Environment monitoring equipment for smart park

By integrating environmental monitoring equipment with multiple sensors and intelligent control systems, the problems of low equipment integration and insufficient intelligence in smart parks have been solved, multi-parameter monitoring, automatic data processing and remote management have been achieved, and the stability and functionality of the equipment have been improved.

CN223426005UActive Publication Date: 2025-10-10JIANGSU SIXIN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422672332.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-10-10
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing smart park environmental monitoring equipment has low integration, low intelligence, weak data processing capabilities, inconvenient maintenance, unstable energy supply, single functions, and cannot achieve real-time monitoring and remote management.

Method used

An environmental monitoring device was designed that integrates multiple sensors and an intelligent control system. The device includes air quality, noise, temperature and humidity, and light intensity sensors. It is equipped with a photovoltaic panel power supply, an inverter, a data processor, and a wireless communication module. It supports Wi-Fi, 4G/5G, and LoRa protocols, and is equipped with a camera and LED lights to achieve multi-parameter monitoring, automatic data processing, and remote transmission.

Benefits of technology

It realizes comprehensive multi-parameter monitoring of the park environment, is highly integrated and intelligent, supports real-time data collection, processing and transmission, provides remote monitoring and early warning, ensures stable power supply, simplifies maintenance work, and enhances equipment functionality and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of environment monitoring equipment, in particular to environment monitoring equipment for a smart park, which comprises a detection frame, a control box arranged on the detection frame, a data processor arranged on the control box and a plurality of sensors arranged on the detection frame. The sensors comprise an air quality sensor, a noise sensor, a temperature and humidity sensor and an illumination intensity sensor, the side of the detection frame is provided with a plurality of mounting frames and a data port, and the data port is connected with the data processor through a wire; a plurality of sensors such as an air quality sensor, a noise sensor, a temperature and humidity sensor and an illumination intensity sensor are integrated on the detection frame, various environmental parameters in the park can be monitored at the same time, multifunctionality is achieved, an open groove is formed in the inner side of the bent frame, a camera is hinged to the bottom end of the bent frame, and an LED lamp is installed at the top end of the bent frame. And the camera can be used for video monitoring, and the LED lamp can provide illumination at night or when light is insufficient, so that the functionality and practicability of the equipment are enhanced.
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Description

Technical Field

[0001] The utility model relates to the field of environmental monitoring equipment, specifically an environmental monitoring equipment for a smart park. Background Art

[0002] With the acceleration of urbanization and the rapid development of industrial parks, the construction of smart parks has become a crucial means of improving park management and environmental quality. Traditional environmental monitoring methods typically rely on manual sampling and laboratory analysis, which can lead to data lag, high costs, and low efficiency. In recent years, with the advancement of the Internet of Things (IoT) and sensor technologies, sensor-based environmental monitoring systems have gradually been adopted in smart parks. However, existing monitoring equipment still lacks integration, intelligence, and data processing capabilities.

[0003] Main problems with existing technologies

[0004] Low integration:

[0005] Traditional environmental monitoring equipment can usually only monitor a single or a few environmental parameters, such as air quality, temperature and humidity, and cannot fully reflect the overall environmental conditions of the park.

[0006] Multiple sensors need to be installed and maintained separately, increasing the complexity and cost of the system.

[0007] Low degree of intelligence:

[0008] Traditional equipment lacks automated data processing and analysis capabilities and requires a lot of manual intervention.

[0009] After data collection, it often requires manual organization and analysis, making real-time monitoring and early warning impossible.

[0010] Weak data processing capabilities:

[0011] Traditional equipment has limited data processing capabilities, making it difficult to process and analyze large-scale data in real time.

[0012] Lack of cloud platform support makes remote monitoring and data analysis impossible.

[0013] Inconvenient maintenance:

[0014] Equipment failure diagnosis and maintenance are difficult, affecting the stable operation of the system.

[0015] The installation positions of sensors and equipment are fixed, making adjustment and replacement inconvenient.

[0016] Unstable energy supply:

[0017] Traditional devices usually rely on external power supply. Once the power is interrupted, the device will not work properly.

[0018] In outdoor environments, power supply may be affected by weather and other factors.

[0019] Single function:

[0020] Traditional equipment usually only has environmental monitoring functions and lacks functions such as video surveillance and lighting, and cannot meet the needs of smart parks for multi-functional equipment. Utility Model Content

[0021] (1) Technical problems solved

[0022] In view of the deficiencies in the existing technology, the present invention provides an environmental monitoring device for a smart park.

