Intelligent somatic full-balance electric vehicle
09908579 ยท 2018-03-06
Assignee
Inventors
Cpc classification
Y02T10/64
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L2200/14
PERFORMING OPERATIONS; TRANSPORTING
B62K11/007
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L15/20
PERFORMING OPERATIONS; TRANSPORTING
B60L7/02
PERFORMING OPERATIONS; TRANSPORTING
B60L3/12
PERFORMING OPERATIONS; TRANSPORTING
B62K2204/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62K11/00
PERFORMING OPERATIONS; TRANSPORTING
B62J25/00
PERFORMING OPERATIONS; TRANSPORTING
B60L15/20
PERFORMING OPERATIONS; TRANSPORTING
B60L3/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An intelligent somatic full-balance electric vehicle comprises two wheels (11, 12) of a same size and a motor (4) disposed between the two wheels (11, 12), the two wheels (11, 12) being coaxially connected to the motor (4) through an axle (3); the intelligent somatic full-balance electric vehicle further comprises a control system (10) and a power supply (9); both the control system (10) and the power supply (9) are disposed inside a housing of the vehicle body and located above the wheels, or between the two wheels (11, 12); or one of the control system (10) and the power supply (9) is located between the two wheels (11, 12), and the other is located above the wheels; vertical columns (6) are separately disposed at two ends of the axle (3), and the vertical columns (6) are separately provided with pedals (5) on external sides of the wheels. Because the two coaxial wheels (11, 12) are used, the electric vehicle can implement full balance like a bicycle, and in addition, has unique advantages of a monocycle, namely, having a small size and being easy to carry.
Claims
1. An intelligent somatosensory full-balanced electric vehicle, characterized by comprising two wheels of the same size and one motor arranged between the two wheels, wherein the two wheels are coaxially connected to the motor via an axle; the intelligent somatosensory full-balanced electric vehicle further comprises a control system and a power supply, both of which are arranged inside a body housing and located above the wheels, or located between the two wheels, or one of the control system and the power supply is located between the two wheels and the other one is located above the wheels; each end of the axle is provided with a post which is provided with a foot rest located at an outer side of each of the two wheels.
2. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that a distance between tire centers of the two wheels is 3 cm to 12 cm, and a distance between the outer sides of the two wheels is less than or equal to 35 cm.
3. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that the center of gravity of the two wheels and the motor coincides with the geometric center.
4. The intelligent somatosensory full-balanced electric vehicle according to claim 3, characterized in that the center of gravity of the control system and the power supply is aligned with the center of gravity of a combination of the two wheels and the motor in a line directed to a center of gravity of Earth.
5. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that the motor is an in-wheel motor.
6. The intelligent somatosensory full-balanced electric vehicle according to claim 5, characterized in that three Hall sensors are equidistantly arranged on a coil of the in-wheel motor with an interval of 120 degrees.
7. The intelligent somatosensory full-balanced electric vehicle according to claim 2, characterized in that the distance between the tire centers of the two wheels is 5 cm to 10 cm.
8. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that a vehicle condition information display system is further arranged on the body housing.
9. The intelligent somatosensory full-balanced electric vehicle according to claim 8, characterized in that the vehicle condition information display system comprises an electric quantity information indicator of the power supply and/or an alarm system before power exhaustion.
10. The intelligent somatosensory full-balanced electric vehicle according to claim 8, characterized in that the vehicle condition information display system comprises an information indicator of a running distance or a remaining distance to be run.
11. The intelligent somatosensory full-balanced electric vehicle according to claim 8, characterized in that the vehicle condition information display system comprises a running speed indicator.
12. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that the control system comprises a somatosensory balanced system, an electrical control system and an information processing system.
13. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that the foot rest can be switched between an operating position and a storage position.
14. The intelligent somatosensory full-balanced electric vehicle according to claim 13, characterized in that when the foot rest is at the storage position, a magnet arranged in the foot rest oppositely attracts another magnet in the body housing for fixing the foot rest.
