External damage prevention induction acousto-optic remote monitoring system
By using infrared and ultrasonic modules to sense human location, combined with sound and light warnings and remote announcements, the problem of difficulty in alerting passersby in foggy weather at the hydropower plant dam reservoir area and downstream river channel has been solved, achieving effective safety management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-22
- Publication Date
- 2026-04-10
AI Technical Summary
In foggy or other low-visibility weather conditions, it is difficult to effectively warn passersby of no-fishing and no-swimming zones in the reservoir area of hydropower plant dams and downstream river channels, leading to potential safety management hazards.
Design a remote monitoring system for preventing external damage using sound and light. The system uses infrared and ultrasonic modules to sense the location of a person, and uses sound and light alarms, along with remote announcements from staff, to stop violations.
Effectively ensure the safety management of the work site, especially in low visibility weather conditions, by using sound and light warnings and remote announcements to prevent violations and improve safety management efficiency.
Smart Images

Figure CN121838348A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dam warning, in particular to a kind of anti-external damage inductive sound and light remote monitoring system. BACKGROUND
[0002] When carrying out equipment maintenance or operation, operation area division is mainly to carry out area division to operation site by safety fence, safety belt plus warning board and the like, for some operation site personnel, professional types are more miscellaneous places, operation site safety management is prone to warning, reminder is not obvious, safety operation area division is not clear and the like, for this situation, design a kind of anti-external damage inductive sound and light remote monitoring system, sound and light warning is carried out by sound playing and warning light flickering, effectively guarantee the safety management of regional operation site.Water power plant dam reservoir area, downstream river part area belongs to forbidden fishing, forbidden swimming area, occasionally personnel fishing or swimming regardless of own safety bring hidden trouble to water power plant reservoir area, river safety management, staff warn passerby by setting warning device, but in foggy weather and the like visibility is low, it is difficult to effectively warn passerby. SUMMARY
[0003] This section is intended to summarize some aspects of the embodiments of the present application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract and title of the specification of the present application to avoid obscuring the purpose of this section, abstract and title, and such simplifications or omissions cannot be used to limit the scope of the present application.
[0004] In view of the above or the problems existing in the prior art, the present application is proposed.
[0005] Therefore, the purpose of the present application is to provide an anti-external damage inductive sound and light remote monitoring system, which can sense the position of the human body by infrared module and ultrasonic module, and give sound and light warning to the illegal personnel in the warning range, and cooperate with the staff to make a remote speech to stop the illegal personnel, effectively guarantee the safety management of regional operation site.
[0006] To solve the above technical problems, the present application provides the following technical scheme: an anti-external damage inductive sound and light remote monitoring system, which comprises a system main body, a warning frame module, a power supply module arranged on the warning frame module, an infrared module and an ultrasonic module arranged on the warning frame module, a control module connected with the infrared module and the ultrasonic module, a monitoring module connected with the control module, and a communication module and a warning module connected with the control module.
[0007] As a preferred scheme of the anti-external damage inductive sound and light remote monitoring system of the present application, the system main body further comprises a transmission module connected with the control module, a remote aggregation module connected with the transmission module, and an input module connected with the remote aggregation module.
[0008] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the infrared module comprises an infrared sensor; the ultrasonic module comprises an ultrasonic sensor; the control module comprises a single-chip microcomputer; the monitoring module comprises a video monitoring head; the communication module comprises a voice player; and the warning module comprises a flash lamp and a buzzer.
[0009] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the remote aggregation module comprises a computer; and the input module comprises a microphone.
[0010] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the warning frame module is a warning board mounting frame and is used for mounting the remaining modules; the energy supply module is used for supplying energy for the remaining modules; the infrared module and the ultrasonic module are respectively used for sensing the human body information in the sensing range and transmitting the information to the control module; the monitoring module is used for collecting on-site image data and transmitting the image data to the control module; the communication module is used for playing warning voice and playing a staff shout; and the control module is used for receiving and processing the information collected by the infrared module and the ultrasonic module, and controlling the warning module to perform acoustic light warning when a passer-by appears in the warning range.
