Intelligent park multi-dimensional environment parameter real-time monitoring and intelligent early warning system

By designing a multi-dimensional environmental parameter real-time monitoring and intelligent early warning system, the problems of inconvenient environmental parameter collection and difficulty in fault detection in smart parks have been solved, realizing real-time monitoring and intelligent early warning, and improving the efficiency of environmental data collection and the timeliness of fault detection.

CN121522100APending Publication Date: 2026-02-13HUBEI LIANTOU CITY OPERATION CO LTD
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Patent Information

Application Number
CN202511708594.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-20
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

Monitoring multi-dimensional environmental parameters in smart parks presents challenges such as inconvenient data collection and difficulty in timely fault detection.

Method used

A multi-dimensional environmental parameter real-time monitoring and intelligent early warning system was designed, including air, water quality and soil detection components. The detection components are rotated by a central axis to collect data, and are equipped with a cleaning mechanism and automatic detection and early warning functions.

Benefits of technology

It enables real-time monitoring and intelligent early warning of multi-dimensional environmental parameters, improves the timeliness of fault detection and data collection efficiency, and ensures accurate feedback and timely processing of environmental data.

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Abstract

The invention provides an intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system, and relates to the technical field of environmental monitoring, and the system comprises a base, a bottom column is fixed at the center of the top of the base, and the top of the bottom column is rotatably provided with a central shaft; the top of the center shaft is rotationally connected with the top plate, a photovoltaic panel is fixedly installed at the top of the top plate, and a noise detection device is fixed to the periphery of the top of the top plate; the air detection assembly comprises a mounting ring, the mounting ring is rotationally mounted on the surface of the center shaft, a detection box is fixed to the outer side of the mounting ring, the air quality around the device is detected through the air detection assembly, and the pollution degree of a water area near a park is detected through the water quality detection assembly; the pollution degree and humidity of soil around the device are detected through the soil detection assembly, a detection result is fed back to the display screen, and when detection data exceed a preset value, early warning is conducted through the display screen.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of environmental monitoring, and particularly relates to a multi-dimensional environmental parameter real-time monitoring and intelligent early warning system for a smart park. BACKGROUND

[0002] A smart park refers to a city park that uses new-generation information technologies such as the Internet of Things, big data, and artificial intelligence to present, control, and manage the ecological, service, management, and maintenance processes of the park in a digital and intelligent manner. The core goal of a smart park is to improve the operational efficiency, service quality, and visitor experience of the park through technological means, and to achieve precise service, efficient management, and open sharing.

[0003] Multi-dimensional environmental monitoring refers to comprehensive, real-time, and dynamic monitoring and evaluation of different environmental elements such as air, soil, water, and organisms through various sensors and technical means. The core of multi-dimensional environmental monitoring is to break through the limitations of single-parameter monitoring and to build a three-dimensional monitoring network covering the sky, earth, and air to provide data support for ecological protection, pollution control, and sustainable development.

[0004] For environmental monitoring within a smart park, special environmental monitoring instruments such as organic matter measuring instruments and water pollution monitoring instruments, intelligent sensors, intelligent sensing systems, and intelligent sensing elements are required. However, it is inconvenient to collect different environmental parameters, and it is not easy to discover problems in a timely manner due to the large number of objects to be collected. SUMMARY

[0005] The present disclosure aims to at least partially solve one of the technical problems in the related art.

[0006] To this end, the purpose of the present disclosure is to provide a multi-dimensional environmental parameter real-time monitoring and intelligent early warning system for a smart park.

[0007] In order to achieve the above purpose, the present disclosure provides a smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system, which comprises a base, a bottom column is fixed at the top center of the base, and a center shaft is rotatably installed at the top of the bottom column; a top plate is rotatably connected to the top of the center shaft, a photovoltaic panel is fixedly installed at the top of the top plate, and a noise detection device is fixedly installed at the top periphery of the top plate; an air detection assembly comprises a mounting ring, the mounting ring is rotatably installed on the surface of the center shaft, a detection box is fixed to the outside of the mounting ring, an air inlet pipe is formed on the surface of the side of the detection box away from the center shaft, an air outlet pipe is fixed to the top of the detection box, and through grooves are equidistantly formed on the outer surface of the air outlet pipe; a display screen is fixed to the side of the detection box counterclockwise of the top plate; a water quality detection assembly comprises a water tank, the water tank is fixed to the top of the side of the base away from the detection box, a water inlet pipe is fixed to the bottom of the water tank, a water outlet pipe is fixed to the top side of the water tank, a piston rod is slidably inserted into the top of the water tank, a float is fixed to the bottom of the piston rod, a water quality detection device is fixed to the side of the top of the water tank, and the detection end of the water quality detection device is inserted into the inside of the water tank; a soil detection assembly comprises a first moving frame, the first moving frame is fixed to the top of the center shaft, the first moving frame and the display screen are located on both sides of the center shaft, a second moving frame is rotatably connected to the bottom of the first moving frame through a rotating shaft, a first screw plate is slidably connected to the inside of the second moving frame, a collection cylinder is fixed to the bottom of the first screw plate, and a drill rod is arranged in the inside of the collection cylinder.

