Nova Patents
MY129883A

Rotary detector

Abstract

THE ROTARY DETECTOR ACCORDING TO THIS INVENTION COMPRISES A ROTARY DETECTOR UNIT C1, C1' WHICH DETECTS ROTARY MOTION OF A ROTOR; AND A ROTARY CALCULATOR UNIT C2, C2', C2" COMPRISING A ROTATION ANGLE DETECTOR, WHICH DETECTS THE ROTATION ANGLE OF THE ROTOR' AND AN ANGLE SPEED DETECTOR 47 WHICH DETECTS THE ANGLE SPEED OF THE ROTOR, BASED ON THE OUTPUT OF THE ROTARY DETECTOR UNIT. THE ROTARY CALCULATOR UNIT COMPRISES A TRIGONOMETRICAL CALCULATOR C3, C3', C3" WHICH CALCULATES A SINE VALUE OR A COSINE VALUE OF THE ROTATION ANGLE DETECTED BY THE ROTARY DETECTOR; A GAIN 57, 57', 57" WHICH MULTIPLIES THE SINE VALUE OR THE COSINE VALUE, CALCULATED BY THE TRIGONOMETRICAL CALCULATOR, BY A PREDETERMINED GAIN; A MULTIPLIER 59, 59' WHICH MULTIPLIES THE OUTPUT OF THE GAIN ADJUSTER BY THE OUTPUT OF THE ANGLE SPEED DETECTOR; AND A SUBTRACTER 61, 61' WHICH SUBTRACTS THE OUTPUT OF THE MULTIPLIER FROM THE OUTPUT OF THE ANGLE SPEED DETECTOR.@@FIGURE 1

MY129883A, drawing sheet 1
Sheet 1 of 9

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

16 claims: 16 independent, 0 dependent

  1. 1
    Claims:1. A rotary detector (1) comprising: a rotary detector unit (C1) which detects rotary motion of a rotor;and a rotary calculator unit (C2, C2’) comprising a rotation angle detector (45, 5 45’), which detects the rotation angle of said rotor, and an angle speed detector (47) which detects the angle speed of said rotor, based on the output of said rotary detector unit;said rotary calculator unit (C2, C2') is characterized by comprising: a trigonometrical calculator (C3, C3’) which calculates a sine value or a 10 cosine value of the rotation angle detected by said rotation angle detector (45, 45');a gain adjuster (57, 57’) which multiplies the sine value or the cosine value, calculated by said trigonometrical calculator (C3, C3’), by a predetermined gain;a multiplier (59, 59') which multiplies the output of said gain adjuster (57, 57’) by the output of said angle speed detector;and 15 a subtracter (61, 61’) which subtracts the output of said multiplier (59, 59’) from the output of said angle speed detector (47).
  2. 2
    The rotary detector (1) as described in Claim 1, said trigonometrical calculator (C
  3. 3
    3, C3’) comprising a phase adjusting unit (49, 49’) which adjusts the phase of the rotation angle, detected by said rotation angle detector (45). 20 3. The rotary detector (1) as described in Claim 1, said rotary detector unit (C1) comprising a resolver (15) which creates an output in accordance with the rotation angle of said rotor.
  4. 4
    The rotary detector (1) as described in Claim 1, said rotary detector unit (C1) comprising a generator (15, 87) which outputs a voltage in accordance with the 25 angle speed of said rotor.
  5. 5
    The rotary detector (1) as described in Claim 1, said rotary detector unit (C1) comprising an encoder (87) which creates an output in accordance with the rotation angle of said rotor.
  6. 6
    The rotary detector as described in Claim 1, said rotary detector unit (C1) 5 being provided separately from said rotary calculator unit (C2, C2 j.
  7. 7
    The rotary detector (1) as described in Claim 1, said rotary detector unit (C1) housing said rotary calculator unit (C2, C2 j.
  8. 8
    The rotary detector (1) as described in Claim 1, said rotary calculator unit (C2, C2 j comprising a unit for reducing a ripple component of said angle speed. io
  9. 9
    The rotary detector (1) as described in Claim 1, said rotary calculator unit (C2, C2j calculating an angle speed ωου1 by calculating ωου(=ω (1-G sin (ηθ+ψ) where θ represents the rotation angle, G represents the gain of the gain adjusting section (57, 57j, ψ represents the adjust phase value of the phase adjusting section (49, 49’, 49”), and n represents the number of ripple cycles in the 15 output of said rotary angle detector (45) in one rotation of said rotor.
  10. 10
    The rotary detector (1) as described in Claim 1, said rotary calculator unit (C2, C2') comprising a unit for reducing a ripple component of said rotation angle.
  11. 11
    The rotary detector (1) as described in Claim 1, said rotation angle detector (45) comprising an integrator (63 j which obtains a rotation angle by integrating the 20 output of said angle speed detector (47).
  12. 12
    The rotary detector (1) as described in Claim 1, said rotary calculation unit (C2, C2 j comprising an integrator (63 j for integrating said angle speed output ωου,
  13. 13
    The rotary detector (1) as described in Claim 1, said rotary calculator unit (C2, C2j outputting a rotation angle signal which reduces the ripple component of 25 said rotation angle, and an angle speed signal which reduces the ripple component of said angle speed.
  14. 14
    The rotary detector (1) as described in Claim 1, said rotary calculator unit (C2, C2’) being provided in series in a plurality of levels.
  15. 15
    The rotary detector (1) as described in Claim 2, said phase adjusting section (49, 49\ 49) having a plurality of adjust phase values, and selectively outputting 5 one of said plurality of adjust phase values in accordance with a direction of the torque acting on said rotor.
  16. 16
    The rotary detector (1) as described in Claim 1, said gain adjusting section (49, 49’, 49”) varying said predetermined gain in accordance with external power in the gravitational direction acting on the rotor rotation axis (13) of said rotor.
Independent claims16