Scenic spot safety monitoring equipment giving consideration to intelligent tour guide and electronic equipment power supply

Through the scenic spot safety monitoring equipment integrating multiple sensors and chips, combined with the intelligent tour guide module with digital twin technology, and the built-in large-capacity battery design, the scenic spot safety monitoring equipment has been solved, and the problems of independent intelligent tour guide and safety monitoring are not solved, which has achieved comprehensive monitoring of safety hazards in scenic spots and the provision of intelligent tour guide services, and at the same time, it has solved the problem of tourists' electronic equipment electricity use.

CN120201372APending Publication Date: 2025-06-24GUANGZHOU BEIDOU ANPING TECH CO LTD
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Patent Information

Application Number
CN202411471326.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

The existing scenic spot safety monitoring equipment has a single function and cannot fully sense multiple safety hazards. The intelligent tour guide equipment and safety monitoring equipment are independent, and it is impossible to provide accurate tour guide services in combination with location information. The power consumption problem of electronic equipment has not been effectively solved.

Method used

Design a scenic spot safety monitoring device that takes into account both the power supply of intelligent tour guides and electronic equipment. By integrating multiple sensors and chips, it can achieve comprehensive monitoring of various safety hazards in the scenic spot; use digital twin technology to provide intelligent tour guide services; built-in large-capacity batteries, which are both for the monitoring equipment themselves, and can charge other electronic equipment.

Benefits of technology

It has achieved comprehensive monitoring of various safety hazards in the scenic area, provided accurate intelligent tour guide services, solved the problem of tourists' electronic equipment electricity use, and improved the safety management of scenic area and the experience of tourists.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides scenic spot safety monitoring equipment giving consideration to intelligent tour guide and electronic equipment power supply, and belongs to the technical field of scenic spot safety monitoring. The scenic spot safety monitoring equipment comprises a portable monitoring main body, a background management system and an auxiliary equipment system; the monitoring main body comprises various sensors and chip integration units, a communication module, a positioning module, a power module and an intelligent tour guide module, the sensors collect various information, the communication module flexibly switches signals to transmit data, a battery of the power module is large in capacity and supplies power to the power module and other equipment, and the intelligent tour guide module provides multi-language explanation based on the digital twinning technology. The background management system carries out safety monitoring and early warning, tour guide service management and equipment management and maintenance, the auxiliary equipment system comprises an unmanned aerial vehicle nest and an emergency unmanned aerial vehicle and is used for patrol and emergency, the problems that existing equipment is single in function, tour guide and monitoring are independent and electronic equipment consumes electricity are solved, and scenic spot safety management and tourist service quality are improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of scenic spot safety monitoring, and in particular relates to a scenic spot safety monitoring device that takes into account both intelligent tour guide and power supply of electronic equipment. Background Art

[0002] With the development of tourism, the number of tourists in scenic spots is increasing, which puts higher requirements on scenic spot safety monitoring and tourist service quality. However, the existing technology has many shortcomings in scenic spot safety monitoring and tourist service. On the one hand, the traditional scenic spot safety monitoring equipment has a single function and often only focuses on the monitoring of a specific safety factor. For example, equipment with only positioning function cannot fully perceive the various safety hazards in the scenic area, including geological disasters, crowded conditions, etc. On the other hand, smart tour guide equipment and safety monitoring equipment are usually independent of each other and cannot effectively combine tourist location information to provide accurate tour guide services. At the same time, the problem of power consumption of electronic devices by tourists during their visit to the scenic spot has not been well solved. Existing equipment rarely has the function of simultaneously taking into account its own operation and the function of powering other electronic devices.

[0003] The present invention aims to provide a scenic spot safety monitoring device that takes into account both intelligent tour guide and power supply for electronic devices. It realizes comprehensive safety monitoring functions by integrating multiple sensors and chips, realizes intelligent tour guide functions by using digital twin technology, and has a built-in large-capacity battery to solve the power supply problem of electronic devices, so as to meet the growing safety management needs of scenic spots and the diverse service needs of tourists. Summary of the invention

[0004] The purpose of the present invention is to provide a scenic area safety monitoring device that takes into account both intelligent tour guide and power supply for electronic devices, aiming to solve the problems in the prior art that traditional monitoring equipment has a single function and cannot fully perceive various safety hazards, the intelligent tour guide equipment and the monitoring equipment are independent and cannot provide accurate tour guide services based on the location, and the power consumption problem of electronic equipment has not been well solved.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply, characterized by comprising:

