A lifting control system for a three-dimensional parking garage

Through the design of the lifting platform and tooth plate structure, the problem of large area occupied by the gentle slope of the multi-story parking garage is solved, and the utilization rate of parking spaces is improved and the parking process is facilitated.

CN116255039BActive Publication Date: 2025-09-30ANHUI ZHONGAN CREATION TECH IND CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202310379748.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-11
Publication Date
2025-09-30
Estimated Expiration
2043-04-11

AI Technical Summary

Technical Problem

Existing multi-story parking garages require a gentle slope when vehicles enter, which occupies a large area and leads to insufficient utilization of the parking space area.

Method used

The lifting platform and gear plate structure are adopted. Through the cooperation of the gear plate and the rotating column, the threaded rod is used to drive the rotating plate to slide, thereby realizing the sliding of the lifting platform, reducing the occupied area of ​​the gentle slope and improving the utilization rate of the parking space.

Benefits of technology

The occupied area of ​​the gentle slope is reduced, the utilization rate of the parking space is improved, and the vehicle parking process is made more convenient.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116255039B_ABST
    Figure CN116255039B_ABST
Patent Text Reader

Abstract

The present invention discloses a lifting control system for a three-dimensional parking garage, which relates to the technical field of parking garages. The present invention includes a garage entrance, an opening is provided on one side of the garage entrance, and a lifting platform is slidably engaged inside the opening, which facilitates the sliding of the lifting platform inside the opening, thereby moving the vehicle on the upper side of the lifting platform. Tooth plates are installed on the upper side of the four corners of the lifting platform, and a rotating column is engaged on one side of the tooth plate, which facilitates the blocking of the second vehicle by the rotating column. The present invention sets a lifting platform so that the first rotating plate and the second rotating plate drive the lifting platform to slide under the action of the threaded rod, so as to realize the lifting platform sliding in and out from the inside of the opening, reducing the situation where the existing parking garage's gentle slope takes up a large area, improving the utilization rate of the vehicle parking area, and making the vehicle parking process more convenient.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the field of parking garages, and in particular relates to a lifting control system for a three-dimensional parking garage. Background Art

[0002] There are basically three types of parking in existing parking garages:

[0003] Stereoscopic parking garage type: After the vehicle is parked on the pallet at a designated location (usually the garage entrance or exit), the elevator lifts the vehicle and the pallet to the designated parking space entrance on the designated floor. The moving mechanism then delivers the vehicle and the pallet to the designated parking space. The elevator is only responsible for parking and retrieving vehicles at one parking space on each side of its line.

[0004] Free parking garage type: The driver drives the vehicle into the garage and then backs it into an empty parking space. This type of parking garage basically requires no other investment except for ventilation equipment and entry and exit time metering equipment;

[0005] "O" type parking garage: It consists of two floors with the same number of individual parking spaces and two or more circular transmission chains and power systems connecting these parking spaces. Its working principle is to move the occupied parking spaces to the upper floor and the empty parking spaces below, and the driver drives the car into the parking space.

[0006] However, the above parking garage has the following disadvantages when in use:

[0007] 1. When a vehicle enters an underground garage, a gentle slope is generally set up to ensure that the vehicle can safely enter the underground garage. At the same time, it requires high driving skills from the driver. However, the existing underground garages generally occupy a large area, and the actual parking area is limited, resulting in insufficient utilization of parking spaces.

[0008] Therefore, a three-dimensional parking garage lifting control system is proposed to solve the above-mentioned drawbacks. Summary of the Invention

[0009] The technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and provide a lifting control system for a three-dimensional parking garage.

[0010] In order to solve the above technical problems, the basic concept of the technical solution adopted by the present invention is:

[0011] A three-dimensional parking garage lifting control system includes a garage entrance, an opening is provided on one side of the garage entrance, and a lifting platform is slidably fitted inside the opening, facilitating the sliding of the lifting platform inside the opening, thereby moving the vehicle above the lifting platform. Tooth plates are installed on the upper side of the four corners of the lifting platform, and a rotating column is engaged on one side of the tooth plate to facilitate the passage of the vehicle.

