CN113187278A - Suspension type underground intelligent bicycle parking garage - Google Patents

Suspension type underground intelligent bicycle parking garage Download PDF

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Publication number
CN113187278A
CN113187278A CN202110592808.3A CN202110592808A CN113187278A CN 113187278 A CN113187278 A CN 113187278A CN 202110592808 A CN202110592808 A CN 202110592808A CN 113187278 A CN113187278 A CN 113187278A
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CN
China
Prior art keywords
vehicle
garage
guide rail
taking
vehicles
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202110592808.3A
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Chinese (zh)
Inventor
肖朝昀
王宝坤
谢仕慧
郝卫
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huatumu Xiamen Technology Co ltd
Huaqiao University
Original Assignee
Huatumu Xiamen Technology Co ltd
Huaqiao University
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Publication date
Application filed by Huatumu Xiamen Technology Co ltd, Huaqiao University filed Critical Huatumu Xiamen Technology Co ltd
Priority to CN202110592808.3A priority Critical patent/CN113187278A/en
Publication of CN113187278A publication Critical patent/CN113187278A/en
Pending legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H6/00Buildings for parking cars, rolling-stock, aircraft, vessels or like vehicles, e.g. garages
    • E04H6/005Garages for vehicles on two wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62HCYCLE STANDS; SUPPORTS OR HOLDERS FOR PARKING OR STORING CYCLES; APPLIANCES PREVENTING OR INDICATING UNAUTHORIZED USE OR THEFT OF CYCLES; LOCKS INTEGRAL WITH CYCLES; DEVICES FOR LEARNING TO RIDE CYCLES
    • B62H3/00Separate supports or holders for parking or storing cycles
    • B62H3/12Hanging-up devices
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H6/00Buildings for parking cars, rolling-stock, aircraft, vessels or like vehicles, e.g. garages
    • E04H6/42Devices or arrangements peculiar to garages, not covered elsewhere, e.g. securing devices, safety devices, monitoring and operating schemes; centering devices
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H6/00Buildings for parking cars, rolling-stock, aircraft, vessels or like vehicles, e.g. garages
    • E04H6/42Devices or arrangements peculiar to garages, not covered elsewhere, e.g. securing devices, safety devices, monitoring and operating schemes; centering devices
    • E04H6/422Automatically operated car-parks
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0042Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects
    • G07F17/0057Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects for the hiring or rent of vehicles, e.g. cars, bicycles or wheelchairs
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/01Detecting movement of traffic to be counted or controlled
    • G08G1/017Detecting movement of traffic to be counted or controlled identifying vehicles

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Tents Or Canopies (AREA)

Abstract

The invention provides a suspension type underground intelligent bicycle parking garage, which comprises: the garage comprises a garage body, a lifting shaft and a ground vehicle access pavilion; the garage body is cuboid and is internally provided with a double-rod suspension arm, a horizontal guide rail and an automatic lifting forklift device for storing and taking vehicles; the body part of the forklift device for the automatic lifting storage vehicle is subjected to horizontal traction force to move along the length direction of the garage body; the lifting frame of the car taking part moves up and down along the height direction of the garage body under the action of vertical traction force, and moves back and forth along the length direction of the garage body under the action of horizontal traction force; the forklift type device for storing and taking the vehicles runs to the end part of the horizontal guide rail by translating on the horizontal guide rail, and the blocking device is embedded into the groove to lock the vehicle body part, so that the fixed support frame of the vehicle taking part is butted to the vertical guide rail in the lifting shaft to form a section of continuous guide rail; and a vehicle taking fork of the vehicle taking part is lifted to the ground by the garage body through the lifting shaft through a continuous guide rail to access the vehicle pavilion.

Description

Suspension type underground intelligent bicycle parking garage
Technical Field
The invention relates to the field of underground garages, in particular to a suspension type underground intelligent bicycle parking garage.
Background
The shared bicycle greatly facilitates the traveling and living of citizens and solves the problem of the last kilometer. However, since most of the shared bicycle services do not specifically limit parking places, along with the rapid increase of the number of the shared bicycle services, a large number of irregular parking phenomena are bound to occur, and thus great pressure is brought to municipal administration. There are shared bicycle parking management methods, such as: electronic fence and cylindrical underground bicycle garage occupy large space, are inconvenient to park, are difficult to manage, and have incomplete features in the technical field. With more and more shared bicycles being put on the market, how to solve the problem of parking the shared bicycles is urgent.
