Auxiliary device for security monitoring equipment
By designing an auxiliary device for security monitoring equipment including storage compartment, cruiser, equipment bearing mechanism and rotating top cover, the problem of insufficient ability of traditional equipment to switch and cover complex environments in multiple scenarios is solved, and a wider coverage and higher operating efficiency are achieved.
Patent Information
- Application Number
- CN202510487441.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional security monitoring equipment has insufficient ability to switch and cover complex environments in multiple scenarios, and is cumbersome to install and disassemble, which is inefficient.
An auxiliary device for security monitoring equipment is designed, including a storage compartment, cruiser, equipment bearing mechanism and rotating top cover. The flexible installation and rotation of the monitoring equipment is achieved through the support rod and traction mechanism, and dual-mode cruise monitoring is supported.
It realizes rapid switching and flexible installation of monitoring equipment in different scenarios, with a wider coverage, reduces monitoring blind spots, and improves operating efficiency and equipment service life.
Smart Images

Figure CN120027336A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to security monitoring, and in particular to an auxiliary device for security monitoring equipment. Background Art
[0002] With the improvement of social security awareness and the development of technology, security monitoring equipment is being used more and more widely in various fields. However, traditional security monitoring equipment still has many shortcomings in actual use and cannot meet the diverse needs of modern security.
[0003] In the prior art, traditional security monitoring equipment is mostly fixedly installed, and the monitoring range is limited by the location and angle of the equipment, making it difficult to cover all areas in a complex environment.
[0004] The difficulty of switching between multiple scenes is also a major problem faced by traditional security monitoring equipment. Existing equipment needs to be manually disassembled and reinstalled to cope with different scene requirements such as fixed-point monitoring and regional inspections, which is cumbersome and inefficient. Summary of the invention
[0005] The technical problem to be solved by the present invention is to overcome the above difficulties and provide an auxiliary device for security monitoring equipment.
[0006] In order to solve the above technical problems, the technical solution provided by the present invention is: An auxiliary device for security monitoring equipment comprises a storage bin and monitoring equipment, wherein a first support rod and a second support rod are sequentially inserted into the storage bin, a cruise vehicle is arranged in the storage bin and a guide groove is arranged at the bottom of the storage bin so that the cruise vehicle can be accurately moved into position, an equipment bearing mechanism is commonly sleeved on the first support rod and the second support rod, the monitoring equipment can be selectively electrically connected to the cruise vehicle or the equipment bearing mechanism, a locking adjustment piece is arranged on the equipment bearing mechanism so that the monitoring equipment can be selectively fixed on the cruise vehicle or the equipment bearing mechanism, a traction mechanism for driving the equipment bearing mechanism to move up and down is arranged in the second support rod, a rotating top cover is rotatably arranged at the top of the second support rod, the equipment bearing mechanism is driven to rotate by the rotating top cover after moving onto the rotating top cover, and a transmission rod is fixed between the rotating top cover and the traction mechanism to realize the synchronous rotation of the rotating top cover and the traction mechanism.
[0007] As an improvement, the cruise vehicle includes a vehicle body and an electric telescopic rod rotatably arranged on the vehicle body, and the electric telescopic rod is provided with an assembly mechanism that is detachable and separable from the equipment bearing mechanism.
[0008] As an improvement, the monitoring device includes a base, one end of the base is provided with a plug-in terminal electrically connected to the equipment carrying mechanism, the other end is provided with a monitoring device body at the bottom, the bottom of the base is provided with a docking sleeve, the top is provided with a socket three that passes through the docking sleeve, the loading structure includes a bearing block fixed on the electric telescopic rod, the bearing block is provided with a tube rod that can be inserted into the docking sleeve, the tube rod is provided with a clamping mechanism that can connect and fix the tube rod to the docking sleeve, and the locking adjustment piece fixes or detaches the monitoring device and the assembly mechanism through the clamping mechanism.
[0009] As an improvement, a number of limit blocks 2 which are narrow at the bottom and wide at the top are provided in the docking tube, and a number of limit blocks 1 which are in one-to-one contact with the limit blocks 2 and are narrow at the top and wide at the bottom are provided at the outer end of the tube rod. An electrical connection terminal 2 and an electrical connection terminal 1 which are electrically connected are provided on one side of the docking tube and the supporting block respectively.
