CN212992330U - Unmanned aerial vehicle individual soldier detection equipment - Google Patents

Unmanned aerial vehicle individual soldier detection equipment Download PDF

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Publication number
CN212992330U
CN212992330U CN202022294453.3U CN202022294453U CN212992330U CN 212992330 U CN212992330 U CN 212992330U CN 202022294453 U CN202022294453 U CN 202022294453U CN 212992330 U CN212992330 U CN 212992330U
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module
aerial vehicle
unmanned aerial
detection
shell
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CN202022294453.3U
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Chinese (zh)
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许成
万明杨
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Chengdu Anze Technology Co ltd
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Chengdu Anze Technology Co ltd
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Abstract

The utility model discloses an unmanned aerial vehicle individual soldier detection device, which comprises a shell, wherein a detection module, an antenna module, a power module and a sound-light alarm module are arranged in the shell; the detection module is connected with the antenna module, the power supply module and the sound-light alarm module; the power module includes power monitoring boost unit and lithium cell, power monitoring boost unit fixed set up in the shell, lithium cell detachable set up in the shell, work as the lithium cell set up in when in the shell, the lithium cell with power monitoring boost unit electricity is connected. The utility model aims at providing an individual soldier detection device of an unmanned aerial vehicle, which is provided with a photoelectric alarm and can automatically alarm when detecting the signal of the unmanned aerial vehicle; simultaneously this unmanned aerial vehicle individual soldier detection equipment's battery can be dismantled, can increase this unmanned aerial vehicle individual soldier detection equipment's duration through changing the battery.