The prior art develops a full-automatic bicycle storage system, namely an environment-friendly shock-resistant underground bicycle parking lot (ECOCycle), as developed by Japanese technical research. ECOCycles are typically built underground in streets with a depth of 12.4 meters and a width of 7.71 meters to accommodate 204 bicycle stops simultaneously. The disadvantages are as follows: the cost is too high, the space utilization rate is low, the public pipeline space within 10m underground is occupied, and the construction of urban public pipe corridors is not facilitated; the storage body is large, the construction amount is large, and a large amount of underground space is occupied; and a single outlet cannot meet the requirement of simultaneous access of multiple users, and the access efficiency is poor.
Disclosure of Invention
The invention aims to solve the main technical problems of providing a suspended underground intelligent bicycle garage, which is beneficial to rectifying and solving the problem that a shared bicycle is randomly parked and the problem that a cylindrical underground bicycle garage occupies a large municipal pipeline space, and not only can ensure that the shared bicycle can provide convenience for citizens to go out, but also can ensure that the shared bicycle is neat in appearance, and the management of the shared bicycle is more concise and effective. But also can save and use limited underground space.
In order to achieve the purpose, the invention adopts the following technical scheme:
a suspended underground intelligent bicycle parking garage, comprising: the garage comprises a garage body, a lifting shaft and a ground vehicle access pavilion;
the garage body is cuboid and internally provided with a double-rod suspension arm, a horizontal guide rail and an automatic lifting forklift device for storing and taking vehicles; the double-rod suspension arm comprises two parallel cantilever beam rods and a tail mounting support; the two parallel cantilever beam rods are respectively fixed on one side surface of the garage body through the tail mounting support and extend along the width direction of the garage body; the upper surfaces of the two parallel cantilever beam rods are respectively provided with a plurality of semi-cylindrical grooves at intervals at the same position for hanging and placing a bicycle; the horizontal guide rail is welded at the bottom of the garage body and extends along the length direction of the garage body; a blocking device is arranged at the end part of the horizontal guide rail; the forklift device for the automatic lifting storage vehicle comprises a vehicle body part and a vehicle taking part; the car body part is in rolling connection with the horizontal guide rail, and a groove matched with the blocking device is formed in the bottom of the car body part;
the vehicle body part is horizontally pulled to move along the length direction of the garage body; the lifting frame of the car taking part moves up and down along the height direction of the garage body under the action of vertical traction force, and moves back and forth along the length direction of the garage body under the action of horizontal traction force;
the lifting shaft is a hollow cylinder with certain thickness and is not closed up and down, the upper end part and the lower end part are inwards concave and outwards convex clamping joints along the wall thickness, and the clamping joints are respectively in butt joint connection with the upper surface of the garage body and the pavilion for parking and taking vehicles on the ground; a vertical guide rail is arranged in the inner side wall of the lifting shaft along the height direction;
the forklift type device for the parking and taking vehicle is operated to the end part of the horizontal guide rail through translation on the horizontal guide rail, the blocking device is embedded into the groove to lock the vehicle body part, and a fixed support frame of the vehicle taking part is butted to the vertical guide rail in the lifting shaft to form a section of continuous guide rail;
and the vehicle taking fork of the vehicle taking part is lifted to the ground by the garage body through the lifting shaft through the continuous guide rail to store and take the vehicle pavilion.
In a preferred embodiment: the projection of the horizontal guide rail in the vertical direction is not coincident with the double-rod suspension arm.
In a preferred embodiment: the position of garage body place is less than the plane that municipal pipe network was located.
In a preferred embodiment: the outer walls of the garage body and the lifting shaft are waterproof steel plates; the upper end part and the lower end part of the lifting shaft are provided with clamping joints which are concave and convex along the wall thickness and are respectively in butt joint connection with the garage body and the pavilion for parking and taking vehicles on the ground.
In a preferred embodiment: the booth for parking and taking vehicles on the ground comprises: the intelligent vehicle identification system comprises a back guide rail, a card reader, an identifier, an automatic opening and closing door and an intelligent vehicle identification system; wherein the back rail interfaces with the vertical rail.