[0010] As an improvement, the clamping mechanism includes a pressing block that is plugged into the cylinder rod. The pressing block is moved downward by a locking adjustment piece and has a connecting rod located inside the cylinder rod at the bottom. A force block is provided at the bottom of the connecting rod. A plurality of through holes are provided at the side end of the cylinder rod. A telescopic block is slidably provided in the through holes. A force block is provided at the ends of the plurality of telescopic blocks for fitting with the force block. The cross-section of the force block is an inverted triangle. An inner cylinder is provided in the cylinder rod, and a spring is provided outside the telescopic block and is located between the force block and the inner cylinder.
[0011] As an improvement, the equipment supporting mechanism includes a supporting member which is connected to the support rod, and the other end of the base is provided with a plug-in terminal which is electrically connected to the supporting member. The supporting member and the plug-in terminal are respectively provided with a first socket and a second socket. The locking adjustment member includes an adjustment plate, and both ends of the adjustment plate are respectively provided with an insertion rod and a second pressing block. The supporting member is provided with a lifting mechanism which drives the adjustment plate to rise and fall.
[0012] As an improvement, the control module includes a fixed plate located inside the second support rod, a fixed frame is provided on the fixed plate, a controller body is provided in the fixed frame, two wiring terminals are provided on the controller body, the top ends of the two wiring terminals are electrically connected to the first and second wiring rings respectively, and during the rotation of the traction mechanism, the traction mechanism and the controller body are electrically connected through the sliding connection with the first and second wiring rings.
[0013] As an improvement, the traction mechanism includes a rotating plate rotatably arranged in the support rod 2, a transmission shaft is rotatably arranged on the rotating plate, a winding rod 1 driven by a bevel gear is arranged on both sides of the transmission shaft, and a winding rod 2 driven by a bevel gear is arranged on one side of the two winding rods 1. The connecting rope wound on the winding rod 1 is connected to the supporting member through a rotating top cover, and the cable wound on the winding rod 2 is electrically connected to the supporting member through a rotating top cover.
[0014] As an improvement, a penetration rod 1 electrically connected to motor 3 is plugged into the rotating plate, and a power-connecting ring 1 is provided at the bottom end of the penetration rod 1 and electrically connected to power-connecting ring 2 by sliding on power-connecting ring 2. A penetration rod 2 is plugged into the rotating plate, and a cable is wound around the winding rod 2. The cable is slidably connected between the power-connecting head on the winding rod 2 and power-connecting ring 3, and a power-connecting ring 2 is provided at the bottom end of the penetration rod 2 and electrically connected to power-connecting ring 1 by sliding on power-connecting ring 1.
[0015] As an improvement, the rotating top cover includes a cover shell rotatably connected to the support rod 2, a gear ring is provided inside the cover shell, a motor 4 is fixed to the inner wall of the support rod 2, a driving gear block meshing with the gear ring is provided on the motor 4, and a transmission rod is fixed between the cover shell and the rotating plate.
[0016] The beneficial effects of the present invention compared with the prior art are: 1. Dual-mode cruise monitoring: By converting and assembling the monitoring equipment between the cruise vehicle and the equipment carrying mechanism, the present invention can cover fixed areas or temporary key areas, and adapt to multiple scene requirements such as fixed-point monitoring and regional inspection.
[0017] 2. By setting the locking adjustment part, the monitoring equipment can be automatically connected with the equipment bearing mechanism or the cruise vehicle when the motor is started, so as to achieve rapid locking and ensure a stable connection.
[0018] 3. The traction mechanism realizes continuous power supply during rotation through the power coil and the power ring, ensuring that the monitoring equipment has continuous signals during the lifting and rotation process.
[0019] 4. By setting up a storage compartment, the internal components are protected from the influence of the external environment. The cruise car will automatically charge after returning to its position, thus extending the life of the equipment.
[0020] 5. By setting a rotating top cover to drive the monitoring equipment to achieve 360° horizontal rotation, the monitoring blind spots of the monitoring equipment are greatly reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0022] Figure 2 It is a schematic cross-sectional view of the overall structure of the present invention.
[0023] Figure 3 It is a schematic diagram of the overall structure disassembly of the present invention.
[0024] Figure 4 It is a schematic diagram of a cruise vehicle of the present invention.
[0025] Figure 5 It is a schematic diagram of the disassembly of the cruise vehicle of the present invention.
[0026] Figure 6 It is a schematic diagram of the monitoring device of the present invention.
[0027] Figure 7 The present invention Figure 6 Schematic diagram at point A in the middle.
[0028] Figure 8 It is a schematic diagram of the locking adjustment member of the present invention.
[0029] Fig. 9 This is a partial split diagram of the present invention. Figure 1 .
[0030] Fig.10 This is a partial split diagram of the present invention. Figure 2 .