[0007] A portable monitoring device (1) having the following components:

[0008] A variety of sensor and chip integrated units, including but not limited to high-precision positioning chips, acceleration sensors, electronic barometers, temperature sensors and humidity sensors. The high-precision positioning chips are used to obtain real-time information about the location of tourists, the acceleration sensors are used to detect the stationary state of the equipment, the electronic barometers are used to determine the height of tourists, and the temperature sensors and humidity sensors are used to collect environmental information;

[0009] A positioning module that can switch among GPS satellite signals, Beidou satellite signals, WiFi signals, and Bluetooth signal sources according to the positioning environment based on signal strength to ensure that the transmission of location information is not affected, and transmit the collected location information and sensor data to the scenic area background management system in real time via a 4G network;

[0010] A power module with a large-capacity battery built-in. In addition to powering the components of the monitoring main body itself, this battery can also charge other peripheral electronic devices;

[0011] An intelligent tour guide module, based on a precise map using digital twin technology, determines the location through outdoor satellite positioning and indoor WiFi or Bluetooth, etc. When a tourist touches the tour fence line of a scenic spot, it can provide humanistic, historical, natural, etc. explanation information of the corresponding scenic spot, and has multiple explanation languages and multiple playback methods.

[0012] As a preferred solution of the present invention, the high-precision positioning chip performs calculations based on the received GPS and Beidou data outdoors, and the monitoring accuracy theoretically can reach the meter level. Indoors, it performs calculations through WiFi and Bluetooth signal data, and the accuracy is about 3 - 5 meters.

[0013] As a preferred solution of the present invention, the battery capacity of the power module is 10,000 mAh.

[0014] As a preferred solution of the present invention, the explanation languages and playback methods of the intelligent tour guide module include open explanation, explanation through Bluetooth connection to a mobile phone, and explanation through headphone connection to a mobile phone.

[0015] As a preferred solution of the present invention, it includes:

[0016] The scenic area safety monitoring device according to any one of claims 1 - 4;

[0017] A background management system for receiving the data transmitted by the monitoring device and performing the following operations:

[0018] Safety monitoring and early warning, including grasping the spatio-temporal distribution of tourists in the scenic area in real time, predicting the tourist flow trend, implementing safety dynamic early warning, and aiming at reducing personal injury accidents caused by geological disasters or deformations of buildings and structures. By analyzing the location information of the monitoring device and the environmental data collected by the sensor, it determines whether tourists enter the dangerous area and automatically alarms, and at the same time handles situations such as tourists getting lost or losing contact;

[0019] Intelligent tour guide service management, providing accurate scenic spot explanation services for tourists according to the tourist location information and the trigger information of the intelligent tour guide module of the monitoring device;

[0020] Device management and maintenance, real-time monitoring of the device status, and notification is sent when the device fails or the battery power is too low;

[0021] Auxiliary equipment system, including a drone nest and emergency drones. The drone nest is used for daily regular inspections of the scenic area, and the emergency drones are used to conduct on-site searches according to the geographical location of the monitoring devices in case of sudden accidents of tourists. And the drones perform corresponding tasks in case of geological disasters, fires, meteorological disasters, etc., including terrain scanning, checking the fire situation, guiding tourists to take shelter, etc.

[0022] As a preferred solution of the present invention, when the background management system conducts safety monitoring and early warning, when it monitors that the tourist density in a certain area exceeds the requirements of the scenic area environmental capacity, it can issue a yellow early warning or a red early warning.

[0023] As a preferred solution of the present invention, the drone nest in the auxiliary equipment system can detect the operating status of the cableway equipment and check the situation of tourists observing the scenic area rules and regulations.

[0024] As a preferred solution of the present invention, when a tourist is in a coma or dead, the emergency drone in the auxiliary equipment system can use infrared imaging technology for search.

