A 5G industrial communication wireless gateway device and method
By designing protective devices and signal enhancement processing for 5G industrial communication wireless gateway equipment, the problem of equipment being susceptible to interference in industrial sites was solved, achieving higher signal strength and data communication accuracy.
Patent Information
- Application Number
- CN202511207909.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-27
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2045-08-27
AI Technical Summary
Existing 5G industrial communication wireless gateway devices are susceptible to interference in industrial settings, leading to signal attenuation. Furthermore, they lack effective data error correction and optimization mechanisms, which affects the accuracy of data communication.
The design incorporates protective devices to safeguard the gateway itself, enhances signal strength using directional antennas and signal amplifiers, and employs a data processing module for error correction and optimization.
It improves the device's impact resistance, reduces signal attenuation and interference, and ensures the accuracy and precision of data transmission.
Smart Images

Figure CN120711313B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of 5G communication equipment technology, specifically relating to a 5G industrial communication wireless gateway device and method. Background Technology
[0002] With the rapid development of 5G technology, its application in the industrial field is becoming more and more widespread; as a key device connecting industrial equipment and 5G network, the 5G industrial communication wireless gateway plays an important role in realizing efficient transmission of industrial data.
[0003] In the prior art, such as the 5G / 4G smart gateway supporting intelligent switching of primary and backup links disclosed in patent publication number CN219372444U, a top cover is included, within which a gateway body is correspondingly disposed. The top cover has an "n"-shaped structure, and its lower part is correspondingly snapped onto a bottom plate. An interface mounting plate and a rear plate are respectively disposed on the sides of the top cover, with the interface mounting plate recessed inward along the side of the top cover. A SIM card interface is correspondingly disposed on the interface mounting plate, with at least two SIM card interfaces arranged side by side. An Ethernet interface is correspondingly disposed on the interface mounting plate, and an antenna is also correspondingly disposed on the interface mounting plate. The gateway includes a wired interface and a power interface, with the SIM interface, Ethernet interface, antenna interface, and power interface all electrically connected to the gateway body. Indicator lights, heat dissipation vents, and a nameplate area are located on the top of the cover. However, this technical solution has significant drawbacks. The gateway body is directly exposed, making it highly susceptible to interference in complex industrial environments, leading to signal attenuation, bit errors, and other issues that severely affect the accuracy of data communication. Furthermore, traditional gateway devices lack effective data error correction and optimization mechanisms during data processing, resulting in insufficient handling capabilities for packet loss and out-of-order data transmission, making it difficult to guarantee the accuracy of data communication. Summary of the Invention
[0004] The purpose of this invention is to provide a 5G industrial communication wireless gateway device and method. Through the design of protective devices, the protection of the gateway body is increased, and the problem of damage from external collisions is reduced. Through signal processing and data optimization, the accuracy of data communication in 5G industrial communication is significantly improved.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a 5G industrial communication wireless gateway device, comprising...
[0006] The gateway body has a power interface, a SIM card interface, and an Ethernet port arranged from left to right on its front surface.
[0007] The protective device includes a protective seat with an open front end, a gateway body disposed on the inner side of the protective seat, baffles symmetrically disposed on the inner side of the protective seat, a first rubber pad disposed on the side surface of the baffle and abutting against the gateway body, a reinforcing plate rotatably disposed on the front surface of the protective seat, a through hole opened inside the reinforcing plate, a threaded post passing through the through hole, a threaded cylinder installed on the front surface of the reinforcing plate and threadedly connected to the threaded post, and a rubber pad disposed at one end of the threaded post and abutting against the gateway body.
[0008] As a preferred technical solution of the present invention, it also includes a rotating shaft disposed on the reinforcing plate, a rotating hole opened on the front surface of the protective seat, and a bearing installed inside the rotating hole for the rotating shaft to rotate.
[0009] As a preferred technical solution of the present invention, it also includes a heat dissipation part disposed on the top of the gateway body and a communication port opened on the top of the protective base.
[0010] As a preferred technical solution of the present invention, it further includes a fastening frame, wherein the top of the fastening frame is provided with a fastening lug fixed to the inner side of the communication port, and the bottom of the fastening frame is provided with a rib plate, and the bottom of the rib plate is provided with a plurality of protrusions.
[0011] As a preferred embodiment of the present invention, it further includes a pressure plate installed on the top of the protective base, a dustproof net disposed on the pressure plate, and a handle disposed on the top of the pressure plate.
[0012] As a preferred technical solution of the present invention, it further includes an insert block disposed at the bottom of the pressure plate, an arc-shaped block disposed at the bottom of the insert block, and a slot opened at the top of the protective seat for the insert block to be inserted.
