Fast distribution type wireless signal detection equipment

Through the integrated system, the design of backpack, node equipment, monitoring antenna and Beidou antenna, the problems of low integration and rapid deployment of wireless signal detection equipment are solved, and normalized monitoring and wireless electromagnetic signal monitoring are realized in all day, all weather and all airspace.

CN223157094UActive Publication Date: 2025-07-25THE NAT RES INST OF RADIO SPECTRUM MANAGEMENT CO LTD
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Patent Information

Application Number
CN202422441851.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-07-25
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Existing wireless signal detection equipment has low integration, is difficult to deploy quickly, is unable to achieve normalized monitoring, and is not easy to work in bad weather conditions.

Method used

A fast-pack wireless signal detection device is designed, including system integrated backpack, node equipment, monitoring antenna, Beidou antenna and digital transmission antenna. Through the integration and connection of these components, rapid deployment and normalized monitoring are achieved, and the working capabilities are all-day, all-weather and all-air space.

Benefits of technology

It realizes high-integration rapid deployment capabilities, can continue to work in severe weather conditions, ensuring that the monitoring domain is under control under any circumstances, and has all-day, all-weather, and all-air space monitoring capabilities.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a fast cloth type wireless signal detection device. The fast cloth type wireless signal detection device comprises a system integration backpack, a node device, a monitoring antenna, a Beidou antenna and a data transmission antenna. Wherein the node equipment, the Beidou antenna, the monitoring antenna and the data transmission antenna are separately placed and are fixed by adopting the binding bands, so that the node equipment is firm and reliable. The monitoring antenna receives wireless signals in the air, the Beidou antenna carries out accurate spatial positioning on the received signals, and the data transmission antenna is used between node devices to realize networking, wireless network communication and signal processing functions. Normalized wireless electromagnetic signal monitoring and control work is carried out for important places and key areas such as internal core parts of the important places through networking to form a system. The equipment has the characteristics of high integration level, light weight, rapid deployment capability and normalized monitoring after networking. The problems that in the prior art, equipment cannot be subjected to normalized detection and is not easy to move and rapidly store, and the detection efficiency is affected are solved.
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Description

Technical Field

[0001] The utility model relates to the field of wireless signal detection equipment, and more specifically, to a quick-deployment wireless signal detection equipment. Background Technique

[0002] For a wireless signal detection equipment, its main working principle is to locate the signal source by using the propagation characteristics of radio waves. When a radio signal propagates to the detector, the detector will sense the signal through the receiving monitoring antenna and analyze and process it. According to information such as the intensity, direction, and frequency of the signal, the detector can determine the location of the signal source.

[0003] With the rapid development of the business in the radio field, the security of the electromagnetic environment and information security service guarantee have been increasingly emphasized by relevant departments. In particular, the regular monitoring and control of wireless electromagnetic signals in key areas such as important places and their core parts inside have always been an important part of the radio monitoring and law enforcement field.

[0004] Traditional radio monitoring equipment has relatively single functions. It can capture and detect interference source signals, but it is difficult to determine and find the specific location of the interference source. Existing wireless signal detection equipment has low integration, does not have the ability of rapid deployment, the system cannot be monitored regularly after networking, and is easily affected by various bad weather conditions. Summary of the Utility Model

[0005] The main purpose of the utility model is to provide a quick-deployment wireless signal detection equipment, so as to at least solve the problems of low integration of detection equipment, difficult to quickly store, unable to detect regularly, and unable to accurately locate interference signals in existing equipment.

[0006] To achieve the above purpose, the utility model provides a quick-deployment wireless signal detection equipment, including: a system integration backpack; node devices, which are detachably arranged on one side inside the system integration backpack; a monitoring antenna, which is detachably arranged on the other side inside the system integration backpack, and the monitoring antenna is connected to the node devices. The monitoring antenna is used to receive and capture radio signals in the target area of the program; a Beidou antenna, which is arranged on the top of the system integration backpack, and the Beidou antenna is connected to the node devices. The Beidou antenna is used for accurate positioning; a data transmission antenna, which is arranged in a pocket on one side inside the system integration backpack, and the data transmission antenna is connected to the node devices. The data transmission antenna is used for networking and wireless network communication and signal processing between each quick-deployment wireless signal detection equipment.