[0025] Compared with the prior art, the beneficial effects of the present invention are:

[0026] 1. In this solution, by integrating a variety of sensors and chips, such as high-precision positioning chips, acceleration sensors, electronic barometers, temperature sensors, and humidity sensors, etc., comprehensive monitoring of various safety hazards in the scenic area is realized. The high-precision positioning chip can obtain the tourist position information in real time. The monitoring accuracy theoretically can reach the meter level based on Beidou solution outdoors, and the solution accuracy is about 3-5 meters indoors through WiFi and Bluetooth; the acceleration sensor can detect the stationary state of the device to judge whether there is an abnormal situation of tourists; the electronic barometer can determine the tourist height and provide an auxiliary judgment basis for mountain scenic areas, etc.; the temperature sensor and humidity sensor can collect environmental information and provide support for early warnings of geological disasters, etc.

[0027] 2. In this solution, the intelligent tour guide module is based on the accurate map of digital twin technology, determines the position through outdoor satellite positioning and indoor WiFi or Bluetooth, etc. When a tourist touches the scenic spot tour fence line, it can provide humanistic, historical, natural and other explanation information of the corresponding scenic spot, and the explanation language is rich and the playback methods are diverse, such as open explanation, explanation through Bluetooth connection to the mobile phone, explanation through headphone connection to the mobile phone, which can better meet the needs of different tourists and improve the tourist experience.

[0028] 3. In this solution, the power supply module is built-in with a large-capacity battery (such as 10,000 mAh). In addition to powering the components of the monitoring main body itself, it can also charge other peripheral electronic devices. Through the charging interface (such as USB interface or wireless charging module) set on the monitoring main body, electronic devices such as tourists' mobile phones and cameras can be charged, solving the problem of power consumption of electronic devices for tourists during the visit to the scenic area, and improving the practicability of the device and the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention.

[0030] In the drawings:

[0031] Figure 1 is the first front view plane of the present invention;

[0032] Figure 2 is the second rear view plane of the present invention.

[0033] In the figure: 1. Portable monitoring main body. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0033] Embodiment 1

[0034] Please refer to Figure 1 - Figure 2 , the present invention provides the following technical solutions:

[0035] A scenic area safety monitoring device that combines intelligent tour guide and power supply for electronic devices, characterized by comprising:

[0036] A portable monitoring main body 1, which has the following components:

[0037] A variety of sensors and chip integration units, including but not limited to high-precision positioning chips, acceleration sensors, electronic barometers, temperature sensors and humidity sensors, wherein the high-precision positioning chip is used to obtain the tourist location information in real time, the acceleration sensor is used to detect the stationary state of the device, the electronic barometer is used to determine the tourist height, and the temperature sensor and humidity sensor are used to collect environmental information;

[0038] A positioning module that can switch between GPS satellite signals, Beidou satellite signals, WiFi signals, and Bluetooth signal sources according to the positioning environment based on signal strength to ensure the unaffected transmission of location information, and transmit the collected location information and sensor data to the scenic area background management system in real time via a 4G network;

[0039] A power module with a large-capacity battery built-in. This battery can not only supply power to the components of the monitoring main body itself but also charge other peripheral electronic devices;

[0040] An intelligent tour guide module. Based on a precise map using digital twin technology, it determines the location through outdoor satellite positioning and indoor WiFi or Bluetooth, etc. When a tourist touches the scenic spot tour fence line, it can provide humanistic, historical, natural, etc. explanation information about the corresponding scenic spot, and has multiple explanation languages and multiple playback methods.

[0041] In a specific embodiment of the present invention, the portable monitoring main body 1: This is the core part of the entire scenic area safety monitoring device, designed to be portable for tourists to carry conveniently.

[0042] It integrates multiple functional modules, and the following will analyze each of its components in detail.

[0043] Multiple sensors and chip integration unit:

[0044] A high-precision positioning chip: It is a key component for obtaining the tourist's location information. In an outdoor environment, it is based on Beidou data calculation, and theoretically the monitoring accuracy can reach the meter level. However, in actual operation, since the device will shift in real time with the tourist and the central position cannot be fixed, there will be a certain error. In an indoor environment, through WiFi and Bluetooth signal data calculation, the accuracy is about 3 to 5 meters. This high-precision positioning ability provides basic data support for the scenic area safety monitoring and intelligent tour guide functions. For example, it can grasp the tourist's location in the scenic area in real time to quickly locate and rescue in case of danger, and at the same time can provide accurate tour guide explanation services according to the tourist's location.