In a preferred embodiment: the card reader comprises an AFC system and a PIS system;
the recognizer is connected with a background host through a network transmission system, the recognizer scans a user two-dimensional code and feeds back the operation of a user to the host, and the host is connected with a vehicle taking device and sends information fed back to the host by the recognizer to the forklift device for automatic lifting and storing vehicles for vehicle taking;
the automatic opening and closing door comprises an infrared sensor, an electronic hydraulic linkage rod and a circuit switch. The infrared sensor is connected with the circuit switch, the circuit switch controls whether the circuit supplies power to the electronic hydraulic linkage rod, when no vehicle exists, the infrared sensor is not blocked, the circuit is in a closed state, the electronic hydraulic linkage rod is in a power-on state, and the automatic opening and closing door is closed; when a vehicle exists, the infrared sensor is blocked, the circuit is in a disconnected state, the electronic hydraulic linkage rod is in a power-off state, and the automatic opening and closing door is opened;
the intelligent vehicle identification system scans the stored single vehicle by the vehicle scanner and transmits the scanning information to the background host through the network transmission system. When the vehicle is taken out, the vehicle is scanned before being taken out, and the information is stored in the background host. And scanning is carried out again when the garage is stored, and the scanning information is compared with the scanning information when the garage is taken out.
In a preferred embodiment: the user scans the two-dimensional code through the recognizer, selects the required vehicle model on the mobile phone, the control system controls the automatic lifting vehicle-storing and taking forklift device to take the vehicle at the corresponding vehicle parking layer according to the indication and automatically opens the automatic opening and closing door through the induction system through sending the vehicle to the ground vehicle-storing and taking pavilion, the user automatically takes the vehicle out, and the opening and closing door is closed to finish vehicle taking.
In a preferred embodiment: during parking, before the vehicles are put in storage, the intelligent recognition vehicle system recognizes whether the vehicles are intact and undamaged, the intelligent recognition vehicle system compares the vehicles with the vehicles before leaving the storage, the riding fee deduction is carried out after the vehicles are undamaged and damaged, and if the vehicles are damaged, the users are required to carry out compensation according to the damage degree.
Compared with the prior art, the invention has the following beneficial effects:
1. the invention can effectively solve the problem that the shared bicycle occupies a large amount of floor area, thereby improving the cleanness of the city appearance and reducing the traffic problem caused by parking of the shared bicycle, such as the crowded occupation of a sidewalk.
2. The invention can adjust the size of the garage at will to realize that the garage does not occupy the space of municipal facilities and other underground facilities along the road to build our garage, thereby saving and using limited underground space resources.
3. The invention can ensure the holding quantity of the shared bicycle in the area with larger pedestrian flow and improve the land utilization rate of the area with smaller idle land.
Drawings
FIG. 1 is a front elevation view of a garage in accordance with a preferred embodiment of the present invention;
FIG. 2 is a side view of a garage in accordance with a preferred embodiment of the present invention;
FIG. 3 is a top view of a garage in accordance with a preferred embodiment of the present invention;
FIG. 4 is a side view of a dual bar hanger arm in a preferred embodiment of the present invention;
FIG. 5 is a front view of a dual bar hanger arm in a preferred embodiment of the present invention;
FIG. 6 is a perspective view of a lift shaft in accordance with a preferred embodiment of the present invention;
FIG. 7 is a front cross-sectional view of a lift well bore in accordance with a preferred embodiment of the present invention;
FIG. 8 is a side cross-sectional view of a lift well bore in accordance with a preferred embodiment of the present invention;
FIG. 9 is a top cross-sectional view of a hoist wellbore in accordance with a preferred embodiment of the present invention;
FIG. 10 is a perspective view of the above ground access vehicle kiosk in the preferred embodiment of the present invention;
FIG. 11 is an interior elevational view of the above ground access vehicle kiosk in the preferred embodiment of the present invention;
FIG. 12 is an interior side view of the above ground access kiosk in the preferred embodiment of the present invention;
FIG. 13 is a front view of the forklift-type device for accessing vehicles in the preferred embodiment of the present invention;
FIG. 14 is a side view of the forklift for accessing vehicles in accordance with the preferred embodiment of the present invention;
FIG. 15 is a top view of the forklift for accessing vehicles in the preferred embodiment of the present invention.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention; it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by those skilled in the art without any inventive work are within the scope of the present invention.
