Tilt control system
US-2024400150-A1 · Dec 5, 2024 · US
US11198482B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11198482-B2 |
| Application number | US-201816605160-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 20, 2018 |
| Priority date | Jun 27, 2017 |
| Publication date | Dec 14, 2021 |
| Grant date | Dec 14, 2021 |
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An oscillation-type vehicle includes a front vehicle body that suspends a front wheel in a steerable manner, a rear vehicle body that suspends left and right drive wheels, and an oscillation mechanism that causes the front vehicle body and the rear vehicle body to oscillate relative to each other. The oscillation-type vehicle being capable of carrying out drive control of the left and right drive wheels such that the drive wheels behave differently from each other in response to oscillation of the oscillation-type vehicle, wherein the drive control of the left and right drive wheels is carried out using information on the oscillation and information on a speed of vehicle.
Opening claim text (preview).
The invention claimed is: 1. A vehicle comprising: a processor, a front vehicle body that suspends a front wheel in a steerable manner; a rear vehicle body that suspends left and right drive wheels; and an oscillation mechanism that causes the front vehicle body and the rear vehicle body to oscillate relative to each other, the processor carries out drive control of the left and right drive wheels such that the drive wheels behave differently from each other in response to oscillation of the vehicle, wherein the processor carries out the drive control of the left and right drive wheels using information on the oscillation and information on a speed of vehicle, the drive control includes determining propensities causing increase in a rotational force of an outer wheel of the left and right drive wheels relative to a rotational force of an inner wheel at the time of turn maneuvering with oscillation in response to a propensity of increase in an oscillation angle according to the information on the oscillation, and when a change in an oscillation angular velocity of oscillation according to the information on the oscillation is larger than a predetermined frequency, the processor controls the rotational force of the outer wheel and the rotational force of the inner wheel to be equal to each other. 2. The vehicle according to claim 1 , wherein the information on the oscillation is detected on an oscillation shaft of the oscillation mechanism. 3. The vehicle according to claim 2 , wherein the oscillation mechanism is a Neidhart mechanism, and the information on the oscillation is sensing information of an angle sensor provided on the oscillation shaft of the Neidhart mechanism. 4. The vehicle according to claim 1 , wherein the propensities causing the increase in the rotational force of the outer wheel relative to the rotational force of the inner wheel vary depending on the speed of vehicle. 5. The vehicle according to claim 1 , wherein, when the oscillation angle according to the information on the oscillation is equal to or smaller than a predetermined angle, the rotational force of the outer wheel and the rotational force of the inner wheel are controlled to be equal to each other. 6. The vehicle according to claim 1 , wherein the drive control includes driving the drive wheels such that an inner/outer wheel speed ratio, which is a ratio of an actual speed of an outer wheel to an actual speed of an inner wheel, becomes larger than a theoretical value, which is a ratio of a speed of the outer wheel to a speed of the inner wheel and is estimated from an oscillation angle of the vehicle, the speed of vehicle, and a wheel distance between the left and right drive wheels. 7. A vehicle comprising: a processor, a front vehicle body that suspends a front wheel in a steerable manner; a rear vehicle body that suspends left and right drive wheels; and an oscillation mechanism that causes the front vehicle body and the rear vehicle body to oscillate relative to each other, the processor carries out drive control of the left and right drive wheels such that the drive wheels behave differently from each other in response to oscillation of the vehicle, wherein the processor carries out the drive control of the left and right drive wheels using information on the oscillation and information on a speed of vehicle, the drive control includes determining propensities causing increase in a rotational force of an outer wheel of the left and right drive wheels relative to a rotational force of an inner wheel at the time of turn maneuvering with oscillation in response to a propensity of increase in an oscillation angle according to the information on the oscillation, and propensities causing the rotational force of the outer wheel to increase relative to the rotational force of the inner wheel causes the rotational force of the outer wheel to increase relative to the rotational force of the inner wheel when oscillation in one direction is started and a reference oscillation angle is exceeded, and the amount of increase is large at an initial stage of increase and gradually decreases. 8. A vehicle comprising: a processor, a front vehicle body that suspends a front wheel in a steerable manner; a rear vehicle body that suspends left and right drive wheels; and an oscillation mechanism that causes the front vehicle body and the rear vehicle body to oscillate relative to each other, the processor carries out drive control of the left and right drive wheels such that the drive wheels behave differently from each other in response to oscillation of the vehicle, wherein the processor carries out the drive control of the left and right drive wheels using information on the oscillation and information on a speed of vehicle, wherein the drive control includes determining propensities causing increase in a rotational force of an outer wheel of the left and right drive wheels relative to a rotational force of an inner wheel at the time of turn maneuvering with oscillation in response to a propensity of increase in an oscillation angle according to the information on the oscillation, the information on the oscillation includes an oscillation angular velocity, and a propensity causing the rotational force of the outer wheel to increase relative to the rotational force of the inner wheel causes the rotational force of the outer wheel to increase relative to the rotational force of the inner wheel in proportion to increase in the oscillation angular velocity.
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