Remote control laser aerial imaging alarm
By remotely controlling the laser aerial imaging alarm, using multiple signal transmission modes and linkage warning means, the problem of lack of remotely controlled alarm devices in the existing technology is solved, timely warning and safe evacuation in the event of an accident are achieved, and the loss of life and property is reduced.
Patent Information
- Application Number
- CN202422044751.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The lack of remotely controlled alarm devices in the prior art makes it difficult to warn in time in accidents and cannot effectively reduce the loss of life and property.
A remote control laser aerial imaging alarm is designed, using computers, mobile terminals, positioning terminals and network terminals, combined with multiple signal transmission modes, laser imaging, LED display screens, alarm lights and speakers are used for linkage warning, and UPS units and solar photovoltaic panels are equipped to ensure normal operation in the event of power outage.
It realizes timely and in various ways when an accident occurs, improves safety, ensures that vehicles and pedestrians can be quickly reminded to evacuate in the event of power outage, and reduces the loss of life and property.
Smart Images

Figure CN223230023U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of road safety, and in particular relates to a remote-controlled laser aerial imaging alarm. Background Art
[0002] Road traffic safety refers to the state in which personal injury or property loss can be controlled within an acceptable level during traffic activities. With the popularization of automobiles, more and more safety accidents have been reported in recent years, and serious accidents may even cause life-threatening accidents.
[0003] After market research, we found that there is still a lack of remotely controlled alarm devices on the market, which makes it difficult to provide timely warnings when accidents occur. Therefore, there is an urgent need to improve and overcome the above-mentioned existing problems. After investing in research and development, we provide a remote-controlled laser aerial imaging alarm. Utility Model Content
[0004] The purpose of this utility model is to address the deficiencies in the prior art and to provide a remote-controlled laser aerial imaging alarm with a reasonable design, simple structure, and the ability to provide timely warnings, so as to solve the problems in the prior art.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0006] A remote-controlled laser aerial imaging alarm includes a computer, a mobile terminal, a transformer unit and a positioning terminal. The mobile terminal is internally installed with a computer, a network terminal, a power supply terminal, a transformer unit, a processing terminal and an alarm terminal. The positioning terminal is fixedly installed on the monitored object. The positioning terminal includes a positioning sensor and an AI image sensor. The network terminal includes a networking unit, a cloud server unit, a 4G / 5G signal unit and a Beidou satellite unit. The networking unit, the cloud server unit, the 4G / 5G signal unit and the Beidou satellite unit are installed in parallel. The computer and the processing terminal are both electrically connected to the network terminal. The power supply terminal is electrically connected to the processing terminal through the transformer unit. The processing terminal is electrically connected to the alarm terminal.
[0007] As a preferred embodiment, the power supply terminal includes an external power interface unit, a UPS unit and a solar photovoltaic panel. The external power interface unit and the solar photovoltaic panel are both electrically connected to the UPS unit and can supplement power for the UPS unit. The external power interface unit and the UPS unit are both electrically connected to the transformer unit.
[0008] As a preferred embodiment, the solar photovoltaic panel is fixedly installed on the top of the mobile terminal.
[0009] As a preferred embodiment, the processing terminal includes an 8266 chip unit, a relay unit, a switching power supply unit and a sensor signal receiver. The 8266 chip unit is used to receive and process the geographic location information obtained by the network terminal, pass the instruction to the relay unit and control the switching power supply unit to turn on. The sensor signal receiver is used to receive the real-time status information of the monitored object obtained by the positioning terminal. The switching power supply unit is electrically connected to the alarm terminal.
