Add vibration table
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[submodule "nass-short-stroke-metrology"]
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[submodule "nass-short-stroke-metrology"]
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path = nass-short-stroke-metrology
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path = nass-short-stroke-metrology
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url = https://git.tdehaeze.xyz/tdehaeze/nass-short-stroke-metrology
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url = https://git.tdehaeze.xyz/tdehaeze/nass-short-stroke-metrology
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[submodule "vibration-table"]
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path = vibration-table
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url = https://git.tdehaeze.xyz/tdehaeze/vibration-table
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<html xmlns="http://www.w3.org/1999/xhtml" lang="en" xml:lang="en">
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<html xmlns="http://www.w3.org/1999/xhtml" lang="en" xml:lang="en">
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<!-- 2021-02-20 sam. 23:05 -->
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<!-- 2021-04-08 jeu. 11:47 -->
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<meta http-equiv="Content-Type" content="text/html;charset=utf-8" />
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<meta http-equiv="Content-Type" content="text/html;charset=utf-8" />
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<title>Research Pages</title>
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<title>Research Pages</title>
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<meta name="generator" content="Org mode" />
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<meta name="author" content="Thomas Dehaeze" />
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<meta name="author" content="Thomas Dehaeze" />
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<meta name="generator" content="Org Mode" />
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<link rel="stylesheet" type="text/css" href="css/style.css"/>
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<style> #content {margin: auto;} </style>
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Welcome to my research pages.
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Welcome to my research pages.
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</p>
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<div id="outline-container-orgd6c8fd6" class="outline-2">
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<div id="outline-container-org9f0e536" class="outline-2">
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<h2 id="orgd6c8fd6"><span class="section-number-2">1</span> Papers</h2>
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<h2 id="org9f0e536"><span class="section-number-2">1</span> Papers</h2>
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<div class="outline-text-2" id="text-1">
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<div id="outline-container-org8ad3ac4" class="outline-3">
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<h3 id="org758e59c"><span class="section-number-3">1.1</span> Conference Papers</h3>
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<h3 id="org8ad3ac4"><span class="section-number-3">1.1</span> Conference Papers</h3>
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<div class="outline-text-3" id="text-1-1">
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<div class="outline-text-3" id="text-1-1">
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<ul class="org-ul">
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<ul class="org-ul">
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<li>Dehaeze, T., Mattenet, M. M., & Collette, C., <b>Sample Stabilization For Tomography Experiments In Presence Of Large Plant Uncertainty</b>, In MEDSI’18 (pp. 153–157) (2018). Geneva, Switzerland: JACoW Publishing. (<a href="dehaeze18_sampl_stabil_for_tomog_exper/index.html">link</a>)</li>
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<li>Dehaeze, T., Mattenet, M. M., & Collette, C., <b>Sample Stabilization For Tomography Experiments In Presence Of Large Plant Uncertainty</b>, In MEDSI’18 (pp. 153–157) (2018). Geneva, Switzerland: JACoW Publishing. (<a href="dehaeze18_sampl_stabil_for_tomog_exper/index.html">link</a>)</li>
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@ -51,8 +51,8 @@ Welcome to my research pages.
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</div>
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</div>
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</div>
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</div>
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<div id="outline-container-orgadad994" class="outline-3">
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<div id="outline-container-org653e50e" class="outline-3">
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<h3 id="orgadad994"><span class="section-number-3">1.2</span> Journal Papers</h3>
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<h3 id="org653e50e"><span class="section-number-3">1.2</span> Journal Papers</h3>
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<div class="outline-text-3" id="text-1-2">
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<div class="outline-text-3" id="text-1-2">
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<ul class="org-ul">
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<ul class="org-ul">
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<li>Verma, M., Dehaeze, T., Zhao, G., Watchi, J., & Collette, C., <b>Virtual sensor fusion for high precision control, Mechanical Systems and Signal Processing</b>, 150, 107241 (2020). <a href="http://dx.doi.org/10.1016/j.ymssp.2020.107241">http://dx.doi.org/10.1016/j.ymssp.2020.107241</a> (<a href="personnal-papers/verma20_virtual_sensor_fusion_high_precis_contr.pdf">pdf</a>)</li>
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<li>Verma, M., Dehaeze, T., Zhao, G., Watchi, J., & Collette, C., <b>Virtual sensor fusion for high precision control, Mechanical Systems and Signal Processing</b>, 150, 107241 (2020). <a href="http://dx.doi.org/10.1016/j.ymssp.2020.107241">http://dx.doi.org/10.1016/j.ymssp.2020.107241</a> (<a href="personnal-papers/verma20_virtual_sensor_fusion_high_precis_contr.pdf">pdf</a>)</li>
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</div>
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<div id="outline-container-orga204ade" class="outline-2">
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<div id="outline-container-org63f6682" class="outline-2">
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<h2 id="orga204ade"><span class="section-number-2">2</span> Useful Pages / Tutorials</h2>
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<h2 id="org63f6682"><span class="section-number-2">2</span> Useful Pages / Tutorials</h2>
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<div class="outline-text-2" id="text-2">
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<div id="outline-container-orgd622ba9" class="outline-3">
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<h3 id="org1e8bdd8"><span class="section-number-3">2.1</span> General Mechatronics</h3>
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<h3 id="orgd622ba9"><span class="section-number-3">2.1</span> General Mechatronics</h3>
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<div class="outline-text-3" id="text-2-1">
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<div class="outline-text-3" id="text-2-1">
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<p>
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<p>
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<a href="spectral-analysis/index.html">Spectral Analysis</a>
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<a href="spectral-analysis/index.html">Spectral Analysis</a>
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@ -97,8 +97,8 @@ Several types of linear filters (low pass, high pass, notch, lead, etc.) are pre
