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< title > Research Pages< / title >
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< meta name = "author" content = "Thomas Dehaeze" / >
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< h1 class = "title" > Research Pages< / h1 >
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Welcome to my research pages.
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< h2 id = "org4be8a83" > < span class = "section-number-2" > 1< / span > Papers< / h2 >
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< h3 id = "org60ea89b" > < span class = "section-number-3" > 1.1< / span > Conference Papers< / h3 >
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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 >
< li > Dehaeze, T., Vermat, M., & Christophe, C., < b > Complementary filters shaping using \(H_\infty\) synthesis< / b > , In 7th International Conference on Control, Mechatronics and Automation (ICCMA) (pp. 459– 464) (2019). (< a href = "dehaeze19_desig_compl_filte/index.html" > link< / a > )< / li >
< li > Dehaeze, T., & Collette, C., < b > Active damping of rotating platforms using Integral Force Feedback< / b > , In Proceedings of the International Conference on Modal Analysis Noise and Vibration Engineering (ISMA) (2020). (< a href = "dehaeze20_activ_dampin_rotat_platf_integ_force_feedb/index.html" > link< / a > )< / li >
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< h3 id = "org565b8c5" > < span class = "section-number-3" > 1.2< / span > Journal Papers< / h3 >
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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 >
< li > Verma, M., Lafarga, V., Dehaeze, T., & Collette, C., < b > Multi-degree of freedom isolation system with high frequency roll-off for drone camera stabilization< / b > , IEEE Access, (2020). < a href = "http://dx.doi.org/10.1109/ACCESS.2020.3027066" > http://dx.doi.org/10.1109/ACCESS.2020.3027066< / a > (< a href = "personnal-papers/verma20_multi_degree_freed_isolat_system.pdf" > pdf< / a > )< / li >
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< h2 id = "org468792b" > < span class = "section-number-2" > 2< / span > Useful pages / Tutorials< / h2 >
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< h3 id = "orgaca3812" > < span class = "section-number-3" > 2.1< / span > Spectral Analysis< / h3 >
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< li > < a href = "spectral-analysis/index.html" > Spectral Analsis< / a > < / li >
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< h3 id = "org2ba5fa7" > < span class = "section-number-3" > 2.2< / span > Finite Element Models and Simscape      < span class = "tag" > < span class = "simscape" > simscape< / span > < / span > < / h3 >
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< li > < a href = "fem-simscape/index.html" > Finite Element Models with Simscape< / a > < / li >
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< h3 id = "org48fb75b" > < span class = "section-number-3" > 2.3< / span > Gravity with Simscape      < span class = "tag" > < span class = "simscape" > simscape< / span > < / span > < / h3 >
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< li > < a href = "simscape-gravity/index.html" > Manage Gravity within Simscape< / a > < / li >
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< h3 id = "org39e5e82" > < span class = "section-number-3" > 2.4< / span > Bank of Filters using matlab< / h3 >
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< a href = "filters-matlab-bank/index.html" > Bank of Filters using matlab< / a >
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< h2 id = "orge4188f2" > < span class = "section-number-2" > 3< / span > Test Benches / Experiments< / h2 >
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< h3 id = "org858f03e" > < span class = "section-number-3" > 3.1< / span > Amplified Piezoelectric Actuator< / h3 >
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< li > < a href = "test-bench-apa/index.html" > Amplified Piezoelectric Actuator< / a > < / li >
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< h3 id = "orgf8e09c2" > < span class = "section-number-3" > 3.2< / span > Sensor Fusion< / h3 >
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< li > < a href = "sensor-fusion-test-bench/index.html" > Sensor Fusion< / a > < / li >
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< h3 id = "org24d7505" > < span class = "section-number-3" > 3.3< / span > Encoder and Interferometer< / h3 >
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< li > < a href = "encoder-test-bench/index.html" > Encoder and Interferometer< / a > < / li >
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< h3 id = "org0c78e4a" > < span class = "section-number-3" > 3.4< / span > Attocube< / h3 >
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< li > < a href = "attocube-test-bench/index.html" > Attocube< / a > < / li >
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< h3 id = "orge339aef" > < span class = "section-number-3" > 3.5< / span > Voltage Amplifiers for Piezoelectric Actuators< / h3 >
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< li > < a href = "test-bench-piezo-amplifiers/index.html" > Voltage Amplifiers for Piezoelectric Actuators< / a > < / li >
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< h3 id = "orgfbf1965" > < span class = "section-number-3" > 3.6< / span > Metrology Concept 1< / h3 >
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< li > < a href = "nass-metrology-test-bench/index.html" > Metrology Concept 1< / a > < / li >
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< h3 id = "org3dd9ec4" > < span class = "section-number-3" > 3.7< / span > Force Sensor< / h3 >
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< li > < a href = "test-bench-force-sensor/index.html" > Force Sensor< / a > < / li >
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< h2 id = "org5c18fe4" > < span class = "section-number-2" > 4< / span > Nano Active Stabilization System< / h2 >
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< li > < a href = "nass-report-2020/index.html" > NASS - Report 2020< / a > < / li >
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< li > < a href = "nass-micro-station-measurements/index.html" > NASS - Micro Station Measurements< / a > < / li >
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< li > < a href = "nass-simscape/docs/index.html" > NASS - Simscape Model< / a > < / li >
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