Haptic feedback generation based on resonant frequency
US-9513709-B2 · Dec 6, 2016 · US
US9800180B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9800180-B2 |
| Application number | US-201615046313-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 17, 2016 |
| Priority date | Nov 26, 2010 |
| Publication date | Oct 24, 2017 |
| Grant date | Oct 24, 2017 |
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Information regarding a rotational speed is detected by utilizing a variation in the amplitude at a frequency corresponding to the number of a plurality of protrusions of a vibrating member generated in an S-phase signal detected from a vibration detection electrode of a vibration-type actuator.
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The invention claimed is: 1. A control apparatus of a vibration-type actuator that relatively rotates a vibrator and a member that is in contact with a plurality of protrusions of the vibrator by applying an alternating voltage to an electromechanical energy conversion element of the vibrator, the control apparatus comprising: a repetitive controller that performs repetition control on a detection signal in order to detect information regarding a frequency corresponding to a number of the plurality of protrusions, wherein the detection signal is output from a vibration detection electrode of the vibrator, wherein a repetition period of the repetitive controller is set to a reciprocal of a frequency represented by a product of the number of the plurality of protrusions and a target speed or to half the reciprocal, wherein information regarding a relative speed of the vibrator and the member is obtained using information regarding the frequency corresponding to the number of the plurality of protrusions, and wherein the information regarding the relative speed is provided in a feedback control for controlling the vibration-type actuator. 2. The control apparatus of the vibration-type actuator according to claim 1 further comprising: a converter for reducing a drive frequency component of the detection signal. 3. The control apparatus of the vibration-type actuator according to claim 1 further comprising: an amplitude detector that detects an amplitude of an output signal of the repetitive controller when a frequency of the alternating voltage is swept; and a pulse generator that sets a frequency at which the amplitude is largest as the frequency of the alternating voltage. 4. The control apparatus of the vibration-type actuator according to claim 1 , wherein the information regarding the relative speed is obtained using a relation among the information regarding the relative speed, the number of the plurality of protrusions, and the information regarding the frequency corresponding to the number of the plurality of protrusions. 5. The control apparatus of the vibration-type actuator according to claim 1 , wherein the vibration-type actuator is a circular vibration-type actuator. 6. The control apparatus of the vibration-type actuator according to claim 1 , wherein the vibration-type actuator is a rod-shaped vibration-type actuator. 7. An apparatus comprising: a vibration-type actuator for relatively rotating a vibrator and a member; and a controller for controlling the vibration-type actuator, wherein the controller is the control apparatus according to claim 1 . 8. A control apparatus of a vibration-type actuator that relatively rotates a vibrator and a member that is in contact with a plurality of protrusions of the vibrator by applying an alternating voltage to an electromechanical energy conversion element of the vibrator, the control apparatus comprising: a Fourier transformer that performs a frequency analysis on a detection signal; and a repetitive controller that performs repetition control on the detection signal in order to detect information regarding a frequency corresponding to a number of the plurality of protrusions, wherein the detection signal is output from a vibration detection electrode of the vibrator, wherein a repetition period of the repetitive controller is set to a reciprocal of a frequency at which an amplitude detected by the frequency analysis is largest or to half the reciprocal, and wherein information regarding a relative speed of the vibrator and the member is obtained using the information regarding the frequency corresponding to the number of the plurality of protrusion, wherein the information regarding the relative speed is provided in a feedback control for controlling the vibration-type actuator. 9. A control apparatus of a vibration-type actuator that relatively rotates a vibrator and a member that is in contact with a plurality of protrusions of the vibrator by applying an alternating voltage to an electromechanical energy conversion element of the vibrator, the control apparatus comprising: amplifier for amplifying a signal component of a detection signal in order to detect information regarding a frequency corresponding to a number of the plurality of protrusions, wherein the detection signal is output from a vibration detection electrode of the vibrator, wherein a frequency of the signal component is represented by a product of the number of the plurality of protrusions and a target speed, wherein information regarding a relative speed of the vibrator and the member is obtained using the information regarding the frequency corresponding to the number of the plurality of protrusions, and wherein the information regarding the relative speed of the vibrator and the member is provided in a feedback control for controlling the vibration-type actuator. 10. A control apparatus of a vibration-type actuator that relatively rotates a vibrator and a member that is in contact with a plurality of protrusions of the vibrator by applying an alternating voltage to an electromechanical energy conversion element of the vibrator, the control apparatus comprising: a filter for extracting a signal component from a detection signal in order to detect information regarding a frequency corresponding to a number of the plurality of protrusions, wherein the detection signal is output from a vibration detection electrode of the vibrator, wherein a frequency of the signal component is represented by a product of the number of the plurality of protrusions and a target speed, wherein information regarding a relative speed of the vibrator and the member is obtained using the information regarding the frequency corresponding to the number of the plurality of protrusions, and wherein the information regarding the relative speed is provided in a feedback control for controlling the vibration-type actuator.
Drive circuits; Control arrangements {or methods} · CPC title
Means for controlling vibration frequency or phase, e.g. for resonance tracking · CPC title
Small signal circuits; Means for controlling position or derived quantities, e.g. speed, torque, starting, stopping, reversing · CPC title
by pressing one or more vibrators against the rotor · CPC title
Motors with ring stator · CPC title
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