[0012] The underground first floor entrance is located at the lower side of the garage entrance. One side of the underground first floor entrance is rotatably matched with a first rotating plate and two second rotating plates. The first ends of the second rotating plates and the first rotating plates are rotatably matched at the lower side of the lifting platform, which facilitates the passage of the first rotating plates,

[0013] A control console is installed on one side of the garage entrance, and the second vehicle is located on one side of the garage entrance.

[0014] Optionally, four first slides are provided on the garage entrance, and the toothed plate is slidably fitted inside the first slides, which facilitates the sliding of the toothed plate inside the first slides and improves the stability of the toothed plate when sliding. Two positioning blocks are installed inside the first slides, and first slide grooves are provided on both sides of the toothed plate. The positioning blocks slidably fit inside the first slide grooves, which facilitates the positioning blocks to guide the sliding direction of the toothed plate in and out through the first slide grooves, further improving the stability of the toothed plate when sliding. Four support columns and multiple fences are installed on the garage entrance, and a camera is installed on one side of the support column. One end of the support column rotates The cam is provided with a first gear and a second gear is provided on one side of the cam, and the cam is engaged with the first gear and the second gear is engaged with the first gear, and the cam is engaged with the first gear and the second gear is engaged with the first gear.

[0015] The cam is secured to a position 52° to the left of the first and second cams and is adapted to engage the first and second guide rails of the second cam when the cam is engaged.

[0016] Optionally, a fourth through hole is provided at the second end of the second rotating plate, and a third fixing rod is rotatably fitted between the two fourth through holes, which facilitates the rotation of the third fixing rod inside the fourth through hole and improves the stability of the third fixing rod during rotation. A second sliding block is installed at both ends of the third fixing rod, a second slide is provided on the entrance to the first basement floor, two motors are installed inside the second slide, and a threaded rod is installed at the output end of the motor, a first threaded hole is provided on one side of the first sliding block, and the threaded rod is threadedly fitted inside the first threaded hole, which facilitates the threaded rod to be threadedly fitted inside the first sliding block through the first threaded hole, and a second threaded hole is provided on one side of the second sliding block, and the threaded rod is threadedly fitted inside the second threaded hole, which facilitates the threaded rod to be threadedly fitted inside the second sliding block through the second threaded hole.

[0017] The lifting platform is normally located inside the opening, and the rotating column is normally located

[0018] The identification unit is used to determine whether there is a vehicle entering the garage entrance and whether the vehicle is on the upper side of the lifting platform, and is used to obtain the information of the vehicle entering the garage entrance. The data acquisition module is located in the data acquisition module and is used to obtain the information of the vehicle entering the underground first floor entrance. If the vehicle information

[0019] The control module is used to receive the control signal sent by the data acquisition module and control the rotating column to fall, so that the first vehicle can enter the basement entrance from the upper side of the lifting platform.

[0020] After adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described below at the same time:

[0021] The lifting platform is set up so that the first rotating plate and the second rotating plate drive the lifting platform to slide under the action of the threaded rod, so that the lifting platform can slide in and out from the inside of the opening, reducing the large area occupied by the gentle slope of the existing parking garage, improving the utilization rate of the parking space area, and making the vehicle parking process more convenient.

[0022] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The drawings described below are only some embodiments. A person skilled in the art can derive other drawings based on these drawings without inventive effort. In the drawings:

[0024] Figure 1A schematic diagram of the three-dimensional structure of an embodiment of the present invention;

[0025] Figure 2 for Figure 1 Schematic diagram of the structure at A in the middle;

[0026] Figure 3 for Figure 1 Schematic diagram of the structure at B in the middle;

[0027] Figure 4 A schematic structural diagram of an embodiment of the present invention;

[0028] Figure 5 for Figure 4 Schematic diagram of the structure at C in the middle;

[0029] Figure 6 for Figure 4 Schematic diagram of the structure at D in the middle;

[0030] Figure 7 A schematic structural diagram of an embodiment of the present invention;

[0031] Figure 8 for Figure 7 Schematic diagram of the structure at E in the middle;

[0032] Figure 9 for Figure 7 Schematic diagram of the structure at F in the middle;

[0033] Figure 10 for Figure 7 Schematic diagram of the structure at G in the middle.