[0045] An acceleration sensor: It is mainly used to detect whether the device is in a stationary state. When the device is in a stationary state within a set time, such as 40 minutes mentioned in the document, this may mean that the tourist has an abnormal situation, such as being injured, getting lost and stopping moving, etc. At this time, the system can automatically alarm, and the background personnel can view the specific location through the positioning function and further take corresponding measures, such as calling to confirm the tourist's safety status and dispatching a drone to patrol if necessary.

[0046] Electronic barometer: It can determine the altitude information of tourists at any time. This is very important for some mountain scenic spots or scenic spots with altitude changes. For example, in the prevention of geological disasters or in case of tourists getting lost, the altitude information of tourists can be used as an auxiliary judgment basis to help the background system better understand the location of tourists and the surrounding environment.

[0047] Temperature sensor and humidity sensor: Used to collect environmental information. These environmental data can provide auxiliary support for early warnings of geological disasters, etc. For example, under some special weather conditions or in specific geographical areas, abnormal changes in temperature and humidity may indicate that geological disasters are about to occur. For example, heavy rain may trigger landslides, etc. By monitoring and analyzing these data, preventive measures can be taken in advance to ensure the safety of tourists.

[0048] Positioning module: This module has strong adaptability and stability. It can automatically switch between GPS satellite signals, Beidou satellite signals, WiFi signals, and Bluetooth signal sources according to the strength of the signals in case of changes in the location environment. This flexible switching mechanism ensures that the signal transmission is not affected, enabling the monitoring entity to transmit the collected location information and sensor data to the scenic area background management system in real time. No matter where the tourists are in the scenic area, whether in an open outdoor area or an indoor environment where the signal may be interfered with, it can ensure the stable transmission of data, thus realizing the real-time monitoring and management of tourists.

[0049] Power module: Having a large-capacity battery built-in is an important feature of this device. The battery capacity can meet the needs of the device's own long-term operation and charging other electronic devices. For example, the document mentions that the battery capacity is 10,000 mAh. In addition to powering various components of the monitoring entity itself, such as high-precision positioning chips, acceleration sensors, communication modules, etc., it can also power other peripheral electronic devices through charging interfaces set on the monitoring entity, such as USB interfaces or wireless charging modules. This solves the worry of tourists about the power consumption of electronic devices during their visit to the scenic area, improves the tourists' usage experience, and also increases the practicality and versatility of the device.

[0050] Intelligent tour guide module: Precise map construction based on digital twin technology. It determines the location of tourists through outdoor satellite positioning and indoor WiFi or Bluetooth, etc. When tourists touch the fence line of the scenic spot for a visit, it can provide humanistic, historical, natural, etc. explanation information about the corresponding scenic spot. The explanation languages are rich and diverse, including Chinese, Cantonese, English, Japanese, Korean, etc., meeting the language needs of different tourists. The playback methods are also relatively flexible, including open-air explanations, explanations through Bluetooth connection to mobile phones, explanations through headphone connection to mobile phones, etc. This intelligent tour guide function allows tourists to better understand the relevant information of the scenic spots in the scenic area without a accompanying tour guide, enhancing the tourists' tour experience.

[0051] For details, please refer to Figure 1 - Figure 2 , the monitoring accuracy of the high-precision positioning chip based on Beidou solution outdoors can theoretically reach the meter level, and the positioning accuracy through WiFi and Bluetooth indoors is about 3-5 meters.

[0052] In this embodiment: The accuracy performance of the high-precision positioning chip meets the expected design. In an outdoor environment, by using the Beidou data solution method, its monitoring accuracy can theoretically reach the meter level. This is because the Beidou satellite system has high-precision positioning capabilities. By receiving and processing satellite signals, it can relatively accurately determine the position of the device. However, during actual operation, since the device is carried by tourists and will be displaced in real time as the tourists move, the central position cannot be fixed, resulting in certain errors. In an indoor environment, due to the influence of building occlusion on GPS satellite signals, the positioning effect is not good. At this time, the device relies on WiFi and Bluetooth signals for solution. By analyzing the signal strength and position information of WiFi hotspots and Bluetooth devices, its accuracy is about 3-5 meters, which can meet the approximate determination of the tourists' positions in the indoor environment and provide the necessary position information basis for scenic area safety monitoring and intelligent tour guide functions.

[0053] For details, please refer to Figure 1 - Figure 2 , the battery capacity of the power module is 10,000 mAh.

