Gerbilling-proof mono wheel vehicle
11459051 ยท 2022-10-04
Assignee
Inventors
Cpc classification
B62M6/00
PERFORMING OPERATIONS; TRANSPORTING
B62K11/007
PERFORMING OPERATIONS; TRANSPORTING
B62L3/00
PERFORMING OPERATIONS; TRANSPORTING
B62K5/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62K11/00
PERFORMING OPERATIONS; TRANSPORTING
B62M6/00
PERFORMING OPERATIONS; TRANSPORTING
B62J45/40
PERFORMING OPERATIONS; TRANSPORTING
B62L3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A gerbilling-proof monowheel vehicle comprises: (a) a wheel felloe with a tire thereon; (b) a frame rotatably mounted within the wheel felloe; the frame carrying a passenger seat; (c) moving means configured for propelling the gerbilling-proof monowheel vehicle; and (d) braking means configured for decelerating the gerbilling-proof monowheel vehicle. The gerbilling-proof monowheel further comprises at least two auxiliary wheels side-mounted on the frame for vertically stabilizing the passenger seat and preventing the gerbilling-proof monowheel from side tipover and maintaining said passenger seat in a horizontal position within said wheel felloe.
Claims
1. A gerbilling-proof monowheel vehicle comprising: a. a wheel felloe with a tire thereon; b. a frame rotatably mounted within said wheel felloe; said frame carrying a passenger seat; c. moving means configured for propelling said gerbilling-proof monowheel vehicle; d. braking means configured for decelerating said gerbilling-proof monowheel vehicle; e. at least two auxiliary wheels side-mounted on said frame vertically; f. a control unit; g. a servo mechanism attached to said at least two auxiliary wheels; wherein said at least two auxiliary wheels are used to stabilize said vehicle and to prevent said gerbilling-proof monowheel from tipping sideways and to maintain said passenger seat in a horizontal position within said wheel felloe; and wherein said at least two auxiliary wheels are synchronically displaceable opposite to a direction of movement when said gerbilling-proof monowheel vehicle is accelerated and along said direction of movement when said gerbilling-proof monowheel vehicle is decelerated; and wherein said servo mechanism is controllable by said control unit and configured for synchronically displacing said at least two auxiliary wheels according to a detected acceleration.
2. The gerbilling-proof monowheel vehicle according to claim 1, wherein said at least two auxiliary wheels are inclinable relative to said felloe during a turning maneuver.
3. The gerbilling-proof monowheel vehicle according to claim 1, wherein said frame comprises a plurality of rollers running along said felloe.
4. The gerbilling-proof monowheel vehicle according to claim 1, wherein said moving means comprises at least one mover selected from a group consisting of an electric motor, an internal combustion engine, a human-powered mover and any combination thereof; said at least two auxiliary wheels are individually driven by said moving means.
5. The gerbilling-proof monowheel vehicle according to claim 1, wherein said wheel felloe has a diameter ranging between 0.5 m and 4 m.
6. The gerbilling-proof monowheel vehicle according to claim 5, wherein said wheel felloe has said diameter of 2 m.
7. The gerbilling-proof monowheel vehicle according to claim 1, wherein the passenger seat is the only passenger seat carried by said frame.
8. The gerbilling-proof monowheel vehicle according to claim 1 further comprising a mechanism for mechanical displacing of said at last two auxiliary wheels.
9. The gerbilling-proof monowheel vehicle according to claim 1, wherein said servo mechanism comprises an articulated arm configured for manipulating one of said at least two auxiliary wheels.
10. The gerbilling-proof monowheel vehicle according to claim 1, wherein said servo mechanism comprises a guideway and a slide configured to enable translation of at least one of said at least two auxiliary wheels along said guideway and slide.
11. The gerbilling-proof monowheel vehicle according to claim 1, wherein said servo mechanism comprises a hydraulic cylinder configured for manipulating said at least two auxiliary wheels.
12. The gerbilling-proof monowheel vehicle according to claim 1, wherein said control unit is configured for dynamically controlling a position of said at least two auxiliary wheels according to at least one parameter selected from a group consisting of a passenger weight, a road condition, a vehicle speed and any combination thereof.
13. The gerbilling-proof monowheel vehicle according to claim 1 further comprising at least one sensor selected from a group consisting of a gyroscope, an accelerometer, an imager and any combination thereof; said at least one sensor is connected to said control unit.
14. The gerbilling-proof monowheel vehicle according to claim 1, wherein said braking means is based on a friction mechanism.
15. The gerbilling-proof monowheel vehicle according to claim 1, wherein said braking means is based on an electromagnetic mechanism.
16. A method of using a gerbilling-proof monowheel vehicle; said method comprising steps of: a. providing said gerbilling-proof monowheel vehicle consisting: i. a wheel felloe with a tire thereon; ii. a frame rotatably mounted within said wheel felloe; said frame carrying a passenger seat; iii. moving means configured for propelling said gerbilling-proof monowheel vehicle; iv. braking means configured for decelerating said gerbilling-proof monowheel vehicle; v. at least two auxiliary wheels side-mounted on said frame vertically; vi. a control unit; vii. a servo mechanism controllable by said control unit; wherein said at least two auxiliary wheels are used to stabilize said vehicle and to prevent said gerbilling-proof monowheel from tipping sideways and to maintain said passenger seat in a horizontal position within said wheel felloe; and wherein said at least two auxiliary wheels are synchronically displaceable opposite to a direction of movement when said gerbilling-proof monowheel vehicle is accelerated and along said direction of movement when said gerbilling-proof monowheel vehicle is decelerated; and wherein said servo mechanism is controlled by said control unit and configured for synchronically displacing said at least two auxiliary wheels according to a detected acceleration; b. driving said gerbilling-proof monowheel vehicle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to understand the invention and to see how it may be implemented in practice, a plurality of embodiments is adapted to now be described, by way of non-limiting example only, with reference to the accompanying drawings, in which
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DETAILED DESCRIPTION OF THE INVENTION
(7) The following description is provided, so as to enable any person skilled in the art to make use of the invention and sets forth the best modes contemplated by the inventor of carrying out this invention. Various modifications, however, are adapted to remain apparent to those skilled in the art, since the generic principles of the present invention have been defined specifically to provide a gerbilling-proof monowheel vehicle and a method of using the same.
