Mine-used ad hoc network node based on wifi6

By designing a self-organizing network node for mining based on Wi-Fi 6, and adopting structures such as an aluminum top plate, shock-resistant ring, and personnel positioning plate, the flexibility and positioning problems of the communication system in the underground mining environment were solved, achieving high bandwidth and shock wave resistant communication effects.

CN224684365UActive Publication Date: 2026-08-25NANJING MEISHAN INTELLIGENT MINING TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202521835797.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-08-25
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

Existing wireless communication systems are ill-suited to the complex and ever-changing environment of underground mines. They lack flexibility and ease of installation, and cannot provide real-time positioning capabilities, thus failing to meet the flexibility and self-healing requirements of underground communication.

Method used

The design incorporates a Wi-Fi 6-based self-organizing network node for mining applications. It features an aluminum top plate, shock-resistant ring, personnel positioning plate, and plate antenna, along with a suspension frame for installation and protection. The device boasts high bandwidth, shock wave resistance, and real-time positioning capabilities.

Benefits of technology

It achieves high bandwidth, fast network speed and real-time positioning in the underground mining environment, has good resistance to shock waves, and adapts to the communication needs of the complex underground mining environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model proposes mining self -organizing network node based on wifi6, including oval lid, aluminium top disc and network node device installed on aluminium top disc, oval lid is equipped on network node device, network node device includes AC DC power supply and main node middle plate, AC DC power supply installs on main node middle plate still includes personnel positioning board, personnel positioning board is fixed on main node middle plate, personnel positioning board is connected AC DC power supply and has the positioning joint of integration still includes anti -impact ring, anti -impact ring sets up with aluminium top disc same center, anti -impact ring is located the outside of aluminium top disc and is connected on aluminium top disc, the application passes through anti -impact ring design, makes it have very good anti -impact wave effect, passes through the plate type antenna design makes it have high bandwidth effect, passes through personnel positioning board design makes it have the positioning effect, very suitable for under the mine use.
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Description

Technical Field

[0001] This utility model relates to wireless self-organizing network node devices, specifically a mining self-organizing network node based on Wi-Fi 6. Background Technology

[0002] When major disasters such as earthquakes, floods, fires, traffic accidents, and terrorist attacks occur suddenly, the most urgent need is reliable communication support. However, public communication infrastructure often fails to function effectively in such situations due to various reasons. This necessitates an emergency communication system that is rapidly deployable, highly reliable, mobile, and easy to use, ensuring that commanders accurately grasp the situation on the ground and providing strong technical support for immediate decision-making and effective response. Thus, wireless ad hoc networks have emerged.

[0003] A mobile ad-hoc network (MAN) is a dynamic, multi-hop, peer-to-peer network composed of dozens to hundreds of nodes, using wireless communication. It does not rely on infrastructure, allowing for rapid deployment at the scene of an incident, and possesses strong anti-interference capabilities. Furthermore, MANs have self-healing capabilities; the entire network has no central node, and all nodes act as both terminals and relays. When some nodes in the network fail or are destroyed, communication can be quickly switched to other nodes without affecting overall service. In addition, MAN equipment features high mobility, high bandwidth, large capacity, and good compatibility, enabling compatibility with all IP-based information applications. It has broad application prospects in military tactical communications, government emergency response, and the Industrial Internet of Things (IIoT).

[0004] Especially in the harsh environment of underground mine tunnels, with many unfavorable factors such as blasting impact and electromagnetic interference, the flexibility and self-healing requirements of underground mine communication will be higher as intelligent equipment and information application networks for underground personnel become more demanding. Existing wireless communication systems have their own advantages and disadvantages, but they all lack flexibility and ease of installation, making it difficult to adapt to the complex and ever-changing underground environment. Moreover, they cannot provide real-time positioning functions. There is an urgent need for a new wireless communication method to change the status quo. Utility Model Content

[0005] To address the aforementioned technical issues, this utility model proposes a mine self-organizing network node based on Wi-Fi 6. Through the anti-shock ring design on the outer side of the aluminum top plate, it achieves excellent shock wave protection; through the plate antenna design, it achieves high bandwidth; and through the personnel positioning plate design, it achieves positioning functionality, making it highly suitable for underground mining applications.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A self-organizing network node for mining based on Wi-Fi 6 is characterized by comprising an elliptical cover, an aluminum top plate, and a network node device mounted on the aluminum top plate. The elliptical cover is fitted onto the network node device. The network node device includes an AC-DC power supply and a master node intermediate board, with the AC-DC power supply mounted on the master node intermediate board.