[0023] (2) Technical solution

[0024] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: The present invention is an environmental monitoring equipment for a smart park, comprising a detection frame, a control box is provided on the detection frame, a data processor is provided on the control box, a plurality of sensors are provided on the detection frame, and the sensors include air quality sensors, noise sensors, temperature and humidity sensors, and light intensity sensors. The side of the detection frame is provided with a plurality of mounting frames and data ports, the data ports are connected to the data processor through wires, the sensors are fixedly mounted on the mounting frames, and the sensors are adapted to the data ports through wires. A photovoltaic panel is installed on the surface of the detection frame, a power module is provided in the control box, the power module is electrically connected to the data processor and the sensor, a power port is provided on the control box, the power port is electrically connected to the data processor, and the photovoltaic panel is electrically connected to the power module through an inverter.

[0025] Preferably, a bending frame is provided on the top of the detection frame, a slot is provided on the inner side of the bending frame, data ports are provided at both ends of the slot, a camera is hinged at the bottom end of the slot, an LED light is installed at the top end of the slot, and the camera and the LED light are both electrically connected to the data port.

[0026] Further preferably, the detection frame is provided with a folding groove, the mounting frame is hinged in the folding groove through a pin shaft, and the end of the pin shaft is installed with a limit nut through a threaded structure.

[0027] Again preferably, the mounting bracket is made of metal, and a magnet is embedded in the folding groove, and the magnet is used to adsorb the mounting bracket.

[0028] Preferably, a cavity is provided inside the detection frame and the bending frame, and the cavity is used to guide the circuit.

[0029] Further preferably, a display is provided on the front side of the control box, and the display is electrically connected to the data processor.

[0030] Again preferably, the data processor is configured with a wireless communication module, and the wireless communication module supports wireless communication protocols of Wi-Fi, 4G / 5G and LoRa.

[0031] (3) Beneficial effects

[0032] Compared with the existing technology, the present invention provides an environmental monitoring device for smart parks, which has the following beneficial effects:

[0033] Multi-parameter comprehensive monitoring:

[0034] Multiple sensors: The detection rack is integrated with multiple sensors such as air quality sensors, noise sensors, temperature and humidity sensors, and light intensity sensors, which can simultaneously monitor multiple environmental parameters in the park.

[0035] Comprehensive coverage: Through multi-parameter monitoring, the overall environmental conditions of the park can be fully reflected, providing managers with detailed data support.

[0036] Highly integrated design:

[0037] Integrated structure: The detection frame is equipped with a control box, which integrates key components such as data processor and power module, realizing a highly integrated design.

[0038] Flexible installation: There are several mounting brackets on the side of the detection frame, and the sensors are fixedly installed on these mounting brackets for easy adjustment and maintenance.

[0039] Cavity guides circuits: There are cavities inside the detection frame and bending frame to guide circuits, keep the equipment tidy and protect the wires.

[0040] Intelligent data processing and transmission:

[0041] Automatic data acquisition: The data collected by the sensor is transmitted to the data processor through wires, and the data processor performs preliminary processing on the data.

[0042] Wireless communication module: The data processor is equipped with a wireless communication module that supports multiple wireless communication protocols such as Wi-Fi, 4G / 5G and LoRa to achieve remote data transmission.

[0043] Energy saving and environmental protection:

[0044] Photovoltaic power supply: Photovoltaic panels are installed on the surface of the detection frame, which convert solar energy into electrical energy through an inverter and store it in the power module to provide clean and renewable energy for the equipment.

[0045] Backup power supply: The control box is equipped with a power port, which can be powered by an external power supply when needed to ensure long-term stable operation of the equipment.

[0046] Versatility:

[0047] Camera and LED Light: The curved frame features a slotted interior with a camera hinged at the bottom and an LED light mounted at the top. The camera can be used for video surveillance, while the LED light provides illumination at night or in low light conditions, enhancing the device's functionality and practicality.

[0048] Folding slot design: The detection frame features a folding slot, into which the mounting frame is hinged via a pin, facilitating adjustment of the sensor's position. A threaded stop nut secures the end of the pin, ensuring the stability of the mounting frame. A magnetic attachment feature further enhances the mounting frame's robustness.

[0049] High reliability:

[0050] Redundant design: The equipment adopts dual power supply methods of photovoltaic panels and external power supply to ensure the stability of power supply. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] Figure 1 This is a schematic diagram of the structure of the utility model when viewed from above;

[0052] Figure 2 This is a schematic diagram of the top view of the structure of the utility model;

[0053] Figure 3 This is a schematic diagram of the cross-sectional structure of the detection frame of the utility model;

[0054] Figure 4 This is a schematic diagram of the cross-sectional structure of the control box of the utility model;