[0011] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the transmission module is used for bidirectional transmission of data; the control module is used for receiving and processing the image data collected by the monitoring module, and transmitting the processed image data to the remote aggregation module through the transmission module for real-time playing; and the staff shouts at a site violator through the input module.
[0012] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the warning frame module is arranged in a dam reservoir area of a hydropower plant, a fishing-prohibited area and a swimming-prohibited area downstream of the dam, and supplies energy for the remaining modules through the energy supply module; the infrared module and the ultrasonic module sense the human body information in the range and transmit the sensing data to the control module, and the control module controls the warning module to work to perform acoustic light warning when a passer-by is in the warning range.
[0013] The monitoring module collects image data in the warning range and transmits the image data to the remote aggregation module through the transmission module after being processed by the control module for real-time display, the staff records the image data and shouts at a violator in the warning range through the input module, and the staff shout is played through the communication module, so as to prevent the violator from continuing the action.
[0014] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the warning frame module comprises a base mounting assembly, a warning board assembly threadedly connected with the base mounting assembly, a remote control driving assembly arranged at one side of the warning board assembly, and a re-adjustment warning assembly arranged at the other side of the warning board assembly.
[0015] The warning board assembly comprises a lifting sleeve sleeved with the fixed rod, a hollow threaded rod arranged at the top of the lifting sleeve, a warning board fixedly connected with the lifting sleeve, two groups of disengagement openings symmetrically arranged at the bottom of the warning board, and a rope opening arranged at the middle of the two groups of disengagement openings.
[0016] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the remote control driving assembly comprises a motor, a driving disc connected with the driving shaft of the motor, a driving rod arranged on the driving disc, a hollow limiting seat arranged at one side of the motor, a limiting plate inserted with the hollow limiting seat, a driven sliding rail connected with the end of the limiting plate and sleeved with the driving rod, a support plate frame connected with the top of the limiting plate, an extension piece arranged at the top of the support plate frame, and a pull rope piece arranged at one side of the limiting plate. The extension piece comprises an outer sleeve, two groups of anti-dropping blocks symmetrically arranged at one end of the outer sleeve, a rigid insertion opening arranged through the side surface of the outer sleeve, a first spring arranged in the outer sleeve, a locking rod inserted with the outer sleeve and connected with the first spring, an anti-dropping groove symmetrically arranged at both sides of the locking rod and respectively inserted with the two groups of anti-dropping blocks, and a positioning groove arranged at the bottom of one end of the locking rod. The lifting sleeve and the fixed rod are both provided with a locking opening matched in size with the locking rod.
[0017] As a preferred scheme of the anti-external damage acoustic light remote monitoring system, the pull rope piece comprises a first connecting plate arranged at one side of the limiting plate, a rigid insertion plate inserted with the rigid insertion opening, a second connecting plate arranged at one side of the rigid insertion plate, a second spring respectively connected with the first connecting plate and the second connecting plate, and a pull rope arranged at the bottom of the second connecting plate. The re-adjustment warning assembly comprises an assembly frame, a power supply arranged on the assembly frame, a power-on end arranged at one side of the power supply, an insulating block inserted with the assembly frame, a first power connection block connected with the top of the insulating block, a third spring arranged at the outer side of the insulating block and connected with the first power connection block, a fixed sleeve ring connected with the bottom of the insulating block, a movable sleeve ring connected with the fixed sleeve ring, a rigid line pipe connected with the movable sleeve ring and arranged at one end on the support plate frame, a surplus line partially arranged in the rigid line pipe, a second power connection block connected with one end of the surplus line, and a warning lamp arranged on the rigid line pipe and connected with the surplus line.
[0018] The beneficial effects of this invention are as follows: This invention uses infrared and ultrasonic modules to sense the location of human bodies and provides sound and light warnings to violators within the warning range. It also works in conjunction with staff to remotely shout to stop violators, effectively ensuring the safety management of the work site. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein:
[0020] Figure 1 A schematic diagram of the first implementation of a remote monitoring system for preventing external damage using sound and light.
[0021] Figure 2 A schematic diagram of the second implementation of the anti-damage induction sound and light remote monitoring system.