[0008] It also includes a personnel positioning plate, which is fixed to the main node's intermediate board. The personnel positioning plate is connected to an AC-DC power supply and integrates a positioning connector, which is connected to the router's network interface.

[0009] It also includes an anti-impact ring, which is concentric with the aluminum top plate. The anti-impact ring is located on the outside of the aluminum top plate and connected to it. The elliptical cover is fixed to the anti-impact ring.

[0010] In the above structure: the self-organizing network node for mining based on Wi-Fi 6 proposed in this application includes an oval cover, an aluminum top plate, and a network node device installed on the aluminum top plate. The oval cover is fitted onto the network node device to protect the network node device inside. The network node device is a self-organizing network node with high bandwidth.

[0011] This application uses a personnel positioning plate to locate network nodes installed in the mine. The personnel positioning plate is fixed on the middle plate of the main node. The personnel positioning plate is connected to an AC-DC power supply and integrates a positioning connector. When in use, the positioning connector is inserted into the network interface of the router. When the location needs to be queried, it can be queried in real time by logging into the internal webpage.

[0012] This application provides excellent shock wave protection by setting an anti-shock ring, which is also safe for use in mines. The anti-shock ring is set concentrically with the aluminum top plate, located on the outside of the aluminum top plate and connected to it. When used in mines, the anti-shock ring will shake to avoid the impact when the mine self-organizing network node device is impacted.

[0013] Furthermore: the outer wall of the elliptical cover is provided with a bolt seat, and the anti-impact ring is provided with bolt holes corresponding to the bolt seat, and the elliptical cover is fixed to the anti-impact ring by bolts.

[0014] In the above structure: the outer wall of the elliptical cover is provided with four bolt seats, and the anti-impact ring is provided with corresponding bolt holes. The elliptical cover can be fixed on the anti-impact ring by bolts and placed on the network node on the aluminum top plate to protect it.

[0015] Furthermore, it also includes a connecting piece, one end of which is fixed to the outer wall of the aluminum top plate, and the other end is connected to the inner wall of the anti-impact ring.

[0016] In the above structure, the impact-resistant ring and the aluminum top plate are fixed together by a connecting piece.

[0017] Furthermore, the network node device also includes a master node board, copper pillars, and plate antennas. The plate antennas are mounted vertically to each other on the master node intermediate board. The copper pillars are mounted below the master node intermediate board, and the master node board is mounted on one side of the master node intermediate board.

[0018] Furthermore: the main node intermediate plate is configured in a "+" shape, and the plate antennas are respectively vertically installed at the four corners of the "+" shaped main node intermediate plate.

[0019] In the above structure, the network node device adopts a mining self-organizing network node based on Wi-Fi 6, which has the characteristics of high bandwidth, fast network speed and good penetration.

[0020] Furthermore, it also includes a suspension frame, which passes sequentially through the personnel positioning plate, the main node intermediate plate, and the aluminum top plate, and has hooks at its ends.

[0021] In the above structure: the suspension frame is used to realize the overall installation of this device. The device can be installed at the designated position by installing an iron chain on the hook at the end of the suspension frame.

[0022] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0023] This application uses personnel positioning boards to locate network nodes installed in the mine. When in use, the positioning connector is inserted into the network interface of the router. When the location needs to be checked, it can be checked in real time by logging into the internal webpage.