In the description of the present invention, it should be noted that the terms "upper", "lower", "inner", "outer", "top/bottom", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise specifically stated or limited, the terms "mounted," "disposed," "sleeved/connected," "connected," and the like are used in a broad sense, and for example, "connected" may be a fixed connection, a detachable connection, an integral connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection through an intermediate medium, and a communication between two elements.
Referring to fig. 1-15, a suspended underground intelligent bicycle parking garage includes: the garage comprises a garage body 1, a lifting shaft 2 and a ground vehicle parking and taking pavilion 3;
the garage body 1 is in a cuboid shape, and is internally provided with a double-rod suspension arm 11, a horizontal guide rail 12 and an automatic lifting and parking forklift device 13 for vehicles; in this embodiment, the position of the garage body 1 is lower than the plane of the municipal pipe network. Just so can avoid municipal pipe network, can not cause too much destruction to current underground structure, it is easier to be under construction, only need consider that lift pit shaft 2 can not destroy secret official network can.
The double-rod suspension arm 11 comprises two parallel cantilever beam rods 111 and a tail mounting support 112; the two parallel cantilever beam rods 111 are respectively fixed on one side surface of the garage body 1 through a tail mounting support 112 and extend along the width direction of the garage body 1; a plurality of semi-cylindrical grooves 113 are respectively arranged on the upper surfaces of the two parallel cantilever beam rods 111 at the same positions at intervals and used for hanging and placing bicycles;
in this embodiment, a 2mm thick rubber pad is mounted on the semi-cylindrical recess 113. Thus, the vehicle body and the groove can be prevented from being damaged or generating excessive noise due to collision or friction.
In order to provide the cantilever beam 111 with sufficient rigidity and bearing capacity in this embodiment, the inner portion of the cantilever beam 111 is solid with a diameter of 4.5cm, and the distance between two parallel cantilever beams 111 is 60 cm. The arrangement can hang more than or equal to three bicycles and less than five bicycles, the length of the cantilever beam rod 111 for hanging three bicycles is 210cm,
the diameter of the semi-cylindrical groove 113 is 5 cm; the distance between every two semi-cylindrical grooves 113 is 70cm, wherein the distance between the last semi-cylindrical groove 113 and the rear end of the cantilever beam 111 is 35cm, and the distance between the first semi-cylindrical groove 113 and the front end of the cantilever beam 111 is 10 cm.
The tail mount 112 includes rivets and riveted steel plates. The riveting steel plate is square, the side length is 32cm, the thickness is 2cm, 4 rivet holes are arranged, and the diameter of each rivet hole is 2 cm; the riveted steel plate and the cantilever beam rod 111 are welded and fixed by four isosceles right triangle welding rods 114, the thickness of the isosceles right triangle welding rods 114 is 1cm, the side length of the right-angle sides of the left and right welding rods is 5cm, and the side length of the right-angle sides of the upper and lower welding rods is 10 cm.
The horizontal guide rail 12 is welded at the bottom of the garage body 1 and extends along the length direction of the garage body 1; a blocking device 121 is arranged at the end part of the horizontal guide rail 12; and, the projection of the horizontal guide rail 12 in the vertical direction does not coincide with the double-bar suspension arm 11. This prevents the body portion from colliding with the stored bicycle as it moves on the horizontal rails 12.
The forklift device 13 for the automatic lifting storage vehicle comprises a vehicle body part 131 and a vehicle taking part; the car body part 131 is in rolling connection with the horizontal guide rail 12, and the bottom of the car body part 131 is provided with a groove 132 matched with the blocking device 121; the vehicle body part 131 is horizontally pulled to move along the length direction of the garage body 1; the lifting frame of the car taking part moves up and down along the height direction of the garage body 1 under the action of vertical traction force, and moves back and forth along the length direction of the garage body 1 under the action of horizontal traction force; when the vehicle is taken, the vehicle body part 131 is moved to the front of a certain row of bicycles, the vertical traction force drives the vehicle taking part to move to be aligned with one row of the bicycle, and the horizontal traction force drives the vehicle taking fork of the vehicle taking part to extend into the lower part of the cross rod of the vehicle, so that the vehicle can be taken down from the double-rod suspension arm 11. Then the vehicle taking part can be reset through horizontal traction and vertical traction.