Description

Unmanned aerial vehicle individual soldier detection equipment
Technical Field
The utility model relates to an unmanned air vehicle technique field especially relates to an unmanned aerial vehicle individual soldier detection equipment.
Background
The unmanned aerial vehicle is widely used in the military and civil fields, brings convenience to people, and brings many potential threats and hidden dangers to the safety of the country and people. In addition, unmanned aerial vehicle brings and peeps privacy crisis, unmanned aerial vehicle transports goods and drops, a series of unsafe problems such as unmanned aerial vehicle border smuggling drugs.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an individual soldier detection device of an unmanned aerial vehicle, which is provided with a photoelectric alarm and can automatically alarm when detecting the signal of the unmanned aerial vehicle; simultaneously this unmanned aerial vehicle individual soldier detection equipment's battery can be dismantled, can increase this unmanned aerial vehicle individual soldier detection equipment's duration through changing the battery.
The utility model discloses a following technical scheme realizes:
an unmanned aerial vehicle individual soldier detection device comprises a shell, wherein a detection module, an antenna module, a power supply module and a sound-light alarm module are arranged in the shell; the detection module is connected with the antenna module, the power supply module and the sound-light alarm module; the power module includes power monitoring boost unit and lithium cell, power monitoring boost unit fixed set up in the shell, lithium cell detachable set up in the shell, work as the lithium cell set up in when in the shell, the lithium cell with power monitoring boost unit electricity is connected.
Preferably, the detection module comprises a signal identification processing unit and a radio frequency signal processing unit which are connected with each other, the signal identification processing unit is connected with the sound and light alarm module, and the radio frequency signal processing unit is connected with the antenna module.
Preferably, the antenna module includes a 2.4GHz omnidirectional detection antenna and a 5.8GHz omnidirectional detection antenna.
Preferably, the radio frequency signal processing unit includes a 2.4GHz radio frequency signal processing unit and a 5.8GHz radio frequency signal processing unit, the 2.4GHz radio frequency signal processing unit is connected with the 2.4GHz omnidirectional detection antenna, and the 5.8GHz radio frequency signal processing unit is connected with the 5.8GHz omnidirectional detection antenna.
Preferably, the housing includes a detachable upper housing and a detachable lower housing, the detecting module, the antenna module, the sound and light alarm module and the power monitoring and boosting unit are all fixedly disposed inside the lower housing, and an antenna of the antenna module is exposed out of the lower housing; the lithium battery is detachably arranged in the lower shell; when the upper case and the lower case are separated, the lithium battery may be taken out of the lower case.
Preferably, the model of the power supply module is An-DY 5.
Preferably, the types of the detection module are: An-Wscan 205.
Preferably, the model of the antenna module is: An-S1258G.
Preferably, the type of the sound and light alarm module is as follows: An-BL 01.
Compared with the prior art, the utility model, following advantage and beneficial effect have:
1. the sound and light alarm module is arranged, and can automatically alarm when the unmanned aerial vehicle signal is detected;
2. the battery and the shell can be detached, and the battery can be used outdoors for a long time.
Drawings
The accompanying drawings, which are included to provide a further understanding of the embodiments of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principles of the invention. In the drawings:
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the overall structure of the present invention;
FIG. 3 is a schematic view of the connection of the internal modules of the present invention;
FIG. 4 is a schematic diagram of a circuit structure of a part of the present invention;
FIG. 5 is a schematic diagram of a part of the circuit structure of the present invention;
fig. 6 is a schematic diagram of a part of the circuit structure of the present invention.
Reference numbers and corresponding part names in the drawings:
1. a housing; 2. a detection module; 3. a lithium battery; 4. a sound and light alarm module; 5. an antenna; 101. an upper housing; 102. a lower housing.
Detailed Description
To make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the following examples and drawings, and the exemplary embodiments and descriptions thereof of the present invention are only used for explaining the present invention, and are not intended as limitations of the present invention.
Examples
An unmanned aerial vehicle individual soldier detection device is shown in figures 1 and 2 and comprises a shell 1 made of high-flame-retardant anti-falling materials, the protection grade can reach IP66, a detection module 2 with the model of An-Wscan205, a 2.4GHz omnidirectional detection antenna with the model of An-S1258G, a 5.8GHz omnidirectional detection antenna with the model of An-S1258G, a power supply module with the model of An-DY5 and An acousto-optic alarm module 4 with the model of An-BL01 are arranged in the shell 1. Wherein, the power module includes power monitoring booster unit and lithium cell 3.
As shown in fig. 2, the housing 1 of the present embodiment includes an upper casing 101 and a lower casing 102, a limiting opening is provided around the upper casing 101, a limiting rod is provided on the lower casing 102, and when the upper casing 101 covers the lower casing 102, the limiting rod is clamped in the limiting opening, so as to realize the fixed connection between the upper casing 101 and the lower casing 102. When disassembling, the upper casing 101 and the lower casing 102 are pulled in opposite directions.
In addition, in the present embodiment, the detecting module 2, the power monitoring and boosting unit, and the acousto-optic alarm module 4 are all fixed in the lower housing 102 by screws; the circuit boards of the 2.4GHz omnidirectional detection antenna and the 5.8GHz omnidirectional detection antenna are fixedly arranged at the top of the lower shell 102, two through holes are formed in the top of the lower shell 102, and the antenna 5 of the 2.4GHz omnidirectional detection antenna and the antenna 5 of the 5.8GHz omnidirectional detection antenna respectively penetrate through one of the through holes and then are connected with the corresponding circuit boards; a battery jar (not shown in the figure) is further arranged in the lower shell 102, the lithium battery 3 is detachably arranged in the battery jar, and when the lithium battery 3 is arranged in the battery jar, the lithium battery 3 is electrically connected with the power monitoring and boosting unit. In this scheme, set up the battery into detachable, for the sensing equipment of other fuselage and battery integration, when battery power exhausts, can change the battery at will, increased sensing equipment's duration.
Further, in the present embodiment, as shown in fig. 3, the detecting module 2 includes a signal identification processing unit and a radio frequency signal processing unit, wherein the radio frequency signal processing unit includes a 2.4GHz radio frequency signal processing unit and a 5.8GHz radio frequency signal processing unit.
In the specific implementation of this embodiment, as shown in fig. 4-6, the terminals A, B, C are connected in sequence; the positive and negative outputs of the power monitoring boosting unit are respectively connected to the detection module 2 through a high-temperature lead with 1.5 square red/black color, a 2.4GHz omnidirectional detection antenna (the detection frequency range is 2400 MHz-2485 MHz) is connected with a radio frequency input port of the 2.4GHz radio frequency signal processing unit through a high-frequency cable, and a 5.8GHz omnidirectional detection antenna (the detection frequency range is 5600 MHz-5900 MHz) is connected with a radio frequency input port of the 5.8GHz radio frequency signal processing unit through a high-frequency cable; the 2.4GHz radio frequency signal processing unit and the 5.8GHz radio frequency signal processing unit are both connected with a radio frequency input port of the signal identification processing module through high-frequency cables, and the signal identification processing module is connected with the acousto-optic alarm module 4 through a 2-core IO line.
When the scheme of the embodiment is used for working: after unmanned aerial vehicle individual soldier detecting equipment starts up, detecting module 2 is in operating condition this moment, detecting module 2 carries out and detects the task, after detecting module 2 received the 2400 ~ 2485MHz frequency channel signal or 5.8GHz omnidirectional detection antenna detecting 5600 ~ 5900MHz frequency channel that 2.4GHz omnidirectional detection antenna detected, detecting module 2 enlargies the signal received, frequency conversion, filtering, AD sampling and signal demodulation are handled, whether final discernment judges there is the unmanned aerial vehicle signal, when discerning that there is the unmanned aerial vehicle signal, it reports to the police to detect the result through IO mouth drive audible-visual alarm module 4.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above description is only the embodiments of the present invention, and is not intended to limit the scope of the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (9)

