Investigation and beating integrated equipment

文档序号:1925110 发布日期:2021-12-03 浏览:17次 中文

阅读说明:本技术 察打一体化设备 (Investigation and beating integrated equipment ) 是由 顾晓乐 于 2021-10-11 设计创作,主要内容包括:察打一体化设备,察打一体化设备包括主机和设置在主机顶部的无线电接收打击天线、WIFI信号接收打击天线和GPS信号接收天线,所述主机与数据处理单元通过防水专用网线连接。本发明察打一体化设备采用认知无线电协议破解技术及同频干扰技术,解决国内外民用无人机的侦测、识别、防御低空安防系统。察打一体化设备可24小时不间断地采集防御区内的无线电信号,并精确解调破解出无人机信号,然后将分析到的无人机信号通过网络传送至数据服务器,由数据服务器对接收的无人机信号进行统一管理,对“黑飞”无人机进行防御打击。对保护区的无人机进行无源侦测、区分敌我,可用于机场、监狱、重要基地、体育场馆及重大活动场合的低空安全防御。(The observing and hitting integrated equipment comprises a host, and a radio receiving hitting antenna, a WIFI signal receiving hitting antenna and a GPS signal receiving antenna which are arranged at the top of the host, wherein the host is connected with the data processing unit through a waterproof special network cable. The scouting and fighting integrated equipment adopts a cognitive radio protocol cracking technology and a same frequency interference technology, and solves the problems of detection, identification and defense of a low-altitude security system of domestic and foreign civil unmanned aerial vehicles. The reconnaissance and attack integrated equipment can uninterruptedly acquire radio signals in a defense area within 24 hours, accurately demodulate and crack unmanned aerial vehicle signals, transmit the analyzed unmanned aerial vehicle signals to a data server through a network, uniformly manage the received unmanned aerial vehicle signals by the data server, and defend and attack the 'black flying' unmanned aerial vehicle. The unmanned aerial vehicle in the protected area is passively detected and enemies and my people are distinguished, and the unmanned aerial vehicle can be used for low-altitude safety defense in airports, prisons, important bases, stadiums and major activity occasions.)

1. The investigation and beating integrated equipment is characterized by comprising a host (11), and a radio receiving and beating antenna (12), a WIFI signal receiving and beating antenna (13) and a GPS signal receiving antenna (14) which are arranged at the top of the host (11), wherein the host (11) is connected with a data processing unit through a waterproof special network cable.

2. The scout and swatter integrated apparatus of claim 1, wherein the data processing unit is a portable laptop computer.

3. The scouting and printing integrated device according to claim 1, wherein the host (11) is internally provided with a GPS module, a beidou module, a 2.4G detection module, a 5.8G detection module and an interception module.

4. The scouting and printing integrated equipment according to claim 1, characterized in that a high power LDMOS device is arranged in the main machine (11) and is matched with frequency correction and fast frequency sweep technology.

5. The scout and dozen integrated equipment according to claim 1, characterized in that the host computer (11) supports RJ 45/fiber optic remote control functions and performs centralized on-off control, status monitoring, and parameter setting operations of the equipment.

6. The scouting and printing integrated device according to claim 1, wherein the data processing unit is operated and managed by a WEB interface, and the WEB interface includes overview, intrusion record of the unmanned aerial vehicle, history list of the unmanned aerial vehicle, white list of the unmanned aerial vehicle, defense strategy of the unmanned aerial vehicle, configuration management, user management, and system maintenance.

7. The scouting and printing integrated device according to claim 1, wherein the scouting and printing integrated device supports public network, internal network or does not access any network for use.

Technical Field

The invention relates to a surveying and printing integrated device.

Background

The unmanned aerial vehicle has better market application prospects in aerial photography, agriculture, plant protection, miniature self-timer, express transportation, disaster relief, wild animal observation, infectious disease monitoring, surveying and mapping, news reporting, power inspection, disaster relief, film and television shooting and romantic manufacturing at present, the application of the unmanned aerial vehicle is expanded, and developed countries actively expand the industrial application and develop the unmanned aerial vehicle technology. With the wide application of unmanned aerial vehicles, the phenomenon of black flight or messy flight in important places is gradually increased, and the safe operation of important places such as airports and the like is seriously threatened.

Disclosure of Invention

The invention provides a scouting and printing integrated device adopting a cognitive radio protocol cracking technology and a same frequency interference technology.

The technical scheme adopted by the invention for solving the technical problems is as follows:

the observing and hitting integrated equipment comprises a host, and a radio receiving hitting antenna, a WIFI signal receiving hitting antenna and a GPS signal receiving antenna which are arranged at the top of the host, wherein the host is connected with the data processing unit through a waterproof special network cable.

Preferably, the data processing unit is a portable notebook computer.

Preferably, the host is internally provided with a GPS module, a Beidou module, a 2.4G detection module, a 5.8G detection module and an interception module.

Preferably, a high-power LDMOS device is arranged in the host machine and is matched with frequency correction and a rapid frequency sweeping technology.

Preferably, the host computer supports the RJ 45/optical fiber remote control function and performs centralized disconnection control, state monitoring and parameter setting operation on the equipment.