[0008] Optionally, a gear ring is fixed to the top outer ring of the center shaft, a gear is meshingly connected to one side of the gear ring, the gear is rotatably installed at the bottom of the top plate through a bearing, a drive motor is fixed to the position corresponding to the gear at the top of the top plate, and the output end of the drive motor is fixedly connected with the gear; wherein, first electric push rods are fixed to both sides of the bottom of the gear ring, long rods are fixed to the elongated ends of the first electric push rods, the long rods of the elongated ends of the first electric push rods slide through the mounting ring, protrusions are fixed to the surface of the mounting ring where the long rods of the elongated ends of the first electric push rods pass through, and the protrusions are clamped in the inside of the mounting ring.

[0009] Optionally, the air detection assembly further comprises a dust screen, a scraper frame, a third spring, a blocking frame and an elastic belt, the dust screen is fixed to the outward end of the air inlet pipe, the scraper frames are slidably connected to both sides of the detection box, the scraper frames are slidably in contact with the surface of the dust screen at one end, and the other end of the scraper frame is slidably sleeved on the center shaft; wherein, the third springs are fixed to the surfaces of both sides of the detection box, and the other end of the third spring is fixedly connected with the scraper frame.

[0010] Optionally, the long rod connected with the first electric push rod is fixed with a push plate on the surface of the scraper frame, and the push plate is in extrusion contact with the scraper frame; wherein the top of the air outlet pipe is slidingly inserted with a blocking frame, and the side of the blocking frame facing the central shaft is fixed with a protrusion, the surface of the central shaft parallel to the top of the air outlet pipe is fixed with a contact ring, the outside of the blocking frame is fixed with an elastic band, and the other end of the elastic band is fixedly connected with the air outlet pipe.

[0011] Optionally, the water quality detection assembly further comprises: a filter cartridge, a stop block, a circular plate, and a insertion rod, the filter cartridge is fixed inside the water inlet pipe at the bottom of the water tank, the circular plate is slidingly connected inside the filter cartridge, the stop block is slidingly inserted at the rear end of the filter cartridge, the insertion rod is fixed inside the stop block and fixedly connected with the circular plate through the stop block; wherein the outer end of the insertion rod penetrating out of the stop block is fixed with a vertical plate, and the bottom of the vertical plate is rotatably connected with a connecting rod.

[0012] Optionally, the top of the base is fixed with a sliding rail on one side of the vertical plate, and the surface of the sliding rail is slidingly sleeved with a moving plate, the bottom of the connecting rod is rotatably connected with the moving plate through a rotating shaft, the bottom of the moving plate is fixed with a second spring, and the second spring is fixedly connected with the base; wherein the bottom of the long rod connected with the first electric push rod is fixed with a right-angle frame, and the bottom of the right-angle frame is in sliding contact with the bottom of the moving plate.

[0013] Optionally, the top of the piston rod is fixed with a first spring on both sides, and the bottom of the first spring is fixedly connected with the bottom of the water tank; wherein the top plate is fixed with a contact frame on one side of the piston rod, and the top of the piston rod and the bottom of the contact frame are on the same vertical line.

[0014] Optionally, the soil detection assembly further comprises: a first screw rod, a connecting frame, a second screw rod, a second screw plate, and a connecting frame, the first screw rod is rotatably installed inside the first moving frame through a bearing, and the surface of the first screw rod is threadedly sleeved with the second screw plate, the second screw rod is rotatably installed inside the second moving frame through a bearing, and the first screw plate is threadedly sleeved on the surface of the second screw rod; wherein the inside of the first moving frame and the second moving frame corresponding to one end of the first screw rod and the second screw rod is fixed with a motor, the outer surface of the second screw plate is rotatably connected with the connecting frame, and the connecting frame is rotatably connected with the second moving frame through a rotating shaft.

[0015] Optionally, the back of the first moving frame is fixed with two second electric push rods at the middle position, and the elongated end of the second electric push rod is fixed with a soil detection device, and a detection probe is installed in the middle position of the soil detection device through the electric push rod.

[0016] Optionally, the inside of the collecting cylinder is slidingly connected with an inner cylinder, the top of the drill rod is rotatably installed on the inner wall of the top of the inner cylinder through a bearing, the top of the first screw plate is rotatably installed with a third electric push rod, and the elongated end of the third electric push rod is rotatably connected with the inner cylinder; wherein the top of the collecting cylinder is fixedly connected with a driving motor at the position of the third electric push rod, and the output end of the driving motor is fixedly connected with the top of the third electric push rod.