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<div id="outline-container-orga87decf" class="outline-3">
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<h3 id="org303c6d9"><span class="section-number-3">2.2</span> System Modeling using Simscape</h3>
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<h3 id="orga87decf"><span class="section-number-3">2.2</span> System Modeling using Simscape</h3>
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<div class="outline-text-3" id="text-2-2">
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<p>
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<p>
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<a href="simscape-fem/index.html">Finite Element Models with Simscape</a>
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<a href="simscape-fem/index.html">Finite Element Models with Simscape</a>
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@ -132,12 +132,12 @@ In order to start the simulation at equilibrium, few measured can be employed th
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<div id="outline-container-org802969d" class="outline-2">
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<h2 id="orgd451d3e"><span class="section-number-2">3</span> Test Benches / Experiments</h2>
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<h2 id="org802969d"><span class="section-number-2">3</span> Test Benches / Experiments</h2>
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<h3 id="orgce68172"><span class="section-number-3">3.1</span> Intrumentation Related</h3>
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<h3 id="orgd2ef9b8"><span class="section-number-3">3.1</span> Intrumentation Related</h3>
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<p>
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<p>
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<a href="test-bench-piezo-amplifiers/index.html">Voltage Amplifiers for Piezoelectric Actuators</a>
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<a href="test-bench-piezo-amplifiers/index.html">Voltage Amplifiers for Piezoelectric Actuators</a>
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<h3 id="org9c99b8d"><span class="section-number-3">3.2</span> Amplified Piezoelecric Actuator</h3>
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<h3 id="org0feb497"><span class="section-number-3">3.2</span> Amplified Piezoelecric Actuator</h3>
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<a href="test-bench-apa/index.html">Amplified Piezoelectric Actuator - Test bench and Finite Element Model</a>
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<a href="test-bench-apa/index.html">Amplified Piezoelectric Actuator - Test bench and Finite Element Model</a>
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</blockquote>
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<h3 id="org0699db6"><span class="section-number-3">3.3</span> Vibration Table</h3>
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<p>
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<a href="vibration-table/index.html">Instrumented Vibration Table used for Modal Testing</a>
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</p>
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<blockquote>
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<p>
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A vibration table is developed to perform controlled modal tests.
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</p>
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</blockquote>
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<h2 id="orgfbe996a"><span class="section-number-2">4</span> PhD Project - Nano Active Stabilization System</h2>
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<h2 id="org265fed7"><span class="section-number-2">4</span> PhD Project - Nano Active Stabilization System</h2>
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<div class="outline-text-2" id="text-4">
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<h3 id="org1d28fe3"><span class="section-number-3">4.1</span> General Reports</h3>
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<h3 id="org541bac7"><span class="section-number-3">4.1</span> General Reports</h3>
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<a href="nass-report-2020/index.html">NASS - Report 2020</a>
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<a href="nass-report-2020/index.html">NASS - Report 2020</a>
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<h3 id="org0a60d0d"><span class="section-number-3">4.2</span> Measurements, Models and Test Benches</h3>
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<h3 id="orgf240b2f"><span class="section-number-3">4.2</span> Measurements, Models and Test Benches</h3>
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<a href="nass-micro-station-measurements/index.html">NASS - Micro Station Measurements</a>
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<a href="nass-micro-station-measurements/index.html">NASS - Micro Station Measurements</a>
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<h3 id="orged25e88"><span class="section-number-3">4.3</span> Nano-Hexapod</h3>
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<h3 id="orge8df6c1"><span class="section-number-3">4.3</span> Nano-Hexapod</h3>
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<b>Equipments</b>:
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<b>Equipments</b>:
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@ -312,8 +326,8 @@ Presentation of the short stroke metrology concept.
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<h2 id="org29a7ea8"><span class="section-number-2">5</span> Notes</h2>
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<h2 id="orgd41b7ae"><span class="section-number-2">5</span> Notes</h2>
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<li><a href="euspen_2020_notes/notes.html">EUSPEN - 2020 - Notes</a></li>
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<li><a href="euspen_2020_notes/notes.html">EUSPEN - 2020 - Notes</a></li>
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<h2 id="org647be43"><span class="section-number-2">6</span> Lectures</h2>
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<h2 id="org2ac34c1"><span class="section-number-2">6</span> Lectures</h2>
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<li><a href="lecture-h-infinity/index.html">H-Infinity - Robust Control</a></li>
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<li><a href="lecture-h-infinity/index.html">H-Infinity - Robust Control</a></li>
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The goal is to form a /super sensor/ that has better noise characteristics than the individual sensors.
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The goal is to form a /super sensor/ that has better noise characteristics than the individual sensors.
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#+end_quote
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#+end_quote
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** Vibration Table
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[[file:vibration-table/index.org][Instrumented Vibration Table used for Modal Testing]]
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#+begin_quote
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A vibration table is developed to perform controlled modal tests.
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#+end_quote
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* PhD Project - Nano Active Stabilization System
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* PhD Project - Nano Active Stabilization System
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** General Reports
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** General Reports
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[[file:nass-report-2020/index.org][NASS - Report 2020]]
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[[file:nass-report-2020/index.org][NASS - Report 2020]]
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Subproject commit fd3bea7f16fec746cb411eed08a3bcc1c5a95eec
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