A real-time reading device for tea garden germination density based on an interactive virtual frame model

Through the interactive tea garden germination density real-time reading device based on the virtual box model, the problem of inconvenient installation, inability to read in real time and adapt to the size of the planting box is solved, and the effects of convenient installation, real-time reading and multi-position reading are achieved.

CN114821584BActive Publication Date: 2025-08-15SUICHANG JIANGUANG TEA IND CO LTD +1
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Patent Information

Application Number
CN202210507275.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-10
Publication Date
2025-08-15
Estimated Expiration
2042-05-10

AI Technical Summary

Technical Problem

The existing density reading device is inconvenient to install and disassemble, and it is impossible to read and handle tea germination density in real time, and it is impossible to lengthen and connect according to the size of the planting box, making it inconvenient to move and multi-position readings.

Method used

An interactive tea garden germination density real-time reading device based on the virtual frame model is used to connect it to the insulation cover through the limit sliding box, suction cup and exhaust rod. The drive motor drives the rotating rod and the moving gear, and combines the slider, extrusion rod, limit connection rod, sliding limit plate, real-time reading camera and upper sensor to move, real-time reading and display, and can be lengthened and connected according to the size of the planting box.

Benefits of technology

It realizes the convenient installation and disassembly of the reading device, which can read and handle tea germination density in real time, facilitate movement and multi-position reading, and adapt to different planting box sizes.

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Abstract

The present invention discloses a real-time reading device for interactive tea garden germination density based on a virtual frame model, which belongs to the technical field of reading devices. Lower sensing parts are installed at equal intervals on one side of a planting trough, and a sliding block, an extrusion rod, a limit connecting rod, a sliding limit plate, a real-time reading camera, a reading flash piece and an upper sensing part are driven to move by a rotating rod and a moving gear. During the movement, the real-time reading camera, the reading flash piece and the upper sensing part are mutually sensed with the lower sensing part and the planting trough. During the sensing process, the reading camera and the reading flash piece are started to perform real-time reading and the mechanism is displayed and recorded through a reading display board. The device is extended through an extension hole, and when disassembly is required, the extraction and discharge air rod is pushed inward for disassembly, thereby achieving the goal of easy installation and disassembly of the reading device; the density of tea germination can be read and processed in real time; and it can be lengthened and connected according to the size of the planting box, so as to facilitate movement and reading in multiple positions.
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Description

Technical Field

[0001] The present invention relates to a real-time reading device for tea garden germination density, in particular to a real-time reading device for tea garden germination density based on an interactive virtual frame model, belonging to the technical field of reading devices. Background Art

[0002] Tea gardens are perennial green woody plants. They are bud-based economic crops that are planted and harvested multiple times a year. The goal is to harvest young shoots, tender leaves, and tender tips. The height of the tea bushes in an adult tea garden is about 120 cm and the width is about 60 cm. When evaluating the growth of tea trees, the density of buds is one of the important indicators. When measuring the bud density, usually the tender shoots that can be picked within 1 square foot on the tea bush are picked and their number is counted. The average value of 5-7 data points can represent the bud density of the tea garden at this stage.

[0003] Existing density reading devices have the following problems:

[0004] Problem 1: The reading device is inconvenient to install and remove;

[0005] Problem 2: It is impossible to read and process the density of tea germination in real time;

[0006] Question 3: The planting box cannot be lengthened and connected according to its size, making it inconvenient to move and read in multiple locations. Therefore, an interactive tea garden germination density real-time reading device based on a virtual frame model is urgently needed to solve the above problems. Summary of the Invention

[0007] The main purpose of the present invention is to provide a real-time reading device for the germination density of a tea garden based on an interactive virtual frame model. The staff connects the limit sliding box to the heat preservation cover through a connecting rod, a suction cup and an air extraction rod. After sealing, the reading display board is connected to the heat preservation cover through a limit ring. After the connection is completed, the first connector, the wire and the second connector are used to connect and transmit signals. The heat preservation cover is placed on the top of the tea bud box and is sealed and limited by the sealing limit groove and the sealing gasket. After installation, the driving motor is started to drive the rotating rod and the moving gear to rotate, and the sliding block, the extrusion rod, the limit connecting rod and the sliding limit are driven by the rotating rod and the moving gear. The positioning plate, real-time reading camera, reading flash sheet and upper sensing part move, and in the process of movement, the real-time reading camera, reading flash sheet and upper sensing part sense each other with the lower sensing part and the planting trough. In the process of sensing, the reading camera and reading flash sheet are started to perform real-time reading and the mechanism is displayed and recorded through the reading display board. The extension hole is used to extend the reading, and when disassembly is required, the extraction and discharge air rod is pushed inward for disassembly, so that the reading device is easy to install and disassemble; the density of tea germination can be read and processed in real time; it can be lengthened and connected according to the size of the planting box, which is convenient for movement and multi-position reading.