[0017] The technical scheme provided by the present disclosure can include the following beneficial effects: 1、The driving motor drives the gear to rotate and engage with the gear ring, the gear ring drives the central shaft to rotate, when the long rod is clamped in the inner part of the mounting ring through the convex strip, the air detection assembly and the soil detection assembly can rotate with the central shaft, different positions can be collected, and the interval between the water quality detection assembly and the central shaft will not interfere with the rotation of the air detection assembly and the soil detection assembly; 2、The fan inside the air inlet pipe sucks external air into the detection box, the air quality detection device inside the detection box detects the air quality and sends it out from the air outlet pipe, in the process of air inlet and outlet, the air will push the blocking frame inside the air outlet pipe upward to keep the opening of the through slot, when the dust screen is blocked, the air cannot continuously enter and send out, through the elastic force of the elastic belt, the blocking frame returns to the inside of the air outlet pipe, at this time, the through slot of the air outlet pipe is blocked, and the convex block of the side plate of the blocking frame contacts the contact ring, after the sensor inside the contact ring detects the signal, the first electric push rod drives the long rod to move downward, the push plate pushes the scraper frame to move downward, and the surface of the dust screen is cleaned, after the cleaning is completed, the air can continue to enter and send out, the air quality feedback is displayed on the display screen, when the air pollution degree is high, the display screen can be used for early warning, if the dust screen cannot be cleaned, the air detection device needs to be repaired manually; 3、The water flows through the inside of the filter cylinder and then flows into the inside of the water tank, the water level in the water tank gradually rises, the float ring moves upward, the piston rod penetrates out of the top of the water tank, and finally flows out from the water outlet pipe, the piston rod keeps the highest point when the balance is driven in the water tank, the water source in the water tank is detected through the water quality detection device, when the water quality is polluted, the feedback is displayed on the display screen, when the filter cylinder is blocked by impurities and phytoplankton, the water flow cannot continue to enter the water tank, and the water outlet pipe continues to drain water, the water level in the water tank decreases, and the float ring and the piston rod also decrease until the piston rod contacts the contact frame, the inside of the contact frame is provided with the same sensor as the contact ring, after contact, the signal is transmitted to the system end, the system controls the long rod of the first electric push rod to move upward, the moving plate bottom is extruded and contacted through the right-angle frame to slide along the slide rail, the vertical plate is pushed out through the connecting rod, and the plug rod, the stop block and the disc move along the axis of the filter cylinder; after the disc moves in the filter cylinder, the impurities on the inner wall of the filter cylinder can be discharged from the side opened by the stop block, the inside of the water outlet pipe is cleaned, so that the water inlet pipe can continue to feed water to maintain the water level in the water tank, and the water inlet pipe and the water outlet pipe are controlled to enter and exit water through the water pump; if the plug rod is moved by the long rod of the first electric push rod, the water quality detection assembly still cannot continue to be used, indicating that damage occurs in the assembly, and manual maintenance is required. 4、The motor in the first moving frame drives the first screw rod to rotate, the second screw plate moves in the first moving frame, the second moving frame is rotated and opened through the rotation of the connecting frame, or the second moving frame can be folded and combined, when the first moving frame and the second moving frame are folded together, the central shaft can drive the air detection assembly and the soil collection assembly to rotate to different positions for collection and detection, when the second moving frame is rotated and opened, the second moving frame can be kept parallel to the ground, the motor in the second moving frame drives the second screw rod to rotate, the first screw plate moves in the second moving frame, the collection cylinder is moved to different positions to collect the soil on the ground, the inner cylinder and the drill rod are driven downward by the third electric push rod, and the motor drives the inner cylinder and the drill rod to drill into the soil to collect the soil, then the second moving frame is folded back, the soil detection device is moved to the opening end of the collection cylinder by the second electric push rod on the back of the first moving frame, and the detection probe is inserted into the inner cylinder by the electric push rod to detect the collected soil in the inner cylinder.

[0018] Additional aspects and advantages of the present disclosure will be partially given in the following description, partially will become obvious from the following description, or will be understood by practicing the present disclosure. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and / or additional aspects and advantages of the present disclosure will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which: Figure 1It is the system control chart in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 2 It is the overall front structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 3 It is the overall back structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 4 It is the top plate top structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 5 It is the water quality detection assembly structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 6 It is the top plate and center shaft connection schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 7 It is the air detection assembly structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 8 It is the water inlet pipe internal structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 9 It is the second moving frame internal structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 10 It is the soil detection assembly structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 11 It is the soil collection device and first moving frame connection schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; Figure 12 It is the collection cylinder internal structure schematic diagram in the intelligent park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system proposed by an embodiment of the disclosure; As shown in the figure: 1, base; 11, center shaft; 12, contact ring; 13, push plate; 14, convex strip; 15, contact frame; 2, bottom column; 3, top plate; 31, display screen; 32, photovoltaic panel; 33, noise detection device; 34, driving motor; 35, gear ring; 36, gear; 37, first electric push rod; 4. Water quality testing components; 41. Water tank; 42. Piston rod; 43. First spring; 44. Outlet pipe; 45. Inlet pipe; 46. Slide rail; 47. Insert rod; 48. Vertical plate; 49. Connecting rod; 410. Moving plate; 411. Second spring; 412. Right-angle bracket; 413. Water quality testing device; 414. Filter cartridge; 415. Stop block; 416. Circular plate; 5. Air detection assembly; 51. Detection box; 52. Mounting ring; 53. Dustproof net; 54. Scraper frame; 55. Third spring; 56. Air outlet pipe; 57. Through groove; 58. Baffle frame; 59. Elastic band; 510. Air inlet pipe; 6. Soil testing components; 61. First movable frame; 62. Second movable frame; 63. First screw; 64. Connecting frame; 65. Second screw; 66. First screw plate; 67. Sampling cylinder; 68. Second screw plate; 69. Second electric push rod; 610. Soil testing device; 611. Testing probe; 612. Inner cylinder; 613. Drill rod; 614. Drive motor; 615. Third electric push rod. Detailed Implementation

[0020] Embodiments of this disclosure are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are used only to explain this disclosure, and should not be construed as limiting this disclosure. Rather, embodiments of this disclosure include all variations, modifications, and equivalents falling within the spirit and scope of the appended claims.

