Automatic parking system and parking and unparking method thereof
10883289 ยท 2021-01-05
Assignee
Inventors
Cpc classification
E04H6/225
FIXED CONSTRUCTIONS
International classification
Abstract
The present invention discloses an automatic parking system including an in-out space, a plurality of parking spaces arranged at multiple parking levels, a pickup machine, and a lifting tunnel with a lifting device disposed therein. The pickup machine includes a frame which includes a first frame and a second frame, a first pickup device and a second pickup device. The first pickup device is configured to move a loading board onto the first frame or out from the first frame. The second pickup device is configured to move the loading board onto the second frame or out from the second frame. The lifting device is configured to convey the pickup machine up and down in the lifting tunnel. The present invention also discloses a parking and unparking method of the automatic parking system. The parking and unparking efficiency of the automatic parking system of the present invention is greatly improved.
Claims
1. An automatic parking system, comprising: an in-out space; a plurality of parking spaces arranged at multiple parking levels; a pickup machine, the pickup machine comprising a frame which comprises a first frame and a second frame at different heights, a first pickup device and a second pickup device, the first pickup device being configured to move a loading board onto the first frame or out from the first frame, the second pickup device being configured to move the loading board onto the second frame or out from the second frame; and a lifting tunnel with a lifting device disposed therein for conveying the pickup machine up and down; wherein a bottom of the loading board forms a friction board extending along a moving direction of the loading board, at least one of the first pickup device and the second pickup device comprises a movable mounting body disposed in the first frame or the second frame and movable along a longitudinal direction thereof, a pair of friction wheels disposed in a longitudinal outer side of the movable mounting body and capable of approaching to or departing from each other, a friction driving mechanism for driving the two friction wheels to rotate in opposite directions so as to move the friction board clamped in the two friction wheels, and a micro-motion mechanism for driving the movable mounting body to move along the longitudinal direction of the movable mounting body so as to move the friction board into or away from between the two friction wheels; wherein the micro-motion mechanism comprises a second driving motor, a driving gear connected with an output end of the second driving motor, and a rack extending along a moving direction of the movable mounting body and engaging with the driving gear, the rack is connected with the movable mounting body for driving the movable mounting body.
2. The automatic parking system according to claim 1, wherein the friction driving mechanism comprises a chainwheel transmission assembly disposed in the movable mounting body and a first driving motor for driving the chainwheel transmission assembly, the chainwheel transmission assembly comprises two driven chainwheels coaxial with the respective friction wheels, a driving chainwheel connected with an output end of the first driving motor, and a chain disposed on the driving chainwheel and the two driven chainwheels.
3. The automatic parking system according to claim 1, wherein the frame further comprises guiding beams mounted on two transverse sides of at least one of the first frame and the second frame, each guiding beam has multiple vertical guiding wheels and multiple horizontal guiding wheels disposed therein, two transverse side surfaces of the movable mounting body contact with the corresponding vertical guiding wheels, two transverse sides of the movable mounting body are disposed on the corresponding horizontal guiding wheels.
4. The automatic parking system according to claim 1, wherein the frame further comprises a connecting structure connecting the first frame and the second frame, the pickup machine further comprises two transverse moving devices disposed at two longitudinal sides of the frame, the lifting device comprises a lifting tray with transverse tracks and a lifting driving assembly for driving the lifting tray to move vertically, and the pickup machine is capable of being driven to move along the transverse tracks by the transverse moving device.
5. The automatic parking system according to claim 4, wherein the transverse moving device comprises a third driving motor, a driving wheel assembly, a driven wheel assembly and a transverse connecting rod, an output end of the third driving motor is connected with the driving wheel assembly, the driving wheel assembly and the driven wheel assembly are mounted on two ends of the transverse connecting rod, the rotation of the driving wheel assembly is transmitted to the driven wheel assembly by the transverse connecting rod.
6. The automatic parking system according to claim 1, wherein the second frame is under the first frame and is configured to place the loading board without load.
7. A parking and unparking method, comprising: providing the automatic parking system according to claim 1; moving the loading board with a vehicle thereon in the in-out space to access the first frame; moving the second frame to a height corresponding to the in-out space; moving the loading board without load on the second frame to access the in-out space; moving the loading board with the vehicle thereon to a height corresponding to the corresponding parking space; moving the loading board with the vehicle thereon to access the corresponding parking space; moving the loading board without load in the in-out space to access one of the first frame and the second frame, once receiving an unparking order; moving the other of the first frame and the second frame to the height corresponding to the corresponding parking space; moving the loading board with the vehicle thereon in the corresponding parking space to access the other of the first frame and the second frame; moving the loading board with the vehicle thereon to the height corresponding to the in-out space; and moving the loading board with the vehicle thereon to access the in-out space.