[0054] In this embodiment: The battery capacity of the power module is determined to be 10,000 mAh. Such a large-capacity design is to meet the long-term power consumption needs of multiple components of the device itself and the function of charging other electronic devices. Components such as the high-precision positioning chip, acceleration sensor, and positioning module of the device itself consume electrical energy during operation. The 10,000 mAh battery can provide stable power support for these components to ensure that the device can continue to work properly. At the same time, when the electronic devices such as tourists' mobile phones and cameras are out of power, the battery can also charge these electronic devices through charging interfaces such as USB interfaces or wireless charging modules set on the monitoring main body, solving the worry of power consumption of electronic devices during tourists' visits to the scenic area and improving the practicality and user experience of the device.

[0055] For details, please refer to Figure 1 - Figure 2 , the explanation languages and playback methods of the intelligent tour guide module include open explanation, explanation through Bluetooth connection to the mobile phone, and explanation through headphone connection to the mobile phone.

[0056] In this embodiment: The explanatory languages of the intelligent tour guide module cover multiple languages. This is to meet the needs of tourists from different nationalities and regions, enabling more tourists to obtain scenic spot explanatory information through the device without a tour guide accompanying them. In terms of the playback method, there are various methods including open explanatory, explanatory through Bluetooth connection to a mobile phone, and explanatory through headphone connection to a mobile phone. Open explanatory is suitable for a relatively quiet environment where tourists directly listen to the explanatory content through the monitoring main body; in the way of explanatory through Bluetooth connection to a mobile phone, tourists can Bluetooth-connect their mobile phones to the monitoring main body, use the audio playback function of the mobile phone to obtain the explanatory content, and at the same time can view relevant scenic spot pictures or text introductions on the mobile phone; the way of explanatory through headphone connection to a mobile phone is more private and is suitable for a noisy environment where tourists listen to the explanatory content through headphone connection to a mobile phone to avoid external interference and better enjoy the tour guide service.

[0057] For details, please refer to Figure 1 - Figure 2 , the scenic area safety monitoring device according to any one of claims 1-4;

[0058] The background management system is used to receive the data transmitted by the monitoring device and perform the following operations:

[0059] Safety monitoring and early warning, including grasping the spatio-temporal distribution of tourists in the scenic area in real time, predicting the tourist flow trend, implementing safety dynamic early warning, and aiming at reducing personal injury accidents caused by geological disasters or deformation of buildings and structures. By analyzing the position information of the monitoring device and the environmental data collected by the sensors, it is judged whether tourists enter the dangerous area and an automatic alarm is issued. At the same time, situations such as tourists getting lost or losing contact are handled;

[0060] Intelligent tour guide service management, providing accurate scenic spot explanatory services for tourists according to the tourist position information and the triggering information of the intelligent tour guide module of the monitoring device;

[0061] Device management and maintenance, real-time monitoring of the status of the monitoring device, and sending a notice when the device fails or the battery power is too low;

[0062] The auxiliary device system includes a drone nest and emergency drones. The drone nest is used for daily regular inspections of the scenic area, and the emergency drones are used for on-site search according to the geographical location of the monitoring device in case of sudden accidents of tourists. And the drones perform corresponding tasks in case of geological disasters, fires, meteorological disasters, etc., including terrain scanning, checking the fire situation, guiding tourists to take shelter, etc.

[0063] In this embodiment: When the scenic area safety monitoring device according to any one of claims 1-4 works properly, various data collected, such as position information, sensor data, etc., are transmitted to the background management system in real time through the 4G network. After receiving these data, the background management system performs a series of processing operations.

[0064] Safety Monitoring and Early Warning:

[0065] Keep track of the spatio-temporal distribution and movement trends of tourists in real time: By analyzing the location information transmitted by monitoring devices, the back-end management system can understand the distribution of tourists in the scenic area at different times and spaces in real time. Through algorithms and models, data such as the movement trajectories and stay times of tourists are processed to predict the movement trends of tourists. For example, during peak tourist seasons such as holidays, the system can predict in advance which scenic spots may experience tourist congestion, so that scenic area management personnel can make preparations in advance.

