CN214480670U - Network monitoring device based on big data - Google Patents
Network monitoring device based on big data Download PDFInfo
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- CN214480670U CN214480670U CN202120962555.XU CN202120962555U CN214480670U CN 214480670 U CN214480670 U CN 214480670U CN 202120962555 U CN202120962555 U CN 202120962555U CN 214480670 U CN214480670 U CN 214480670U
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Abstract
The utility model discloses a network monitoring device based on big data relates to monitoring devices technical field, including monitoring main part case, camera and wireless transmission case, still including can disguise and carry out the protection architecture, the removal structure that conveniently monitors the removal and the staff of being convenient for that protect to the device body carrying in hiding the corner, the hinge is installed to one side of monitoring main part case, protection architecture sets up in one side of hinge, positive one side of monitoring main part case is provided with display panel, and the top at the display panel back is provided with video capture card, the lower extreme that display panel one side was openly kept away from to the monitoring main part case is provided with operating panel, first kayser is installed to the opposite side of monitoring main part case. The utility model discloses a scribble camouflage paint on setting up camouflage layer for the whole device can not be found when field work, has solved inconvenient protection and the problem of camouflage.
Description
Technical Field
The utility model relates to a monitoring device technical field specifically is a network monitoring device based on big data.
Background
Big data, which means a data set that cannot be captured, managed and processed by a conventional software tool within a certain time range, is a massive, high-growth rate and diversified information asset that needs a new processing mode to have stronger decision-making power, insight discovery power and process optimization capability, and a computer network, which means a computer system that connects multiple computers with independent functions and external devices thereof at different geographic locations through communication lines, and implements resource sharing and information transfer under the management and coordination of a network operating system, network management software and a network communication protocol, wherein data is often monitored through the computer network in the prior art.
Through retrieval, chinese patent No. CN112533422A, publication No. 2021, 03.19.03.3, discloses a network monitoring device based on big data, wherein it is proposed that "a monitoring device body 2 and a first motor 3 are fixedly installed in the box 1, a fan blade 4 is fixedly connected to an output shaft of the first motor 3, an air inlet pipe 5 is fixedly installed at the rear side of the box 1, the air inlet pipe 5 is communicated with the box 1, a fixing cover 8 is fixedly installed at the top of the box 1, and a second motor 9 is fixedly installed at one side of the fixing cover 8", and the device can not protect the device body and disguise when network monitoring is implemented in a very secret place.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a network monitoring device based on big data to solve the inconvenient protection that proposes in the above-mentioned background art and pretend, inconvenient removal and inconvenient problem of carrying.
In order to achieve the above object, the utility model provides a following technical scheme: a network monitoring device based on big data comprises a monitoring main body box, a camera, a wireless transmission box, a protection structure, a mobile structure and a lifting structure, wherein the protection structure can be used for disguising in hidden corners and protecting a device body;
a hinge is mounted on one side of the monitoring main body box, and the protection structure is arranged on one side of the hinge;
a display panel is arranged on one side of the front surface of the monitoring main body box, a video acquisition card is arranged at the top end of the back surface of the display panel, an operation panel is arranged at the lower end of the front surface of the monitoring main body box, which is far away from one side of the display panel, a first latch is arranged on the other side of the monitoring main body box, a circular groove is arranged on the front surface of the first latch, and the moving structure is arranged at the bottom end of the monitoring main body box;
the lower end of one side of the back surface of the monitoring main body box is provided with a power supply port, and the lifting structure is arranged in the middle of the back surface of the monitoring main body box;
the top of monitoring main part case is provided with wireless transmission case, and the top of wireless transmission case is provided with the camera.
Preferably, the protection architecture still includes the visor, the visor sets up in one side of hinge, and the inside of visor is provided with camouflage layer, one side of visor is provided with the second kayser, and the front of second kayser is provided with the round convex spoon, camouflage paint is sprayed on camouflage layer's surface, and camouflage layer's central point and the central point of visor coincide each other.