[0031] Fig.11 The traction mechanism of the present invention is schematically shown in FIG. Figure 1 .
[0032] Fig.12 The traction mechanism of the present invention is schematically shown in FIG. Figure 2 .
[0033] Fig.13 The present invention Fig. 9 Schematic diagram at point B in the middle.
[0034] Fig.14 The present invention Fig.12 Schematic diagram at point C in the middle.
[0035] As shown in the figure: 1. Storage bin; 2. Rod slot; 3. First rod; 4. Second rod; 5. Guide slot; 6. Power storage module; 7. Transmission rod; 8. Support rod; 9. Photovoltaic module; 10. Cover plate; 21. Cruiser; 211. Vehicle body; 212. First motor; 213. First worm; 214. First worm gear; 215. Electric telescopic rod; 216. Bearing block; 217. Cylindrical rod; 218. First limit block; 219. Inner cylinder; 220. Through hole; 221. Telescopic block; 222. Force-receiving block; 223. First pressing block; 224. Connecting rod; 225. Force-applying block; 226. Spring; 227. First power connection end; 31. Equipment bearing mechanism; 311. Bearing part; 312. Inner ring; 313. Auxiliary wheel; 314. First jack; 41. Monitoring equipment; 411. Base; 412. Monitoring equipment body; 413. Second power connection end; 414. Docking cylinder; 415. Second limit block; 416. Plug power connection end; 417. Second jack; 418. Third jack; 51. Locking and adjusting part; 511. Lead screw; 512. Second worm gear; 513. Adjusting plate; 514. Plug rod; 515. Second pressing block; 516. Connecting plate; 517. Second motor; 518. Second worm; 519. Limit rod; 61. Control module; 611. Fixing plate; 612. Fixing frame; 613. Controller body; 614. Wiring terminal; 615. First power connection ring; 616. Second power connection ring; 71. Towing mechanism; 711. Rotating plate; 712. Third motor; 713. Third worm; 714. Transmission shaft; 715. Third worm gear; 716. First winding rod; 717. Connecting rope; 718. Second winding rod; 719. Cable; 720. First through rod; 721. First power connection ring; 722. Bevel gear; 723. Third power connection ring; 724. Power connection head; 725. Second through rod; 726. Second power connection ring; 81. Rotating top cover; 811. Cover shell; 812. Gear ring; 813. Fourth motor; 814. Driving gear block. Detailed implementation mode
[0036] The present invention will be further described in detail below with reference to the accompanying drawings.
[0037] Combined with the attached Figure 1 、attached Figure 2 、attached Figure 3 、attached Figure 4 、attached Figure 5 、attached Figure 6 shown: An auxiliary device for security monitoring equipment comprises a storage bin 1, a support rod groove 2 is provided in the storage bin 1, a support rod 1 3 and a support rod 2 4 are sequentially inserted in the support rod groove 2, a cruise vehicle 21 is provided in the storage bin 1, and a guide groove 5 capable of accurately moving the cruise vehicle 21 into position is provided at the bottom of the storage bin 1, a power storage module 6 is provided in both the support rod 1 3 and the support rod 2 4, a monitoring device 41 is electrically connected to the cruise vehicle 21, a device bearing mechanism 31 capable of electrically connecting the monitoring device 41 is sleeved on the support rod 1 3, a locking adjustment member 51 capable of shifting the fixed position of the monitoring device 41 is provided on the device bearing mechanism 31, a control module 61 is provided in the support rod 2 4, a traction mechanism 71 capable of driving the device bearing mechanism 31 to move up and down is provided above the control module 61, a rotating top cover 81 capable of driving the monitoring device 41 to rotate through the device bearing mechanism 31 is provided at the top of the support rod 2 4, and a transmission rod 7 is fixedly provided between the rotating top cover 81 and the traction mechanism 71.
[0038] The technical principle of the present invention is as follows: the cruise vehicle 21 moves to the designated position along the guide groove 5, so that the monitoring device 41 is docked with the device carrying mechanism 31, and the monitoring device 41 is fixed on the device carrying mechanism 31 by the locking adjustment member 51, and at the same time, the traction mechanism 71 is started to drive the device carrying mechanism 31 to separate from the cruise vehicle 21 and rise to a suitable height, and the rotating top cover 81 is started to drive the monitoring device 41 to rotate, and the monitoring angle is adjusted, and the monitoring device 41 starts to work and performs real-time monitoring. The power storage module 6 in the present invention includes a battery assembly, a battery management system, a charging and discharging assembly, and other components such as connecting wires. The main functions are to store electrical energy, charge the cruise vehicle 21, and supply power to the traction mechanism 71 and the monitoring device 41 through the control module 61, and the power storage module 6 is provided with a power-off emergency function. When the location of the present invention is in a power-off state, the power storage module 6 can be used as an emergency power supply to ensure that the monitoring device 41 works normally within a certain period of time.