[0021] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 6 , Figure 7 and Figure 8As shown in the figure, this disclosure proposes a real-time monitoring and intelligent early warning system for multi-dimensional environmental parameters in a smart park, comprising: a base 1, with a base column 2 fixed at the center of the top of the base 1, and a central shaft 11 rotatably mounted on the top of the base column 2; a top plate 3, with the top of the central shaft 11 rotatably connected to the top of the top plate 3, a photovoltaic panel 32 fixedly mounted on the top of the top plate 3, and a noise detection device 33 fixedly mounted on the outer periphery of the top of the top plate 3; and an air detection component 5, which includes a mounting ring 52 rotatably mounted on the surface of the central shaft 11. A detection box 51 is fixed to the outside of the base 1. An air inlet pipe 510 is provided on the surface of the detection box 51 away from the central axis 11, and an air outlet pipe 56 is fixed to the top of the detection box 51. The outer surface of the air outlet pipe 56 is provided with through grooves 57 at equal intervals. A display screen 31 is fixed to the top plate 3 on the counterclockwise side of the detection box 51. A water quality detection component 4 includes a water tank 41. The water tank 41 is fixed to the top of the base 1 on the side away from the detection box 51. A water inlet pipe 45 is fixed to the bottom of the water tank 41, and a water outlet pipe is fixed to the top side of the water tank 41. Pipe 44, a piston rod 42 is slidably inserted into the top of the water tank 41, and a float ring is fixed to the bottom of the piston rod 42. A water quality testing device 413 is fixed to one side of the top of the water tank 41, and the testing end of the water quality testing device 413 is inserted into the water tank 41. Soil testing component 6, the soil testing component 6 includes a first movable frame 61, the top of the first movable frame 61 is fixed on the central shaft 11, and the first movable frame 61 and the display screen 31 are located on opposite sides of the central shaft 11. The bottom of the first movable frame 61 is rotatably connected to a second movable frame 62 through a rotating shaft. The first screw plate 66 is slidably connected inside the 62. The bottom of the first screw plate 66 is fixed with a collection cylinder 67, and a drill rod 613 is provided inside the collection cylinder 67. When the device is in use, the photovoltaic panel 32 generates electricity to provide power for the device. The air quality around the device is detected by the air detection component 5, the water pollution level of the water area near the park is detected by the water quality detection component 4, and the pollution level and humidity of the soil around the device are detected by the soil detection component 6. The detection results are fed back to the display screen 31. When the detection data exceeds the predetermined value, an early warning is issued through the display screen 31.

[0022] like Figure 5 , Figure 6 and Figure 7As shown, in some embodiments, a gear ring 35 is fixed to the top outer ring of the central shaft 11, and a gear 36 is meshed with one side of the gear ring 35. The gear 36 is rotatably mounted on the bottom of the top plate 3 via a bearing. A drive motor 34 is fixed to the top of the top plate 3 at the position corresponding to the gear 36, and the output end of the drive motor 34 is fixedly connected to the gear 36. The bottom of the gear ring 35 is fixed to the two sides of the central shaft 11 with a first electric push rod 37, and a long rod is fixed to the extended end of the first electric push rod 37. The long rod of the extended end of the first electric push rod 37 slides through the mounting ring 52. A protrusion 14 is fixed to the surface of the extended end of the first electric push rod 37, and the protrusion 14 is engaged inside the mounting ring 52.

[0023] It is understandable that by driving the gear 36 to rotate through the drive motor 34 and meshing with the gear ring 35, the gear ring 35 drives the central shaft 11 to rotate. When the long rod is engaged inside the mounting ring 52 by the protrusion 14, the air detection component 5 and the soil detection component 6 can rotate with the central shaft 11 to collect data at different locations. Furthermore, the distance between the water quality detection component 4 and the central shaft 11 will not interfere with the rotation of the air detection component 5 and the soil detection component 6.

[0024] like Figure 6 and Figure 7 As shown, in some embodiments, the air detection assembly 5 further includes: a dustproof net 53, a scraper frame 54, a third spring 55, a baffle frame 58, and an elastic band 59. The dustproof net 53 is fixed to one outward-facing end of the air inlet pipe 510. The scraper frame 54 is slidably connected to both sides of the detection box 51, with one end of the scraper frame 54 slidingly contacting the surface of the dustproof net 53, and the other end of the scraper frame 54 slidably sleeved on the central shaft 11. A third spring 55 is fixed to the surfaces of both sides of the detection box 51, and the other end of the third spring 55... The end is fixedly connected to the scraper frame 54. The long rod connected to the first electric push rod 37 is fixed with a push plate 13 on the surface of the scraper frame 54, and the push plate 13 is in contact with the scraper frame 54. The top of the air outlet pipe 56 is slidably inserted with a baffle 58, and a protrusion is fixed on the side of the baffle 58 facing the central axis 11. A contact ring 12 is fixed on the surface of the central axis 11 parallel to the top of the air outlet pipe 56. An elastic band 59 is fixed on the outside of the baffle 58, and the other end of the elastic band 59 is fixedly connected to the air outlet pipe 56.