1. An unmanned aerial vehicle individual soldier detection device is characterized by comprising a shell (1), wherein a detection module (2), an antenna module, a power supply module and a sound-light alarm module (4) are arranged in the shell (1); the detection module (2) is connected with the antenna module, the power supply module and the sound-light alarm module (4); the power module comprises a power monitoring boosting unit and a lithium battery (3), the power monitoring boosting unit is fixedly arranged in the shell (1), the lithium battery (3) is detachably arranged in the shell (1), and when the lithium battery (3) is arranged in the shell (1), the lithium battery (3) is electrically connected with the power monitoring boosting unit.
2. The unmanned aerial vehicle individual soldier detection device of claim 1, wherein the detection module (2) comprises a signal identification processing unit and a radio frequency signal processing unit which are connected with each other, the signal identification processing unit is connected with the acousto-optic alarm module (4), and the radio frequency signal processing unit is connected with the antenna module.
3. The unmanned aerial vehicle individual soldier detection device of claim 2, wherein the antenna module comprises a 2.4GHz omnidirectional detection antenna and a 5.8GHz omnidirectional detection antenna.
4. The unmanned aerial vehicle individual soldier detection device of claim 3, wherein the radio frequency signal processing unit comprises a 2.4GHz radio frequency signal processing unit and a 5.8GHz radio frequency signal processing unit, the 2.4GHz radio frequency signal processing unit is connected with the 2.4GHz omnidirectional detection antenna, and the 5.8GHz radio frequency signal processing unit is connected with the 5.8GHz omnidirectional detection antenna.
5. The unmanned aerial vehicle individual soldier detection device according to claim 4, wherein the housing (1) comprises a detachable upper shell and a detachable lower shell, the detection module (2), the antenna module, the acousto-optic alarm module (4) and the power supply monitoring boosting unit are all fixedly arranged in the lower shell, and an antenna (5) of the antenna module is exposed out of the lower shell; the lithium battery (3) is detachably arranged in the lower shell; when the upper case and the lower case are separated, the lithium battery (3) can be taken out of the lower case.
6. An unmanned aerial vehicle individual soldier detection device as claimed in any one of claims 1 to 5, wherein the model of the power module is An-DY 5.
7. The individual soldier detection device of unmanned aerial vehicle of claim 6, wherein the type of the detection module (2) is: An-Wscan 205.
8. The unmanned aerial vehicle individual soldier detection device of claim 7, wherein the antenna module is of the type: An-S1258G.
9. The individual soldier detection device of unmanned aerial vehicle of claim 8, wherein the type of the acousto-optic alarm module (4) is: An-BL 01.
CN202022294453.3U 2020-10-15 2020-10-15 Unmanned aerial vehicle individual soldier detection equipment Active CN212992330U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022294453.3U CN212992330U (en) 2020-10-15 2020-10-15 Unmanned aerial vehicle individual soldier detection equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022294453.3U CN212992330U (en) 2020-10-15 2020-10-15 Unmanned aerial vehicle individual soldier detection equipment

Publications (1)

Publication Number Publication Date
CN212992330U true CN212992330U (en) 2021-04-16

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Application Number Title Priority Date Filing Date
CN202022294453.3U Active CN212992330U (en) 2020-10-15 2020-10-15 Unmanned aerial vehicle individual soldier detection equipment

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Country Link
CN (1) CN212992330U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115629401A (en) * 2022-12-22 2023-01-20 成都安则科技有限公司 Unmanned aerial vehicle navigation decoy signal generation method, system, terminal and medium

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115629401A (en) * 2022-12-22 2023-01-20 成都安则科技有限公司 Unmanned aerial vehicle navigation decoy signal generation method, system, terminal and medium

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