[0007] Furthermore, the inner layer of the system integration backpack is made of waterproof and rainproof material, the outer layer is made of thickened high-density nylon fabric, and the lining sandwich filling material is made of PP material; the system integration backpack uses a waterproof zipper, which is arranged on the top of the system integration backpack.

[0008] Furthermore, the node device includes an upper housing and a lower housing. A waterproof groove is provided between the upper housing and the lower housing, and the waterproof groove is filled with a sealing strip. The sealing strip is a double-layer rubber structure, with a conductive rubber outer layer and a silicone rubber inner layer. The silicone rubber has high aging resistance and stability. The upper housing and the lower housing are connected and fixed by anti-theft bolts.

[0009] Furthermore, a communication module is provided inside the upper housing, and the communication module is connected to the main control module and the power module. A main control module is provided inside the lower housing, and the main control module is connected to the power module. The power module is used to supply power to each module and perform remote power-on and power-off. The receiving module is connected to the main control module and is used to receive and process wireless signals. The timing module is connected to the receiving module and is used to provide a high-precision timing function. The power module and the timing module are located on both sides inside the lower housing, and the receiving module is located between the power module and the timing module.

[0010] Furthermore, the side of the upper housing includes: a network interface for connecting to a terminal device; a Beidou antenna interface through which the Beidou antenna is connected to the node device; a data transmission antenna interface through which the data transmission antenna is connected to the node device; an indicator light observation port for observing the working status of the internal modules of the device; and a waterproof breather for balancing the atmospheric pressure difference inside the node device.

[0011] Furthermore, the side of the lower housing includes: a first debugging interface and a second debugging interface for debugging the built-in monitoring program of the node device, monitoring software upgrade, and troubleshooting functions; a monitoring antenna interface through which the monitoring antenna is connected to the node device; and a power interface through which the power module is connected to the node device.

[0012] The utility model provides a fast - deployable wireless signal detection device, including: a system integration backpack; node devices, which are detachably arranged on one side inside the system integration backpack; monitoring antennas, which are detachably arranged on the other side inside the system integration backpack and are connected to the node devices; Beidou antennas, which are arranged on the top of the system integration backpack and are connected to the node devices; data transmission antennas, which are arranged in a pocket on one side inside the system integration backpack and are connected to the node devices; wherein, the monitoring antennas are used to receive and capture radio signals in the program target area; the Beidou antennas are used for precise positioning; the data transmission antennas are used for networking and wireless network communication and signal processing among various fast - deployable wireless signal detection devices; through the mutual connection among various fast - deployable wireless signal detection devices, regular monitoring and control work of wireless electromagnetic signals for the target area and its core parts inside the target area are carried out; the communication module, the main control module, the power module, the receiving module, and the timing module are concentrated in one node device, and the Beidou antennas, the data transmission antennas are connected to the node devices. All antennas, the node devices and the monitoring antennas are arranged inside the system integration backpack, which can be quickly stored and deployed; this device has a high integration degree, has the ability of rapid deployment, and the system after networking has the characteristics of regular monitoring. It can work all - day, all - weather and in all airspaces without being affected by various bad weather conditions, ensuring that the monitored area is under inspection and control at any time. It solves the problems of low device integration degree, difficult rapid deployment and storage, and inability of regular detection in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The specification drawings forming a part of this application are used to provide a further understanding of the utility model. The schematic embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an improper limitation to the utility model. In the drawings:

[0014] Figure 1 is a schematic diagram of the external composition of a node device of a fast - deployable detection device according to an embodiment of the utility model;

[0015] Figure 2 is a schematic diagram of the interfaces of a node device of a fast - deployable detection device according to an embodiment of the utility model;