[0034] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0035] Garage entrance 1, opening 101, first slide 102, positioning block 103, support column 104, first rotating rod 105, first gear 106, rotating column 107, column 108, fence 109, tooth plate 110,

[0036] Entrance 2 on the first floor, second slide 201, threaded rod 202, first sliding block 203, second fixed rod 204, first rotating plate 205, second slide 206, second rotating plate 207, positioning column 208, first through hole 209, second through hole 210, second sliding block 211, third fixed rod 212, third through hole

[0037] Second vehicle 4.

[0038] It should be noted that these drawings and textual descriptions are not intended to limit the conceptual scope of the present invention in any way, but rather to illustrate the concept of the present invention for those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0039] The present invention will now be described in further detail with reference to the accompanying drawings.

[0040] See also Figure 1-10 As shown, in this embodiment, a three-dimensional parking garage lifting control system is provided, including a garage entrance 1, an opening 101 is provided on one side of the garage entrance 1, and a lifting platform 113 is slidably matched inside the opening 101, which facilitates the sliding of the lifting platform 113 inside the opening 101, thereby moving the vehicle on the upper side of the lifting platform 113, and tooth plates 110 are installed on the upper side of the four corners of the lifting platform 113, and a rotating column 107 is engaged on one side of the tooth plate 110, which facilitates the rotation of the second vehicle by the rotating column 107.

[0041] Located at the basement entrance 2 below the garage entrance 1, one side of the basement entrance 2 is rotatably fitted with a first rotating plate 205 and two second rotating plates 207. The first ends of the second rotating plates 207 and the first rotating plates 205 are rotatably fitted at the lower side of the lifting platform 113, making it convenient to pass through the first rotating plates 205 and

[0042] The control console is installed at one side of the garage entrance 1 , and the second vehicle 4 is located at one side of the garage entrance 1 .

[0043] When the first vehicle 3 is required to enter the entrance 2 of the first basement floor, the first vehicle 3 is first driven to the upper side of the lifting platform 113, and then the motor is started. The output end of the motor drives the threaded rod 202 to rotate, and the threaded rod 202 drives the first sliding block 203 and the second sliding block 211 to slide. Since the threads on both sides of the threaded rod 202 are in opposite directions, the first sliding block 203 and the second sliding block 211 slide away from each other. The first sliding block 203 drives one end of the first rotating plate 205 to slide through the second fixed rod 204, and the second sliding block 211 drives the third fixed rod 212 to rotate. The second rotating plate 207 is driven to slide, and the second rotating plate 207 drives the positioning column 208 to slide inside the second slide groove 206. The first rotating plate 205 and the second rotating plate 207 drive the lifting platform 113 to slide downward, and the lifting platform 113 drives the gear plate 110 to slide downward. The gear plate 110 drives the first gear 106 to rotate through the second gear, and the first gear 106 drives the rotating column 107 to rotate and fall through the first rotating rod 105. When the lifting platform 113 falls to the inside of the second slide 201, the driver can drive the first vehicle 3 into the basement entrance 2.

[0044] The lifting platform 113 is set so that the first rotating plate 205 and the second rotating plate 207 can drive the lifting platform 113 to slide under the action of the threaded rod 202, so that the lifting platform 113 can slide in and out from the inside of the opening 101, reducing the large area occupied by the gentle slope of the existing parking garage, improving the utilization rate of the parking space area, and making the vehicle parking process more convenient.

[0045] The garage entrance 1 of this embodiment is provided with four first slides 102, and the tooth plate 110 slides and fits in the interior of the first slides 102, which facilitates the sliding of the tooth plate 110 in the first slides 102 and improves the stability of the tooth plate 110 when sliding. Two positioning blocks 103 are installed in the interior of the first slide 102, and first slide grooves 111 are provided on both sides of the tooth plate 110. The positioning blocks 103 slide and fit in the interior of the first slide grooves 111, which facilitates the positioning blocks 103 to guide the sliding direction of the tooth plate 110 in and out through the first slide grooves 111, further improving the stability of the tooth plate 110 when sliding. Four support columns 104 and multiple fences 109 are installed on the garage entrance 1. A camera 114 is installed on one side of the support column 104. One end of the support column 104 is rotatably engaged with the first rotating rod 105, and a fifth through hole is opened at one end of the support column 104. The first rotating rod 105 is rotatably engaged with the inside of the fifth through hole, which facilitates the rotational engagement of the first rotating rod 105 inside the fifth through hole, thereby improving the stability of the first rotating rod 105 during rotation. A rotating column 107 is installed at one end of the first rotating rod 105, and a plurality of columns 108 are evenly distributed on one side of the rotating column 107, which facilitates the installation of the columns 108 on one side of the rotating column 107. The other end of the first rotating rod 105 is equipped with a first gear 106, and a rotating shaft is installed on one side of the support column 104. A second gear is rotatably engaged with the rotating shaft, and the first gear 106 is meshed with the second gear, and the second gear is meshed with the tooth plate 110.

