Radio networking type disturbance detection integrated equipment
Technical Field
The utility model relates to the field of radio management, in particular to radio networking type interference detection integrated equipment.
Background
With the rapid development of radio services and the increasing number of radio devices, the management of radios has become increasingly important. On one hand, real-time detection, analysis and direction finding are needed for aerial signals, and basis is provided for identifying illegal and processing radio signals, and on the other hand, rapid blocking is needed for the behavior of damaging order (such as radio cheating in examination rooms and interference of unmanned aerial vehicles on important events, conference venues or area guarantee). Along with the popularization of the radio, the interference source has the conditions of multiple, concurrent and different orientations, and the existing suppression equipment has the common defects of only supporting independent work, being incapable of recognizing interference, being incapable of positioning or orienting interference, only supporting unidirectional suppression, being close in wired control distance and the like. Therefore, there is a need to develop a networking type integrated device for detecting interference, which is required to have a multi-module networking device for radio spectrum analysis, signal direction finding, multi-angle suppression, remote wireless communication, unattended, and joint positioning.
Disclosure of utility model
The utility model aims to overcome the defects of the prior art and provides radio networking type detection and interference integrated equipment which comprises an antenna group, a multichannel interference source, a navigation compass assembly, a limiting selection switch, a high-definition camera holder, a signal processor, a radio frequency module, a power module, a fan, a 5G communication module and a graph data networking module.
The multi-channel interference source, the navigation compass assembly, the high-definition camera holder, the signal processor, the radio frequency module, the power module, the fan, the 5G communication module and the image data networking module are respectively connected with the signal processor, and the amplitude limiting selection switch is connected with the radio frequency module.
Preferably, the antenna group comprises a transmitting antenna module, the transmitting antenna module comprises a plurality of directional transmitting antennas, and the directional transmitting antennas are respectively connected with the multichannel interference source.
Preferably, the antenna group further comprises a receiving antenna module, the receiving antenna module comprises a plurality of directional receiving antennas, and the directional receiving antennas are respectively connected with the amplitude limiting selection switch.
Preferably, the antenna group further comprises an omni-directional antenna, and the omni-directional antenna is connected with the amplitude limiting selection switch.
Preferably, the plurality of directional receiving antennas are used for forming a uniform direction-finding circular array.
Preferably, the working frequency bands of the directional transmitting antennas, the omni-directional antennas and the directional receiving antennas all cover 20-8000MHz.
Preferably, the plurality of directional transmitting antennas and the plurality of directional receiving antennas are combined in pairs, an octahedron is formed by surrounding, outward transmitting and receiving radio, and the omnidirectional antenna is arranged in the center.
Preferably, the main lobe widths of the plurality of directional transmitting antennas and the plurality of directional receiving antennas reach 45 degrees.
1. The multi-channel interference suppression device has the beneficial effects that the device is provided with the multi-channel interference source (4) and a plurality of directional transmitting antennas (1), can support at most 8 paths of simultaneous or time-sharing transmission, can realize interference suppression in one direction, multiple directions and all directions, and is suitable for the situations of different interference such as single-shot, concurrent, multiple directions and the like.
2. The device can realize high-precision amplitude comparison direction finding by an omni-directional antenna (2) and a plurality of directional receiving antennas (3) in an array.
3. The equipment has wireless communication capability and a high-definition camera holder (7), and can realize an unattended operation mode through remote wireless control.
4. The equipment has wireless communication capability, can transmit the information of each equipment to the client in real time, extract the position information and the direction finding information,
And finishing the combined positioning function.
The device is provided with a 5G communication module (12) and a graph data transmission networking module (13), can complete two wireless communication and 1 wired communication functions, can utilize public network networking and also can realize radio ad hoc network, and can adapt to various working scenes such as cities, villages, unmanned areas and the like due to mutual backup.
Drawings
Fig. 1 is a schematic diagram of a radio networking type integrated interference detection device
Fig. 2 is a schematic diagram of an implementation of a radio networking type integrated device for interference detection.
The digital signal processing system comprises a 1-directional transmitting antenna, a 2-omnidirectional antenna, a 3-directional receiving antenna, a 4-multichannel interference source, a 5-navigation compass assembly, a 6-amplitude limiting selection switch, a 7-high-definition camera cradle head, an 8-signal processor, a 9-radio frequency module, a 10-power module, an 11-fan, a 12-5G communication module and a 13-graph data transmission networking module.
Detailed Description
The technical solution of the present utility model will be described in further detail with reference to the accompanying drawings, but the scope of the present utility model is not limited to the following description.
The features and properties of the present utility model will be described in further detail with reference to examples
As shown in FIG. 1, the wireless networking type disturbance detection integrated device comprises an antenna group, a multichannel disturbance source, a navigation compass assembly, a limiting selection switch, a high-definition camera holder, a signal processor, a radio frequency module, a power supply module, a fan, a 5G communication module and a graph data transmission networking module.
The multi-channel interference source, the navigation compass assembly, the high-definition camera holder, the signal processor, the radio frequency module, the power module, the fan, the 5G communication module and the image data networking module are respectively connected with the signal processor, and the amplitude limiting selection switch is connected with the radio frequency module.
The antenna group comprises a transmitting antenna module, the transmitting antenna module comprises a plurality of directional transmitting antennas, and the directional transmitting antennas are respectively connected with the multichannel interference source.