[0010] As a preferred embodiment, the alarm terminal includes a laser imaging unit, an alarm light unit, a display screen controller unit, a speaker unit and an LED display screen unit. Three laser imaging units are provided and are equidistantly arranged in the vertical direction on the bottom left wall of the mobile terminal. The alarm light unit is fixedly installed in the front of the top of the mobile terminal. The display screen controller unit is electrically connected to the speaker unit and the LED display screen unit respectively. The speaker unit is installed on the bottom front outer wall of the mobile terminal. The LED display screen unit is fixedly installed in an embedded manner on the upper front outer wall of the mobile terminal.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] In the solution of the present utility model:
[0013] The network terminal is convenient for using multiple signal transmission modes, cooperating with the monitored object part in the existing surveillance video nearby, and judging whether to use multiple signal transmission modes by monitoring the status of the monitored object at the monitoring command center. The 8266 chip unit is remotely controlled to activate the relay unit, thereby triggering the switching power supply unit to energize and make the alarm terminal work. Multiple laser imaging units are used to form visible light columns in the air, and visible warning text is displayed through the LED display unit. At the same time, the alarm light unit is used to flash the light source warning, and then the alarm prompt sound is issued through the speaker unit. Through the linkage of multiple warning means, it is used to better remind relevant vehicles and pedestrians to evacuate or escape in time, which is safer.
[0014] Through the setting of the positioning terminal, positioning sensors and AI image sensors are installed in the monitored object or range space. According to the pre-set algorithm data of the positioning sensor, the sensor signal receiver is linked and the relay unit is triggered to work, thereby automatically activating the switch power supply unit to power on, so that the laser imaging unit, LED display unit, alarm light unit, and speaker unit are linked to work to remind relevant vehicles and pedestrians to evacuate or escape in time;
[0015] The UPS unit can be used to store electricity through solar photovoltaic panels and manual charging. When a disaster occurs, the laser imaging unit, LED display unit, alarm light unit, and speaker unit will be immediately activated to work in conjunction under special circumstances of power outage, alerting on-site vehicles, pedestrians, managers, and on-site staff in the shortest time possible to reduce the loss of life and property. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following briefly introduces the drawings required for the embodiments or the prior art description. The following description is given with respect to the drawings:
[0017] Figure 1 This is a schematic diagram of the structure of the utility model in the installation working state;
[0018] Figure 2 This is a schematic diagram of the system operation process structure of the utility model.
[0019] In the picture:
[0020] 1. Computer; 2. Mobile terminal; 3. Networking unit; 4. Cloud server unit; 5. 4G / 5G signal unit; 6. Beidou satellite unit; 7. External power interface unit; 8. UPS unit; 9. Transformer unit; 10. 8266 chip unit; 11. Relay unit; 12. Switching power supply unit; 13. Laser imaging unit; 14. Alarm light unit; 15. Display controller unit; 16. Speaker unit; 17. LED display unit; 18. Positioning sensor; 19. AI image sensor; 20. Sensor signal receiver; 21. Solar photovoltaic panel. DETAILED DESCRIPTION
[0021] The embodiments described below are only a portion of the embodiments of the present invention and do not represent all embodiments consistent with the present invention. The exemplary embodiments are described below in conjunction with the accompanying drawings:
[0022] like Figure 1-2As shown, the utility model shows a remote-controlled laser aerial imaging alarm, which includes a computer 1, a mobile terminal 2, a transformer unit 9 and a positioning terminal. The mobile terminal 2 is internally installed with a computer 1, a network terminal, a power supply terminal, a transformer unit 9, a processing terminal and an alarm terminal. The positioning terminal is fixedly installed on the monitored object. The positioning terminal includes a positioning sensor 18 and an AI image sensor 19. The network terminal includes a networking unit 3, a cloud server unit 4, a 4G / 5G signal unit 5 and a Beidou satellite unit 6. The networking unit 3, the cloud server unit 4, the 4G / 5G signal unit 5 and the Beidou satellite unit 6 are installed in parallel. The computer 1 and the processing terminal are electrically connected to the network terminal. The power supply terminal is electrically connected to the processing terminal through the transformer unit 9, and the processing terminal is electrically connected to the alarm terminal.