[0039] Combined with Figure 3 , Attachment Figure 4 , Attachment Figure 5 , Attachment Figure 6 , Attachment Figure 7 , Attachment Figure 8 As shown: The cruise vehicle 21 includes a vehicle body 211 located in the storage compartment 1, a worm gear 214 is provided on the vehicle body 211, an electric telescopic rod 215 is provided on the worm gear 214, a worm 213 meshing with the worm gear 214 is provided on one side, a motor 212 is provided at the end of the worm 213, and an assembly mechanism capable of electrically connecting the monitoring device 41 is provided on the electric telescopic rod 215; The monitoring device 41 includes a base 411, one end of which is provided with a plug-in terminal 416 electrically connected to the device bearing mechanism 31, and the other end is provided with a monitoring device body 412 at the bottom, and a plurality of narrow lower and wide upper limit blocks 415 are provided in the docking tube 414. The docking tube 414 is provided at the bottom of the base 411, and a socket 3 418 is provided on the top of the docking tube 414. The assembly mechanism includes a bearing block 216 in contact with the docking tube 414, and a plurality of narrow lower and wide upper limit blocks 415 are provided in the docking tube 414. The outer end of the rod 217 is provided with a plurality of limit blocks 218 which are fitted one by one with the limit blocks 415 and are narrow at the top and wide at the bottom. The butt-jointed rod 414 and the bearing block 216 are respectively provided with a power connection terminal 2 413 and a power connection terminal 227 which are electrically connected. The rod 217 is provided with a clamping mechanism which can fix and disengage the monitoring device 41 from the assembly mechanism. The locking adjustment member 51 fixes and disengages the monitoring device 41 from the assembly mechanism through the clamping mechanism. The clamping mechanism includes a lower pressing block 223 which is plugged into the cylinder rod 217 and the top of which contacts the locking adjustment member 51. A connecting rod 224 located inside the cylinder rod 217 is provided at the bottom of the lower pressing block 223. A force-applying block 225 is provided at the bottom of the connecting rod 224. A plurality of through holes 220 are provided at the side end of the cylinder rod 217. A telescopic block 221 is slidably provided inside the through hole 220. A force-bearing block 222 which fits the force-applying block 225 is provided at the ends of the plurality of telescopic blocks 221. The cross section of the force-bearing block 222 is an inverted triangle. An inner cylinder 219 is provided inside the cylinder rod 217. A spring 226 located between the force-bearing block 222 and the inner cylinder 219 is provided on the outer sleeve of the telescopic block 221. The equipment bearing mechanism 31 includes a bearing member 311 sleeved with the support rod 1 3, the other end of the base 411 is provided with a plug-in terminal 416 electrically connected to the bearing member 311, the bearing member 311 and the plug-in terminal 416 are respectively provided with a socket 1 314 and a socket 2 417, the locking adjustment member 51 includes a screw rod 511 rotatably arranged on the bearing member 311, the top of the screw rod 511 is provided with a worm gear 2 512 and the external thread sleeve is provided with an adjustment plate 513 located below the worm gear 2 512, and the adjustment plate 513 is arranged on the outer thread sleeve. One end of the worm gear 512 is provided with a plug rod 514 which is plugged into both the socket 1 314 and the socket 2 417, and the other end is provided with a lower pressing block 2 515 which contacts the lower pressing block 1 223. A connecting plate 516 is provided on the worm gear 512, and a motor 2 517 is fixedly provided at the bottom of one end of the connecting plate 516. A worm 2 518 which meshes with the worm gear 2 512 is provided at the end of the motor 517. A limiting rod 519 which passes through the motor 2 517 is provided on the adjusting plate 513, and the limiting rod 519 is slidably connected to the motor 2 517.