[0008] The purpose of the present invention can be achieved by adopting the following technical solutions:

[0009] An interactive tea garden germination density real-time reading device based on a virtual frame model comprises a tea bud box placement tray, a tea bud planting box, a lower sensor, a planting trough, a limit sliding box, a reading display board, a sliding limit plate, an extension hole, a sealing limit groove and a sealing pad. A tea bud planting box is installed in the middle of the top of the tea bud box placement tray, planting troughs are opened at unequal intervals on the top of the tea bud planting box, a lower sensor is installed at equal intervals on one side of the planting trough, a sliding limit plate is provided on the top of the tea bud planting box, and extension holes are opened on both sides of the sliding limit plate. A limit plate is installed in the middle of the top of the sliding limit plate. A limit sliding box is provided, a reading display board is installed on one side of the limit sliding box, a limit sliding tooth control component is provided in the limit sliding box, a driving component is installed on one side of the limit sliding tooth control component, a connecting wire component is provided on the limit sliding box and the reading display board, a sliding connection component is provided on the limit sliding tooth control component, a camera reading sensor component is installed at equal intervals on the middle of the bottom of the sliding limit plate, a connecting suction cup component is installed at equal intervals on the top of the limit sliding box, a sealing limit groove is opened on both sides of the middle of the top, and a sealing gasket is laid in the sealing limit groove.

[0010] Preferably, the limit sliding tooth control assembly includes a sliding groove, a control button, teeth and a movable groove. The movable groove is opened on one side in the middle of the limit sliding box, the teeth are installed at equal intervals at the bottom of the movable groove, the control button is installed on both sides in the middle of the movable groove, and the sliding groove is opened on one side in the middle of the top of the movable groove.

[0011] Preferably, the driving assembly includes a driving motor, a rotating rod and a moving gear. The driving motor is installed at one side of the moving groove, the rotating rod is installed at the output end of the driving motor, and the moving gear is sleeved in the middle of the rotating rod.

[0012] Preferably, the connecting wire assembly includes a limit ring, a first connector, a wire and a second connector. The limit ring is installed in the middle of one side of the outer wall of the reading display board, the first connector is inserted into the middle of the top of the reading display board, the wire is installed on the top of the first connector, the second connector is installed at one end of the wire, and the second connector is connected to the limit sliding box.

[0013] Preferably, the sliding connection assembly includes a slider, an extrusion rod and a limiting connection rod. The slider is inserted into the middle of the sliding groove, the limiting connection rod is installed at the middle of the bottom of the slider, and the middle of the limiting connection rod is sleeved on one side of the middle of the rotating rod, and the extrusion rod is installed on both sides of the middle of the limiting connection rod.

[0014] Preferably, the camera reading sensor assembly includes a real-time reading camera, a reading flash sheet and an uploading sensor. The reading flash sheet is installed at equal intervals in the middle of the bottom of the sliding limit plate, the real-time reading camera is installed at equal intervals in the middle of the reading flash sheet, and the uploading sensor is installed at equal intervals on one side of the reading flash sheet.

[0015] Preferably, the connecting suction cup assembly includes a connecting rod, a suction cup and an exhaust rod, the connecting rod is installed at equal intervals in the middle of the top of the real-time reading camera, the suction cup is installed at the top of the connecting rod, and the exhaust rod is located on the side of the middle of the suction cup.

[0016] Preferably, the connecting rod and the suction cup are of a Y-shaped structure.

[0017] Preferably, the tea bud box placement tray is an E-shaped structure.