Preferably, the size of the second lock is the same as that of the first lock, and the inner receiving part of the circular groove and the inner connecting part of the circular convex key are mutually complementary.
Preferably, the removal structure comprises convex groove, fixed diaphragm, freely movable joint, perpendicular groove, slider and pulley, fixed diaphragm sets up in the bottom of monitoring main part case, the front of fixed diaphragm is provided with convex groove, and the both sides of fixed diaphragm all are provided with freely movable joint, freely movable joint's bottom is provided with perpendicular groove, and erects the front in groove and be provided with the slider, the bottom of erecting the groove is provided with the pulley, the height of erecting the groove is the same with the distance of fixed diaphragm to convex groove one side, and freely movable joint's the centre of a circle and the central point of fixed diaphragm are on same straight line.
Preferably, the sliding block is in threaded connection with the pulley, and the top end of the pulley is provided with a hole with the same area as that of the bottom end of the vertical groove.
Preferably, carry and draw the structure to constitute by shadoof, snap ring, ball and T type hob, the snap ring sets up in the middle department at the monitoring main part case back, and the inside of snap ring is vertical to be provided with the shadoof, the both sides in the shadoof outside all are provided with the ball, and the bottom of shadoof is connected with T type hob, the internal thread structure of shadoof bottom and the external thread structure phase-match of T type hob, and the screw thread number of shadoof bottom is half of T type hob screw thread number.
Preferably, the circle center of the clamping ring and the central point of the lifting rod are on the same straight line, and the central point of the clamping ring and the central point of the monitoring main box are on the same horizontal line.
Compared with the prior art, the utility model provides a pair of network monitoring device based on big data has following beneficial effect:
(1) the utility model provides a second kayser, protruding spoon, visor and camouflage layer, utilize the visor to cover the monitoring main part case, after covering the monitoring main part case, rotate the protruding spoon on the second kayser, make the junction in the inside of protruding spoon aim at the inside of circular slot on the first kayser and accept the department simultaneously, after circular slot and protruding spoon interlock, scribble camouflage paint on the camouflage layer this moment, make the whole device can not be found in field work, solved inconvenient protection and camouflage problem;
(2) the utility model provides a protruding type groove, fixed diaphragm, freely movable joint, vertical slot, slider and pulley utilize to rotate freely movable joint, remove the slider simultaneously, make the slider move on vertical slot simultaneously, the pulley is slowly placed subaerial simultaneously, when not needing to remove, as long as move the slider upwards, mention the pulley upwards, when mentioning suitable height, rotate freely movable joint this moment, make vertical slot and pulley block together in protruding type groove, solved the inconvenient problem of removing;
(3) the utility model provides a there are shadoof, snap ring, ball and T type hob, utilize to carry and carry the shadoof for the shadoof rebound, the ball rolls along ascending power simultaneously, and T type hob blocks the bottom in the snap ring outside when the critical point is reachd to the shadoof this moment, has played the effect of a restriction, has solved the problem of inconvenient carrying.
Drawings
Fig. 1 is a schematic front view of the present invention;
fig. 2 is a schematic front view of the cross-sectional structure of the present invention;
fig. 3 is a schematic front view of the back structure of the present invention;
fig. 4 is a front view of the moving structure of the present invention;
fig. 5 is a front view of the lifting structure of the present invention.