[0055] In the figure: 1. Detection frame; 2. Bending frame; 3. Air quality sensor; 4. Light intensity sensor; 5. Noise sensor; 6. Temperature and humidity sensor; 7. Control box; 8. Data processor; 9. Power module; 10. Power port; 11. Photovoltaic panel; 12. Data port; 13. Mounting frame; 14. Folding groove; 15. Magnet; 16. Limit nut; 17. Slot; 18. Camera; 19. LED light; 20. Display; 21. Cavity. DETAILED DESCRIPTION

[0056] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0057] See also Figure 1-4 The utility model is an environmental monitoring equipment for a smart park, comprising a detection frame 1, a control box 7 is provided on the detection frame 1, a data processor 8 is provided on the control box 7, a plurality of sensors are provided on the detection frame 1, and the sensors include an air quality sensor 3, a noise sensor 5, a temperature and humidity sensor 6, and a light intensity sensor 4. The side of the detection frame 1 is provided with a plurality of mounting frames 13 and a data port 12, the data port 12 is connected to the data processor 8 through a wire, the sensor is fixedly mounted on the mounting frame 13, and the sensor is adapted to the data port 12 through a wire, a photovoltaic panel 11 is installed on the surface of the detection frame 1, a power module 9 is provided in the control box 7, the power module 9 is electrically connected to the data processor 8 and the sensor, a power port 10 is provided on the control box 7, the power port 10 is electrically connected to the data processor 8, and the photovoltaic panel 11 is electrically connected to the power module 9 through an inverter.

[0058] This environmental monitoring device for smart parks can monitor multiple environmental parameters in real time within the park and automatically collect, process, and transmit data through an integrated design and intelligent control system. The following is the working principle of the device and the working principles of various preferred technical solutions:

[0059] Overall working principle

[0060] Data collection:

[0061] A plurality of sensors are installed on the detection frame 1 , including an air quality sensor 3 , a noise sensor 5 , a temperature and humidity sensor 6 , and a light intensity sensor 4 .

[0062] These sensors collect various environmental parameters within the park in real time.

[0063] Data processing and transmission:

[0064] The collected data is transmitted to the data processor 8 in the control box 7 via wires.

[0065] The data processor 8 performs preliminary processing on the data and transmits the data to the cloud platform or monitoring center through the wireless communication module.

[0066] Power Management:

[0067] The device uses photovoltaic panels 11 as the main power source, converts solar energy into electrical energy through an inverter, and stores it in the power module 9.

[0068] The power module 9 supplies power to the data processor 8 and the sensor, ensuring long-term stable operation of the device.

[0069] The control box 7 is provided with a power connection port 10, which can be powered by an external power source when needed.

[0070] Remote monitoring and alarm:

[0071] The cloud platform or monitoring center further processes and analyzes the received data.

[0072] When the monitored environmental parameters exceed the preset threshold, the system will automatically issue an alarm and notify the management personnel via SMS or email.

[0073] Managers can view monitoring data and equipment status in real time through mobile APP or web page.

[0074] Visual display:

[0075] A display 20 is provided on the front side of the control box 7, which can display monitoring data and equipment status in real time.

[0076] The cloud platform provides visual reports and charts to facilitate managers in data analysis and decision-making.

[0077] Working principles of each preferred technical solution

[0078] Detection frame 1:

[0079] Sensor installation: The detection frame 1 is provided with a plurality of mounting brackets 13, and the sensors are fixedly mounted on these mounting brackets 13. The sensors are connected to the data port 12 via a wire, and the data port 12 is further connected to the data processor 8 via a wire.

[0080] Photovoltaic panel 11: A photovoltaic panel 11 is installed on the surface of the detection frame 1, which converts solar energy into electrical energy through an inverter to power the equipment.

[0081] Folding slot 14: The detection frame 1 is provided with a folding slot 14, and the mounting frame 13 is hinged in the folding slot 14 via a pin, which facilitates the adjustment of the sensor position. The end of the pin is installed with a limit nut 16 through a threaded structure to ensure the stability of the mounting frame 13.

[0082] Magnet 15 adsorption: The mounting frame 13 is made of metal, and a magnet 15 is embedded in the folding groove 14. The magnet 15 is used to adsorb the mounting frame 13 to prevent it from loosening.

[0083] Cavity 21 guides the circuit: A cavity 21 is provided inside the detection frame 1 and the bending frame 2 to guide the circuit, keep the equipment tidy and protect the wires.

[0084] Bending frame 2:

[0085] Camera 18 and LED light 19: The inner side of the folding frame 2 is provided with a slot 17, the bottom end of which is hinged with a camera 18, and the top end is installed with an LED light 19. The camera 18 and the LED light 19 are electrically connected with the data port 12 and controlled by the data processor 8.

[0086] Multifunctionality: The camera 18 can be used for video monitoring, and the LED light 19 can provide illumination at night or in insufficient light, enhancing the functionality and practicality of the device.