The vehicle taking part further comprises a lifting portal 133, a push-pull device 134 and a vehicle taking fork 135. The vehicle body part 131 is provided with wheels, a storage battery and a balancing weight; the lifting gantry 133 is fixed on the vehicle body part 131 and can lift per se; the lifting gantry 133 comprises a fixed support frame and a lifting frame; a push-pull device 134 is connected to a lifting frame of the lifting gantry 133, and a pickup fork 135 is disposed at an end of the push-pull device 134 to be connected thereto. The body part 131 is clamped on the horizontal guide rail 12 through a large wheel rim at the inner side of the wheel to perform translation operation, and 4 wheels are arranged on the body part 131.
The fixed support frame is provided with a clamping rail, the lifting frame is provided with a side wheel and a traction machine, and the lifting frame realizes the lifting operation of the clamping on the fixed support frame through the traction machine. The push-pull device 134 is a push-pull device with a multi-stage connecting rod structure, the extension and the vertical retraction of the connecting rods are realized through bearing connection, the length of each stage of connecting rod is 80cm, and the stage number of the connecting rods is more than or equal to 2. The length of the vehicle taking fork 135 is 80-120 cm.
The lifting shaft 2 is a hollow cylinder body with certain thickness and is not closed up and down, the upper end part and the lower end part are inwards concave and outwards convex clamping joints along the wall thickness, and the clamping joints are respectively in butt joint connection with the upper surface of the garage body 1 and the ground parking and taking pavilion 3 for vehicles; a vertical guide rail 21 is arranged in the inner side wall of the lifting shaft 2 along the height direction; the vertical projection of the shaft 2 is not coincident with the double-bar suspension arm 11. Thus, the bicycle can be prevented from colliding with other bicycles in the garage in the process of ascending along the lifting shaft 2.
The bicycle taken off by the forklift device can be directly lifted into the ground parking and taking vehicle pavilion 3, the parking and taking vehicle forklift device operates to the end part of the horizontal guide rail 12 by translating on the horizontal guide rail 12, the blocking device 121 is embedded into the groove 132 to lock the vehicle body part 131, and the fixed support frame 133 of the vehicle taking part is butted to the vertical guide rail 21 in the lifting shaft 2 to form a continuous guide rail; thus, the fixed support frame of the lifting mast 133 is connected with the vertical guide rail 21 into a whole, so that the bicycle taking fork 135 can be lifted along the guide rail together with the taken-down bicycle until entering the ground parking and taking pavilion 3.
In this embodiment, the outer wall of garage body 1 and lift pit shaft 2 is waterproof steel sheet, can avoid the groundwater seepage. The height of the lifting shaft 2 can be 3-10m according to the buried depth of the garage body 1, the width is 80cm, the length is 200cm, and the height of the vertical guide rail 21 is the same as that of the lifting shaft 2.
The lifting shaft 2 can be arranged one to more according to the size of the garage body 1. If the garage body 1 is bigger, the quantity of the lifting shaft 2 can be more, so that a plurality of users can conveniently take the vehicle at the same time, and the waiting time is shortened.
The lifting shaft 2 is a hollow cuboid cylinder which is not closed at the upper part and the lower part and has a certain thickness, the wall thickness is 10cm, the thickness range of the inner side wall is cut into an inwards concave and outwards convex clamping joint along one half of the wall thickness within the length range of 20cm away from the upper end part and the lower end part, the inwards concave and outwards convex clamping joint is respectively in butt joint connection with the garage body 1 and the ground parking and taking vehicle pavilion 3, and the joint of the garage body 1 and the ground parking and taking vehicle pavilion 3 is correspondingly arranged into an inwards convex and outwards concave butt joint;
the vertical guide rail 21 is composed of two parallel steel rails, the distance between the two steel rails is 60cm, and the two steel rails are arranged on the side wall of the cylinder body in a seamless welding mode. Each guide rail is I-shaped, one end of each guide rail is welded on the side wall, and the other end of each guide rail enables the side wheel rim of the vehicle taking fork 135 of the forklift type device for storing and taking vehicles to be clamped on the side wheel rim to realize sliding.