[0023] Based on the above structure, the power supply terminal includes an external power interface unit 7, a UPS unit 8 and a solar photovoltaic panel 21. The external power interface unit 7 and the solar photovoltaic panel 21 are both electrically connected to the UPS unit 8 and can replenish power for the UPS unit 8. The external power interface unit 7 and the UPS unit 8 are both electrically connected to the transformer unit 9.
[0024] On the basis of the above structure, the solar photovoltaic panel 21 is fixedly installed on the top of the mobile terminal 2 .
[0025] In this embodiment, the external power interface unit 7 allows the device to be connected to an external power source to provide power for the device operation, and when connected to an external power source, it can also charge the UPS unit 8. At the same time, the solar photovoltaic panel 21 can also be used to charge the UPS unit 8, thereby ensuring the stable operation of the device even in the special case of power outage.
[0026] Based on the above structure, the processing terminal includes an 8266 chip unit 10, a relay unit 11, a switching power supply unit 12 and a sensor signal receiver 20. The 8266 chip unit 10 is used to receive and process the geographic location information obtained by the network terminal, pass the instruction to the relay unit 11 and control the switching power supply unit 12 to turn on. The sensor signal receiver 20 is used to receive the real-time status information of the monitored object obtained by the positioning terminal. The switching power supply unit 12 is electrically connected to the alarm terminal.
[0027] In this embodiment, the 8266 chip unit 10 can receive the control signal and activate the relay unit 11, thereby triggering the switching power supply unit 12 to be powered on and making the alarm terminal work.
[0028] Based on the above structure, the alarm terminal includes a laser imaging unit 13, an alarm light unit 14, a display screen controller unit 15, a speaker unit 16 and an LED display screen unit 17. Three laser imaging units 13 are provided and are equidistantly arranged in the vertical direction on the bottom left wall of the mobile terminal 2. The alarm light unit 14 is fixedly installed in the front of the top of the mobile terminal 2. The display screen controller unit 15 is electrically connected to the speaker unit 16 and the LED display screen unit 17 respectively. The speaker unit 16 is installed on the bottom front outer wall of the mobile terminal 2. The LED display screen unit 17 is fixedly installed on the upper front outer wall of the mobile terminal 2 in an embedded manner.
[0029] In this embodiment, when a disaster occurs, multiple laser imaging units 13 are used to form visible light columns in the air, and visible warning text is displayed through the LED display unit 17. At the same time, the alarm light unit 14 is used to flash the light source warning, and then the alarm prompt sound is issued through the speaker unit 16. Through the linkage of multiple warning means, it is used to better remind relevant vehicles and pedestrians to evacuate or escape in time, which is safer.
[0030] The working principle of this utility model is as follows:
[0031] When in use, the mobile terminal 2 is first fixedly installed at a designated location beside a dangerous section of the road, and the positioning sensor 18 and AI image sensor 19 included in the positioning terminal are fixedly installed on the monitored object. The network terminal includes a networking unit 3, a cloud server unit 4, a 4G / 5G signal unit 5 and a Beidou satellite unit 6 and other signal transmission modes. In conjunction with the monitored object part in the existing surveillance video near the road, the monitoring command center determines whether the multiple signal transmission modes are passed by the status of the monitored object. After passing, the 8266 chip unit 10 can be remotely controlled to activate the relay unit 11, thereby triggering the switch power supply unit 12 to energize and enable the alarm terminal to work;
[0032] In the case of network disconnection, through the setting of the positioning terminal, the algorithm data pre-set by the positioning sensor 18 is linked with the sensor signal receiver 20 and the relay unit 11 is triggered to work, thereby automatically activating the switch power supply unit 12 to energize the alarm terminal. When the alarm terminal is working, multiple laser imaging units 13 are used to form visible light columns in the air, and visible warning text is displayed through the LED display unit 17. At the same time, the alarm light unit 14 is used to flash the light source warning, and then the alarm prompt sound is issued through the speaker unit 16. Through the linkage of multiple warning means, it is used to better remind relevant vehicles and pedestrians to evacuate or escape in time, which is safer.