8. An automatic parking system, comprising: an in-out space; a plurality of parking spaces arranged at multiple parking levels; a pickup machine, the pickup machine comprising a frame which comprises a first frame and a second frame at different heights, a first pickup device and a second pickup device, the first pickup device being configured to move a loading board onto the first frame or out from the first frame, the second pickup device being configured to move the loading board onto the second frame or out from the second frame; and a lifting tunnel with a lifting device disposed therein for conveying the pickup machine up and down; wherein a bottom of the loading board forms a friction board extending along a moving direction of the loading board, at least one of the first pickup device and the second pickup device comprises a movable mounting body disposed in the first frame or the second frame and movable along a longitudinal direction thereof, a pair of friction wheels disposed in a longitudinal outer side of the movable mounting body and capable of approaching to or departing from each other, a friction driving mechanism for driving the two friction wheels to rotate in opposite directions so as to move the friction board clamped in the two friction wheels, and a micro-motion mechanism for driving the movable mounting body to move along the longitudinal direction of the movable mounting body so as to move the friction board into or away from between the two friction wheels; wherein the frame further comprises guiding beams mounted on two transverse sides of at least one of the first frame and the second frame, each guide beam has multiple vertical guiding wheels and multiple horizontal guiding wheels disposed therein, two transverse side surfaces of the movable mounting body contact with the corresponding vertical guiding wheels, two transverse sides of the movable mounting body are disposed on the corresponding horizontal guiding wheels.
9. An automatic parking system, comprising: an in-out space; a plurality of parking spaces arranged at multiple parking levels; a pickup machine, the pickup machine comprising a frame which comprises a first frame and a second frame at different heights, a first pickup device and a second pickup device, the first pickup device being configured to move a loading board onto the first frame or out from the first frame, the second pickup device being configured to move the loading board onto the second frame or out from the second frame; and a lifting tunnel with a lifting device disposed therein for conveying the pickup machine up and down; wherein the frame further comprises a connecting structure connecting the first frame and the second frame, the pickup machine further comprises two transverse moving devices disposed at two longitudinal sides of the frame, the lifting device comprises a lifting tray with transverse tracks and a lifting driving assembly for driving the lifting tray move vertically, and the pickup machine is capable of being driven to move along the transverse tracks by the transverse moving device; wherein the transverse moving device comprises a third driving motor, a driving wheel assembly, a driven wheel assembly and a transverse connecting rod, an output end of the third driving motor is connected with the driving wheel assembly, the driving wheel assembly and the driven wheel assembly are mounted on two ends of the transverse connecting rod, the rotation of the driving wheel assembly is transmitted to the driven wheel assembly by the transverse connecting rod.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings facilitate an understanding of the various embodiments of this invention. In such drawings:
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DETAILED DESCRIPTION OF ILLUSTRATED EMBODIMENTS
(9) A distinct and full description of the technical solution of the present invention will follow by combining with the accompanying drawings.
(10) Referring to
(11) As shown in
(12) It should be noted, in this embodiment, both the first pickup device 5 and the second pickup device 6 move the loading board 9 by way of the movable mounting body 51 moving to the bottom of the loading board 9 and then the friction wheels 52 engaging with the friction board 91, which should not be a limitation to the present invention. For example, the first pickup device 5 and the second pickup device 6 may be different forms and may move the loading board 9 by other ways.
(13) Preferably, in this embodiment, in order to adapt to the automatic parking system 100 with parking spaces 2 at two opposite sides of the pickup machine 4, each of the first pickup device 5 and the second pickup device 6 has two pair of friction wheels 52 disposed in two longitudinal outsides of the corresponding movable mounting body 51, and two friction driving mechanisms 53 for driving the two pair of friction wheels 52.
(14) Referring to
(15) In this embodiment, the friction driving mechanism 53 further includes a tensioning assembly 533 disposed in the transmission route of the chain 5313 for tensioning the chain 5313 and a redirection chainwheel 534 disposed in the transmission route of the chain 5313 and adjacent to one of the driven chainwheels 5311. Because the tensioning assembly 533 can adjust the tensioning degree of the chain 5313, the chain 5313 and the chainwheels can run more stably.