[0022] Figure 3 A schematic diagram of the third implementation of the remote monitoring system for preventing external damage using sound and light.
[0023] Figure 4 A schematic diagram of the overall structure of the warning frame module of the remote monitoring system for preventing external damage via sound and light.
[0024] Figure 5 A schematic diagram of the internal structure of the warning sign component of the anti-damage induction sound and light remote monitoring system.
[0025] Figure 6 A schematic diagram showing the internal structure of the warning sign component of the anti-damage induction sound and light remote monitoring system.
[0026] Figure 7 A schematic diagram of the remote control drive component and readjustment warning component of the anti-damage induction sound and light remote monitoring system.
[0027] Figure 8 for Figure 7 A magnified schematic diagram of region M.
[0028] Figure 9 A schematic diagram of the remote control drive component structure of a remote monitoring system for preventing external damage based on sound and light.
[0029] Figure 10 Another perspective structural diagram of the remote control drive component of the anti-damage induction sound and light remote monitoring system. Detailed Implementation
[0030] In order to make the above objectives, characteristics and advantages of the present application more obvious and comprehensible, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0031] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, it will be apparent to one skilled in the art that the present application can be practiced without the specific details given herein, that the present application can be practiced with other than the described implementations, and that variations from the particular examples given can be made and practiced within the scope of the present application.
[0032] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. The "in one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent or alternative to other embodiments.
[0033] Embodiment 1
[0034] Reference Figures 1-3 For the first embodiment of the present application, the embodiment provides an anti-external-break inductive sound and light remote monitoring system, which can induct the position of human body through infrared module and ultrasonic module to give sound and light warning to the illegal personnel in the warning range, and cooperate with the staff to give remote speech to stop the illegal personnel, effectively ensuring the safety management of the regional operation site.
[0035] Specifically, the system body 10 includes a warning frame module 100, a power supply module 200 arranged on the warning frame module 100, an infrared module 300 and an ultrasonic module 400 arranged on the warning frame module 100, a control module 500 connected with the infrared module 300 and the ultrasonic module 400, a monitoring module 600 connected with the control module 500, and a communication module 700 and a warning module 800 connected with the control module 500.
[0036] Further, the system body 10 further includes a transmission module 900 connected with the control module 500, a remote summary module 1000 connected with the transmission module 900, and an input module 1100 connected with the remote summary module 1000.
[0037] Further, the infrared module 300 includes an infrared inductor 301; the ultrasonic module 400 includes an ultrasonic inductor 401; the control module 500 includes a single-chip microcomputer 501; the monitoring module 600 includes a video monitoring head 601; the communication module 700 includes a voice player 701; and the warning module 800 includes a flash lamp 801 and a buzzer 802.
[0038] Further, the remote aggregation module 1000 comprises a computer 1001; the input module 1100 comprises a microphone 1101.
[0039] Further, the warning frame module 100 is a warning sign mounting frame and is used to mount the remaining modules; the energy supply module 200 is used to supply energy for the work of the remaining modules; the infrared module 300 and the ultrasonic module 400 are respectively used to sense the human body information in the range and transmit to the control module 500; the monitoring module 600 is used to collect on-site image data and transmit to the control module 500; the communication module 700 is used to play warning voice and play staff shouting; the control module 500 is used to receive and process the information collected by the infrared module 300 and the ultrasonic module 400, and when a passerby appears in the warning range, the control module 500 controls the warning module 800 to sound and light warning.
[0040] Further, the transmission module 900 is used for bidirectional transmission of data; the control module 500 is used to receive and process the image data collected by the monitoring module 600, and the processed image data is transmitted to the remote aggregation module 1000 through the transmission module 900 for real-time playing; the staff shouts at the on-site violators through the input module 1100.
[0041] It should be noted that the various modules and connection methods in the embodiment can adopt existing technologies, such as the warning frame module 100, which can be designed as 1, a mobile tripod placed on site; 2, a power equipment edge support or a magnetic attraction; 3, a stainless steel vertical rod, a support or a wall surface fixed installation and the like; the energy supply module 200 can be designed as 1, a rechargeable battery power supply; 2, an external power supply; 3, a solar charging power supply and the like according to the on-site requirements; the transmission module 900 adopts existing 5G module or wireless transceiver module.