[0018] Beneficial technical effects of the present invention:

[0019] The present invention provides an interactive tea garden germination density real-time reading device based on a virtual frame model. The staff connects the limit sliding box to the heat preservation cover through a connecting rod, a suction cup and an air extraction rod. After sealing, the reading display board is connected to the heat preservation cover through a limit ring. After the connection is completed, the first connector, the wire and the second connector are used to connect and transmit signals. The heat preservation cover is placed on the top of the tea bud box and is sealed and limited by the sealing limit groove and the sealing gasket. After installation, the driving motor is started to drive the rotating rod and the moving gear to rotate, and the sliding block, the extrusion rod, the limit connecting rod, the sliding limit plate, The real-time reading camera, reading flash sheet and upper sensing part move, and in the process of movement, the real-time reading camera, reading flash sheet and upper sensing part sense each other with the lower sensing part and the planting trough. In the process of sensing, the reading camera and reading flash sheet are started to perform real-time reading and the mechanism is displayed and recorded through the reading display board. The reading device is extended through the extension hole, and the extraction and discharge air rod is pushed inward for disassembly when it needs to be disassembled, so that the reading device is easy to install and disassemble; the density of tea germination can be read and processed in real time; it can be lengthened and connected according to the size of the planting box, which is convenient for movement and multi-position reading. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a front view of the overall three-dimensional structure of a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model according to the present invention;

[0021] Figure 2 This is an enlarged view of the structure at position B of a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model according to the present invention;

[0022] Figure 3This is an enlarged view of the structure at point A of a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model according to the present invention;

[0023] Figure 4 A schematic structural diagram of a reading board according to a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model of the present invention;

[0024] Figure 5 Schematic diagram of the transmission limit structure of a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model according to the present invention;

[0025] Figure 6 The figure is a schematic diagram of the driving and moving structure of a preferred embodiment of an interactive tea garden germination density real-time reading device based on a virtual frame model according to the present invention.

[0026] In the figure: 1-tea bud box placement tray, 2-tea bud planting box, 3-lower sensing element, 4-planting groove, 5-limit sliding box, 6-reading display board, 7-limiting ring, 8-first connector, 9-wire, 10-second connector, 11-driving motor, 12-sliding limit plate, 13-extension hole, 14-sealing limit groove, 15-sealing pad, 17-real-time reading camera, 18-reading flash sheet, 19-uploading sensing element, 20-connecting rod, 21-suction cup, 22-extraction and release air rod, 23-sliding groove, 24-slider, 25-control button, 26-teeth, 27-rotating rod, 28-moving gear, 29-extrusion rod, 30-limit connecting rod, 31-moving groove. DETAILED DESCRIPTION

[0027] In order to make the technical solution of the present invention more clear and specific to those skilled in the art, the present invention is further described in detail below with reference to embodiments and drawings, but the embodiments of the present invention are not limited thereto.

[0028] like Figures 1-6As shown, the embodiment provides an interactive tea garden germination density real-time reading device based on a virtual frame model, comprising a tea bud box placement tray 1, a tea bud planting box 2, a lower sensor 3, a planting trough 4, a limit sliding box 5, a reading display board 6, a sliding limit plate 12, an extension hole 13, a sealing limit groove 14 and a sealing gasket 15. The tea bud box placement tray 1 is provided with a tea bud planting box 2 in the middle of the top, the planting troughs 4 are provided at unequal intervals on the top of the tea bud planting box 2, and the lower sensor 3 is provided at equal intervals on one side of the planting trough 4. The top of the tea bud planting box 2 is provided with a sliding limit plate 12, and the two sides of the sliding limit plate 12 are provided with extension holes 13. A limit sliding box 5 is installed in the middle of the top of the limit plate 12, and a reading display board 6 is installed on one side of the limit sliding box 5. A limit sliding tooth control component is provided in the limit sliding box 5, and a driving component is installed on one side of the limit sliding tooth control component. A connecting wire component is provided on the limit sliding box 5 and the reading display board 6, and a sliding connection component is provided on the limit sliding tooth control component. Camera reading sensor components are installed at equal intervals in the middle of the bottom of the sliding limit plate 12, and connecting suction cup components are installed at equal intervals on the top of the limit sliding box 5. Sealing limit grooves 14 are opened on both sides of the middle of the top, and sealing pads 15 are laid in the sealing limit grooves 14.