[0046] A first fixing rod 112 is installed between two adjacent tooth plates 110 of this embodiment, a first through hole 209 is opened at the first end of the first rotating plate 205, and a second through hole 210 is opened at the first end of the second rotating plate 207. The two first fixing rods 112 are respectively rotated and fitted into the first through hole 209 and the second through hole 210, thereby improving the stability of the first fixing rod 112 during rotation. Second sliding grooves 206 are opened on both sides of the first rotating plate 205, and a positioning column 208 is installed on the second rotating plate 207. The positioning column 208 is provided on the first rotating plate 205. One end of 8 slides and fits inside the second slide groove 206, which facilitates the sliding of the positioning column 208 inside the second slide groove 206 and improves the stability of the positioning column 208 when sliding. The second end of the first rotating plate 205 is provided with a third through hole 213, and the internal rotation of the third through hole 213 is matched with the second fixing rod 204. Both ends of the second fixing rod 204 are equipped with a first sliding block 203, which facilitates the rotation of the second fixing rod 204 inside the third through hole 213 and improves the stability of the second fixing rod 204 when rotating.

[0047] The second end of the second rotating plate 207 of this embodiment is provided with a fourth through hole 214, and a third fixing rod 212 is rotatably engaged between the two fourth through holes 214, which facilitates the rotation of the third fixing rod 212 inside the fourth through hole 214, thereby improving the stability of the third fixing rod 212 during rotation. A second sliding block 211 is installed at both ends of the third fixing rod 212. A second slide 201 is provided on the negative first floor entrance 2, and two motors are installed inside the second slide 201. A threaded rod 202 is installed at the output end of the motor. A first threaded hole is provided on one side of the first sliding block 203, and the threaded rod 202 is threadedly engaged with the inside of the first threaded hole, which facilitates the threaded rod 202 to be threadedly engaged with the inside of the first sliding block 203 through the first threaded hole. A second threaded hole is provided on one side of the second sliding block 211, and the threaded rod 202 is threadedly engaged with the inside of the second threaded hole, which facilitates the threaded rod 202 to be threadedly engaged with the inside of the second sliding block 211 through the second threaded hole. The threads on both sides of the threaded rod 202 are in opposite directions.

[0048] The lifting platform 113 of this embodiment is normally located inside the opening 101, and the rotating column 107 is in

[0049] an identification unit for determining whether a vehicle has entered the garage entrance 1 and whether the vehicle is above the lift 113 , and for obtaining information about the vehicle entering the garage entrance 1 , wherein the vehicle above the lift 113 is recorded as the first vehicle 3 , and the vehicle in the second position is recorded as the second vehicle 4 ;

[0050] Data acquisition module, used to obtain information about vehicles entering the underground first floor entrance 2.

[0051] The control module is used to receive the control signal sent by the data acquisition module and control the rotating column 107 to fall, so that the first vehicle 2 can drive into the basement entrance 2 from the upper side of the lifting platform 113.

[0052] The present invention is not limited to the above-described embodiments. Any structural changes made under the guidance of the present invention, which have the same or similar technical solutions as the present invention, should be understood to fall within the scope of protection of the present invention. The technologies, shapes, and structural parts not described in detail in the present invention are all well-known technologies.