[0042] The working principle of the system is as follows: the warning frame module 100 is placed in the dam area of the hydropower plant, the fishing and swimming prohibited area downstream of the dam, and the remaining modules are powered by the energy supply module 200; the infrared module 300 and the ultrasonic module 400 sense the human body information in the range and transmit the sensing data to the control module 500, and when the passerby position is in the warning range, the control module 500 controls the warning module 800 to work to sound and light warning;
[0043] The monitoring module 600 collects image data in the alert range and transmits the image data to the remote aggregation module 1000 through the transmission module 900 after being processed by the control module 500, and the image data is displayed in real time, a staff member records the image data and shouts at the illegal person in the alert range through the input module 1100, and the shouting speech is played through the communication module 700, so as to prevent the illegal person from continuing to act.
[0044] In summary, the present application can realize sound and light warning for illegal persons in the alert range by sensing the position of the human body through the infrared module and the ultrasonic module, and cooperate with the staff member to shout at a distance to stop the illegal person, so as to effectively guarantee the safety management of the regional operation site.
[0045] Embodiment 2
[0046] Reference Figures 4-10 For the second embodiment of the present application, the embodiment provides a specific structure of the warning stand module 100, and the rest is the same as embodiment 1, which can lock the whole device through the remote control driving assembly, so as to avoid the loosening and falling of the warning board assembly or the theft of the human being.
[0047] Specifically, the warning stand module 100 comprises a base mounting assembly 101, a warning board assembly 102 threadedly connected with the base mounting assembly 101, a remote control driving assembly 103 arranged on one side of the inside of the warning board assembly 102, and a re-adjustment warning assembly 104 arranged on the other side of the inside of the warning board assembly 102.
[0048] Further, the base mounting assembly 101 comprises a base plate 101a, a fixed rod 101b connected with the base plate 101a, and an internal thread sleeve 101c connected with the top of the fixed rod 101b.
[0049] The warning board assembly 102 comprises a lifting sleeve 102a sleeved with the fixed rod 101b, a hollow threaded rod 102b arranged on the top of the lifting sleeve 102a, a warning board 102c fixedly connected with the lifting sleeve 102a, two groups of disengagement openings 102d symmetrically arranged on the bottom of the warning board 102c, and a rope opening 102e arranged in the middle of the two groups of disengagement openings 102d.
[0050] Further, the remote control driving assembly 103 comprises a motor 103a, a driving disc 103b connected with a driving shaft of the motor 103a, a driving rod 103c arranged on the driving disc 103b, a hollow limiting seat 103d arranged on one side of the motor 103a, a limiting plate 103e inserted with the hollow limiting seat 103d, a driven slide rail 103f connected with the limiting plate 103e and sleeved with the driving rod 103c, a supporting plate frame 103g connected with the top of the limiting plate 103e, an elastic member 103h arranged on the top of the supporting plate frame 103g, and a pull rope member 103i arranged on one side of the limiting plate 103e. The middle part of the hollow limiting seat 103d is provided with an anti-collision groove.
[0051] Further, the elastic member 103h comprises an outer sleeve 103h-1, two groups of anti-disengagement blocks 103h-2 symmetrically arranged on one end of the outer sleeve 103h-1, a rigid socket 103h-3 arranged through the side surface of the outer sleeve 103h-1, a first spring 103h-4 arranged in the outer sleeve 103h-1, a locking rod 103h-5 inserted with the outer sleeve 103h-1 and connected with the first spring 103h-4, anti-disengagement grooves 103h-6 symmetrically arranged on both sides of the locking rod 103h-5 and respectively inserted with the two groups of anti-disengagement blocks 103h-2, and a positioning groove 103h-7 arranged on the bottom of one end of the locking rod 103h-5. The anti-disengagement blocks 103h-2 are used for preventing the locking rod 103h-5 from disengaging, the rigid plug plate 103i-2 is used for positioning the locking rod 103h-5, and the anti-disengagement blocks 103h-2 and the rigid plug plate 103i-2 respectively limit the displacement of the two sides of the locking rod 103h-5, so as to ensure the rigidity of the locking rod 103h-5 and improve the stability of the device.