[0033] The external power interface unit 7 facilitates the device to be connected to an external power source to provide power for the device operation and also to charge the UPS unit 8. At the same time, the solar photovoltaic panel 21 can also charge the UPS unit 8, thereby ensuring the stable operation of the device even in the special case of power outage in the event of a disaster.
[0034] This device can alert on-site vehicles, pedestrians, managers, and on-site staff in the shortest possible time when a disaster occurs, thereby reducing the loss of life and property. It should be noted that the relevant circuit connections and related electrical products in this device all adopt existing mature technologies and products, and their specific structures and working principles are all existing technologies, so they will not be described in detail.
[0035] The above are only preferred specific embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any equivalent changes, modifications, substitutions and variations made by technicians in this technical field based on the concept of the present invention through logical analysis, reasoning or limited experiments on the basis of existing technologies should be within the scope of protection determined by the claims.
Claims
1. A remote-controlled laser aerial imaging alarm, comprising a computer (1), a mobile terminal (2), a transformer unit (9) and a positioning terminal, characterized in that: The mobile terminal (2) is internally installed with a computer (1), a network terminal, a power supply terminal, a transformer unit (9), a processing terminal and an alarm terminal; the positioning terminal is fixedly installed on the monitored object; the positioning terminal includes a positioning sensor (18) and an AI image sensor (19); the network terminal includes a networking unit (3), a cloud server unit (4), a 4G / 5G signal unit (5) and a Beidou satellite unit (6); the networking unit (3), the cloud server unit (4), the 4G / 5G signal unit (5) and the Beidou satellite unit (6) are installed in parallel; the computer (1) and the processing terminal are both electrically connected to the network terminal; the power supply terminal is electrically connected to the processing terminal via the transformer unit (9); and the processing terminal is electrically connected to the alarm terminal.
2. The remote-controlled laser aerial imaging alarm according to claim 1, characterized in that: The power supply terminal comprises an external power interface unit (7), a UPS unit (8) and a solar photovoltaic panel (21); the external power interface unit (7) and the solar photovoltaic panel (21) are both electrically connected to the UPS unit (8) and are capable of replenishing electric energy for the UPS unit (8); and the external power interface unit (7) and the UPS unit (8) are both electrically connected to a transformer unit (9).
3. The remote-controlled laser aerial imaging alarm according to claim 2, characterized in that: The solar photovoltaic panel (21) is fixedly mounted on the top of the mobile terminal (2).
4. The remote-controlled laser aerial imaging alarm according to claim 1, characterized in that: The processing terminal comprises an 8266 chip unit (10), a relay unit (11), a switching power supply unit (12) and a sensor signal receiver (20). The 8266 chip unit (10) is used to receive and process geographic location information acquired by a network terminal, transmit instructions to the relay unit (11) and control the switching power supply unit (12) to turn on. The sensor signal receiver (20) is used to receive real-time status information of a monitored object acquired by a positioning terminal. The switching power supply unit (12) is electrically connected to an alarm terminal.
5. The remote-controlled laser aerial imaging alarm according to claim 4, characterized in that: The alarm terminal comprises a laser imaging unit (13), an alarm light unit (14), a display screen controller unit (15), a speaker unit (16) and an LED display screen unit (17). Three laser imaging units (13) are provided and are equidistantly arranged on the left side wall at the bottom of the mobile terminal (2) along the vertical direction. The alarm light unit (14) is fixedly installed in front of the top of the mobile terminal (2). The display screen controller unit (15) is electrically connected to the speaker unit (16) and the LED display screen unit (17) respectively. The speaker unit (16) is installed on the outer wall of the bottom front end of the mobile terminal (2). The LED display screen unit (17) is fixedly installed on the outer wall of the upper front end of the mobile terminal (2) in an embedded manner.