(8) Driving in the metropolitan area requires handling challenges such as heavy traffic, narrow, difficult to maneuver streets and shortage of parking space. The present invention relates to a passenger vehicle suited to meet these challenges.
(9) The present invention is designed for preventing the gerbilling-proof monowheel vehicle from deviation from equilibrium position forward when decelerated and backward when accelerated.
(10) Reference is now made to
(11) A diameter of felloe 10 is between 0.5 m and 4 m. The preferable embodiment of the present invention corresponds to the diameter of about 2 m. Gerbilling-proof monowheel vehicle 100 is provided with one or two passenger seats 19 (
(12) Reference is now made to
(13) Reference is now made to
(14) Braking means can control the felloe and/or auxiliary wheels in order to minimize relative speed differences between them during acceleration and braking. Friction-based and electromagnetic brakes are in the scope of the present invention. The control unit can the value of deceleration to maintain the vehicle directionally stable. During deceleration, kinetic energy may be transformed to electric energy and used to charge the vehicle's battery.
(15) Reference is now made to
(16) According to the present invention a gerbilling-proof monowheel vehicle comprises: (a) a wheel felloe with a tire thereon; (b) a frame rotatably mounted within the wheel felloe; the frame carrying a passenger seat; (c) moving means configured for propelling the gerbilling-proof monowheel vehicle; and (d) braking means configured for decelerating the gerbilling-proof monowheel vehicle.
(17) It is a core feature of the invention to provide the the gerbilling-proof monowheel further comprising at least two auxiliary wheels side-mounted on the frame for vertically stabilizing the passenger seat and preventing the gerbilling-proof monowheel from side tipover and maintaining said passenger seat in a horizontal position within said wheel felloe.
(18) According to one embodiment of the present invention, the auxiliary wheels are synchronically displaceable opposite to a direction of movement when the gerbilling-proof monowheel vehicle is accelerated and along the direction of movement when the gerbilling-proof monowheel vehicle is decelerated.
(19) According to a further embodiment of the present invention, the auxiliary wheels are inclinable relative to the folloe during a turning maneuver.
(20) According to a further embodiment of the present invention, the frame comprises a plurality of rollers running along the felloe.
(21) According to a further embodiment of the present invention, the moving means comprises at least one mover selected from the group consisting of an electric motor, an internal combustion engine, a human-powered mover and any combination thereof, the auxiliary wheels are individually driven by the moving means.
(22) According to a further embodiment of the present invention, the wheel felloe has a diameter ranging between 0.5 m and 4 m.
(23) Another object of the invention is to disclose the wheel felloe having the diameter of 2 m.
(24) According to a further embodiment of the present invention, the gerbilling-proof monowheel vehicle comprises two side-mounted passenger seats mechanically connected to the frame.
(25) A further object of the invention is to disclose the gerbilling-proof monowheel vehicle comprising a mechanism of mechanical displacement of the auxiliary wheels in a manual manner.
(26) According to a further embodiment of the present invention, the gerbilling-proof monowheel vehicle comprises a control unit configured for detecting an acceleration applied to the gerbilling-proof monowheel vehicle and a servo mechanism controlled by the control unit and configured for synchronically displacing the auxiliary wheels according to a detected acceleration.
(27) According to a further embodiment of the present invention, the servo mechanism comprises an articulated arm configured for manipulating for the auxiliary wheel.
(28) A further object of the invention is to disclose the the servo mechanism comprising a guideway and a slide carrying the auxiliary wheel and movable within the guideway.
(29) According to a further embodiment of the present invention, the servo mechanism comprises a hydraulic cylinder configured for manipulating the auxiliary wheel.
(30) According to a further embodiment of the present invention, the control unit is configured for dynamically controlling a position of the auxiliary wheels according at least one parameter selected from the group consisting of a passenger weight, a road condition, a vehicle speed and any combination thereof.
(31) According to a further embodiment of the present invention, the gerbilling-proof monowheel vehicle comprises at least one sensor selected from the group consisting of a gyroscope, an accelerometer, an imager and any combination thereof, the at least one sensor is connected to the control unit.
(32) According to a further embodiment of the present invention, the braking means is based on a friction mechanism.
(33) According to a further embodiment of the present invention, the braking means is based on an electromagnetic mechanism.
(34) According to a further embodiment of the present invention, a method of using a gerbilling-proof monowheel vehicle is disclosed. The aforesaid method comprises steps of: (a) providing the gerbilling-proof monowheel vehicle comprising: (i) a wheel felloe with a tire thereon; (ii) a frame rotatably mounted within the wheel felloe; the frame carrying a passenger seat; (iii) moving means configured for propelling the gerbilling-proof monowheel vehicle; and (iv) braking means configured for decelerating the gerbilling-proof monowheel vehicle; the gerbilling-proof gerbilling-proof monowheel further comprises at least two auxiliary wheels side-mounted on the frame for stabilizing the passenger seat in a vertical position and preventing the gerbilling-proof monowheel from side tipover and maintaining said passenger seat in a horizontal position within said wheel felloe; (b) driving the gerbilling-proof monowheel vehicle.