Preferably, the data processing unit adopts a WEB interface for operation management, and the WEB interface comprises an overview, unmanned aerial vehicle intrusion records, an unmanned aerial vehicle history list, an unmanned aerial vehicle white list, unmanned aerial vehicle defense strategies, configuration management, user management and system maintenance.

Preferably, the scouting and printing integrated equipment supports a public network, an internal network or does not access any network for use.

Compared with the prior art, the reconnaissance and defense integrated device adopts a cognitive radio protocol cracking technology and a same frequency interference technology, and solves the problems of detection, identification and defense of a low-altitude security system of domestic and foreign civil unmanned aerial vehicles. The reconnaissance and attack integrated equipment can uninterruptedly acquire radio signals in a defense area within 24 hours, accurately demodulate and crack unmanned aerial vehicle signals, transmit the analyzed unmanned aerial vehicle signals to a data server through a network, uniformly manage the received unmanned aerial vehicle signals by the data server, and defend and attack the 'black flying' unmanned aerial vehicle. The unmanned aerial vehicle in the protected area is passively detected and enemies and my people are distinguished, and the unmanned aerial vehicle can be used for low-altitude safety defense in airports, prisons, important bases, stadiums and major activity occasions.

Drawings

Fig. 1 is a perspective view of the inspecting and printing integrated device according to the present invention.

FIG. 2 is an interface operation diagram of the scouting and printing integrated equipment.

Detailed Description

The invention is described in further detail below with reference to the accompanying examples.

As shown in fig. 1 to 2, the surveying and batting integrated device includes a host 11, and a radio receiving and batting antenna 12, a WIFI signal receiving and batting antenna 13, and a GPS signal receiving antenna 14 which are arranged on the top of the host 11, the host 11 is connected with a data processing unit through a waterproof dedicated network cable, and the data processing unit is a portable notebook computer.

Host computer 11 embeds GPS module, big dipper module, 2.4G detection module, 5.8G detection module and interception module, can cover the unmanned aerial vehicle of almost all models. All unmanned aerial vehicles that get into this model coverage all can't acquire satellite positioning information, and control signal and image transmission signal between unmanned aerial vehicle and the ground controller are all cut off simultaneously, force unmanned aerial vehicle to descend. The high-power LDMOS device is arranged in the host 11, and the frequency correction and fast frequency sweep technology are matched, so that the equipment interception effect is greatly improved, the actually-measured detection radius can reach 2000 m, and the interception radius distance can reach 1000-1500 m. Illegal unmanned aerial vehicle and legal unmanned aerial vehicle can be distinguished, can realize 24 hours unmanned on duty, and host computer 11 supports RJ45 optic fibre remote control function, can realize the concentrated on-off control, state monitoring, the parameter setting operation to equipment, very big convenience that provides equipment operation and control.

Peak power value: 2.4G radio frequency is less than or equal to 100 w; the radio frequency of 5.8G is less than or equal to 30 w; 1.2G is less than or equal to 30W; 1.6G is less than or equal to 30W.

Reception sensitivity: 2.4G radio frequency is less than or equal to-115 dBm; the radio frequency of 5.8G is less than or equal to-110 dBm.

Supporting the receiving frequency: 70 MHz-6000 MHz.

Adapting to a communication debugging mode: FM,2FSK,4FSK, GFSK, MSK, BPSK, QPSK,16QAM,64QAM, OFDM, DSSS, FHSS.

Frequency measurement precision: less than or equal to 1kHz (120MHz bandwidth);

after the hardware of the system is erected and deployed, the data processing unit adopts WEB interface operation management, the operation is simple and convenient, and managers can remotely control the interface management, parameter setting/query and the like of the unmanned aerial vehicle scouting and printing integrated system through mouse operation.

The system of the check and play integrated equipment supports public networks, internal networks or does not access any network for use.

The WEB interface comprises functional modules such as an overview, unmanned aerial vehicle intrusion records, unmanned aerial vehicle history lists, unmanned aerial vehicle white lists, unmanned aerial vehicle defense strategies, configuration management, user management and system maintenance, and a user can select to click to enter the interface as required.

The scouting and fighting integrated equipment adopts a cognitive radio protocol cracking technology and a same frequency interference technology, and solves the problems of detection, identification and defense of a low-altitude security system of domestic and foreign civil unmanned aerial vehicles. The reconnaissance and attack integrated equipment can uninterruptedly acquire radio signals in a defense area within 24 hours, accurately demodulate and crack unmanned aerial vehicle signals, transmit the analyzed unmanned aerial vehicle signals to a data server through a network, uniformly manage the received unmanned aerial vehicle signals by the data server, and defend and attack the 'black flying' unmanned aerial vehicle. The unmanned aerial vehicle in the protected area is passively detected and enemies and my people are distinguished, and the unmanned aerial vehicle can be used for low-altitude safety defense in airports, prisons, important bases, stadiums and major activity occasions.

Finally, it should be noted that: the above examples are merely illustrative of the technical solutions of the present invention, and not limitative thereof; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

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