[0025] Understandably, outside air is drawn into the detection chamber 51 by the fan inside the intake pipe 510. After the air quality is detected by the air detection device inside the detection chamber 51, the air is sent out through the exhaust pipe 56. During the intake and exhaust process, the air will push the baffle 58 inside the exhaust pipe 56 upward, keeping the passage 57 open. When the dust screen 53 is blocked, air cannot continuously enter and exit. Through the elastic force of the elastic band 59, the baffle 58 returns to the exhaust pipe 56. At this time, the passage 57 of the exhaust pipe 56 is blocked, and the protrusion on the side plate of the baffle 58... When the device comes into contact with the contact ring 12, a signal is detected by the sensor inside the contact ring 12. The sensor then controls the first electric push rod 37 to move the long rod downwards. The push plate 13 then pushes the scraper frame 54 downwards to clean the surface of the dustproof net 53. After cleaning, air can continue to enter for detection and exit. The detected air quality is displayed on the screen 31. When the air pollution level is high, a warning can be issued through the screen 31. If normal air circulation cannot be maintained after cleaning the dustproof net 53, the air detection device needs to be manually inspected.

[0026] like Figure 5 and Figure 7 As shown, in some embodiments, the water quality testing component 4 further includes: a filter cartridge 414, a baffle 415, a circular plate 416, and a rod 47. The filter cartridge 414 is fixed inside the water inlet pipe 45 at the bottom of the water tank 41. The circular plate 416 is slidably connected inside the filter cartridge 414. The baffle 415 is slidably inserted into the rear end of the filter cartridge 414 of the water inlet pipe 45. The rod 47 is fixed inside the baffle 415 and passes through the baffle 415, being fixedly connected to the circular plate 416. A vertical plate 48 is fixed to the outer end of the rod 47 extending from the baffle 415. A connecting rod 49 is rotatably connected to the bottom of the vertical plate 48. A slide rail 46 is fixed to the top of the base 1 on one side of the vertical plate 48. A movable plate 410 is slidably sleeved on the surface of the slide rail 46. The bottom of the connecting rod 49 is rotatably connected to the movable plate 410 via a rotating shaft. A second spring 411 is fixed to the bottom of the movable plate 410 and is fixedly connected to the base 1. A right-angle bracket 412 is fixed to the bottom of the long rod connected to the first electric push rod 37. The bottom of the right-angle bracket 412 is in sliding contact with the bottom of the movable plate 410. A first spring 43 is fixed to both sides of the top of the piston rod 42 and the bottom of the first spring 43 is fixedly connected to the bottom of the water tank 41. A contact frame 15 is fixed to one side of the piston rod 42 on the top plate 3, and the top of the piston rod 42 and the bottom of the contact frame 15 are on the same vertical line.

[0027] It should be noted that under normal conditions, the baffle 415 blocks the rear end of the filter cartridge 414, and the circular plate 416 is located at the front end of the filter cartridge 414. At this time, the water inside the inlet pipe 45 flows through the inside of the filter cartridge 414 and then into the water tank 41. The water level in the water tank 41 gradually rises, the float ring moves upward, the piston rod 42 passes through the top of the water tank 41, and finally flows out from the outlet pipe 44. When the water tank 41 is balanced, the piston rod 42 remains at its highest point. The water quality detection device 413 detects the water source inside the water tank 41. When the water quality is polluted, the feedback is displayed on the display screen 31. When the filter cartridge 414 is blocked by impurities and phytoplankton, the water flow cannot continue to enter the water tank 41, while the outlet pipe 44 continues to drain water. The water level inside the water tank 41 drops, and the float ring and piston rod 42 also drop until the piston rod 42 contacts the contact frame 15. The contact frame 15 is provided with a contact mechanism. The same sensor as the ring 12 transmits a signal to the system after contact. The system controls the long rod of the first electric push rod 37 to move upward. The right-angle bracket 412 presses against the bottom of the moving plate 410 and slides along the slide rail 46. The connecting rod 49 pushes the vertical plate 48 to move outward. At the same time, the insert rod 47, the stop block 415 and the circular plate 416 move along the axis of the filter cartridge 414. After the circular plate 416 moves inside the filter cartridge 414, it can discharge the impurities on the inner wall of the filter cartridge 414 from the side opened by the stop block 415, cleaning the inside of the water outlet pipe 44. Thus, the water inlet pipe 45 can continue to enter water to maintain the water level inside the water tank 41. The water inlet pipe 45 and the water outlet pipe 44 are both controlled by a water pump. If the water quality detection component 4 still cannot be used after the long rod of the first electric push rod 37 pushes the insert rod 47 to move, it means that the component is damaged and needs to be repaired manually.

[0028] like Figure 9 , Figure 10 , Figure 11 and Figure 12As shown, in some embodiments, the soil testing component 6 further includes: a first screw 63, a connecting frame 64, a second screw 65, a second screw plate 68, and a connecting frame 64. The first screw 63 is rotatably mounted inside the first movable frame 61 via a bearing, and the second screw plate 68 is threaded onto the surface of the first screw 63. The second screw 65 is rotatably mounted inside the second movable frame 62 via a bearing, and the first screw plate 66 is threaded onto the surface of the second screw 65. A motor is fixed inside the first movable frame 61 and the second movable frame 62 at one end corresponding to the first screw 63 and the second screw 65. The connecting frame 64 is rotatably connected to the outer surface of the second screw plate 68, and the connecting frame 64 is rotatably connected to the second movable frame 62 via a rotating shaft. Two second electric push rods 69 are fixed at the middle position of the back of the 61, and a soil testing device 610 is fixed at the extended end of the second electric push rod 69. A detection probe 611 is installed at the middle position of the soil testing device 610 through the electric push rod. An inner cylinder 612 is slidably inserted into the inside of the collection cylinder 67. The top of the drill rod 613 is rotatably mounted on the top inner wall of the inner cylinder 612 through a bearing. A third electric push rod 615 is rotatably mounted on the top of the first screw plate 66, and the extended end of the third electric push rod 615 rotatably passes through the collection cylinder 67 and is fixedly connected to the inner cylinder 612. A drive motor 614 is fixed at the top of the collection cylinder 67 at the position of the third electric push rod 615, and the output end of the drive motor 614 is fixedly connected to the top of the third electric push rod 615.