[0016] Figure 3 is a schematic diagram of the internal composition of a node device of a fast - deployable detection device according to an embodiment of the utility model;

[0017] Figure 4 is a working flow chart of a fast - deployable detection device according to an embodiment of the utility model;

[0018] Figure 5 is a schematic diagram of the deployment of a networking system of a fast - deployable radio detection device;

[0019] Among them, the above-mentioned drawings include the following reference numerals:

[0020] 1. Node device; 2. Beidou antenna; 3. System integration backpack; 4. Monitoring antenna; 5. Data transmission antenna; 7. Network interface; 8. First debugging interface; 9. Second debugging interface; 10. Indicator light observation port; 11. Monitoring antenna interface; 12. Power supply interface; 13. Beidou antenna interface; 14. Data transmission antenna interface; 15. Communication module; 16. Main control module; 17. Power supply module; 18. Receiving module; 19. Timing module; 20. Sealing strip; 21. Lower housing; 22. Anti-theft bolt; 23. Upper housing; 24. Waterproof breather. Detailed implementation manners

[0021] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The following will describe the present utility model in detail with reference to the drawings and in combination with the embodiments.

[0022] As Figure 1 shown, the present utility model provides a fast-deployable wireless signal detection device, including: a system integration backpack 3; a node device 1, the node device 1 is detachably arranged on one side inside the system integration backpack 3; a monitoring antenna 4, the monitoring antenna 4 is detachably arranged on the other side inside the system integration backpack 3 and is connected to the node device 1; a Beidou antenna 2, the Beidou antenna 2 is arranged on the top of the system integration backpack 3 and is connected to the node device 1; a data transmission antenna 5, the data transmission antenna 5 is arranged in a pocket on one side inside the system integration backpack 3 and is connected to the node device 1; among them, the monitoring antenna 4 is used to receive and capture radio signals in the target area of the program; the Beidou antenna 2 is used for precise positioning; the data transmission antenna 5 is used for networking and wireless network communication and signal processing among the fast-deployable wireless signal detection devices. Through the mutual connection among the fast-deployable wireless signal detection devices, the normal monitoring and control work of the wireless electromagnetic signals in the target area and its core parts and other target areas is carried out; the communication module 15, the main control module 16, the power supply module 17, the receiving module 18, and the timing module 19 are concentrated in one node device 1, and the Beidou antenna 2, the data transmission antenna 5 are connected to the node device 1, and each antenna and the node device 1 and the monitoring antenna 4 are arranged inside the system integration backpack 3, which can be quickly stored and deployed. This device has a high integration degree and has the ability of fast deployment. After the fast-deployable wireless signal detection devices are connected and networked with each other, the system has the characteristics of normal monitoring, can be not affected by various bad weather, and realizes all-day, all-weather, and all-airspace work, ensuring that the monitored area is in a state of being inspected and controlled under any circumstances. It solves the problems of low device integration degree, difficult to quickly deploy and store, and unable to carry out normal detection in the prior art.

[0023] During specific implementation, as Figure 1As shown in the figure, the system integration backpack 3 is a square structure. Its inner layer is made of waterproof and rainproof material, and the outer layer is made of thickened high-density nylon fabric. The nylon fabric has good toughness and wear resistance. The filling material of the inner lining sandwich is made of PP material with a thickness of 10 mm. The system integration backpack 3 uses a waterproof zipper, which is set at the top of the system integration backpack 3. The node device 1 is a square structure and is detachably placed on one side of the system integration backpack 3. The monitoring antenna 4 is a cylindrical structure and is detachably placed on the other side of the system integration backpack 3. The Beidou antenna 2 is a rectangular structure and is placed on the top of the system integration backpack 3. The system integration backpack 3 has good stiffness, wear resistance, and impact resistance, and can provide good protection and support conditions for the node device 1, the monitoring antenna 4, and the Beidou antenna 2.