The above-ground vehicle access booth 3 includes: the system comprises a back guide rail 31, a card reader 32, an identifier 33, an automatic opening and closing door 34 and an intelligent identification vehicle system; wherein the back rail 31 interfaces with the vertical rail 21.
In a preferred embodiment: the card reader 32 includes an AFC (automatic fare collection system), a PIS (passenger information system); the recognizer 33 is connected with a background host through a network transmission system, the recognizer 33 scans a user two-dimensional code and feeds back the operation of the user to the host, and the host is connected with a vehicle taking device and sends information fed back to the host by the recognizer 33 to the forklift device 13 for the automatic lifting and storing vehicle for taking the vehicle; the automatic opening and closing door 34 comprises an infrared sensor, an electronic hydraulic linkage rod and a circuit switch. The infrared sensor is connected with the circuit switch, the circuit switch controls whether the circuit supplies power to the electronic hydraulic linkage rod, when no vehicle exists, the infrared sensor is not blocked, the circuit is in a closed state, the electronic hydraulic linkage rod is in a power-on state, and the automatic opening and closing door 34 is closed; when a vehicle exists, the infrared sensor is blocked, the circuit is in a disconnected state, the electronic hydraulic linkage rod is in a power-off state, and the automatic opening and closing door 34 is opened; the intelligent vehicle identification system scans the stored single vehicle by the vehicle scanner and transmits the scanning information to the background host through the network transmission system. When the vehicle is taken out, the vehicle is scanned before being taken out, and the information is stored in the background host. And scanning is carried out again when the garage is stored, and the scanning information is compared with the scanning information when the garage is taken out.
When the user takes the vehicle, the user scans the two-dimensional code through the identifier 33, the required vehicle model is selected on the mobile phone, the control system controls the automatic lifting vehicle-taking and parking forklift device 13 to take the vehicle at the corresponding vehicle parking layer according to the indication and automatically open and close the door 34 through the induction system by sending the vehicle to the ground vehicle-taking and parking kiosk 3, the user takes the vehicle out by himself, and the door is closed to finish the vehicle taking.
During parking, before the vehicles are put in storage, the intelligent recognition vehicle system recognizes whether the vehicles are intact and undamaged, the intelligent recognition vehicle system compares the vehicles with the vehicles before leaving the storage, the riding fee deduction is carried out after the vehicles are undamaged and damaged, and if the vehicles are damaged, the users are required to carry out compensation according to the damage degree.
The foregoing is only a preferred embodiment of the present invention; the scope of the invention is not limited thereto. Any person skilled in the art should be able to cover the technical scope of the present invention by equivalent or modified solutions and modifications within the technical scope of the present invention.

Claims (8)

1. The utility model provides a suspension type underground intelligent bicycle garage parking which characterized in that includes: the garage comprises a garage body, a lifting shaft and a ground vehicle access pavilion;
the garage body is cuboid and internally provided with a double-rod suspension arm, a horizontal guide rail and an automatic lifting forklift device for storing and taking vehicles; the double-rod suspension arm comprises two parallel cantilever beam rods and a tail mounting support; the two parallel cantilever beam rods are respectively fixed on one side surface of the garage body through the tail mounting support and extend along the width direction of the garage body; the upper surfaces of the two parallel cantilever beam rods are respectively provided with a plurality of semi-cylindrical grooves at intervals at the same position for hanging and placing a bicycle; the horizontal guide rail is welded at the bottom of the garage body and extends along the length direction of the garage body; a blocking device is arranged at the end part of the horizontal guide rail; the forklift device for the automatic lifting storage vehicle comprises a vehicle body part and a vehicle taking part; the car body part is in rolling connection with the horizontal guide rail, and a groove matched with the blocking device is formed in the bottom of the car body part;
the vehicle body part is horizontally pulled to move along the length direction of the garage body; the lifting frame of the car taking part moves up and down along the height direction of the garage body under the action of vertical traction force, and moves back and forth along the length direction of the garage body under the action of horizontal traction force;
the lifting shaft is a hollow cylinder with certain thickness and is not closed up and down, the upper end part and the lower end part are inwards concave and outwards convex clamping joints along the wall thickness, and the clamping joints are respectively in butt joint connection with the upper surface of the garage body and the pavilion for parking and taking vehicles on the ground; a vertical guide rail is arranged in the inner side wall of the lifting shaft along the height direction;
the forklift type device for the parking and taking vehicle is operated to the end part of the horizontal guide rail through translation on the horizontal guide rail, the blocking device is embedded into the groove to lock the vehicle body part, and a fixed support frame of the vehicle taking part is butted to the vertical guide rail in the lifting shaft to form a section of continuous guide rail;
and the vehicle taking fork of the vehicle taking part is lifted to the ground by the garage body through the lifting shaft through the continuous guide rail to store and take the vehicle pavilion.
