3nd},
|
|
isbn = {161499367X},
|
|
}
|
|
|
|
@inproceedings{geraldes17_mechat_concep_new_high_dynam_dcm_sirius,
|
|
author = {R.R. Geraldes and R.M. Caliari and G.B.Z.L. Moreno and
|
|
M.J.C. Ronde and T.A.M. Ruijl and R.M. Schneider},
|
|
title = {{Mechatronics Concepts for the New High-Dynamics DCM for
|
|
Sirius}},
|
|
booktitle = {MEDSI'16},
|
|
year = 2017,
|
|
doi = {10.18429/JACoW-MEDSI2016-MOPE19},
|
|
month = 6,
|
|
publisher = {JACoW Publishing, Geneva, Switzerland},
|
|
}
|
|
|
|
@inproceedings{brendike19_esrf_doubl_cryst_monoc_protot_contr_concep,
|
|
author = {M. Brendike and others},
|
|
title = {{ESRF-Double Crystal Monochromator Prototype - Control
|
|
Concept}},
|
|
booktitle = {presented at the 17th Int. Conf. on Accelerator and Large
|
|
Experimental Physics Control Systems (ICALEPCS'19)},
|
|
year = 2019,
|
|
pages = 777,
|
|
doi = {10.18429/JACoW-ICALEPCS2019-TUCPL05},
|
|
language = {english},
|
|
month = {Oct.},
|
|
paper = {TUCPL05},
|
|
publisher = {JACoW Publishing},
|
|
venue = {New York, NY, USA},
|
|
}
|
|
|
|
@article{holler18_omny_tomog_nano_cryo_stage,
|
|
author = {M. Holler and J. Raabe and A. Diaz and M. Guizar-Sicairos
|
|
and R. Wepf and M. Odstrcil and F. R. Shaik and V. Panneels
|
|
and A. Menzel and B. Sarafimov and S. Maag and X. Wang and V.
|
|
Thominet and H. Walther and T. Lachat and M. Vitins and O.
|
|
Bunk},
|
|
title = {{Omny-A Tomography Nano Cryo Stage}},
|
|
journal = {Review of Scientific Instruments},
|
|
volume = 89,
|
|
number = 4,
|
|
pages = 043706,
|
|
year = 2018,
|
|
doi = {10.1063/1.5020247},
|
|
}
|
|
|
|
@techreport{dimper15_esrf_upgrad_progr_phase_ii,
|
|
author = {R. Dimper and H. Reichert and P. Raimondi and L. Ortiz and
|
|
F. Sette and J. Susini},
|
|
institution = {{ESRF}},
|
|
note = {The orange book},
|
|
title = {{ESRF Upgrade Programme Phase {II} (2015-2022) - Technical
|
|
Design Study}},
|
|
year = 2015,
|
|
}
|
|
|
|
@book{matlab20,
|
|
author = {MATLAB},
|
|
title = {version 9.9.0 (R2020b)},
|
|
year = 2020,
|
|
publisher = {The MathWorks Inc.},
|
|
address = {Natick, Massachusetts},
|
|
}
|
|
|
|
@article{preumont07_six_axis_singl_stage_activ,
|
|
author = {A. Preumont and M. Horodinca and I. Romanescu and B. de
|
|
Marneffe and M. Avraam and A. Deraemaeker and F. Bossens and
|
|
A. Abu Hanieh},
|
|
title = {{A Six-Axis Single-Stage Active Vibration Isolator Based on
|
|
Stewart Platform}},
|
|
journal = {Journal of Sound and Vibration},
|
|
volume = 300,
|
|
number = {3-5},
|
|
pages = {644-661},
|
|
year = 2007,
|
|
doi = {10.1016/j.jsv.2006.07.050},
|
|
}
|
|
|
|
@inproceedings{brumund21_multib_simul_reduc_order_flexib_bodies_fea,
|
|
author = {Philipp Brumund and Thomas Dehaeze},
|
|
title = {{Multibody Simulations with Reduced Order Flexible Bodies
|
|
obtained by FEA}},
|
|
booktitle = {MEDSI'20},
|
|
year = 2021,
|
|
month = 07,
|
|
}
|