[0013] As a preferred embodiment of the present invention, the inner side of the slot is provided with symmetrically distributed blocks, the inner bottom of the slot is provided with a connecting block, and the top of the connecting block is provided with an arc-shaped groove that matches the arc-shaped block.
[0014] This invention also discloses a communication method for a 5G industrial communication wireless gateway device, comprising the following steps:
[0015] Step 1: The 5G industrial communication wireless gateway device receives 5G signals through a directional antenna and transmits the received 5G signals to a signal amplifier; the signal amplifier amplifies the 5G signals, enhances the signal strength, and then transmits the enhanced 5G signals to the gateway body.
[0016] Step 2: The gateway converts the received 5G signal into a data signal and transmits it to the data processing module; the data error correction unit in the data processing module uses an error correction coding algorithm to detect and correct errors in the data signal; the data optimization unit compresses and encrypts the error-corrected data signal.
[0017] Step 3: The data signal processed by the data processing module is converted into a 5G signal by the gateway and sent to the 5G network through the directional antenna; at the same time, the gateway receives the data signal from the 5G network and repeats steps 2 and 3 to achieve bidirectional data communication.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] By installing protective devices, damage to the gateway body from external collisions can be effectively reduced, the gateway device's impact resistance can be improved, and it can adapt to the complex environment of industrial sites.
[0020] By using directional antennas and signal amplifiers to receive and enhance 5G signals, it is possible to effectively improve signal strength and transmission efficiency, and reduce the impact of signal attenuation and interference on data communication.
[0021] The data processing module performs error correction and optimization on the data, which can effectively solve problems such as packet loss and out-of-order delivery during data transmission, significantly improve the accuracy of data communication, and ensure the accurate transmission of industrial data. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of the present invention;
[0023] Figure 2 This is a schematic diagram of a partial cross-sectional view of the present invention.
[0024] Figure 3 For the present invention Figure 2 A schematic diagram of the enlarged structure of region E in the diagram;
[0025] Figure 4 This is a top-view partial cross-sectional structural diagram of the reinforcing plate of the present invention;
[0026] Figure 5 This is a flowchart of a communication method for a 5G industrial communication wireless gateway device according to the present invention;
[0027] In the diagram: 1. Gateway body; 11. Power interface; 12. SIM card interface; 13. Ethernet port; 14. Heat dissipation unit; 2. Protective base; 21. Connecting port; 22. Slot; 220. Stop block; 3. Baffle; 31. First rubber pad; 4. Reinforcing plate; 41. Threaded cylinder; 5. Pressure plate; 51. Handle; 52. Dustproof net; 53. Insert block; 530. Arc block; 6. Fastening frame; 61. Fastening ear; 7. Rib plate; 71. Protrusion; 8. Connecting block; 81. Arc groove; 9. Threaded post; 91. Rubber pad. Detailed Implementation
[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0029] Example 1
[0030] Please see Figures 1-4 This is the first embodiment of the present invention, which provides a 5G industrial communication wireless gateway device, including...
[0031] The gateway body 1 has a power interface 11, a SIM card interface 12, and an Ethernet port 13 arranged from left to right on its front surface. This allows for a clear understanding of the location of each interface, facilitating quick identification of the corresponding interface for operation during subsequent equipment installation, debugging, and maintenance.
[0032] The protective device includes a protective base 2 with an open front end. The gateway body 1 is positioned inside the protective base 2, clearly defining its positional relationship and demonstrating the basic protective function of the protective base 2 for the gateway body 1. Symmetrically arranged baffles 3 are positioned on the inner side of the protective base 2. A first rubber pad 31 is positioned on the side surface of the baffles 3 and abuts against the gateway body 1. The symmetrically arranged baffles 3 limit and support the gateway body 1 from both sides, preventing it from swaying within the protective base 2. The first rubber pad 31, through the elastic cushioning of the rubber, prevents the baffles 3 from making hard contact with the gateway body 1, thus avoiding damage. Damage is prevented by rotating the reinforcing plate 4, which is located on the front surface of the protective base 2. A through hole is opened inside the reinforcing plate 4, and a threaded post 9 passes through the through hole. A threaded cylinder 41 is fixedly installed on the front surface of the reinforcing plate 4 and threadedly connected to the threaded post 9. A rubber pad 91 is set at one end of the threaded post 9 and can be pressed against the gateway body 1. By rotating the threaded post 9, the rubber pad 91 can be used to press against the gateway body 1, thereby further reinforcing the gateway body 1 and effectively preventing the gateway body 1 from shifting or being damaged due to external collisions. When the reinforcing plate 4 is rotated to a position away from the gateway body 1, the gateway body 1 can be easily removed.