15. The intelligent somatosensory full-balanced electric vehicle according to claim 1, characterized in that a mounting position of the foot rest on the post can be adjusted up and down.
16. An intelligent electric vehicle, comprising: one motor having a center axle; two wheels mounting on the motor and rotating round the axle of the motor, wherein the motor is disposed between the two wheels; a body housing covering at least a topper of the two wheels; a control device arranged inside the body housing for receiving and transmitting signals between rider and the motor; a power supply arranged inside the body housing for supplying power to the motor; wherein, both of the control device and the power supply located above the wheels, or located between the two wheels, or one of the control system and the power supply is located between the two wheels and the other one is located above the wheels; each end of the center axle is provided with a post which is provided with a foot rest located at an outer side of each of the two wheels.
17. An intelligent somatosensory full-balanced electric vehicle, characterized by comprising two wheels parallel connected to one motor, wherein the motor joins wheel rims of the two wheels and has a center axle; the intelligent somatosensory full-balanced electric vehicle further comprises a control system and a power supply, both of which are arranged inside a body housing and located above the wheels, or located between the two wheels, or one of the control system and the power supply is located between the two wheels and the other one is located above the wheels; each end of the axle is provided with a post which is provided with a foot rest located at an outer side of each of the two wheels.
18. The intelligent somatosensory full-balanced electric vehicle according to claim 17, characterized in that a distance between tire centers of the two wheels is 3 cm to 12 cm, and a distance between the outer sides of the two wheels is less than or equal to 35 cm.
19. The intelligent somatosensory full-balanced electric vehicle according to claim 17, characterized in that the center of gravity of the two wheels and the motor coincides with the geometric center.
20. The intelligent somatosensory full-balanced electric vehicle according to claim 17, characterized in that the center of gravity of the control system and the power supply is aligned with the center of gravity of a combination of the two wheels and the motor in a line directed to a center of gravity of Earth.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings in the present invention are provided for the purpose of further illustration of the present invention, rather than limiting the scope of the present invention.
(2)
(3)
(4)
(5)
ILLUSTRATION OF THE REFERENCE NUMERALS
(6) 11first wheel, 12second wheel, 13axle, 4motor, 5foot rest, 6upright post, 7magnet buckle, 8body housing, 9power supply, 10control system, 13portable handle, 14charging interface, 15Hall sensor, 21power supply control switch, 22vehicle condition information display system, and 61through hole.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(7) Embodiments of the present invention are used for further explaining and illustrating the present invention, rather than limiting the inventive scope of the present invention.
(8)
(9) As shown in
(10) As shown in the
(11) One advantage of the structure in which the motor 4 is disposed between the first wheel 11 and the second wheel 12 is that the interior space of the motor 4 is available for effective use. Compared with the monocycle in the prior art having a single wheel, the intelligent somatosensory full-balanced electric vehicle features that the width of a rotor of the motor 4 is equivalent to and slightly greater than the width of the two wheels, while the width of a stator of the motor 4 is substantially equal to that of the stator of the motor of the monocycle in the prior art having the single wheel; therefore, the space between the rotor and stator of the motor 4 in the present invention is larger and allows required devices, such as a control circuit board, to be mounted, and even if no device is mounted, the heat dispersion of the motor can be enhanced. In addition, since the motor generates heat in the operating process, a gap is provided between the first wheel 11 and the second wheel 12 for convenient heat dispersion of the motor 4 and improving the heat dispersion efficiency. Thus, the motor needs a timely heat dispersion during the operating process so as to improve its operational performance.
