add measurements spindle + dynamics
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disturbance-measurement/mat/data_024.mat
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disturbance-measurement/mat/data_024.mat
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disturbance-measurement/mat/data_025.mat
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disturbance-measurement/mat/data_025.mat
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disturbance-measurement/mat/data_026.mat
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disturbance-measurement/mat/data_026.mat
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@ -10,3 +10,23 @@ Every stage is powered on.
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|--------------+----------------------------|
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| data_001.mat | nothing is turning |
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| data_002.mat | spindle is turning at 1rpm |
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* Mesures Dynamiques Rotation Slip-Ring
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All the stages are OFF
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One geophone on the marble (Col 1)
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One geophone at the sample location (Col 2)
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Voltage amplifier setup:
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60dB
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AC
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1kHz
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LPF added at the input of the voltage amplifiers
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Goal:
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- Identifify the vibration induced by the rotation of the Slip-Ring and Spindle
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- meas24: All OFF
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- meas25: 6RPM: only the slip-ring is ON and rotating (spindle OFF)
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- meas26: 6RPMZ; Slip-ring and Spindle ON
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slip-ring-test/mat/data_020.mat
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slip-ring-test/mat/data_020.mat
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slip-ring-test/mat/data_021.mat
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slip-ring-test/mat/data_021.mat
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slip-ring-test/mat/data_022.mat
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slip-ring-test/mat/data_022.mat
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slip-ring-test/mat/data_023.mat
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slip-ring-test/mat/data_023.mat
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@ -80,3 +80,12 @@ New measurement with C = 150nF => fc = 1kHz
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Voltage Ampli: 60dB, DC, 1kHz
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- meas19
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* Measure of the noise induced by the Slip-Ring - BIS
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Same as before but with a LPF
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Measurements:
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- meas20: Slip-Ring OFF
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- meas21: Slip-Ring ON
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- meas22: Slip-Ring ON and omega=6rpm
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- meas23: Slip-Ring ON and omega=60rpm
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