[0052] Further, the pull rope member 103i comprises a first connecting plate 103i-1 arranged on one side of the limiting plate 103e, a rigid plug plate 103i-2 inserted with the rigid socket 103h-3, a second connecting plate 103i-3 arranged on one side of the rigid plug plate 103i-2, a second spring 103i-4 connected with the first connecting plate 103i-1 and the second connecting plate 103i-3 respectively, and a pull rope 103i-5 arranged on the bottom of the second connecting plate 103i-3.
[0053] Further, the re-tuning alarm assembly 104 comprises an assembling frame 104a, a power supply 104b arranged on the assembling frame 104a, a power-on end 104c arranged on one side of the power supply 104b, an insulating block 104d plugged with the assembling frame 104a, a first power contact block 104e connected with the top of the insulating block 104d, a third spring 104f arranged outside the insulating block 104d and connected with the first power contact block 104e, a fixed sleeve ring 104g connected with the bottom of the insulating block 104d, a movable sleeve ring 104h connected with the fixed sleeve ring 104g, a rigid line pipe 104i connected with the movable sleeve ring 104h and arranged on one end of the supporting plate frame 103g, a surplus line 104j partially arranged in the rigid line pipe 104i, a second power contact block 104k connected with one end of the surplus line 104j, and an alarm lamp 104l arranged on the rigid line pipe 104i and connected with the surplus line 104j.
[0054] Further, the lifting sleeve 102a and the fixed rod 101b are both arranged with a locking hole A which is suitable for the size of the locking rod 103h-5.
[0055] Preferably, the width of the disengaging hole 102d is greater than the width of the alarm lamp 104l. The alarm lamp 104l is arranged in four groups. The power-on end 104c, the first power contact block 104e and the second power contact block 104k are made of conductive material.
[0056] It should be noted that the surplus line 104j has a certain length of turning surplus to avoid being too tight or loose. The power supply 104b can use existing batteries, the alarm lamp 104l uses existing warning lamps suitable for foggy days, and the connection mode of the surplus line 104j uses existing technology, so it is not described in detail. The warning sign 102c is sprayed with warning signs and warning words on both sides, and the warning sign 102c is arranged with a dismounting plate on one side to facilitate the maintenance of the internal equipment. The motor 103a uses an existing motor that can be started and stopped by remote control, and the remote control mode uses existing technology, such as single-chip microcomputer wireless remote control, etc.
[0057] In use, the warning sign assembly 102 installed at the high point of the base installation assembly 101 by screw connection warns pedestrians in the dam area on sunny days. The warning sign assembly 102 at the high point is locked and cannot be removed by remote control driving assembly 103, avoiding loosening and falling of the warning sign assembly due to long-term use or human theft. In foggy weather with low visibility, workers only need to start the remote control motor 103a for a certain time to release the multiple warning lights 104l from the inside of the warning sign assembly 102 and automatically power on the warning and still keep the locking of the warning sign assembly 102; When the released warning lights need to be maintained on sunny days, the warning sign assembly 102 can be disassembled by unlocking the warning sign assembly 102 after the remote control motor 103a is started again for a certain time, and then the warning sign assembly 102 is lowered to a certain height, which is convenient for workers to maintain and store.
[0058] In foggy weather, the worker starts the motor 103a by remote control. The motor 103a drives the driving disc 103b to rotate, thereby driving the driven slide rail 103f to drive the limiting plate 103e to move linearly on the hollow limiting seat 103d.