[0040] After the cruise vehicle 21 is started and moved to the storage compartment 1, and continues to move along the guide groove 5, the cruise vehicle 21 and the support rod 1 3 are both provided with charging interfaces in the present invention. After the cruise vehicle 21 moves into position, the two charging interfaces can be docked to charge the cruise vehicle 21; When the cruiser 21 moves into position, the plug-in terminal 416 is plugged into the bearing member 311, and the starting motor 2 517 drives the screw rod 511 to rotate through the worm 2 518 and the worm gear 2 512, and the screw rod 511 drives the plug rod 514 and the lower pressure block 2 515 to move downward through the adjustment plate 513. When the plug rod 514 moves downward, it will be inserted into the socket 1 314 and the socket 2 417 at the same time, and the lower pressure block 2 515 drives the lower pressure block 1 223 to move downward. The pressing block 223 drives the force block 225 to move downward through the connecting rod 224. In the present invention, the force block 225 is a truncated cone polyhedron, and the force block 222 fits the side of the force block 225, that is, the force block 222 drives the telescopic block 221 to move toward the inner cylinder 219 under the action of the spring 226. When the telescopic block 221 is separated from the through hole 220, the traction mechanism 71 can be started to drive the monitoring device 41 to move upward through the device bearing mechanism 31; In order to enable the lower pressure block 223 to reset automatically, a reset spring or elastic sheet is provided in the slot where the barrel rod 217 and the lower pressure block 223 are plugged in during the specific implementation. When the lower pressure block 2515 moves downward, pressure is applied to the lower pressure block 223 and the lower pressure block 223 is driven to move downward. At this time, the reset spring or elastic sheet is compressed. When the lower pressure block 2515 is separated from the lower pressure block 223, the lower pressure block 223 is pushed upward by the reset spring or elastic sheet. At this time, the lower pressure block 223 can reset automatically, and the force-applying block 225 is driven upward by the lower pressure block 223, so that the force-bearing block 222 drives the telescopic block 221 to be plugged into the slot on the inner wall of the socket 3 418 through the through hole 220 under the action of the spring 226.
[0041] Combined with Figure 2 , Attachment Figure 3 , Attachment Figure 4 , Attachment Figure 6 , Attachment Figure 7 , Attachment Figure 8 , Attachment Fig. 9 , Attachment Fig.10 , Attachment Fig.11 , Attachment Fig.12 , Attachment Fig.13 , Attachment Fig.14 As shown: The control module 61 includes a fixed plate 611 located inside the support rod 2 4, a fixed frame 612 is provided on the fixed plate 611, a controller body 613 is provided inside the fixed frame 612, two wiring terminals 614 are provided on the controller body 613, and the tops of the two wiring terminals 614 are respectively electrically connected to the first and second wiring rings 615 and 616. During the rotation of the traction mechanism 71, the traction mechanism 71 is electrically connected to the controller body 613 through sliding connection with the first and second wiring rings 615 and 616; The traction mechanism 71 includes a rotating plate 711 rotatably arranged in the support rod 2 4, a worm 3 713 is rotatably arranged on the rotating plate 711, a motor 3 712 is arranged on the top of the worm 3 713, a transmission shaft 714 is arranged on the rotating plate 711, a worm wheel 3 715 meshing with the worm 3 713 is arranged on the transmission shaft 714, a winding rod 1 716 driven by a bevel gear 722 is arranged on both sides of the transmission shaft 714, a winding rod 2 718 driven by a bevel gear 722 is arranged on one side of the two winding rods 1 716, a connecting rope 717 wound on the winding rod 1 716 is connected to the bearing member 311 through a rotating top cover 81, and a cable 719 wound on the winding rod 2 718 is electrically connected to the bearing member 311 through the rotating top cover 81; A penetration rod 1 720 electrically connected to the motor 3 712 passes through the rotating plate 711, and a power-connecting ring 1 721 electrically connected to the power-connecting ring 2 616 by sliding connection on the power-connecting ring 2 616 is provided at the bottom of the penetration rod 1 720. A penetration rod 2 725 passes through the rotating plate 711. A cable 719 is wound around the wire winding rod 2 718, and a power-connecting ring 3 723 whose bottom is fixed to the penetration rod 2 725 is sleeved on the end. The power-connecting head 724 of the cable 719 located on the wire winding rod 2 718 is slidably connected on the power-connecting ring 3 723. A power-connecting ring 2 726 electrically connected to the power-connecting ring 1 615 is provided at the bottom of the penetration rod 2 725. The cable 719 is electrically connected to the penetration rod 2 725 by sliding on the power-connecting ring 3 723 and passing through the power-connecting ring 3 723. The rotating top cover 81 includes a cover shell 811 rotatably connected to the support rod 2 4, a gear ring 812 is arranged in the cover shell 811, a motor 4 813 is fixed to the inner wall of the support rod 2 4, a driving gear block 814 meshing with the gear ring 812 is arranged on the motor 4 813, and a transmission rod 7 is fixed between the cover shell 811 and the rotating plate 711; A support rod 8 whose bottom is fixed on the fixing plate 611 is inserted into the transmission rod 7, and the top of the support rod 8 passes through the cover 811 and a photovoltaic module 9 is arranged on the top of the support rod 8; The inner ring 312 arranged inside the bearing member 311 is slidably connected to the support rod 1 3 and the support rod 2 4, and the auxiliary wheel 313 arranged on the inner ring 312 is rollingly connected to the support rod 1 3 and the support rod 2 4. The bottom ends of the two connecting ropes 717 are fixed together and pass through the cover plate 10 located above the equipment bearing mechanism 31 and slidingly sleeved on the outside of the support rod 1 3 and the support rod 2 4.