[0029] The overall working principle is as follows: the staff connects the limit sliding box 5 to the heat preservation cover through the connecting rod 20, the suction cup 21 and the extraction and discharge air rod 22. After sealing, the reading display board 6 is connected to the heat preservation cover through the limit ring 7. After the connection is completed, the first connector 8, the wire 9 and the second connector 10 are used to connect and transmit signals. The heat preservation cover is placed on the top of the tea bud box tray 1 and sealed and limited by the sealing limit groove 14 and the sealing gasket 15. After installation, the driving motor 11 is started to drive the rotating rod 27 and the moving gear 28 to rotate, and the sliding block 24, the extrusion rod 29, the limit connecting rod 30, the sliding limit plate 12, and the real-time reading camera are driven by the rotating rod 27 and the moving gear 28. The head 17, the reading flash piece 18 and the upper sensing part 19 move, and in the process of movement, mutual sensing is performed with the lower sensing part 3 and the planting groove 4 through the real-time reading camera 17, the reading flash piece 18 and the upper sensing part 19. In the process of sensing, the reading camera 17 and the reading flash piece 18 are started to perform real-time reading and the mechanism is displayed and recorded through the reading display board 6. The extension hole 13 is extended, and the extraction and discharge air rod 22 is pushed inward for disassembly when it needs to be disassembled, so that the reading device is easy to install and disassemble; the density of tea germination can be read and processed in real time; it can be lengthened and connected according to the size of the planting box, which is convenient for movement and multi-position reading.

[0030] In this embodiment: the limit sliding tooth control component includes a sliding groove 23, a control button 25, teeth 26 and a movable groove 31. The movable groove 31 is opened on one side in the middle of the limit sliding box 5. The teeth 26 are installed at equal intervals at the bottom of the movable groove 31. The control button 25 is installed on both sides in the middle of the movable groove 31. The sliding groove 23 is opened on one side of the top middle part of the movable groove 31.

[0031] Partial working principle: sliding and limiting are performed through the sliding groove 23, the control button 25, the teeth 26 and the moving groove 31.

[0032] In this embodiment: the driving assembly includes a driving motor 11, a rotating rod 27 and a moving gear 28. The driving motor 11 is installed on one side of the moving groove 31, the rotating rod 27 is installed at the output end of the driving motor 11, and the moving gear 28 is sleeved in the middle of the rotating rod 27.

[0033] Partial working principle: By starting the driving motor 11, the rotating rod 27 and the moving gear 28 are driven.

[0034] In this embodiment: the connecting wire assembly includes a limit ring 7, a first connector 8, a wire 9 and a second connector 10, the limit ring 7 is installed in the middle of one side of the outer wall of the reading display board 6, the first connector 8 is inserted into the middle of the top of the reading display board 6, the wire 9 is installed on the top of the first connector 8, the second connector 10 is installed at one end of the wire 9, and the second connector 10 is interconnected with the limit sliding box 5.

[0035] Partial working principle: connection is made through the limiting ring 7, the first connector 8, the wire 9 and the second connector 10.

[0036] In this embodiment: the sliding connection assembly includes a slider 24, an extrusion rod 29 and a limiting connection rod 30, the slider 24 is inserted into the middle of the sliding groove 23, the limiting connection rod 30 is installed at the bottom middle of the slider 24, and the middle of the limiting connection rod 30 is sleeved on one side of the middle of the rotating rod 27, and the extrusion rod 29 is installed on both sides of the middle of the limiting connection rod 30.

[0037] Local working principle: sliding and squeezing are performed by the slider 24, the squeezing rod 29 and the limiting connecting rod 30.

[0038] In this embodiment: the camera reading sensor assembly includes a real-time reading camera 17, a reading flash piece 18 and an upper sensing member 19, the reading flash piece 18 is installed at equal intervals at the bottom middle of the sliding limit plate 12, the real-time reading camera 17 is installed at equal intervals in the middle of the reading flash piece 18, and the upper sensing member 19 is installed at equal intervals on one side of the reading flash piece 18.

[0039] Partial working principle: Real-time reading and monitoring are performed through a real-time reading camera 17, a reading flash sheet 18 and an upper sensing element 19.

[0040] In this embodiment: the connecting suction cup assembly includes a connecting rod 20, a suction cup 21 and a pumping and releasing air rod 22, the connecting rod 20 is installed at equal intervals at the top middle part of the real-time reading camera 17, the suction cup 21 is installed at the top of the connecting rod 20, and the pumping and releasing air rod 22 is located on the side from the middle of the suction cup 21.

[0041] Local working principle: Adsorption connection is achieved through the connecting rod 20, the suction cup 21 and the air extraction and release rod 22.

[0042] In this embodiment, the connecting rod 20 and the suction cup 21 are of a Y-shaped structure.

[0043] In this embodiment, the tea bud box placement tray 1 is an E-shaped structure.