[0059] Referring to the drawings, before the motor 103a is started by remote control, one end of the rigid line pipe 104i of the warning assembly 104 is in contact with the support plate frame 103g, and the other end of the rigid line pipe 104i is in contact with the fixed ring 104g through the movable ring 104h. The support plate frame 103g and the fixed ring 104g supported by the third spring 104f each bear the weight of the rigid line pipe 104i and the multiple warning lights 104l. At this time, the multiple warning lights 104l are stored inside the warning sign assembly 102 for protection, avoiding damage and failure due to long-term exposure. The third spring 104f is not completely compressed, the height of the first power block 104e is higher than the power end 104c and the second power block 104k, so that the excess line 104j cannot power the warning light 104l, thereby maintaining the power-off storage state.
[0060] When the motor 103a starts, the limiting plate 103e drives the support plate frame 103g to move outward and gradually reduce the contact area between the support plate frame 103g and the rigid line pipe 104i. When the support plate frame 103g is not in contact with the rigid line pipe 104i, the rigid line pipe 104i and the plurality of warning lights 104l will fall along the disengagement opening 102d and finally be kept vertical under the action of the fixed sleeve ring 104g and the movable sleeve ring 104h. At this time, the fixed sleeve ring 104g completely bears the gravity, so that the third spring 104f is compressed, the first power block 104e is lowered in height and contacts the power-on end 104c of the power supply 104b and the second power block 104k of the excess line 104j respectively, finally making the warning lights 104l automatically powered and working to warn pedestrians in foggy weather. When the limiting plate 103e moves, the telescopic part 103h moves synchronously. After releasing the warning lights 104l, the locking rod 103h-5 of the telescopic part 103h still remains partially inserted into the locking opening A of the lifting sleeve 102a and the fixed rod 101b, so that the lifting sleeve 102a cannot rotate, keeping the locking and stability, avoiding the loosening and falling of the warning sign assembly due to long-term use or human theft.
[0061] In sunny weather, maintenance is needed. The telescopic part 103h is moved outward by the support plate frame 103g driven by the motor 103a again, and finally disengages from the locking opening A. At this time, the hollow threaded rod 102b is rotated out of the inner threaded sleeve 101c by rotating the lifting sleeve 102a, and then the lifting sleeve 102a is lowered to a certain height, which is convenient for the maintenance personnel to maintain. The maintenance personnel only need to pull down the pull rope 103i-5 and push the locking rod 103h-5 into the outer sleeve 103h-1, and then release the pull rope 103i-5. The rigid plug 103i-2 is inserted into the positioning groove 103h-7 of the locking rod 103h-5 under the action of the second spring 103i-4, so that the locking rod 103h-5 is positioned and cannot be popped out by the first spring 103h-4; then the rigid line pipe 104i is manually leveled, the motor 103a is started, the support plate frame 103g returns to the initial position and supports the rigid line pipe 104i, and the first power block 104e rises under the action of the third spring 104f and is separated from the contact on both sides, so that the warning lights 104l are powered off and stored. The lifting sleeve 102a is moved upward again and the hollow threaded rod 102b is rotated into the inner threaded sleeve 101c to realize high fixing, then the rigid plug 103i-2 is separated from the positioning groove 103h-7 at the bottom of one end of the locking rod 103h-5 by pulling down the pull rope 103i-5, the locking rod 103h-5 reenters the locking opening A under the action of the first spring 103h-4 to realize locking, and finally the rigid plug 103i-2 limits the inner end of the locking rod 103h-5 by releasing the pull rope 103i-5.
[0062] In summary, the application can lock the overall device through the remote control driving assembly, avoid the warning sign assembly from loosening and falling or being stolen by human being for long-term use, release the warning light suitable for low-visibility weather to warn pedestrians while keeping the warning sign assembly locked in the foggy weather through the remote control driving assembly once, enable the staff to lower the warning sign assembly from the base mounting assembly and store the released warning assembly in the sunny weather through the remote control driving assembly twice, share the gravity of the warning assembly through the remote control driving assembly, keep the warning light powered off during storage, and automatically control the warning light to work by increasing the gravity after release, reduce energy consumption, and improve work efficiency
[0063] Importantly, it should be noted that the constructions and arrangements of the present application shown in the various exemplary embodiments are merely illustrative. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters (e.g., temperatures, pressures, etc.), mounting arrangements, use of materials, colors, orientations, etc.) using no more than the common general knowledge of the art to which this application pertains. For example, elements shown as integrally formed can be constructed of multiple parts or elements, the position of elements can be reversed or otherwise varied, and the nature or number of discrete elements or positions can be altered or varied. Accordingly, all such modifications are intended to be included within the scope of the present application. The order or sequence of any process or method steps can be varied or re-sequenced without departing from the generality of the application. In the claims, any means-plus-function clause is intended to cover the structures described herein as performing the recited function and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of the present application. Accordingly, the present application is not limited to particular embodiments described, but extends to various modifications that nevertheless fall within the scope of the appended claims.