[0024] This application incorporates an anti-shock ring to provide excellent shock wave protection, ensuring safe use in mines. When used underground, the anti-shock ring will shake to avoid impacts when the mine self-organizing network node device is subjected to an impact.

[0025] The network node device in this application adopts a mining self-organizing network node based on Wi-Fi 6, which has the characteristics of high bandwidth, fast network speed and good penetration. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0027] Figure 2 This is a schematic diagram of the internal structure of this utility model;

[0028] Figure 3 This is a front view of the actual product of this utility model;

[0029] Figure 4 This is the back of the actual product of this utility model.

[0030] List of reference numerals in the attached diagram:

[0031] 1. Oval cover; 2. Aluminum top plate; 3. AC-DC power supply; 4. Main node plate; 5. Copper column; 6. Personnel positioning plate; 7. Panel antenna; 8. Main node intermediate plate; 9. Shock-proof ring; 10. Suspension bracket. Detailed Implementation

[0032] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments:

[0033] Example: Figure 1-2 As shown, this utility model proposes a self-organizing network node for mining based on Wi-Fi 6, including an oval cover 1, an aluminum top plate 2, and a network node device mounted on the aluminum top plate 2. The oval cover 1 is fitted onto the network node device, and the network node device includes an AC-DC power supply 3 and a main node intermediate plate 8. The AC-DC power supply 3 is mounted on the main node intermediate plate 8.

[0034] It also includes a personnel positioning plate 6, which is fixed on the main node intermediate plate 8. The personnel positioning plate 6 is connected to the AC-DC power supply 3 and integrates a positioning connector, which is connected to the router network interface.

[0035] It also includes an anti-impact ring 9, which is co-centered with the aluminum top plate 2. The anti-impact ring 9 is located on the outside of the aluminum top plate 2 and connected to the aluminum top plate 2. The elliptical cover 1 is fixed on the anti-impact ring 9.

[0036] The outer wall of the elliptical cover 1 is provided with bolt seats, and the anti-impact ring 9 is provided with bolt holes corresponding to the bolt seats. The elliptical cover 1 is fixed to the anti-impact ring 9 by bolts. A connecting piece is also included, one end of which is fixed to the outer wall of the aluminum top plate 2, and the other end is connected to the inner wall of the anti-impact ring 9. The network node device also includes a main node plate 4, copper pillars 5, and plate antennas 7. The plate antennas 7 are mounted vertically in pairs on the main node intermediate plate 8, the copper pillars 5 are installed below the main node intermediate plate 8, and the main node plate 4 is installed on one side of the main node intermediate plate 8. The main node intermediate plate 8 is shaped like a cross, and the plate antennas 7 are respectively mounted vertically at the four corners of the cross-shaped main node intermediate plate 8. A suspension bracket 10 is also included, which passes sequentially through the personnel positioning plate 6, the main node intermediate plate 8, and the aluminum top plate 2, and has hooks at its ends.

[0037] The self-organizing network node for mining based on Wi-Fi 6 proposed in this application includes an oval cover 1, an aluminum top plate 2, and a network node device mounted on the aluminum top plate 2. The oval cover 1 is fitted onto the network node device to protect it. The network node device is a self-organizing network node with high bandwidth.

[0038] This application uses a personnel positioning plate 6 to locate the network nodes of each organization installed in the mine. The personnel positioning plate 6 is fixed on the middle plate 8 of the main node. The personnel positioning plate 6 is connected to the AC-DC power supply 3 and has an integrated positioning connector. When in use, the positioning connector is inserted into the network interface of the router. When the location needs to be queried, it can be queried in real time by logging into the internal webpage.

[0039] This application provides excellent shock wave protection by setting an anti-shock ring 9, which is also safe for use in mines. The anti-shock ring 9 is set with the aluminum top plate 2 at the same center. The anti-shock ring 9 is located on the outside of the aluminum top plate 2 and connected to the aluminum top plate 2. When used in mines, the anti-shock ring 9 will shake to avoid the impact when the mine self-organizing network node device is impacted.