[0042] When the monitoring device 41 needs to realize the monitoring function on the rotating top cover 81, the starting motor 3 712 drives the worm 3 713 to rotate, the worm 3 713 meshes with the worm wheel 3 715, drives the transmission shaft 714 to rotate, and the transmission shaft 714 drives the winding rod 1 716 and the winding rod 2 718 to rotate through the bevel gear 722, and the connecting rope 717 wound on the winding rod 1 716 begins to reel, pulling the equipment carrying mechanism 31 and the monitoring device 41 fixed thereon to move upward along the support rod 1 3 and the support rod 2 4, and at the same time, the cable 719 on the winding rod 2 718 is also reeled accordingly. During the process, the electrical connection head 724 is continuously connected to the electrical connection ring 3 723 to ensure that the electrical connection of the monitoring device 41 is continuous during the rising process; In order to enable the monitoring device body 412 to achieve a larger monitoring angle, when the device supporting mechanism 31 rises to the cover 811, the motor 4 813 is started to drive the driving gear block 814 to rotate. Since the driving gear block 814 is engaged with the ring gear 812, the ring gear 812 drives the cover 811 to rotate, and the cover 811 drives the traction mechanism 71 to rotate through the transmission rod 7, and drives the device supporting mechanism 31 to rotate at the same time. In the process, it can avoid the connection rope 717 and the cable 719 from being entangled with each other during the rotation process, thereby causing the device to malfunction, and the controller body 613 respectively continuously supplies power to the motor 3 712 and the monitoring device body 412 through the power coil 1 615 and the power coil 2 616. When the monitoring device 41 is electrically connected to the device carrying mechanism 31 in the present invention, the end of the cable 719 can be electrically connected to the monitoring device body 412 through the plug-in terminal 416. Since the other end of the cable 719 is electrically connected to the control module 61 and the power storage module 6 through the traction mechanism 71, at this time, the controller body 613 can supply power to the monitoring device body 412 through the power coil 2 616 to achieve the adjustment of the monitoring function; In order to enable the monitoring device body 412 to realize the cruise monitoring function, first start the motor four 813 to make the cover 811 in the initial position, and then start the motor three 712 to rotate in the opposite direction, driving the winding rod one 716 and the winding rod two 718 to rotate in the opposite direction, and the connecting rope 717 on the winding rod one 716 is released. The equipment supporting mechanism 31 and the monitoring device 41 move downward along the support rod one 3 and the support rod two 4 under the action of gravity. At the same time, the winding rod two 718 releases the cable 719. When the equipment supporting mechanism 31 drops to the initial position, the motor three 712 stops rotating.
[0043] When the equipment carrying mechanism 31 descends to the initial position, the lower pressing block 2 515 moves downward and contacts the lower pressing block 1 223, and presses the lower pressing block 1 223 downward after the contact. At this time, the telescopic block 221 contracts to the lower pressing block 1 223, so that the monitoring device 41 can move down to the correct position. In order to separate the monitoring device 41 from the equipment carrying mechanism 31 and fix it on the cruise vehicle 21 at the same time, the motor 2 517 is started to rotate in the opposite direction, driving the screw rod 511 to rotate in the opposite direction, and driving the insertion rod 514 and the lower pressing block 2 515 to move upward through the adjustment plate 513. During the process, the insertion rod 514 moves from the socket 1 31 4 and the second socket 417 are pulled out, and the second pressing block 515 is separated from the first pressing block 223. At this time, the plug rod 514 is reset under the action of the spring 226 to fix the monitoring device 41 on the cruise vehicle 21, and the equipment carrying mechanism 31 of the monitoring device 41 is released from the fixed state, and after the equipment carrying mechanism 31 drops to the initial position, the first power terminal 227 and the second power terminal 413 are electrically connected, so that the cruise vehicle 21 and the monitoring device 41 are electrically connected, that is, when the cruise vehicle 21 is working, the monitoring device 41 can move with the cruise vehicle 21 and perform the cruise monitoring function; During specific cruise monitoring, the body 211 of the cruise vehicle 21 can be a tracking vehicle or a remote control vehicle. Both the tracking vehicle and the remote control vehicle are mainly composed of a main control module, a power module and a drive module. When the tracking vehicle is running, the staff needs to plan the walking route, and the vehicle walks according to the route. When the remote control vehicle is running, the staff can remotely control the vehicle to walk in the working area to monitor the given area in real time. During the cruise monitoring process, the electric telescopic rod 215 can be started to extend and retract, so that the height of the monitoring device 41 on the bearing block 216 can be adjusted. At the same time, the motor 212 is started to drive the electric telescopic rod 215 to rotate through the worm 213 and the worm gear 214, so that the monitoring device 41 can rotate during monitoring. Since the power terminal 227 and the vehicle body 211 are electrically connected by a cable in the present invention, the electric telescopic rod 215 needs to rotate in the opposite direction after rotating one circle. By repeating this process, the monitoring blind spot of the monitoring device 41 can be greatly reduced.
