Remove DCM
This commit is contained in:
-27
@@ -130,33 +130,6 @@
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[submodule "dehaeze19_compl_filter_shapin_using_synth"]
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[submodule "dehaeze19_compl_filter_shapin_using_synth"]
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path = dehaeze19_compl_filter_shapin_using_synth
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path = dehaeze19_compl_filter_shapin_using_synth
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url = https://git.tdehaeze.xyz/tdehaeze/dehaeze19_compl_filter_shapin_using_synth
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url = https://git.tdehaeze.xyz/tdehaeze/dehaeze19_compl_filter_shapin_using_synth
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[submodule "dcm-stepper-calibration"]
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path = dcm-stepper-calibration
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url = https://gitlab.esrf.fr/dehaeze/dcm-stepper-calibration
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[submodule "dcm-feedback-control"]
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path = dcm-feedback-control
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url = https://gitlab.esrf.fr/dehaeze/dcm-feedback-control
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[submodule "dcm-simscape-model"]
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path = dcm-simscape-model
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url = https://git.tdehaeze.xyz/tdehaeze/dcm-simscape-model
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[submodule "dcm-metrology"]
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path = dcm-metrology
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url = https://gitlab.esrf.fr/dehaeze/dcm-metrology
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[submodule "dcm-kinematics"]
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path = dcm-kinematics
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url = https://gitlab.esrf.fr/dehaeze/dcm-kinematics
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[submodule "dcm-user-guide"]
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path = dcm-user-guide
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url = https://gitlab.esrf.fr/dehaeze/dcm-user-guide
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[submodule "dcm-laser-setup"]
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path = dcm-laser-setup
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url = https://gitlab.esrf.fr/dehaeze/dcm-laser-setup
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[submodule "dcm-bragg-control"]
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path = dcm-bragg-control
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url = https://gitlab.esrf.fr/dehaeze/dcm-bragg-control
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[submodule "dcm-simscape"]
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path = dcm-simscape
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url = https://gitlab.esrf.fr/dehaeze/dcm-simscape
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[submodule "dehaeze26_decoupling_parallel_manipulators"]
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[submodule "dehaeze26_decoupling_parallel_manipulators"]
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path = dehaeze26_decoupling_parallel_manipulators
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path = dehaeze26_decoupling_parallel_manipulators
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url = https://git.tdehaeze.xyz/tdehaeze/dehaeze26_decoupling_parallel_manipulators
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url = https://git.tdehaeze.xyz/tdehaeze/dehaeze26_decoupling_parallel_manipulators
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Submodule dcm-bragg-control deleted from 30e24e3ad3
Submodule dcm-feedback-control deleted from cbc63a0661
Submodule dcm-kinematics deleted from a36ebddf2f
Submodule dcm-laser-setup deleted from eb495136c8
Submodule dcm-metrology deleted from f549fc5313
-1
Submodule dcm-simscape deleted from f6400c14de
Submodule dcm-stepper-calibration deleted from 1512272e10
Submodule dcm-user-guide deleted from b1a511922a
@@ -149,50 +149,6 @@ Presentation of the short stroke metrology concept.
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- [[file:test-bench-nano-hexapod/index.org][Nano-Hexapod on a Granite]]
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- [[file:test-bench-nano-hexapod/index.org][Nano-Hexapod on a Granite]]
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- [[file:test-bench-nass-spindle/index.org][Nano-Hexapod on top of Spindle]]
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- [[file:test-bench-nass-spindle/index.org][Nano-Hexapod on top of Spindle]]
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* Double Crystal Monochromator (DCM)
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[[file:dcm-kinematics/index.html][Kinematics]]
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#+begin_quote
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Kinematics of the DCM is described (both for motors and sensors). Transformations matrices are derived and all notations and conventions are well defined.
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#+end_quote
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[[file:dcm-metrology/index.html][Metrology]]
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#+begin_quote
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Internal metrology of the DCM (i.e. interferometers) is described. Methods to properly initialize and calibrate the metrology are proposed.
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#+end_quote
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[[file:dcm-feedback-control/index.html][Feedback Control]]
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#+begin_quote
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This project deals with the Feedback Control of the DCM:
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Identification of the system's dynamics Change of coordinates Feedback controller design Obtained performances in closed loop
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#+end_quote
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[[file:dcm-user-guide/index.html][User Guide]]
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#+begin_quote
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The goal of this repository is to provide a simple guide for the use of the DCM.
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#+end_quote
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[[file:dcm-stepper-calibration/index.html][Stepper Motor Calibration]]
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#+begin_quote
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This repository includes all the work done in order to calibrate the errors induced by the stepper motors.
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#+end_quote
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[[file:dcm-laser-setup/index.html][Laser Setup]]
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#+begin_quote
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This project summarized all the work done on the Laser Setup. This includes alignement, calibration, noise and stability measurements.
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#+end_quote
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[[file:dcm-bragg-control/index.html][Control of Bragg Axis]]
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#+begin_quote
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The control of the Bragg angle using the Aerotech controller is described (control architecture, identified dynamics, etc.).
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#+end_quote
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[[file:dcm-simscape/index.html][Multi-Body model (Simscape)]]
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#+begin_quote
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Multi-body model of the DCM using Simscape (Matlab Toolbox). Dynamics of the system is studied, matched with the identified dynamics. Feedback control is applied, and the model is used to study possible improvements.
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#+end_quote
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* Useful Pages / Tutorials
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* Useful Pages / Tutorials
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** General Mechatronics
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** General Mechatronics
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