[0040] The outer wall of the elliptical cover 1 in this application is provided with four bolt seats, and the anti-impact ring 9 is provided with corresponding bolt holes. The elliptical cover 1 can be fixed on the anti-impact ring 9 by bolts, so that it covers the network node on the aluminum top plate 2 and protects it.

[0041] In this application, the anti-impact ring 9 and the aluminum top plate 2 are fixed together by a connecting piece.

[0042] The network node device in this application adopts a mining self-organizing network node based on Wi-Fi 6, which has the characteristics of high bandwidth, fast network speed and good penetration.

[0043] The suspension bracket 10 in this application is used to realize the overall installation of this device. The device can be installed at the designated location by installing an iron chain on the hook at the end of the suspension bracket 10.

[0044] like Figure 3-4 The image shown is a physical diagram of this utility model. This application uses a personnel positioning plate 6 to locate the network nodes of each organization installed in the mine. In use, the positioning connector is inserted into the network interface of the router. When the location needs to be queried, it can be queried in real time by logging into the internal webpage.

[0045] This application provides excellent shock wave protection by setting an anti-shock ring 9, making it safe for use in mines. When used in mines, the anti-shock ring 9 will shake to avoid the impact when the mine self-organizing network node device is impacted.

[0046] The network node device in this application adopts a mining self-organizing network node based on Wi-Fi 6, which has the characteristics of high bandwidth, fast network speed and good penetration.

[0047] The above description is merely a preferred embodiment of this utility model and is not intended to limit this utility model in any other way. Any modifications or equivalent changes made based on the technical essence of this utility model shall still fall within the scope of protection claimed by this utility model.

Claims

1. A mining self-organizing network node based on Wi-Fi 6, characterized in that: The device includes an oval cover (1), an aluminum top plate (2), and a network node device mounted on the aluminum top plate (2). The oval cover (1) is fitted onto the network node device. The network node device includes an AC-DC power supply (3) and a master node intermediate plate (8). The AC-DC power supply (3) is mounted on the master node intermediate plate (8). It also includes a personnel positioning plate (6), which is fixed on the main node intermediate plate (8). The personnel positioning plate (6) is connected to the AC-DC power supply (3) and integrates a positioning connector, which is connected to the router network interface. It also includes an anti-impact ring (9), which is co-centered with the aluminum top plate (2). The anti-impact ring (9) is located on the outside of the aluminum top plate (2) and connected to the aluminum top plate (2). The elliptical cover (1) is fixed on the anti-impact ring (9).

2. The mining self-organizing network node based on Wi-Fi 6 according to claim 1, characterized in that: The outer wall of the elliptical cover (1) is provided with a bolt seat, and the anti-impact ring (9) is provided with bolt holes corresponding to the bolt seat. The elliptical cover (1) is fixed to the anti-impact ring (9) by bolts.

3. The mining self-organizing network node based on Wi-Fi 6 according to claim 1, characterized in that: It also includes a connecting piece, one end of which is fixed to the outer wall of the aluminum top plate (2), and the other end is connected to the inner wall of the anti-impact ring (9).

4. The mining self-organizing network node based on Wi-Fi 6 according to claim 1, characterized in that: The network node device also includes a main node board (4), copper pillars (5) and plate antennas (7). The plate antennas (7) are installed vertically on the main node intermediate board (8) in pairs. The copper pillars (5) are installed below the main node intermediate board (8). The main node board (4) is installed on one side of the main node intermediate board (8).

5. The mining self-organizing network node based on Wi-Fi 6 according to claim 4, characterized in that: The main node intermediate plate (8) is configured in a "+" shape, and the plate antenna (7) is respectively vertically installed at the four corners of the "+" shaped main node intermediate plate (8).

6. The mining self-organizing network node based on Wi-Fi 6 according to claim 1, characterized in that: It also includes a suspension frame (10), which passes through the personnel positioning plate (6), the main node intermediate plate (8) and the aluminum top plate (2) in sequence, and has a hook at its end.