[0066] Handling geological disasters and deformations of buildings and structures: After the monitoring devices transmit location information and the environmental data collected by sensors, the back-end management system will comprehensively analyze this data. For the risk of personal injury accidents caused by geological disasters or deformations of buildings and structures, the system will, based on the location of the monitoring devices and information such as temperature, humidity, and air pressure in the environmental data, combined with geological models and historical data, judge whether tourists have entered a dangerous area. If tourists enter a dangerous area, the system will automatically alarm, send warning messages to tourists, and at the same time notify scenic area management personnel to take corresponding rescue and evacuation measures.

[0067] Handling the situation of tourists getting lost or losing contact: Once a situation where tourists get lost or lose contact occurs, the back-end management system can view the location information last transmitted by the monitoring devices in the first place to determine the approximate location of the tourists. Then, a rescue plan can be formulated based on the map of the scenic area and the surrounding environmental information. For example, by dispatching drones for aerial search or sending staff to conduct ground searches along possible routes.

[0068] Intelligent Tour Guide Service Management: When tourists move within the scenic area, the intelligent tour guide module of the monitoring device will transmit relevant signals to the back-end management system based on the tourists' location information and trigger information such as touching the fence line of the scenic spot for tour. The back-end management system will, based on this information, search for the corresponding scenic spot explanation data and then send the explanation data back to the intelligent tour guide module of the monitoring device. For example, when tourists approach a certain historical site, the system will accurately provide the historical background, cultural connotations, etc. of the site, enabling tourists to better understand the relevant information of the scenic spot.

[0069] Device Management and Maintenance: The back-end management system will monitor the status of the monitoring devices in real time. It will regularly check each component of the monitoring devices, such as whether the sensors are working properly and how much battery power remains. When a device failure is detected, such as abnormal data from a certain sensor or the battery power being too low, for example, lower than the set 20%, the system will issue a notice in a timely manner. The notice can be sent to the maintenance personnel of the scenic area to allow them to repair or replace the battery of the device in a timely manner to ensure that the monitoring devices can work properly.

[0070] Auxiliary Equipment System:

[0071] Daily inspection of the drone nest: In this embodiment, the drone nest conducts daily regular inspections of the scenic area according to the set schedule and inspection route. During the inspection, the drone can check whether tourists comply with the scenic area's rules and regulations, such as whether they smoke in the no-smoking area or damage the scenic area's vegetation. At the same time, the drone can also detect the operating status of the cableway equipment, such as whether the cableway cable is worn or operating normally, and promptly discover potential safety hazards to ensure the normal operation of the scenic area.

[0072] Rescue and emergency handling of emergency drones: When an accident occurs to a tourist, the emergency drone quickly flies to the accident site for search according to the geographical location information transmitted by the monitoring equipment. For example, in the case of a tourist falling into a coma or being injured, the emergency drone can use infrared imaging technology to quickly locate the tourist. When dealing with geological disasters, the emergency drone can use laser scanning technology to scan the ground terrain to check for terrain deformation and other situations, and promptly issue a risk warning. When a fire breaks out, the emergency drone can enter the emergency flight state to check information such as the exact location of the fire, the area affected by the fire, and the fire trend and wind direction, providing timely fire situation data for firefighters. When a meteorological disaster occurs, such as a flood approaching, the emergency drone can check whether there are tourists trapped in the flooded area and guide the tourists to a safe area.

[0073] For details, please refer to Figure 1 - Figure 2 , when the background management system conducts safety monitoring and early warning, when it detects that the tourist density in a certain area exceeds the requirements of the scenic area's environmental capacity, it can issue a yellow warning or a red warning.

[0074] In this embodiment: The background management system performs real-time analysis and processing on a large amount of tourist location information transmitted by the monitoring equipment. First, the system calculates the upper limit of the number of tourists that each area can accommodate according to the geographical area division of the scenic area and the pre-set environmental capacity standard. When the number of monitoring devices in a certain area, that is, the number of tourists, exceeds this upper limit, the system issues a corresponding warning according to the degree of excess. If the excess ratio is within a certain range, for example, exceeding 60%-80% of the environmental capacity, the system issues a yellow warning to remind the scenic area staff to pay attention to the tourist flow in this area and may need to take some preliminary diversion measures, such as guiding tourists to other areas for sightseeing. If the excess ratio is higher, for example, exceeding 80% or more, a red warning is issued. At this time, the scenic area staff needs to immediately take emergency evacuation measures to avoid possible safety accidents such as stampedes.