In the figure: 1. a protective cover; 2. a camouflage layer; 3. a hinge; 4. a display panel; 5. a moving structure; 501. a convex groove; 502. fixing the transverse plate; 503. a movable joint; 504. a vertical slot; 505. a slider; 506. a pulley; 6. monitoring the main body box; 7. an operation panel; 8. a first latch; 9. a circular groove; 10. a video capture card; 11. a pull-up structure; 1101. lifting a rod; 1102. a snap ring; 1103. a ball bearing; 1104. a T-shaped screw rod; 12. a camera; 13. a wireless transmission box; 14. a second latch; 15. a round convex spoon; 16. a power port.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments; based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1: referring to fig. 1-5, a network monitoring device based on big data comprises a monitoring main body box 6, a camera 12, a wireless transmission box 13, a protection structure which can be disguised in hidden corners and protects the device body, a mobile structure 5 which is convenient for monitoring and moving, and a lifting structure 11 which is convenient for carrying by workers;
a hinge 3 is arranged on one side of the monitoring main body box 6, and a protection structure is arranged on one side of the hinge 3;
a display panel 4 is arranged on one side of the front surface of the monitoring main body box 6, a video acquisition card 10 is arranged at the top end of the back surface of the display panel 4, an operation panel 7 is arranged at the lower end of the front surface of the monitoring main body box 6, which is far away from one side of the display panel 4, a first latch 8 is arranged on the other side of the monitoring main body box 6, a circular groove 9 is arranged on the front surface of the first latch 8, and a moving structure 5 is arranged at the bottom end of the monitoring main body box 6;
the lower end of one side of the back of the monitoring main body box 6 is provided with a power supply port 16, and the lifting structure 11 is arranged in the middle of the back of the monitoring main body box 6;
a wireless transmission box 13 is arranged at the top end of the monitoring main body box 6, and a camera 12 is arranged at the top end of the wireless transmission box 13;
referring to fig. 1-5, a network monitoring device based on big data further comprises a protection structure, the protection structure further comprises a protective cover 1, the protective cover 1 is arranged on one side of a hinge 3, a camouflage layer 2 is arranged inside the protective cover 1, a second card lock 14 is arranged on one side of the protective cover 1, a round convex key 15 is arranged on the front surface of the second card lock 14, camouflage paint is sprayed on the surface of the camouflage layer 2, and the center point of the camouflage layer 2 and the center point of the protective cover 1 coincide with each other;
specifically, as shown in fig. 1, 2, 3 and 4, the protective cover 1 is moved to cover the monitoring main body box 6, after the monitoring main body box 6 is covered, the round convex key 15 on the second lock 14 is rotated, meanwhile, the joint inside the round convex key 15 is aligned with the joint inside the round groove 9 on the first lock 8, after the round groove 9 is meshed with the round convex key 15, the camouflage layer 2 is coated with camouflage paint, so that the whole device cannot be found during field operation.
Example 2: the moving structure 5 comprises a convex groove 501, a fixed horizontal plate 502, a movable joint 503, a vertical groove 504, a sliding block 505 and a pulley 506, the fixed horizontal plate 502 is arranged at the bottom end of the monitoring main body box 6, the convex groove 501 is arranged on the front surface of the fixed horizontal plate 502, the movable joints 503 are arranged on two sides of the fixed horizontal plate 502, the vertical groove 504 is arranged at the bottom end of the movable joint 503, the sliding block 505 is arranged on the front surface of the vertical groove 504, the pulley 506 is arranged at the bottom end of the vertical groove 504, the height of the vertical groove 504 is the same as the distance from the fixed horizontal plate 502 to one side of the convex groove 501, and the circle center of the movable joint 503 is on the same straight line with the central point of the fixed horizontal plate 502;
specifically, as shown in fig. 1, 2 and 3, when it is necessary to move the monitoring body box 6, the movable joint 503 is rotated, the slider 505 is moved again, the slider 505 is moved on the vertical groove 504, the pulley 506 is slowly placed on the ground, when it is not necessary to move, the slider 505 is moved upward, the pulley 506 is lifted upward, and when it is lifted to a proper height, the movable joint 503 is rotated, so that the vertical groove 504 and the pulley 506 are clamped together in the convex groove 501.