[0064] Furthermore, in the interest of providing a concise description of exemplary embodiments, not all features of an actual implementation can be described (i.e., those unrelated to the best mode of practicing the present application, or those unrelated to any implementation essentially on which the application relies).
[0065] It is to be understood that in the development of any actual implementation, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.
[0066] It should be noted that the above examples are only used to illustrate the technical solutions of the present application but not limit the present application. Although the present application is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced, without departing from the spirit and scope of the technical solutions of the present application, which should be covered in the scope of the claims of the present application.
Claims
1. A remote monitoring system for preventing external damage using sound and light, characterized in that: include, The main body of the system (10) includes a warning frame module (100), a power supply module (200) installed on the warning frame module (100), an infrared module (300) and an ultrasonic module (400) installed on the warning frame module (100), a control module (500) connected to the infrared module (300) and the ultrasonic module (400), a monitoring module (600) connected to the control module (500), and a communication module (700) and an alarm module (800) connected to the control module (500).
2. The anti-external damage sensing sound and light remote monitoring system as described in claim 1, characterized in that: The system body (10) also includes a transmission module (900) connected to the control module (500), a remote aggregation module (1000) connected to the transmission module (900), and an input module (1100) connected to the remote aggregation module (1000).
3. The anti-external damage sensing sound and light remote monitoring system as described in claim 2, characterized in that: The infrared module (300) includes an infrared sensor (301); the ultrasonic module (400) includes an ultrasonic sensor (401); the control module (500) includes a microcontroller (501); the monitoring module (600) includes a video monitoring head (601); the communication module (700) includes a voice player (701); and the alarm module (800) includes a flashlight (801) and a buzzer (802).
4. The anti-external damage sensing sound and light remote monitoring system as described in claim 3, characterized in that: The remote aggregation module (1000) includes a computer (1001); the input module (1100) includes a microphone (1101).
5. The anti-external damage sensing sound and light remote monitoring system as described in claim 4, characterized in that: The warning frame module (100) is a warning sign mounting bracket and is used to install the other modules; the power supply module (200) is used to power the other modules; the infrared module (300) and the ultrasonic module (400) are used to sense the presence of human beings within the range and transmit the information to the control module (500); the monitoring module (600) is used to collect on-site image data and transmit it to the control module (500); the communication module (700) is used to play warning voice and play staff announcements; the control module (500) is used to receive and process the information collected by the infrared module (300) and the ultrasonic module (400), and when a pedestrian appears within the warning range, the control module (500) controls the warning module (800) to issue an audible and visual warning.
6. The anti-external damage sensing sound and light remote monitoring system as described in claim 5, characterized in that: The transmission module (900) is used for bidirectional data transmission; the control module (500) is used to receive and process the image data collected by the monitoring module (600), and transmit the processed image data to the remote aggregation module (1000) for real-time playback through the transmission module (900); staff members can use the input module (1100) to call out to the violators on site.
7. The anti-external damage sensing sound and light remote monitoring system as described in claim 6, characterized in that: The warning frame module (100) is installed in the reservoir area of the hydropower plant dam and the downstream river channel where fishing and swimming are prohibited. The power supply module (200) provides power to the other modules. The infrared module (300) and the ultrasonic module (400) sense human information within the range and transmit the sensed data to the control module (500). When the location of a pedestrian is within the warning range, the control module (500) controls the warning module (800) to work to provide sound and light warnings. The monitoring module (600) collects image data within the warning range and, after processing by the control module (500), transmits it to the remote aggregation module (1000) via the transmission module (900) for real-time display. Staff members record the image data and use the input module (1100) to call out to violators within the warning range. The communication module (700) plays the call out to prevent violators from continuing their actions.