[0075] For details, please refer to Figure 1 - Figure 2 , the drone nest in the auxiliary equipment system can detect the operating status of the cableway equipment and check whether tourists comply with the scenic area's rules and regulations.

[0076] In this embodiment, the drone nest patrols the scenic area according to the set program and time interval. During the patrol, for the detection of the operating status of the cableway equipment, the drone nest is equipped with special detection equipment and sensors. For example, through a high-definition camera, the appearance of the cableway cable can be visually inspected for wear, breakage, etc. At the same time, relevant sensors can be used to detect parameters such as the speed and acceleration of the cableway operation, and these data are transmitted back to the background management system in real time for analysis. If any abnormal situation is found, the system will issue an alarm in time to notify the maintenance personnel of the scenic area for repair. In terms of observing whether tourists abide by the scenic area regulations, the drone can use its high-definition camera to take pictures of various areas of the scenic area, and judge whether tourists are smoking in the no-smoking area, entering unopened areas, or damaging the scenic area vegetation through image recognition technology. Once a violation is found, the system will record the relevant information and notify the scenic area staff for handling.

[0077] Specifically, please refer to Figure 1 - Figure 2 , when a tourist is in a coma or dead, the emergency drone in the auxiliary equipment system can use infrared imaging technology for search.

[0078] In this embodiment, when a tourist is in an emergency such as a coma or death, the emergency drone is quickly activated and flies to the relevant area. The emergency drone is equipped with infrared imaging equipment, which can detect the infrared rays emitted by the human body within a certain range. When the emergency drone arrives near the accident site, it can quickly scan the surrounding area through infrared imaging technology. Even in low light or with obstacles, it can accurately find the location of the tourist. Then, the emergency drone transmits the location information of the tourist back to the background management system in real time, so that the scenic area staff can take rescue measures in time.

[0079] The working principle and usage process of the present invention: I. Data collection:

[0080] Sensors and chips work: Each component in the multiple sensors and chip integration unit plays a role. The high-precision positioning chip performs data calculation based on Beidou data outdoors and through WiFi and Bluetooth signal data indoors to obtain the tourist's location information. The acceleration sensor is used to detect the stationary state of the device. When the device is stationary within the set time, it may indicate that something is wrong with the tourist. The electronic barometer determines the tourist's altitude, which is very important for mountain scenic areas, etc. The temperature sensor and humidity sensor collect environmental information to provide support for geological disaster early warning.

[0081] Positioning module transmission: The positioning module switches between GPS satellite signals, Beidou satellite signals, WiFi signals, and Bluetooth signal sources according to the communication environment according to the signal strength to ensure that the position information transmission is not affected, and then transmits the collected position information and sensor data to the scenic area background management system in real time through the 4G network.

[0082] II. Back-end management system processing:

[0083] Safety monitoring and early warning:

[0084] After the back-end management system receives data, for reducing personal injury accidents caused by geological disasters or deformations of buildings and structures, it will analyze the location information of monitoring devices and the environmental data collected by sensors, and combine with geological models and historical data to judge whether tourists enter dangerous areas. If tourists enter dangerous areas, the system will automatically alarm, send warning messages to tourists, and notify scenic area management staff to take rescue and evacuation measures. At the same time, the system analyzes the location information to master the spatio-temporal distribution and flow trend of tourists in the scenic area. When the tourist density in a certain area exceeds the requirements of the scenic area environmental capacity, yellow or red early warnings will be issued according to the exceeding ratio to remind the staff to take measures.

[0085] Intelligent tour guide service management: The intelligent tour guide module is based on a precise map of digital twin technology and determines the location of tourists through outdoor satellite positioning and indoor WiFi or Bluetooth, etc. When tourists touch the tour fence line of scenic spots, the intelligent tour guide module can provide corresponding cultural, historical, natural and other explanation information of the scenic spots. The explanation languages are diverse, and the playback methods include open explanation, explanation through Bluetooth connection to mobile phones, and explanation through headphone connection to mobile phones. The intelligent tour guide module of the monitoring device will transmit relevant signals to the back-end management system according to the tourist location information and trigger information, and the back-end management system will search for corresponding scenic spot explanation data and send it back to the intelligent tour guide module.

[0086] III. Equipment power supply and charging service:

[0087] Power supply of its own components: The power module is built-in with a large-capacity battery such as 10,000 mAh to supply power to the monitoring main body's own components such as high-precision positioning chips, acceleration sensors, and positioning modules to ensure the normal operation of the equipment.