[0033] In this embodiment, preferably, it also includes a rotating shaft disposed on the reinforcing plate 4, a rotating hole opened on the front surface of the protective seat 2, and a bearing installed inside the rotating hole for the rotating shaft to rotate, wherein the bearing plays the role of supporting and reducing friction.
[0034] In this embodiment, preferably, it also includes a heat dissipation part 14 disposed on the top of the gateway body 1 and a communication port 21 opened on the top of the protective base 2. The heat dissipation part 14 can dissipate the heat generated when the gateway body 1 is working, and the configuration of the communication port 21 ensures that the heat dissipation part 14 is connected to the outside world, so that the heat can be effectively discharged.
[0035] In this embodiment, preferably, it also includes a fastening frame 6. The top of the fastening frame 6 is provided with a fastening ear 61 that is fixed to the inner side of the communication port 21. The fastening ear 61 and the communication port 21 cooperate to achieve the fixed installation of the fastening frame 6. The bottom of the fastening frame 6 is provided with a rib plate 7, and the bottom of the rib plate 7 is provided with a plurality of protrusions 71. The protrusions 71 abut against the top of the gateway body 1. The rib plate 7 and the protrusions 71 further increase the performance of fixing the gateway body 1.
[0036] In this embodiment, preferably, it also includes a pressure plate 5 installed on the top of the protective base 2, a dustproof net 52 set on the pressure plate 5, the dustproof net 52 can prevent dust and other debris from entering the interior of the protective base 2 and affecting the normal operation of the gateway body 1, and a handle 51 set on the top of the pressure plate 5, the handle 51 facilitates the operator to install and disassemble the pressure plate 5.
[0037] In this embodiment, preferably, it also includes an insert block 53 disposed at the bottom of the pressure plate 5, an arc-shaped block 530 disposed at the bottom of the insert block 53, and a slot 22 opened at the top of the protective seat 2 for the insert block 53 to be inserted. Symmetrically distributed stop blocks 220 are installed on the inner side of the slot 22, and a connecting block 8 is installed at the inner bottom of the slot 22. An arc-shaped groove 81 adapted to the arc-shaped block 530 is opened at the top of the connecting block 8. The cooperation between the insert block 53 and the slot 22, and the adaptation between the arc-shaped block 530 and the arc-shaped groove 81, realize the stable installation of the pressure plate 5. The stop block 220 plays a role in limiting and preventing dislodgement.
[0038] Example 2
[0039] Please see Figure 5 This is a second embodiment of the present invention, which provides a communication method for a 5G industrial communication wireless gateway device, including the following steps:
[0040] Step 1: The directional antenna of the 5G industrial communication wireless gateway device is installed at a suitable position outside the protective base 2. It has a specific signal receiving direction. After the device starts operating, the directional antenna monitors the surrounding environment for 5G signals in real time. Due to its directional design, it can prioritize receiving 5G signals from the target direction. Compared to ordinary antennas, it can effectively reduce the reception of interference signals from other directions, improving the targeting and purity of signal reception. The directional antenna transmits the received 5G signal through a dedicated signal transmission cable to a signal amplifier located inside the protective base 2. This signal amplifier has an adjustable gain function; through a preset control circuit or an external control interface, the signal amplification factor can be flexibly adjusted according to the actual signal strength. The signal amplifier amplifies the input 5G signal to enhance its strength. During the amplification process, its internal filtering circuit filters the signal, removing noise and interference components, further improving signal quality. The enhanced 5G signal is then stably transmitted again through the transmission cable to the signal receiving port of the gateway body 1, completing the initial signal processing and transmission.
[0041] Step Two: After receiving the enhanced 5G signal, Gateway 1 uses its integrated RF front-end module and baseband processing chip to convert the 5G signal into a digital data signal. The RF front-end module performs frequency conversion and filtering on the 5G signal, converting it into an intermediate frequency (IF) signal suitable for processing by the baseband processing chip. The baseband processing chip then demodulates and decodes the IF signal, ultimately outputting the original data signal. The converted data signal is transmitted to the data processing module via the internal data bus. The data error correction unit in the data processing module incorporates various error correction coding algorithms, such as Hamming codes and cyclic redundancy check (CRC) codes. When the data signal enters the data error correction unit, it selects an appropriate error correction coding algorithm to process the data according to a preset error correction strategy. Taking CRC as an example, the data error correction... The error correction unit generates a corresponding checksum based on the length and characteristics of the data signal and compares the checksum with the original data signal. If an error is found, a specific error correction algorithm corrects the erroneous data bits, thereby eliminating errors that occurred during data transmission. The data signal after error correction enters the data optimization unit. The data optimization unit first compresses the data using an efficient data compression algorithm. Based on the characteristics and redundancy of the data, it removes redundant information, reduces the data volume, and improves data transmission efficiency. Next, the data optimization unit encrypts the compressed data using a symmetric or asymmetric encryption algorithm based on a set encryption key, ensuring data security during transmission and preventing data theft or tampering.