(16) Referring to
(17) Referring to
(18) More specifically, the frame 41 further includes a connecting structure 416 connecting the first frame 411 and the second frame 412 so as to achieve a linkage of the first frame 411 and the second frame 412. In this embodiment, a positioning mechanism 417 disposed in the frame 41 for positioning the loading board 9. Specifically, two positioning mechanisms 417 are disposed in four corners of the frame 41.
(19) Referring to
(20) Specifically, the transverse moving device 7 includes a third driving motor 71, a driving wheel assembly 72, a driven wheel assembly 73 and a transverse connecting rod 74, an output end of the third driving motor 71 is connected with the driving wheel assembly 72, the driving wheel assembly 72 and the driven wheel assembly 73 are mounted on two ends of the transverse connecting rod 74, the rotation of the driving wheel assembly 72 is transmitted to the driven wheel assembly 73 by the transverse connecting rod 74.
(21) In this embodiment, the third driving motor 71 is disposed in the first frame 411 for reducing the size of the pickup machine 4, which should not be a limitation.
(22) In this embodiment, the second frame 412 is under the first frame 411 and is configured to place the loading board 9 without load, the first frame 411 is configured to place the loading board 9 with the vehicle 92 thereon. Because the second frame 412 under the first frame 411 is configured to place the loading board 9 without load, the distance between the first frame 411 and the second frame 412 can be very small, thus the pickup machine 4 has a substantially same occupied space as the previous pickup machine and then has a stable and reliable overall structure.
(23) In this embodiment, the automatic parking system 100 includes two in-out spaces 1, each of the in-out spaces 1 disposes a rotating tray 11 therein for moving the vehicle 92 into or out from the automatic parking system 100. The rotating tray 11 can rotate the vehicle 92 90 degrees, which should not be a limitation.
(24) The present invention further provides a parking and unparking method, which includes: (1) move the loading board 9 with the vehicle 92 thereon in the in-out space 1 to access the first frame 411; (2) move the second frame 412 to a height corresponding to the in-out space 1 by the lifting device 3; (3) move the loading board 9 without load on the second frame 412 to access the in-out space 1; (4) move the loading board 9 with the vehicle 92 thereon to a height corresponding to the corresponding parking space 2 by the lifting device 3; (5) move the loading board 9 with the vehicle 92 thereon to access the corresponding parking space 2; (6) move the loading board 9 without load in the in-out space 1 to access one of the first frame 411 and the second frame 412, once receiving an unparking order; (7) move the other of the first frame 411 and the second frame 412 to the height corresponding to the corresponding parking space 2; (8) move the loading board 9 with the vehicle 92 thereon in the corresponding parking space 2 to access the other of the first frame 411 and the second frame 412; (9) move the loading board 9 with the vehicle 92 thereon to the height corresponding to the in-out space 1; (10) moving the loading board 9 with the vehicle 92 thereon to access the in-out space 1.
(25) Before steps (1) and (5), if the first frame 411 is not at the same height with the in-out space 1, the lifting device 3 moves the first frame 411 to the same height with the in-out space 1.
(26) Preferably, the second frame 412 is under the first frame 411 and is configured to place the loading board 9 without load, the first frame 411 is configured to place the loading board 9 with the vehicle 92 thereon.
(27) In comparison with the prior art, the automatic parking system 100 of the present invention includes the first frame 411, the second frame 412, the first pickup device 5 and the second pickup device 6. When parking, the first frame 411 is configured to place the loading board 9 with the vehicle 92 thereon got from the in-out space 1, the loading board 9 without load placed on the second frame 412 is moved into the in-out space 1, which saves the time for getting the loading board 9 without load from a parking space 2, so the parking time of the automatic parking system 100 is greatly reduced. When unparking, the loading board 9 without load placed in the in-out space 1 is moved onto one of the first frame 411 and the second frame 412, then the other of the first frame 411 and the second frame 412 is moved to the height corresponding to the corresponding parking space 2 so as to get the loading board 9 with the vehicle 92 thereon from the corresponding parking space 2, which saves the time for storing the loading board 9 without load, so the unparking time of the automatic parking system 100 is greatly reduced. Therefore, the parking and unparking efficiency of the automatic parking system 100 of the present invention is greatly improved. In addition, the second frame 412 is under the first frame 411 is configured to place the loading board 9 without load, then the distance between the first frame 411 and the second frame 412 can be very small, the pickup machine 4 has a substantially same occupied space as the previous pickup machine and then has a stable and reliable overall structure.
(28) While the invention has been described in connection with what are presently considered to be the most practical and preferred embodiments, it is to be understood that the invention is not to be limited to the disclosed embodiments, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the invention.