• Chinese Optics Letters
  • Vol. 19, Issue 1, 011201 (2021)
Wentao Li and Jian Zhou*
Author Affiliations
  • College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
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    DOI: 10.3788/COL202119.011201 Cite this Article Set citation alerts
    Wentao Li, Jian Zhou. Novel laser Doppler tachometer[J]. Chinese Optics Letters, 2021, 19(1): 011201 Copy Citation Text show less
    Structure of the novel rotational speed measuring device.
    Fig. 1. Structure of the novel rotational speed measuring device.
    Geometric relationships of the two beams and the measured rotating body.
    Fig. 2. Geometric relationships of the two beams and the measured rotating body.
    Rotational speed measuring system from different perspectives.
    Fig. 3. Rotational speed measuring system from different perspectives.
    Results of rotational speed measurement: (a) 200 deg/s, (b) 600 deg/s, and (c) 1200 deg/s.
    Fig. 4. Results of rotational speed measurement: (a) 200 deg/s, (b) 600 deg/s, and (c) 1200 deg/s.
    Photo of radius sensitivity experiment: (a) a piece of foam, (b) two pieces of foam.
    Fig. 5. Photo of radius sensitivity experiment: (a) a piece of foam, (b) two pieces of foam.
    Results of rotational speed measurement: (a) no foam, (b) a piece of foam, and (c) two pieces of foam.
    Fig. 6. Results of rotational speed measurement: (a) no foam, (b) a piece of foam, and (c) two pieces of foam.
    Photo of angle sensitivity experiment.
    Fig. 7. Photo of angle sensitivity experiment.
    Results of rotational speed measurement: (a) deflection 0 deg, (b) deflection 5 deg, and (c) deflection 10 deg.
    Fig. 8. Results of rotational speed measurement: (a) deflection 0 deg, (b) deflection 5 deg, and (c) deflection 10 deg.
    Measurement results under four working conditions.
    Fig. 9. Measurement results under four working conditions.
    Measurement results of the hand-held tachometer.
    Fig. 10. Measurement results of the hand-held tachometer.
    Measurement result of the vibration influence.
    Fig. 11. Measurement result of the vibration influence.
    ParameterValue
    LaserWavelength/nm532
    Power/mW50
    ModeSingle longitudinal mode
    PhotodetectorAPD
    Sampling frequency/MHz100
    Measuring range/(deg/s)4−8400
    Distance d/mm12
    Table 1. Main Performance Parameters of Main Components
    Wentao Li, Jian Zhou. Novel laser Doppler tachometer[J]. Chinese Optics Letters, 2021, 19(1): 011201
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