Example 3: the lifting structure 11 consists of a lifting rod 1101, a snap ring 1102, balls 1103 and a T-shaped screw 1104, wherein the snap ring 1102 is arranged in the middle of the back of the monitoring main box 6, the lifting rod 1101 is vertically arranged inside the snap ring 1102, the balls 1103 are arranged on two sides of the outer side of the lifting rod 1101, the bottom end of the lifting rod 1101 is connected with the T-shaped screw 1104, the internal thread structure of the bottom end of the lifting rod 1101 is matched with the external thread structure of the T-shaped screw 1104, and the number of threads at the bottom end of the lifting rod 1101 is half of that of the T-shaped screw 1104;
specifically, as shown in fig. 1, 2 and 5, when carrying is inconvenient, as long as the lifting rod 1101 is lifted, the lifting rod 1101 moves upward, and the ball 1103 rolls with an upward force, at this time, the T-shaped screw 1104 catches the bottom end of the outside of the snap ring 1102 when the lifting rod 1101 reaches a critical point, and plays a role of a restriction.
The working principle is as follows: when the device is used, the equipment is firstly placed at a position to be monitored, then the power line is inserted into the power supply port 16, the operation panel 7 is used for setting the data entering and exiting, the data is displayed on the display panel 4, meanwhile, the wireless transmission box 13 receives the instruction of a worker to enable the camera 12 to monitor, and the shot video enters the video acquisition card 10 and is stored at the same time.
The first innovation point implementation step:
the first step is as follows: the front surface of the fixed transverse plate 502 is provided with a convex groove 501, the two sides of the fixed transverse plate 502 are provided with movable joints 503, the bottom ends of the movable joints 503 are provided with vertical grooves 504, the front surface of each vertical groove 504 is provided with a sliding block 505, and the bottom ends of the vertical grooves 504 are provided with pulleys 506;
the second step is that: moving the protective cover 1 to make the protective cover 1 cover the monitoring main body box 6, after covering the monitoring main body box 6, rotating the round convex key 15 on the second lock 14, and making the joint inside the round convex key 15 align with the bearing inside the round groove 9 on the first lock 8;
the third step: after the circular groove 9 is meshed with the circular convex spoon 15, camouflage paint is coated on the camouflage layer 2, so that the whole device cannot be found in field operation.
The implementation step of the second innovation point:
the first step is as follows: the camouflage layer 2 is arranged inside the protective cover 1, the second lock 14 is arranged on one side of the protective cover 1, the round convex key 15 is arranged on the front surface of the second lock 14, and camouflage paint is sprayed on the surface of the camouflage layer 2;
the second step is that: when the monitoring main body box 6 needs to be moved, the movable joint 503 is rotated, the sliding block 505 is moved, the sliding block 505 moves on the vertical groove 504, and the pulley 506 is slowly placed on the ground;
the third step: when the movement is not needed, the sliding block 505 is moved upwards, the pulley 506 is lifted upwards, and when the proper height is mentioned, the movable joint 503 is rotated, so that the vertical groove 504 and the pulley 506 are clamped in the convex groove 501.
The third innovation point implementation step:
the first step is as follows: the clamp ring 1102 is arranged in the middle of the back of the monitoring main body box 6, a lifting rod 1101 is vertically arranged inside the clamp ring 1102, balls 1103 are arranged on two sides of the outer side of the lifting rod 1101, and a T-shaped screw rod 1104 is connected to the bottom end of the lifting rod 1101;
the second step is that: when carrying is inconvenient, the lifting rod 1101 is lifted, so that the lifting rod 1101 moves upwards, and meanwhile, the ball 1103 rolls along with the upward force;
the third step: at this time, the T-shaped screw 1104 catches the bottom of the outside of the snap ring 1102 when the lifting rod 1101 reaches a critical point, thereby playing a role of limitation.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The utility model provides a network monitoring device based on big data, includes monitoring main part case (6), camera (12) and wireless transmission case (13), its characterized in that: the device also comprises a protection structure which can be used for disguising at hidden corners and protecting the device body, a moving structure (5) which is convenient for monitoring and moving and a lifting structure (11) which is convenient for workers to carry;
a hinge (3) is installed on one side of the monitoring main body box (6), and the protection structure is arranged on one side of the hinge (3);
a display panel (4) is arranged on one side of the front surface of the monitoring main body box (6), a video acquisition card (10) is arranged at the top end of the back surface of the display panel (4), an operation panel (7) is arranged at the lower end of one side, far away from the display panel (4), of the front surface of the monitoring main body box (6), a first latch (8) is arranged on the other side of the monitoring main body box (6), a circular groove (9) is arranged on the front surface of the first latch (8), and the moving structure (5) is arranged at the bottom end of the monitoring main body box (6);
the lower end of one side of the back of the monitoring main body box (6) is provided with a power supply port (16), and the lifting structure (11) is arranged in the middle of the back of the monitoring main body box (6);
the top of monitoring main part case (6) is provided with wireless transmission case (13), and the top of wireless transmission case (13) is provided with camera (12).