[0042] Step 3: The data signal processed by the data processing module is transmitted back to Gateway 1. Gateway 1 uses its internal modulation / demodulation module and RF transmission module to convert the data signal into a 5G signal. The modulation / demodulation module modulates the data signal onto a specific carrier frequency according to the 5G communication protocol, generating a modulated intermediate frequency (IF) signal. The RF transmission module then up-converts the IF signal to a RF signal that meets the requirements of the 5G frequency band and performs power amplification and other processing to meet the transmission power requirements. The converted 5G signal is transmitted to the directional antenna via a connecting cable. The directional antenna transmits the 5G signal to the 5G network in a specific direction and radiation mode. Simultaneously, the directional antenna continuously receives data signals from the 5G network. The received data signals are transmitted to Gateway 1 according to the process in Step 1, and then Steps 2 and 3 are repeated. During bidirectional data communication, Gateway 1 coordinates and manages the sending and receiving of data through its internal communication protocol stack, ensuring accurate and orderly data transmission, achieving stable bidirectional data communication, and meeting the data interaction needs in industrial communication.
[0043] Although embodiments of the invention have been shown and described in detail above, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A 5G industrial communication wireless gateway device, characterized in that: include The gateway body (1) has a power interface (11), a SIM card interface (12), and an Ethernet port (13) arranged sequentially from left to right on its front surface. The protective device includes a protective seat (2) with an opening at the front end, a gateway body (1) located inside the protective seat (2), a baffle (3) symmetrically arranged on the inner side of the protective seat (2), a first rubber pad (31) located on the side surface of the baffle (3) and able to abut against the gateway body (1), a reinforcing plate (4) rotatably located on the front surface of the protective seat (2), a through hole opened inside the reinforcing plate (4), a threaded post (9) passing through the through hole, a threaded cylinder (41) installed on the front surface of the reinforcing plate (4) and threadedly connected to the threaded post (9), and a rubber pad (91) located at one end of the threaded post (9) and able to abut against the gateway body (1). It also includes a heat dissipation part (14) set on the top of the gateway body (1) and a communication port (21) opened on the top of the protective base (2); it also includes a fastening frame (6), the top of the fastening frame (6) is provided with a fastening ear (61) fixed to the inner side of the communication port (21), the bottom of the fastening frame (6) is provided with a rib plate (7), and the bottom of the rib plate (7) is provided with a plurality of protrusions (71). It also includes a pressure plate (5) installed on the top of the protective seat (2), a dustproof net (52) set on the pressure plate (5), and a handle (51) set on the top of the pressure plate (5); it also includes an insert (53) set on the bottom of the pressure plate (5), an arc block (530) set on the bottom of the insert (53), and a slot (22) opened on the top of the protective seat (2) for the insert (53) to be inserted; the inner side of the slot (22) is equipped with symmetrically distributed blocks (220), the inner bottom of the slot (22) is equipped with a connecting block (8), and the top of the connecting block (8) is provided with an arc groove (81) adapted to the arc block (530).
2. The 5G industrial communication wireless gateway device according to claim 1, characterized in that: It also includes a rotating shaft set on the reinforcing plate (4), a rotating hole opened on the front surface of the protective seat (2), and a bearing installed inside the rotating hole for the rotating shaft to rotate.
3. A communication method for a 5G industrial communication wireless gateway device, characterized in that: The implementation based on the 5G industrial communication wireless gateway device according to any one of claims 1-2 includes the following steps: Step 1: The 5G industrial communication wireless gateway device receives 5G signals through a directional antenna and transmits the received 5G signals to a signal amplifier; the signal amplifier amplifies the 5G signals, enhances the signal strength, and then transmits the enhanced 5G signals to the gateway body (1). Step 2: The gateway body (1) converts the received 5G signal into a data signal and transmits it to the data processing module; the data error correction unit in the data processing module uses an error correction coding algorithm to detect and correct errors in the data signal; the data optimization unit compresses and encrypts the data signal after error correction. Step 3: The data signal processed by the data processing module is converted into a 5G signal by the gateway body (1) and sent to the 5G network through the directional antenna; at the same time, the gateway body (1) receives the data signal from the 5G network and repeats Step 2 and Step 3 to realize bidirectional data communication.
Citation Information
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