[0024] Further, as Figure 2 and Figure 3 shown, the node device 1 is a square structure, including an upper shell 23 and a lower shell 21. Among them, the upper shell 23 and the lower shell 21 are internal hollow structures. There is a waterproof groove between the upper shell 23 and the lower shell 21, and the waterproof groove is filled with a sealing strip 20. The sealing strip 20 is a double-layer rubber structure, the outer layer is conductive rubber, and the inner layer is silicone rubber. The silicone rubber has high aging resistance and stability and can fill the tiny gaps between the upper shell 23 and the lower shell 21. The upper shell 23 and the lower shell 21 are connected and fixed by anti-theft bolts 22. There is a thread tension between the anti-theft bolts 22, and the thread tension compresses and seals the sealing strip 20, so that the assembled upper shell 23 and lower shell 21 of the device have good waterproof and sealing performance. There are 12 anti-theft bolts 22 in total.

[0025] Further, as Figure 3 shown, a communication module 15 is arranged inside the upper shell 23, and a main control module 16, a power module 17, a receiving module 18, and a timing module 19 are arranged inside the lower shell 21. Among them, the power module 17 supplies power to each module and remotely switches on and off. The communication module 15 connects the devices to form a network, and the communication modules 15 of each fast-deployable wireless signal detection device send signals. The main control module 16 controls the receiving module 18 to issue a receiving instruction. The receiving module 18 receives and processes the radio frequency signal. At the same time, the timing module 19 provides a high-precision timing function. The monitoring center aggregates the data of each device node and conducts analysis and processing. When the monitoring antenna 4 captures a wireless signal in the target area, the Beidou antenna 2 accurately locates and tracks the wireless signal. Each individual module is interconnected to achieve communication and data interaction, and can be quickly updated and replaced after a failure. Among them, the monitoring antenna is mainly responsible for receiving radio signals in the air from 30M to 6GHz.

[0026] Further, as Figure 2As shown in the figure, a monitoring antenna interface 11 is provided on the side of the node device 1. The monitoring antenna 4 is connected to the node device 1 through the monitoring antenna interface 11, and the monitoring antenna 4 receives and captures radio signals in the target area; the Beidou antenna 2 is connected to the node device 1 through the Beidou antenna interface 13 to perform positioning and tracking on the wireless signals captured by the monitoring antenna 4; the data transmission antenna 5 is connected to the node device 1 through the data transmission antenna interface 14, and each fast-deployable wireless signal detection device is interconnected and networked through the communication module 15 and the data transmission antenna 5 for wireless network communication and signal processing; the node device 1 is connected to the terminal device through the network interface 7, and the processed data is transmitted and controlled to the terminal device through wired transmission.

[0027] Further, as Figure 2 shown, an indicator light observation port 10 is provided on the node device 1 to observe the working state of the internal modules of the node device 1. When a problem occurs in the node device 1, the built-in monitoring program of the node device 1 is used for troubleshooting through the first debugging interface 8 and the second debugging interface 9. The built-in monitoring program of the node device 1 can also perform debugging and monitoring software upgrades. A waterproof breather 24 is provided on the node device 1 and has a circular structure to balance the atmospheric pressure difference inside the node device 1.

[0028] Further, as Figure 4 shown, the working process of the fast-deployable wireless signal detection device is as follows: the system is started through the power module 17, the monitoring antenna 4 scouts for wireless signals in the target area, the data transmission antenna 5 and the receiving module 18 process and analyze the monitored radio signals, each fast-deployable wireless signal detection device in the target area is networked, and the Beidou antenna 2 and the timing module 19 accurately locate the captured wireless signals to provide more complete data.

[0029] Further, as Figure 5 shown, the communication module 15 is used to form a system network. When the node device 1 forms a system network for work, the system application uses a one-network framework in terms of spatial distribution. The monitoring antenna 4 receives and captures radio signals in the target area, and the Beidou antenna 2 accurately locates the captured wireless signals. Multiple node devices 1 and monitoring antennas 4 are deployed in each task area, and the monitoring center is equipped with a portable control terminal to converge the data of the node devices 1 for analysis and processing.