[0029] It should be noted that the first screw 63 is driven to rotate by the motor inside the first moving frame 61, and the second screw plate 68 moves along the inside of the first moving frame 61. The second moving frame 62 is opened by rotating the connecting frame 64, or it can be folded together. When the first moving frame 61 and the second moving frame 62 are folded together, the central shaft 11 can easily drive the air detection component 5 and the soil collection component to rotate to different positions for collection and detection. When the second moving frame 62 is opened, it can remain parallel to the ground. The second screw 65 is driven to rotate by the motor inside the second moving frame 62, and the first screw plate 66 moves along the inside of the second moving frame 62, moving the collection cylinder 67. The device moves to different locations to collect soil samples. The third electric push rod 615 drives the inner cylinder 612 and drill rod 613 downwards, and the drive motor 614 drives the inner cylinder 612 and drill rod 613 to drill into the soil to collect samples. Then, the second moving frame 62 is folded back, and the second electric push rod 69 on the back of the first moving frame 61 drives the soil detection device 610 to the opening end of the collection cylinder 67. The electric push rod pushes the detection probe 611 to insert into the inner cylinder 612 to detect the soil collected in the inner cylinder 612. An alarm system is installed in the soil detection device 610. When the detected indicators show pollution, the alarm is displayed on the screen 31 for a warning.

[0030] Working principle: When the device is in use, the photovoltaic panel 32 generates electricity to power the device. The drive motor 34 drives the gear 36 to rotate and mesh with the gear ring 35. The gear ring 35 drives the central shaft 11 to rotate. When the long rod is engaged inside the mounting ring 52 by the protrusion 14, the air detection component 5 and the soil detection component 6 can rotate with the central shaft 11 to collect data at different locations. The distance between the water quality detection component 4 and the central shaft 11 will not interfere with the rotation of the air detection component 5 and the soil detection component 6. The fan inside the air intake pipe 510 draws outside air into the detection box 51. After the air quality is detected by the air detection device inside the detection box 51, it is sent out through the air outlet pipe 56. During the air intake and exhaust process, the air will push the baffle 58 inside the air outlet pipe 56 towards the outside air. The top is opened, keeping the through slot 57 open. When the dust filter 53 is blocked, air cannot continuously enter and exit. Through the elastic force of the elastic band 59, the baffle 58 returns to the inside of the air outlet pipe 56. At this time, the through slot 57 of the air outlet pipe 56 is blocked, and the protrusion on the side plate of the baffle 58 contacts the contact ring 12. After the sensor inside the contact ring 12 detects the signal, it controls the first electric push rod 37 to drive the long rod downward, and pushes the scraper frame 54 downward through the push plate 13 to clean the surface of the dust filter 53. After cleaning, air can continue to enter, detect, and exit. The detected air quality is fed back to the display screen 31. When the air pollution level is high, a warning can be issued through the display screen 31. If there is still no air pollution after cleaning the dust filter 53, the warning will be issued. If normal air circulation cannot be maintained, manual maintenance of the air detection device is required. Water flows through the filter cartridge 414 from the inlet pipe 45 and then into the water tank 41. The water level in the tank 41 gradually rises, the float ring moves upward, and the piston rod 42 protrudes from the top of the tank 41, finally flowing out from the outlet pipe 44. When the water tank 41 is balanced, the piston rod 42 remains at its highest point. The water quality detection device 413 monitors the water source inside the tank 41. When the water quality is polluted, feedback is displayed on the screen 31. When the filter cartridge 414 is blocked by impurities and phytoplankton, water cannot continue to enter the tank 41, and the outlet pipe 44 continues to drain water. The water level in the tank 41 drops, and the float ring and piston rod 42 also descend until the piston rod 42... 2. Contact with the contact frame 15. The contact frame 15 is equipped with a sensor identical to the contact ring 12. After contact, the signal is transmitted to the system. The system controls the long rod of the first electric push rod 37 to move upward. Through the right-angle frame 412, it presses against the bottom of the moving plate 410 and slides along the slide rail 46. Through the connecting rod 49, it pushes the vertical plate 48 to move outward. At the same time, the insertion rod 47, the stop block 415, and the circular plate 416 move along the axis of the filter cartridge 414. After the circular plate 416 moves inside the filter cartridge 414, it can discharge the impurities on the inner wall of the filter cartridge 414 from the open side of the stop block 415, cleaning the inside of the water outlet pipe 44. Thus, the water inlet pipe 45 can continue to supply water to maintain the water level inside the water tank 41. The water inlet pipe 45 and the water outlet pipe 44 are both controlled by a water pump to control the water inlet and outlet.If the water quality detection component 4 still cannot be used after the insertion rod 47 is moved by the long rod of the first electric push rod 37, it indicates that the component is damaged internally and requires manual repair. The first screw 63 is driven to rotate by the motor inside the first moving frame 61, and the second screw plate 68 moves along the inside of the first moving frame 61. The second moving frame 62 is opened by rotating the connecting frame 64, or it can be folded together. When the first moving frame 61 and the second moving frame 62 are folded together, the central shaft 11 can easily drive the air detection component 5 and the soil sampling component to rotate to different positions for sampling and testing. When the second moving frame 62 is opened, it can remain parallel to the ground. The second screw 65 is driven to rotate by the motor inside the second moving frame 62, and the first screw plate 66 moves along the second... The moving frame 62 moves internally, moving the collection tube 67 to different positions to collect soil samples. A third electric push rod 615 moves the inner tube 612 and drill rod 613 downwards, and a drive motor 614 drives the inner tube 612 and drill rod 613 into the soil to collect samples. Then, the second moving frame 62 is folded back, and a second electric push rod 69 on the back of the first moving frame 61 moves the soil detection device 610 to the open end of the collection tube 67. The electric push rod pushes the detection probe 611 into the inner tube 612 to detect the soil collected in the inner tube 612. An alarm system is installed in the soil detection device 610. When the detected indicators show pollution, a warning is displayed on the screen 31. When the detection data exceeds a predetermined value, a warning is also displayed on the screen 31.