[0044] The above are only further embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes based on the technical solutions and concepts of the present invention within the scope disclosed by the present invention, which fall within the scope of protection of the present invention.

Claims

1. A real-time reading device for tea garden germination density based on an interactive virtual frame model, characterized by: The invention comprises a tea bud box placing support (1), a tea bud planting box (2), a lower induction member (3), a planting groove (4), a limit sliding box (5), a reading display board (6), a sliding limit plate (12), an extension hole (13), a sealing limit groove (14) and a sealing pad (15); a tea bud planting box (2) is installed at the middle of the top of the tea bud box placing support (1); planting grooves (4) are opened at unequal intervals on the top of the tea bud planting box (2); a lower induction member (3) is installed at equal intervals on one side of the planting groove (4); a sliding limit plate (12) is provided on the top of the tea bud planting box (2); extension holes (13) are opened on both sides of the sliding limit plate (12); a sealing limit plate (12) is installed at the middle of the top of the tea bud planting box (2); A limit sliding box (5) is provided, a reading display board (6) is provided on one side of the limit sliding box (5), a limit sliding tooth control assembly is provided in the limit sliding box (5), a driving assembly is provided on one side of the limit sliding tooth control assembly, a connecting wire assembly is provided on the limit sliding box (5) and the reading display board (6), a sliding connection assembly is provided on the limit sliding tooth control assembly, a camera reading sensor assembly is provided at equal intervals on the bottom middle of the sliding limit plate (12), a connecting sucker assembly is provided at equal intervals on the top of the limit sliding box (5), a sealing limit groove (14) is provided on both sides of the top middle of (1), and a sealing gasket (15) is laid in the sealing limit groove (14); Wherein: the limit sliding tooth control component comprises a sliding groove (23), a control button (25), teeth (26) and a moving groove (31); the moving groove (31) is opened at one side of the middle of the limit sliding box (5); the teeth (26) are installed at equal intervals at the bottom of the moving groove (31); the control button (25) is installed at both sides of the middle of the moving groove (31); and the sliding groove (23) is opened at one side of the top middle of the moving groove (31); The driving assembly comprises a driving motor (11), a rotating rod (27) and a moving gear (28), wherein the driving motor (11) is mounted on one side of the moving groove (31), the rotating rod (27) is mounted on the output end of the driving motor (11), and the moving gear (28) is sleeved in the middle of the rotating rod (27); The connecting wire assembly comprises a limiting ring (7), a first connector (8), a wire (9) and a second connector (10), wherein the limiting ring (7) is installed in the middle of one side of the outer wall of the reading display board (6), the first connector (8) is inserted into the middle of the top of the reading display board (6), the wire (9) is installed on the top of the first connector (8), the second connector (10) is installed at one end of the wire (9), and the second connector (10) is connected to the limiting sliding box (5); The sliding connection assembly includes a slider (24), an extrusion rod (29) and a limiting connection rod (30), wherein the slider (24) is inserted into the middle of the sliding groove (23), the limiting connection rod (30) is installed at the middle of the bottom of the slider (24), and the middle of the limiting connection rod (30) is sleeved on one side of the middle of the rotating rod (27), and the extrusion rod (29) is installed on both sides of the middle of the limiting connection rod (30); The camera reading sensor assembly comprises a real-time reading camera (17), a reading flash sheet (18) and an uploading sensing member (19), wherein the reading flash sheet (18) is evenly spaced and mounted at the middle of the bottom of the sliding limit plate (12), the real-time reading camera (17) is evenly spaced and mounted in the middle of the reading flash sheet (18), and the uploading sensing member (19) is evenly spaced and mounted on one side of the reading flash sheet (18); The connecting sucker assembly comprises a connecting rod (20), a sucker (21) and an air extraction rod (22), wherein the connecting rod (20) is installed at equal intervals at the top middle of the real-time reading camera (17), the sucker (21) is installed at the top of the connecting rod (20), and the air extraction rod (22) is located at the side of the middle of the sucker (21).

2. The device for real-time reading of tea garden germination density based on an interactive virtual frame model according to claim 1, characterized in that: The connecting rod (20) and the sucker (21) are in a Y-shaped structure.

3. The device for real-time reading of tea garden germination density based on an interactive virtual frame model according to claim 2, characterized in that: The tea bud box placement tray (1) is an E-shaped structure.

Citation Information

Patent Citations

  • Wireless monitoring system for seedling germination room

    CN105278487A

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