[0030] Further, as Figure 3 、 4, as shown in Figure 5, the node device 1 networking system has four functions, including: signal detection and reception: autonomously discover the target frequency band, automatically extract signal parameters, and output a monitoring result report, replay data collection and results; signal analysis: measure the basic parameters of the signal, and perform comparison and identification analysis with the radiation source database and frequency resource database according to the signal characteristics; signal positioning: continuously position the target and display the position trajectory through a map; alarm handling: for key frequency bands, real-time control can be carried out in combination with signal characteristics, occurrence rules, and connection time. For the discovered target signals, alarm handling and situation update can be carried out through preset handling methods; operation and maintenance networking: have the functions of real-time monitoring and alarming of software and hardware and working status, automatic detection and alarming of network faults, and monitoring of network traffic and network bandwidth.

[0031] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A fast cloth-type wireless signal detection device, characterized in that Including: A system integration backpack (3); A node device (1), which is detachably arranged on one side inside the system integration backpack (3); A monitoring antenna (4), which is detachably arranged on the other side inside the system integration backpack (3), and the monitoring antenna (4) is connected to the node device (1). The monitoring antenna (4) is used to receive and capture radio signals in the program target area; A Beidou antenna (2), which is arranged on the top of the system integration backpack (3), and the Beidou antenna (2) is connected to the node device (1). The Beidou antenna (2) is used to accurately locate the wireless signals received and captured by the monitoring antenna (4); A data transmission antenna (5), which is arranged in a pocket on one side inside the system integration backpack (3), and the data transmission antenna (5) is connected to the node device (1). The data transmission antenna (5) is used for networking and wireless network communication and signal processing between each of the fast-deployable wireless signal detection devices; 2. The fast cloth-type wireless signal detection device according to claim 1, wherein The inner layer of the system integration backpack (3) is made of waterproof and rainproof material, the outer layer is made of thickened high-density nylon fabric, and the lining sandwich filling material is made of PP material; 3. The quick-cloth type wireless signal detection device according to claim 1, characterized in that, The node device (1) includes an upper housing (23) and a lower housing (21). A waterproof groove is provided between the upper housing (23) and the lower housing (21), and a sealing strip (20) is filled in the waterproof groove. The sealing strip (20) includes conductive rubber on the outer layer and silicone rubber on the inner layer. The upper housing (23) and the lower housing (21) are connected and fixed by anti-theft bolts (22); 4. The quick-cloth type wireless signal detection device according to claim 3, characterized in that The node device (1) includes: A power supply module (17), which is arranged in the lower housing (21) and is used to supply power to each module and remotely turn on and off; A communication module (15), which is arranged in the upper housing (23), and the communication module (15) is connected to the main control module (16) and the power supply module (17); A main control module (16), which is arranged in the lower housing (21), and the main control module (16) is connected to the power supply module (17); A receiving module (18), which is arranged in the lower housing (21), and the receiving module (18) is connected to the main control module (16) and is used to receive and process wireless signals; A timing module (19), which is arranged in the lower housing (21), and the timing module (19) is connected to the receiving module (18) and is used to provide a high-precision timing function; 5. The fast-cloth type wireless signal detection device according to claim 3, characterized in that On the side of the upper housing (23), there are provided: A network interface (7), which is used to connect to a terminal device; A Beidou antenna interface (13), through which the Beidou antenna (2) is connected to the node device (1); A data transmission antenna interface (14), through which the data transmission antenna (5) is connected to the node device (1); An indicator light observation port (10), which is used to observe the working state of the internal modules of the device; A waterproof breather (24) for balancing the ambient atmospheric pressure difference inside the node device.

6. The quick cloth-type wireless signal detection device according to claim 3, characterized in that, On the side of the lower housing (21), there are provided: A first debugging interface (8) and a second debugging interface (9) for using the debugging, monitoring software upgrade, and troubleshooting functions of the built-in monitoring program of the node device (1); A monitoring antenna interface (11), through which the monitoring antenna (4) is connected to the node device (1); A power supply interface (12) connected to the node device (1) for supplying power to the node device (1).