[0031] In the description of this disclosure, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this disclosure, unless otherwise stated, "a plurality of" means two or more.

[0032] Any process or method description in the flowchart or otherwise herein can be understood as representing a module, segment, or portion of code comprising one or more executable instructions for implementing a particular logical function or process, and the scope of preferred embodiments of this disclosure includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order depending on the function involved, as will be understood by those skilled in the art to which embodiments of this disclosure pertain.

[0033] In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this disclosure. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0034] Although embodiments of the present disclosure have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present disclosure. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present disclosure.

Claims

1. A smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system, characterized in that, include: The base (1) has a bottom column (2) fixed at the top center of the base (1), and a central shaft (11) is rotatably mounted on the top of the bottom column (2). Top plate (3), the top of the central shaft (11) is rotatably connected to the top of the top plate (3), the top of the top plate (3) is fixedly installed with a photovoltaic panel (32), and the top periphery of the top of the top plate (3) is fixed with a noise detection device (33). An air detection assembly (5) includes a mounting ring (52) which is rotatably mounted on the surface of a central shaft (11). A detection box (51) is fixed to the outside of the mounting ring (52). An air inlet pipe (510) is provided on the surface of the detection box (51) away from the central shaft (11). An air outlet pipe (56) is fixed to the top of the detection box (51). Through grooves (57) are provided at equal intervals on the outer surface of the air outlet pipe (56). The top plate (3) is fixed with a display screen (31) that displays environmental parameter detection data on the counterclockwise side of the detection box (51). Water quality testing component (4), the water quality testing component (4) includes a water tank (41), the water tank (41) is fixed on the top of the base (1) away from the testing box (51), the water tank (41) is fixed on the bottom of the water tank (41) with an inlet pipe (45), and the water tank (41) is fixed on the top side with an outlet pipe (44). The top of the water tank (41) is slidably connected with a piston rod (42), and the bottom of the piston rod (42) is fixed with a float ring. The top side of the water tank (41) is fixed with a water quality testing device (413) for detecting the degree of water pollution, and the testing end of the water quality testing device (413) is inserted into the water tank (41). Soil testing component (6), the soil testing component (6) includes a first movable frame (61), the top of the first movable frame (61) is fixed on the central shaft (11), and the first movable frame (61) and the display screen (31) are located on both sides of the central shaft (11). The bottom of the first movable frame (61) is rotatably connected to a second movable frame (62) through a rotating shaft. The interior of the second movable frame (62) is slidably connected to a first screw plate (66). The bottom of the first screw plate (66) is fixed with a collection tube (67) for collecting soil material, and a drill rod (613) is provided inside the collection tube (67).

2. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 1, characterized in that, A gear ring (35) is fixed on the top outer ring of the central shaft (11). A gear (36) is meshed with one side of the gear ring (35). The gear (36) is rotatably mounted on the bottom of the top plate (3) through a bearing. A drive motor (34) is fixed on the top of the top plate (3) at the position corresponding to the gear (36). The output end of the drive motor (34) is fixedly connected to the gear (36). Under the drive of the drive motor (34), the gear (36) rotates and meshes with the gear ring (35). The central shaft (11) rotates together with the gear ring (35). Among them, the bottom of the toothed ring (35) is fixed with a first electric push rod (37) on both sides of the central shaft (11), and the extended end of the first electric push rod (37) is fixed with a long rod, and the long rod of the extended end of the first electric push rod (37) slides through the mounting ring (52). The long rod of the extended end of the first electric push rod (37) passes through the surface of the mounting ring (52) and is fixed with a protrusion (14), and the protrusion (14) is engaged inside the mounting ring (52). The first electric push rod (37) drives the long rod to slide along both sides of the central shaft (11). The top and bottom of the long rod of the first electric push rod (37) act on the air detection component (5) and the water quality detection component (4) respectively.

3. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 2, characterized in that, The air detection component (5) also includes: The dustproof net (53), scraper frame (54), third spring (55), baffle frame (58), elastic band (59) are provided. The dustproof net (53) is fixed to the outward end of the air inlet pipe (510). The scraper frame (54) is slidably connected to both sides of the detection box (51). One end of the scraper frame (54) is in sliding contact with the surface of the dustproof net (53). The other end of the scraper frame (54) is slidably sleeved on the central shaft (11). The dustproof net (53) isolates impurities and dust in the air. The detection box (51) has a third spring (55) fixed on both sides of its surface, and the other end of the third spring (55) is fixedly connected to the scraper frame (54).

4. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 3, characterized in that, The long rod connected to the first electric push rod (37) is fixed with a push plate (13) on the surface of the scraper frame (54), and the push plate (13) is pressed against the scraper frame (54). The long rod of the first electric push rod (37) drives the scraper frame (54) to move downward to clean the outer surface of the dustproof net (53). The top of the air outlet pipe (56) is slidably connected to a baffle (58), and a protrusion is fixed on the side of the baffle (58) facing the central axis (11). A contact ring (12) is fixed on the surface of the central axis (11) parallel to the top of the air outlet pipe (56). An elastic band (59) is fixed on the outside of the baffle (58), and the other end of the elastic band (59) is fixedly connected to the air outlet pipe (56). The elastic band (59) assists in the retraction of the baffle (58).

5. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 2, characterized in that, The water quality testing component (4) also includes: The filter cartridge (414), baffle (415), circular plate (416), and insert rod (47) are provided. The filter cartridge (414) is fixed inside the water inlet pipe (45) at the bottom of the water tank (41). The circular plate (416) is slidably connected inside the filter cartridge (414). The baffle (415) is slidably inserted into the rear end of the filter cartridge (414) of the water inlet pipe (45). The insert rod (47) is fixed inside the baffle (415) and passes through the baffle (415) and is fixedly connected to the circular plate (416). The insert rod (47), baffle (415), and circular plate (416) can move along the inside of the filter cartridge (414). The circular plate (416) can clean the inner wall of the filter cartridge (414) during the movement. The insert rod (47) is fixed to a vertical plate (48) at the outer end of the stop block (415), and a connecting rod (49) is rotatably connected to the bottom of the vertical plate (48).

6. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 5, characterized in that, The top of the base (1) is fixed with a slide rail (46) on one side of the vertical plate (48), and a movable plate (410) is slidably sleeved on the surface of the slide rail (46). The bottom of the connecting rod (49) is rotatably connected to the movable plate (410) through a rotating shaft. The bottom of the movable plate (410) is fixed with a second spring (411), and the second spring (411) is fixedly connected to the base (1). The second spring (411) assists the movable plate (410) to return to its original position. Among them, the bottom of the long rod connected to the first electric push rod (37) is fixed with a right angle bracket (412). The bottom of the right angle bracket (412) slides in contact with the bottom of the moving plate (410). When the right angle bracket (412) moves upward, it will push the moving plate (410) to move upward together.

7. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 6, characterized in that, The piston rod (42) is fixed with first springs (43) on both sides of the top, and the bottom of the first springs (43) is fixedly connected to the bottom of the water tank (41); The top plate (3) is fixed with a contact frame (15) on one side of the piston rod (42), and the top of the piston rod (42) and the bottom of the contact frame (15) are on the same vertical line.

8. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 1, characterized in that, The soil testing component (6) also includes: The first screw (63), the connecting frame (64), the second screw (65), the second screw plate (68), the connecting frame (64), the first screw (63) is rotatably mounted inside the first movable frame (61) through a bearing, and the second screw plate (68) is threaded onto the surface of the first screw (63). The second screw (65) is rotatably mounted inside the second movable frame (62) through a bearing, and the first screw plate (66) is threaded onto the surface of the second screw (65). The second screw plate (68) inside the first movable frame (61) drives the second movable frame (62) to unfold and fold. Among them, the first movable frame (61) and the second movable frame (62) are respectively fixed with motors inside one end of the first screw (63) and the second screw (65). The outer surface of the second screw plate (68) is rotatably connected with a connecting frame (64), and the connecting frame (64) is rotatably connected to the second movable frame (62) through a rotating shaft.

9. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 8, characterized in that, Two second electric push rods (69) are fixed at the middle position of the back of the first movable frame (61), and a soil testing device (610) is fixed at the extended end of the second electric push rod (69). A detection probe (611) is installed at the middle position of the soil testing device (610) through the electric push rod. The detection probe (611) detects the degree of soil pollution inside the collection tube (67).

10. The smart park multi-dimensional environmental parameter real-time monitoring and intelligent early warning system according to claim 9, characterized in that: The inner cylinder (612) is slidably inserted into the inside of the collection cylinder (67). The top of the drill rod (613) is rotatably mounted on the inner wall of the top of the inner cylinder (612) through a bearing. The top of the first screw plate (66) is rotatably mounted with a third electric push rod (615), and the extended end of the third electric push rod (615) rotatably passes through the collection cylinder (67) and is fixedly connected to the inner cylinder (612). The top of the collection tube (67) is fixed with a drive motor (614) at the position of the third electric push rod (615), and the output end of the drive motor (614) is fixedly connected to the top of the third electric push rod (615). The third electric push rod (615) and the drive motor (614) drive the drill rod (613) and the inner tube (612) to drill into the ground and collect soil into the inner tube (612).

Citation Information

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