[0087] Control box 7:

[0088] Data processor 8: The control box 7 is equipped with a data processor 8, which is responsible for data collection, processing and transmission.

[0089] Power module 9: The power module 9 is electrically connected with the data processor 8 and the sensor, providing stable power supply.

[0090] Power connection port 10: The control box 7 is equipped with a power connection port 10 for connecting external power supply for emergency use.

[0091] Display 20: The front side of the control box 7 is equipped with a display 20, which is electrically connected with the data processor 8 and displays real-time monitoring data and device status.

[0092] Wireless communication module: The data processor 8 is equipped with a wireless communication module, supporting Wi-Fi, 4G / 5G and LoRa and other wireless communication protocols, realizing remote transmission and monitoring of data.

[0093] Easy to operate and maintain:

[0094] Display 20: The front side of the control box 7 is equipped with a display 20, which is electrically connected with the data processor 8 and displays real-time monitoring data and device status, making it convenient for managers to check.

[0095] Self-diagnosis function: The device has a self-diagnosis function, which can automatically detect the status of the sensor and communication module, and send an alarm to the cloud platform when a fault occurs, facilitating timely maintenance.

[0096] Remote management: Supports remote configuration and management, and managers can view monitoring data and device status in real time through mobile APP or web page, and perform remote upgrade and maintenance.

[0097] Real-time monitoring and early warning:

[0098] Real-time monitoring: Real-time monitoring is realized through the cloud platform, and managers can check the environmental conditions of the park at any time.

[0099] Alarm function: The data processor is equipped with an alarm system. When the monitored environmental parameters exceed the preset threshold, the system will automatically issue an alarm and notify the management personnel via SMS or email to take timely measures.

[0100] Summarize

[0101] This utility model describes an environmental monitoring device for smart parks. By integrating multiple sensors and an intelligent control system, it enables comprehensive monitoring of multiple environmental parameters within the park. Highly integrated and intelligent, the device automatically collects, processes, and transmits data, providing real-time monitoring and early warning via a cloud platform. Furthermore, the device supports remote management and self-diagnosis, simplifying maintenance and improving system stability and reliability. This device has demonstrated significant environmental monitoring effectiveness and economic benefits in practical applications, and has broad application prospects.

[0102] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An environmental monitoring device for a smart park, characterized in that: The invention comprises a detection frame (1), wherein the detection frame (1) is provided with a control box (7), the control box (7) is provided with a data processor (8), the detection frame (1) is provided with a plurality of sensors, and the sensors include an air quality sensor (3), a noise sensor (5), a temperature and humidity sensor (6), and a light intensity sensor (4), a plurality of mounting frames (13) and a data port (12) are provided on the side of the detection frame (1), the data port (12) is connected to the data processor (8) through a wire, the sensor is fixedly mounted on the mounting frame (13), and the sensor is adapted to the data port (12) through a wire, a photovoltaic panel (11) is installed on the surface of the detection frame (1), a power module (9) is provided in the control box (7), the power module (9) is electrically connected to the data processor (8) and the sensor, a power connection port (10) is provided on the control box (7), the power connection port (10) is electrically connected to the data processor (8), and the photovoltaic panel (11) is electrically connected to the power module (9) through an inverter.

2. The environmental monitoring device for a smart park according to claim 1, characterized in that: A bending frame (2) is provided on the top of the detection frame (1), a slot (17) is provided on the inner side of the bending frame (2), data ports (12) are provided at both ends of the slot (17), a camera (18) is hingedly connected to the bottom end of the slot (17), an LED light (19) is installed on the top end of the slot (17), and the camera (18) and the LED light (19) are both electrically connected to the data port (12).

3. The environmental monitoring device for a smart park according to claim 2, characterized in that: The detection frame (1) is provided with a folding groove (14), the mounting frame (13) is hinged in the folding groove (14) via a pin shaft, and a limiting nut (16) is installed at the end of the pin shaft via a threaded structure.

4. The environmental monitoring device for a smart park according to claim 3, characterized in that: The mounting frame (13) is made of metal, and a magnet (15) is embedded in the folding groove (14), and the magnet (15) is used to adsorb the mounting frame (13).

5. The environmental monitoring device for a smart park according to claim 4, characterized in that: A cavity (21) is provided inside the detection frame (1) and the bending frame (2), and the cavity (21) is used for guiding the circuit.

6. The environmental monitoring device for a smart park according to claim 5, characterized in that: A display (20) is provided on the front side of the control box (7), and the display (20) is electrically connected to the data processor (8).

7. The environmental monitoring device for a smart park according to claim 6, characterized in that: The data processor (8) is equipped with a wireless communication module, which supports wireless communication protocols such as Wi-Fi, 4G / 5G and LoRa.