2. A suspended underground intelligent bicycle parking garage according to claim 1, wherein: the projection of the horizontal guide rail in the vertical direction is not coincident with the double-rod suspension arm.
3. A suspended underground intelligent bicycle parking garage according to claim 1, wherein: the position of garage body place is less than the plane that municipal pipe network was located.
4. The intelligent suspended underground bicycle parking garage according to claim 1, wherein the outer walls of the garage body and the lifting shaft are waterproof steel plates; the upper end part and the lower end part of the lifting shaft are provided with clamping joints which are concave and convex along the wall thickness and are respectively in butt joint connection with the garage body and the pavilion for parking and taking vehicles on the ground.
5. A suspended underground intelligent bicycle parking garage according to claim 1, wherein: the booth for parking and taking vehicles on the ground comprises: the intelligent vehicle identification system comprises a back guide rail, a card reader, an identifier, an automatic opening and closing door and an intelligent vehicle identification system; wherein the back rail interfaces with the vertical rail.
6. A suspended intelligent underground bicycle parking garage according to claim 5, wherein: the card reader comprises an AFC system and a PIS system;
the recognizer is connected with a background host through a network transmission system, the recognizer scans a user two-dimensional code and feeds back the operation of a user to the host, and the host is connected with a vehicle taking device and sends information fed back to the host by the recognizer to the forklift device for automatic lifting and storing vehicles for vehicle taking;
the automatic opening and closing door comprises an infrared sensor, an electronic hydraulic linkage rod and a circuit switch. The infrared sensor is connected with the circuit switch, the circuit switch controls whether the circuit supplies power to the electronic hydraulic linkage rod, when no vehicle exists, the infrared sensor is not blocked, the circuit is in a closed state, the electronic hydraulic linkage rod is in a power-on state, and the automatic opening and closing door is closed; when a vehicle exists, the infrared sensor is blocked, the circuit is in a disconnected state, the electronic hydraulic linkage rod is in a power-off state, and the automatic opening and closing door is opened;
the intelligent vehicle identification system scans the stored single vehicle by the vehicle scanner and transmits the scanning information to the background host through the network transmission system. When the vehicle is taken out, the vehicle is scanned before being taken out, and the information is stored in the background host. And scanning is carried out again when the garage is stored, and the scanning information is compared with the scanning information when the garage is taken out.
7. A suspension type intelligent bicycle parking garage according to claim 6, characterized in that: the user scans the two-dimensional code through the recognizer, selects the required vehicle model on the mobile phone, the control system controls the automatic lifting vehicle-storing and taking forklift device to take the vehicle at the corresponding vehicle parking layer according to the indication and automatically opens the automatic opening and closing door through the induction system through sending the vehicle to the ground vehicle-storing and taking pavilion, the user automatically takes the vehicle out, and the opening and closing door is closed to finish vehicle taking.
8. A suspended intelligent underground bicycle parking garage according to claim 7, wherein: during parking, before the vehicles are put in storage, the intelligent recognition vehicle system recognizes whether the vehicles are intact and undamaged, the intelligent recognition vehicle system compares the vehicles with the vehicles before leaving the storage, the riding fee deduction is carried out after the vehicles are undamaged and damaged, and if the vehicles are damaged, the users are required to carry out compensation according to the damage degree.
CN202110592808.3A 2021-05-28 2021-05-28 Suspension type underground intelligent bicycle parking garage Pending CN113187278A (en)

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