8. The anti-external damage sensing sound and light remote monitoring system as described in any one of claims 1 to 7, characterized in that: The warning bracket module (100) includes a base mounting assembly (101), a warning sign assembly (102) threadedly connected to the base mounting assembly (101), a remote control drive assembly (103) disposed on one side inside the warning sign assembly (102), and a readjustment warning assembly (104) disposed on the other side inside the warning sign assembly (102); the base mounting assembly (101) includes a chassis (101a), a fixing rod (101b) connected to the chassis (101a), and an internally threaded sleeve (101c) connected to the top of the fixing rod (101b); The warning sign assembly (102) includes a lifting sleeve (102a) sleeved with the fixed rod (101b), a hollow threaded rod (102b) disposed at the top of the lifting sleeve (102a), a warning sign (102c) fixedly connected to the lifting sleeve (102a), two sets of release ports (102d) symmetrically disposed at the bottom of the warning sign (102c), and a rope opening (102e) disposed in the middle of the two sets of release ports (102d).
9. The anti-external damage sensing sound and light remote monitoring system as described in claim 8, characterized in that: The remote control drive assembly (103) includes a motor (103a), a drive disk (103b) connected to the drive shaft of the motor (103a), an active rod (103c) disposed on the drive disk (103b), a hollow limiting seat (103d) disposed on one side of the motor (103a), a limiting plate (103e) inserted into the hollow limiting seat (103d), a driven slide rail (103f) connected to the end of the limiting plate (103e) and sleeved with the active rod (103c), a support frame (103g) connected to the top of the limiting plate (103e), a telescopic member (103h) disposed on the top of the support frame (103g), and a pull rope member (103i) disposed on one side of the limiting plate (103e); the telescopic member (103h) includes an outer sleeve (103h-1), symmetrically arranged The outer sleeve (103h-1) has two sets of anti-detachment blocks (103h-2) at one end, a rigid insertion port (103h-3) through the side of the outer sleeve (103h-1), a first spring (103h-4) inside the outer sleeve (103h-1), a locking rod (103h-5) inserted into the outer sleeve (103h-1) and connected to the first spring (103h-4), anti-detachment grooves (103h-6) symmetrically arranged on both sides of the locking rod (103h-5) and respectively inserted into the two sets of anti-detachment blocks (103h-2), and a positioning groove (103h-7) at the bottom of one end of the locking rod (103h-5); the lifting sleeve (102a) and the fixing rod (101b) are both provided with locking ports (A) that are adapted to the size of the locking rod (103h-5).
10. The anti-external damage sensing sound and light remote monitoring system as described in claim 9, characterized in that: The pull cord component (103i) includes a first connecting plate (103i-1) disposed on one side of the limiting plate (103e), a rigid insert plate (103i-2) inserted into the rigid socket (103h-3), a second connecting plate (103i-3) disposed on one side of the rigid insert plate (103i-2), a second spring (103i-4) connected to the first connecting plate (103i-1) and the second connecting plate (103i-3) respectively, and a pull cord (103i-5) disposed at the bottom of the second connecting plate (103i-3); the readjustment warning assembly (104) includes an assembly frame (104a), a power supply (104b) disposed on the assembly frame (104a), a power-on terminal (104c) disposed on one side of the power supply (104b), and an insulating block inserted into the assembly frame (104a). 104d), a first contact block (104e) connected to the top of the insulating block (104d), a third spring (104f) disposed on the outside of the insulating block (104d) and connected to the first contact block (104e), a fixed collar (104g) connected to the bottom of the insulating block (104d), a movable collar (104h) connected to the fixed collar (104g), a rigid circuit tube (104i) connected to the movable collar (104h) and one end disposed on the support frame (103g), a spare circuit (104j) partially disposed in the rigid circuit tube (104i), a second contact block (104k) connected to one end of the spare circuit (104j), and a warning light (104l) disposed on the rigid circuit tube (104i) and connected to the spare circuit (104j).