[0044] The present invention is specifically implemented: The cruiser 21 moves along the guide groove 5 into the storage bin 1, so that the monitoring device 41 is docked with the device carrying mechanism 31, and the monitoring device 41 is fixed to the device carrying mechanism 31 by the locking adjustment member 51. At the same time, the traction mechanism 71 is started to drive the device carrying mechanism 31 to separate from the cruiser 21 and rise to a predetermined height, and the rotating top cover 81 is started to drive the monitoring device 41 to rotate, and the monitoring angle is adjusted. The monitoring device 41 starts to work and performs real-time monitoring at a fixed position; Start the rotating top cover 81 to reset, then start the traction mechanism 71 to drive the equipment carrying mechanism 31 to move down to the monitoring device 41 and the cruise vehicle 21 and fix the monitoring device 41 to the cruise vehicle 21 through the locking adjustment member 51. When the cruise vehicle 21 is started, cruise monitoring can be performed.
[0045] The present invention and its embodiments are described above, which is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if ordinary technicians in the field are inspired by it and do not deviate from the purpose of the invention, they can creatively design a structure and embodiment similar to the technical solution, which should fall within the protection scope of the present invention.
Claims
1. An auxiliary device for security monitoring equipment, comprising a storage bin (1) and a monitoring device (41), wherein a first support rod (3) and a second support rod (4) are sequentially inserted into the storage bin (1), a cruise vehicle (21) is arranged in the storage bin (1), and a guide groove (5) is arranged at the bottom of the storage bin (1) to enable the cruise vehicle (21) to move accurately into position, characterized in that: The first support rod (3) is sleeved with a device bearing mechanism (31), the monitoring device (41) can be selectively electrically connected to the cruise vehicle (21) or the device bearing mechanism (31), the device bearing mechanism (31) is provided with a locking adjustment member (51) capable of selectively fixing the monitoring device (41) on the cruise vehicle (21) or the device bearing mechanism (31), the second support rod (4) is provided with a traction mechanism (71) for driving the device bearing mechanism (31) to move up and down, the top of the second support rod (4) is rotatably provided with a rotating top cover (81), the device bearing mechanism (31) is driven to rotate by the rotating top cover (81) after moving onto the rotating top cover (81), and a transmission rod (7) is fixed between the rotating top cover (81) and the traction mechanism (71) to realize synchronous rotation of the rotating top cover (81) and the traction mechanism (71).
2. The auxiliary device for security monitoring equipment according to claim 1, characterized in that: The cruise vehicle (21) comprises a vehicle body (211) and an electric telescopic rod (215) rotatably arranged on the vehicle body (211); the electric telescopic rod (215) is provided with an assembly mechanism that is detachable from the equipment bearing mechanism (31).
3. The auxiliary device for security monitoring equipment according to claim 2, characterized in that: The monitoring device (41) comprises a base (411), one end of the base (411) is provided with a plug-in terminal (416) electrically connected to the device bearing mechanism (31), and the other end is provided with a monitoring device body (412) at the bottom, the bottom of the base (411) is provided with a docking tube (414), and the top is provided with a third socket (418) that is connected to the docking tube (414), the loading structure comprises a bearing block (216) fixed on the electric telescopic rod (215), the bearing block (216) is provided with a barrel rod (217) that can be plugged into the docking tube (414), and the barrel rod (217) is provided with a clamping mechanism that can connect and fix the barrel rod (217) and the docking tube (414), and the locking adjustment member (51) fixes or disengages the monitoring device (41) from the assembly mechanism through the clamping mechanism.