2. The big data-based network monitoring device according to claim 1, wherein: the protection architecture still includes visor (1), visor (1) sets up in one side of hinge (3), and the inside of visor (1) is provided with camouflage layer (2), one side of visor (1) is provided with second kayser (14), and the front of second kayser (14) is provided with round convex spoon (15), camouflage layer's (2) surface is spouted and is equipped with camouflage paint, and camouflage layer's (2) central point and the central point of visor (1) coincide each other.
3. The big data-based network monitoring device according to claim 2, wherein: the size of the second lock (14) is the same as that of the first lock (8), and the inner receiving part of the circular groove (9) and the inner connecting part of the circular convex key (15) are mutually complementary.
4. The big data-based network monitoring device according to claim 1, wherein: remove structure (5) and constitute by convex groove (501), fixed diaphragm (502), freely movable joint (503), perpendicular groove (504), slider (505) and pulley (506), fixed diaphragm (502) set up in the bottom of monitoring main part case (6), the front of fixed diaphragm (502) is provided with convex groove (501), and the both sides of fixed diaphragm (502) all are provided with freely movable joint (503), the bottom of freely movable joint (503) is provided with perpendicular groove (504), and just the front of erecting groove (504) is provided with slider (505), the bottom of perpendicular groove (504) is provided with pulley (506), the height of perpendicular groove (504) is the same with the distance of fixed diaphragm (502) to convex groove (501) one side, and the centre of a circle of freely movable joint (503) is on same straight line with the central point of fixed diaphragm (502).
5. The big data-based network monitoring device according to claim 4, wherein: the sliding block (505) is in threaded connection with the pulley (506), and a hole with the same area as the bottom end of the vertical groove (504) is formed in the top end of the pulley (506).
6. The big data-based network monitoring device according to claim 1, wherein: the lifting structure (11) is composed of a lifting rod (1101), a clamping ring (1102), balls (1103) and a T-shaped screw rod (1104), the clamping ring (1102) is arranged in the middle of the back face of the monitoring main body box (6), the lifting rod (1101) is vertically arranged inside the clamping ring (1102), the balls (1103) are arranged on two sides of the outer side of the lifting rod (1101), the T-shaped screw rod (1104) is connected to the bottom end of the lifting rod (1101), the internal thread structure of the bottom end of the lifting rod (1101) is matched with the external thread structure of the T-shaped screw rod (1104), and the number of threads at the bottom end of the lifting rod (1101) is half of that of the T-shaped screw rod (1104).
7. The big data based network monitoring device according to claim 6, wherein: the circle center of the snap ring (1102) and the central point of the lifting rod (1101) are on the same straight line, and the central point of the snap ring (1102) and the central point of the monitoring main box (6) are on the same horizontal line.
Priority Applications (1)
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CN202120962555.XU CN214480670U (en) | 2021-05-07 | 2021-05-07 | Network monitoring device based on big data |
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CN202120962555.XU CN214480670U (en) | 2021-05-07 | 2021-05-07 | Network monitoring device based on big data |
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CN202120962555.XU Active CN214480670U (en) | 2021-05-07 | 2021-05-07 | Network monitoring device based on big data |
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