Claims

1. A three-dimensional parking garage lifting control system, characterized in that: include: A garage entrance (1), wherein an opening (101) is provided on one side of the garage entrance (1), a lifting platform (113) is slidably fitted inside the opening (101), tooth plates (110) are installed on the upper sides of the four corners of the lifting platform (113), and a rotating column (107) is engaged on one side of the tooth plate (110); A basement entrance (2) is located below the garage entrance (1), and one side of the basement entrance (2) is rotatably engaged with a first rotating plate (205) and two second rotating plates (207), and the first ends of the second rotating plates (207) and the first rotating plates (205) are both rotatably engaged with the lower side of the lifting platform (113); a control console installed on one side of the garage entrance (1); The garage entrance (1) is equipped with four support columns (104) and multiple fences (109). One end of the support column (104) is rotatably matched with a first rotating rod (105). The rotating column (107) is installed at one end of the first rotating rod (105). One side of the rotating column (107) is evenly equipped with multiple columns (108). The other end of the first rotating rod (105) is equipped with a first gear (106). One side of the support column (104) is equipped with a rotating shaft. A second gear is rotatably matched on the rotating shaft. The first gear (106) is meshed with the second gear, and the second gear is meshed with the tooth plate (110).

2. A three-dimensional parking garage lifting control system according to claim 1, characterized in that: The lifting platform (113) is normally located inside the opening (101), the rotating column (107) is normally in a raised state, and the control console includes: an identification unit for determining whether a vehicle has entered the garage entrance (1) and identifying whether the vehicle is on the upper side of the lifting platform (113), and for obtaining information about the vehicle entering the garage entrance (1), wherein the vehicle located on the upper side of the lifting platform (113) is recorded as a first vehicle (3), and the vehicle located in the second position is recorded as a second vehicle (4); A data acquisition module is used to obtain information about a vehicle entering the basement entrance (2), and if the information about the vehicle entering is the vehicle information of the first vehicle (3), a control signal is sent to the control module; A control module is used to receive the control signal sent by the data acquisition module and control the rotating column (107) to fall, so that the first vehicle (3) can enter the basement entrance (2) from the upper side of the lifting platform (113).

3. The lifting control system of a three-dimensional parking garage according to claim 1, characterized in that: Four first slideways (102) are provided on the garage entrance (1), the tooth plate (110) is slidably fitted inside the first slideways (102), two positioning blocks (103) are installed inside the first slideways (102), first slide grooves (111) are provided on both sides of the tooth plate (110), and the positioning blocks (103) are slidably fitted inside the first slide grooves (111).

4. The lifting control system of a three-dimensional parking garage according to claim 1, characterized in that: A first fixing rod (112) is installed between two adjacent tooth plates (110), a first through hole (209) is opened at the first end of the first rotating plate (205), and a second through hole (210) is opened at the first end of the second rotating plate (207), and the two first fixing rods (112) are respectively rotatably engaged inside the first through hole (209) and the second through hole (210).

5. The lifting control system of a three-dimensional parking garage according to claim 1, characterized in that: Second sliding grooves (206) are provided on both sides of the first rotating plate (205), and a positioning column (208) is installed on the second rotating plate (207), and one end of the positioning column (208) is slidably fitted inside the second sliding groove (206).

6. The lifting control system of a three-dimensional parking garage according to claim 1, characterized in that: A third through hole (213) is provided at the second end of the first rotating plate (205), a second fixing rod (204) is rotatably fitted inside the third through hole (213), and first sliding blocks (203) are installed at both ends of the second fixing rod (204).

7. The lifting control system of a three-dimensional parking garage according to claim 6, characterized in that: A fourth through hole (214) is provided at the second end of the second rotating plate (207), a third fixing rod (212) is rotatably engaged between the two fourth through holes (214), and second sliding blocks (211) are installed at both ends of the third fixing rod (212).

8. The lifting control system of a three-dimensional parking garage according to claim 7, characterized in that: A second slideway (201) is provided on the basement entrance (2), two motors are installed inside the second slideway (201), and threaded rods (202) are installed at the output ends of the motors.

9. The lifting control system of a three-dimensional parking garage according to claim 8, characterized in that: A first threaded hole is provided on one side of the first sliding block (203), and the threaded rod (202) is threadedly fitted inside the first threaded hole. A second threaded hole is provided on one side of the second sliding block (211), and the threaded rod (202) is threadedly fitted inside the second threaded hole.

Citation Information

Patent Citations

  • Buried multi-layer intelligent lifting parking system based on AR technology

    CN109989607A