4. The auxiliary device for security monitoring equipment according to claim 3, characterized in that: A plurality of narrow lower and wide upper limit blocks (415) are arranged in the docking tube (414), a plurality of narrow upper and wide lower limit blocks (218) are arranged at the outer end of the tube rod (217) and are fitted one by one with the limit blocks (415), and a second power connection terminal (413) and a first power connection terminal (227) are arranged on one side of the docking tube (414) and the bearing block (216) respectively.
5. The auxiliary device for security monitoring equipment according to claim 3, characterized in that: The clamping mechanism comprises a pressing block (223) plugged into the cylindrical rod (217); the pressing block (223) is moved downward by a locking adjustment member (51) and is provided with a connecting rod (224) located inside the cylindrical rod (217) at its bottom; a force-applying block (225) is provided at the bottom of the connecting rod (224); a plurality of through holes (220) are provided at the side end of the cylindrical rod (217); a telescopic block (221) is slidably provided in the through hole (220); a force-bearing block (222) is provided at the end of each of the plurality of telescopic blocks (221) and is fitted with the force-applying block (225); the cross section of the force-bearing block (222) is an inverted triangle; an inner cylinder (219) is provided inside the cylindrical rod (217); and a spring (226) is provided on the outer sleeve of the telescopic block (221) and is located between the force-bearing block (222) and the inner cylinder (219).
6. The auxiliary device for security monitoring equipment according to claim 5, characterized in that: The equipment bearing mechanism (31) comprises a bearing member (311) sleeved with a support rod (3); a plug-in terminal (416) electrically connected to the bearing member (311) is provided at the other end of the base (411); a first plug-in hole (314) and a second plug-in hole (417) are respectively provided on the bearing member (311) and the plug-in terminal (416); a locking adjustment member (51) comprises an adjustment plate (513); an insertion rod (514) and a second lower pressing block (515) are respectively provided at both ends of the adjustment plate (513); and a lifting mechanism for driving the adjustment plate (513) to rise and fall is provided on the bearing member (311).
7. The auxiliary device for security monitoring equipment according to claim 6, characterized in that: The control module (61) comprises a fixing plate (611) located inside the second support rod (4); a fixing frame (612) is provided on the fixing plate (611); a controller body (613) is provided inside the fixing frame (612); two wiring terminals (614) are provided on the controller body (613); the top ends of the two wiring terminals (614) are respectively electrically connected to a first electric ring (615) and a second electric ring (616); during the rotation of the traction mechanism (71), the traction mechanism (71) and the controller body (613) are electrically connected by slidingly connecting with the first electric ring (615) and the second electric ring (616).
8. The auxiliary device for security monitoring equipment according to claim 7, characterized in that: The traction mechanism (71) comprises a rotating plate (711) rotatably arranged in the second support rod (4); a transmission shaft (714) is rotatably arranged on the rotating plate (711); a wire winding rod (716) driven by a bevel gear (722) is arranged on both sides of the transmission shaft (714); a wire winding rod (718) driven by a bevel gear (722) is arranged on one side of the two wire winding rods (716); a connecting rope (717) wound on the first wire winding rod (716) is connected to the bearing member (311) through a rotating top cover (81); and a cable (719) wound on the second wire winding rod (718) is electrically connected to the bearing member (311) through a rotating top cover (81).
9. The auxiliary device for security monitoring equipment according to claim 8, characterized in that: A through rod 1 (720) electrically connected to the motor 3 (712) passes through the rotating plate (711); a power connection ring 1 (721) is provided at the bottom end of the through rod 1 (720) and is electrically connected to the power connection ring 2 (616) by sliding connection on the power connection ring 2 (616); a through rod 2 (725) passes through the rotating plate (711); a cable (719) is wound around the winding rod 2 (718); a power connection ring 3 (723) whose bottom is fixedly connected to the through rod 2 (725) is sleeved on the end; the cable (719) is slidably connected between the power connection head (724) on the winding rod 2 (718) and the power connection ring 3 (723); a power connection ring 2 (726) is provided at the bottom end of the through rod 2 (725) and is electrically connected to the power connection ring 1 (615) by sliding connection with the power connection ring 1 (615).
10. The auxiliary device for security monitoring equipment according to claim 8, characterized in that: The rotating top cover (81) comprises a cover shell (811) rotatably connected to the second support rod (4), a gear ring (812) is arranged in the cover shell (811), a motor (813) is fixed to the inner wall of the second support rod (4), a driving gear block (814) meshing with the gear ring (812) is arranged on the motor (813), and a transmission rod (7) is fixed between the cover shell (811) and the rotating plate (711).