[0088] Charging of other devices: Charge other electronic devices such as mobile phones and cameras through charging interfaces such as USB interfaces or wireless charging modules set on the monitoring main body to solve the power consumption problem of tourists' electronic devices.

[0089] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply, characterized in that: include: A portable monitoring device (1) having the following components: A variety of sensor and chip integrated units, including but not limited to high-precision positioning chips, acceleration sensors, electronic barometers, temperature sensors and humidity sensors. The high-precision positioning chips are used to obtain real-time information about the location of tourists, the acceleration sensors are used to detect the stationary state of the equipment, the electronic barometers are used to determine the height of tourists, and the temperature sensors and humidity sensors are used to collect environmental information; The positioning module can switch between GPS satellite signals, Beidou satellite signals, WiFi signals and Bluetooth signal sources according to the signal strength according to the location environment to ensure that the location information is not affected, and transmit the collected location information and sensor data to the scenic spot background management system in real time through the 4G network; The power module has a built-in large-capacity battery, which can not only power the components of the monitoring device itself, but also charge other peripheral electronic devices; The intelligent tour guide module uses precise maps based on digital twin technology to determine the location through outdoor satellite positioning and indoor WiFi or Bluetooth. When tourists touch the fence line of the scenic spot, it can provide information on the humanities, history, nature, etc. of the corresponding scenic spot, and has multiple explanation languages ​​and multi-mode playback methods.

2. According to claim 1, a scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply is characterized by: The high-precision positioning chip receives GPS and Beidou signal data for calculation outdoors, and the monitoring accuracy can theoretically reach the meter level. Indoors, the calculation accuracy through WiFi and Bluetooth signal data is about 3-5 meters.

3. The scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply according to claim 2 is characterized by: The battery capacity of the power module is 10,000 mAh.

4. The scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply according to claim 3 is characterized by: The explanation languages ​​of the intelligent tour guide module include Chinese, Cantonese, English, Japanese, and Korean, and the playback modes include open explanation, explanation via mobile phone connected to Bluetooth, and explanation via headphones connected to mobile phone.

5. A scenic area safety monitoring system that takes into account both intelligent tour guide and electronic equipment power supply according to claim 4, characterized in that: include: The scenic area safety monitoring device according to any one of claims 1 to 4; The backend management system is used to receive data transmitted by monitoring equipment and perform the following operations: Safety monitoring and early warning, including real-time grasp of the temporal and spatial distribution of tourists in scenic spots, prediction of tourist flow trends, implementation of dynamic safety early warning, and reduction of personal injury accidents caused by geological disasters or deformation of buildings and structures. By analyzing the location information of monitoring equipment and environmental data collected by sensors, it is determined whether tourists have entered dangerous areas and automatically alarmed, and at the same time, it handles situations such as tourists getting lost or losing contact; Intelligent tour guide service management, providing tourists with accurate scenic spot explanation services based on tourist location information and monitoring equipment intelligent tour guide module trigger information; Equipment management and maintenance, real-time monitoring of equipment status, and notification when equipment fails or battery power is too low; The auxiliary equipment system includes drone nests and emergency drones. The drone nests are used for daily regular inspections of scenic spots. The emergency drones are used to conduct on-site searches based on the geographical location of the monitoring equipment when tourists encounter sudden accidents. In addition, drones perform corresponding tasks when responding to geological disasters, fires, meteorological disasters, etc., including terrain scanning, checking fire conditions, and guiding tourists to avoid danger.

6. The scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply according to claim 5, characterized in that: When the background management system is performing safety monitoring and early warning, if it detects that the density of tourists in a certain area exceeds the environmental capacity requirement of the scenic area, it can issue a yellow warning or a red warning.

7. The scenic area safety monitoring device that takes into account both intelligent tour guide and electronic equipment power supply according to claim 6, characterized in that: The drone nest in the auxiliary equipment system can detect the operating status of the cableway equipment and check whether tourists comply with the rules and regulations of the scenic area.

8. The scenic area safety monitoring device that combines intelligent tour guide and electronic equipment power supply according to claim 7 is characterized by: The emergency drone in the auxiliary equipment system can use infrared imaging technology to search when a tourist is in a coma or dead.

Citation Information

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