(12) As shown in
(13) A continuous illustration of the structure of the intelligent somatosensory full-balanced electric vehicle in the present invention will be given below in combination with
(14) The intelligent somatosensory full-balanced electric vehicle of the present invention has the advantages of both a monocycle and a two-wheeled vehicle in the prior art. Being provided with two wheels, the intelligent somatosensory full-balanced electric vehicle can keep balance in the left-right direction. Since the two wheels are close to each other, and foot rests are arranged at the outer sides of the wheels, the intelligent somatosensory full-balanced electric vehicle is similar to the monocycle in structure and has advantages of small size and light weight. More importantly, compared with the existing intelligent somatosensory balance electric vehicle, the intelligent somatosensory full-balanced electric vehicle is more energy-saving, and improves the maneuverability and stability. Compared with the monocycle intelligent somatosensory balance vehicle in the prior art, the size and external configuration are slightly changed. However, the intelligent somatosensory full-balanced electric vehicle of the present invention consists of two wheels which form two fulcrums with the ground, and the two fulcrums form a stable three-point balance with a balance point in the running direction of the vehicle body, so that the electric vehicle of the present invention stays at a full-balanced state. Being different from a dual-wheel intelligent somatosensory balance vehicle of the prior art, the intelligent somatosensory full-balanced electric vehicle of the present invention is provided with only one motor coaxially connected with the two wheels, so that single-motor dual-wheel driving and dual-wheel braking can be realized.
(15) By means of countless experimental researches, the inventor of the present invention discovers that when two wheels of the intelligent somatosensory full-balanced electric vehicle of the present invention are coaxially connected with the motor and a geometric center thereof is overlapped with the center of gravity, the performances of control, stability and energy-saving are optimal.
(16) By means of experiments, the inventor of the present invention discovers that the maneuverability of the intelligent somatosensory electric vehicle of the present invention can be better by raising the center of gravity of the overall vehicle. A control system 10 and a power supply 9 are arranged inside a body housing 8 above the two wheels by the inventor of the present invention, so that the maneuverability of the intelligent somatosensory full-balanced electric vehicle can be improved.
(17) The principle is that when a rider controls the acceleration or deceleration, the arm of force is increased due to the rising of the center of gravity, and the control force needed by the rider is decreased. The control speed for the rider to change the running state of the vehicle body is also decreased at the same time. Compared with a solution that the control system and the power supply are separately arranged at two sides of the wheels, the present invention is more energy-saving, and the principle thereof is that the time for balance compensation after the vehicle body is sensed as losing balance can be shortened relatively by the intelligent somatosensory electric vehicle of the present invention, so that the electric energy loss is directly saved.
(18) The body housing 8 comprises a portable handle 13 to facilitate a carriage. The body housing 8 is further provided with a charging interface 14, a power supply control switch 21 and a vehicle condition information display system 22; after the power supply switch 21 is turned on, the vehicle condition information display system 22 can display the vehicle body condition immediately, and can comprise electric quantity information and/or an alarm system before power exhaustion, and can further comprise an information indicator for a running distance or a remaining distance to be run for the electric vehicle; the vehicle condition information display system 22 can further comprise a running speed indicator. All information can be displayed by the LED. In addition, the body housing 8 can be further provided with an LED lamp for decoration, or illumination or indication during night riding.
(19) As shown in
(20) In the intelligent somatosensory full-balanced electric vehicle of the present invention, the control system includes a somatosensory balanced system, an electrical control system, an information processing system, etc., wherein, the somatosensory balanced system, the electrical control system and the information processing system are the same as those in a monocycle or a two-wheeled vehicle in the prior art, thus their operating processes are not repeated. However, the control system of the two-wheeled intelligent somatosensory full-balanced electric vehicle does not need a two-wheeled differential speed control system.
(21) The term full-balanced in the present invention means not only to achieve a dynamic balance in the forward direction of the electric vehicle, but also to achieve dynamic and static balances in a direction perpendicular to the forward direction.
(22) Of course, the above descriptions are preferred embodiments of the present invention. It should be noted that those skilled in the art can make some improvements and modifications without deviating from the principle of the present invention, and those improvements and modifications are also deemed as falling within the protection scope of the present invention.