The antenna group also comprises a receiving antenna module, wherein the receiving antenna module comprises a plurality of directional receiving antennas, and the directional receiving antennas are respectively connected with the amplitude limiting selection switch.
The antenna group also comprises an omnidirectional antenna, and the omnidirectional antenna is connected with the amplitude limiting selection switch.
The directional receiving antennas are used for forming a uniform direction-finding circular array.
The working frequency bands of the directional transmitting antennas, the omnidirectional antennas and the directional receiving antennas all cover 20-8000MHz.
The directional transmitting antennas and the directional receiving antennas are combined in pairs to form an octahedron, the outward transmitting and receiving radio is formed, and the omnidirectional antennas are arranged in the center.
The main lobe widths of the directional transmitting antennas and the directional receiving antennas reach 45 degrees.
Specifically, as shown in fig. 2, the utility model provides networking type disturbance detection integrated equipment which comprises an antenna group, a multichannel disturbance source (4), a navigation compass assembly (5), a limiting selection switch (6), a high-definition camera holder (7), a signal processor (8), a radio frequency module (9), a power supply module (10), a fan (11), a 5G communication module (12), a graph data networking module (13) and the like. The antenna group comprises a plurality of directional transmitting antennas (1), an omnidirectional antenna (2), a plurality of directional receiving antennas (3) and other antennas for acquiring aerial electromagnetic wave signals, Transmitting radio interference signals and other different aspects, uniformly distributing a plurality of directional transmitting antennas (1) at 360 degrees to ensure that the interference direction can cover the whole horizontal plane, detecting and receiving air signals by using an omnidirectional antenna (2) and simultaneously providing amplitude references for a comparing direction-finding antenna array, forming a uniform direction-finding circular array by using a plurality of directional receiving antennas (3) to provide basic support for comparing direction-finding, connecting a multichannel interference source (4) with the plurality of directional transmitting antennas (1) to generate required interference signal sources and transmitting the interference signals to the air through the directional transmitting antennas (1), connecting a navigation compass assembly (5) with a signal processor (8) to detect azimuth information of current equipment and magnetic north and longitude and latitude information of a deployment position in real time, providing analysis processing by the signal processor (8), and analyzing and processing by using a limiting selection switch (6) and the omnidirectional antenna (2), The high-definition camera cradle head (7) is connected with a signal processor (8) and is used for recording surrounding environment image information in real time, the camera shooting angle can be adjusted so as to confirm and observe the environment under the networking of multiple devices, the signal processor (8) is a core processing unit of the whole device and receives a client command, coordinates the orderly operation of all the constituent units, processes and analyzes various data, and the radio frequency module (9) and a limiting selection switch (6), the power module (10) is respectively connected with a multichannel interference source (4), a navigation compass assembly (5), the amplitude limiting selection switch (6), a high-definition camera cradle head (7), the signal processor (8), the radio frequency module (9), the power module (10), the fan (11), the 5G communication module (12), the image data networking module (13) and other almost all components for providing available power for the components. The system comprises a fan (11), a 5G communication module (12), a signal processor (8), a graph data transmission networking module (13) and a wireless communication system, wherein the fan (11) is used for radiating the inside of equipment, the 5G communication module (12) is connected with the signal processor (8) and is used for 5G public network networking, and can collect information such as image data, radio IQ acquisition data, navigation and compass data, frequency spectrum and direction finding analysis results, control and state instructions of all the equipment and the like to a client through the 5G network and realize networking control, and the graph data transmission networking module (13) is connected with the signal processor (8) and is used for constructing a self-defined graph data transmission wireless communication system which can collect the image data, the radio IQ acquisition data, the navigation and compass data of all the equipment, Information such as frequency spectrum and direction finding analysis result, control and status instruction is summarized to a client and networking control is realized
The working frequency ranges of the directional transmitting antennas (1), the omnidirectional antennas (2) and the directional receiving antennas (3) all cover 20-8000MHz.
The directional transmitting antennas (1) and the directional receiving antennas (3) are combined in pairs to form an octahedron, the octahedron transmits outwards and receives radio, and the omnidirectional antenna (2) is arranged in the center.
The main lobe widths of the directional transmitting antennas (1) and the directional receiving antennas (3) reach 45 degrees.
The multichannel interference source (4) and the directional transmitting antennas (1) can support 8 paths of simultaneous transmission at most, and full-airspace saturated coverage is realized.
The navigation compass assembly (5) can provide navigation data and compass data, wherein the navigation data comprises a plurality of satellite positioning data such as Beidou, GPS, GLONASS, galileo and the like.
The 5G communication module (12) and the image data transmission networking module (13) are both wireless networking, can independently transmit data, support multimode networking modes under various complex environments, and are strong in anti-interference capability and long in communication distance.
The foregoing is merely a preferred embodiment of the utility model, and it is to be understood that the utility model is not limited to the form disclosed herein but is not to be construed as excluding other embodiments, but is capable of numerous other combinations, modifications and environments and is capable of modifications within the scope of the inventive concept, either as taught or as a matter of routine skill or knowledge in the relevant art. And that modifications and variations which do not depart from the spirit and scope of the utility model are intended to be within the scope of the appended claims.