Scenic area monitoring method and device
By selecting target security plans based on multi-scene features and environmental features in the scenic area, setting up IoT devices and monitoring data in real time, the problems of low layout efficiency and poor applicability caused by the single detection equipment in the existing technology are solved, and efficient and safe scenic spot monitoring is achieved.
Patent Information
- Application Number
- CN202111249029.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-10-26
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2041-10-26
AI Technical Summary
In the existing scenic spot monitoring methods, the detection equipment is set up in a single manner, resulting in low layout efficiency and poor applicability, making it difficult to meet the comprehensiveness, reliability and efficiency requirements of safety prevention and control.
Based on the multi-scene characteristics and environmental characteristics of the target scenic spot, the target security plan is selected from the preset security plan, and the Internet of Things equipment is set up in the scenic spot to receive equipment monitoring data in real time for security prevention and control, and efficient security protection is achieved through personalized configuration and deployment.
It has improved the comprehensiveness and effectiveness of scenic spot safety prevention and control, enhanced the reusability of security plans, and improved the operation safety and user experience of scenic spots.
Smart Images

Figure CN113988599B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of Internet of Things technology, and specifically to a scenic area monitoring method and device. Background Art
[0002] With rapid economic development and the continuous advancement of science and technology, people's living standards are improving, and more and more people are choosing to visit tourist attractions during their free time. Popular scenic spots often see large crowds of tourists during holidays, putting significant pressure on their safety and security management. Therefore, as they improve their visitor services, scenic spots must also continuously strengthen their safety awareness within their management, which in turn places higher demands on current security technologies. As a top priority for scenic spot safety management, safety warning systems typically incorporate a wide range of technologies, including mechanics, computers, communications, and biotechnology. These technologies, integrated with modern scientific management measures, form a defensive line to protect the lives and property of scenic spot visitors. The technologies associated with scenic spot safety warning systems have also evolved from traditional manual measurement and control, networked alarms, to more secure, convenient, and efficient IoT-based intelligent methods, such as temperature sensors, sound and smoke detection, and humidity monitoring. At the same time, since the Internet of Things has three major characteristics: comprehensive perception, reliable transmission, and intelligent processing, when managers configure different sensor terminal facilities according to the terrain environment of different scenic spots, it can greatly improve the efficiency of scenic spot sensor alarms in security monitoring and emergency response. Therefore, a scenic spot sensor alarm system that is adapted to local conditions and can be dynamically configured can effectively improve the safety management capabilities of the scenic spot and protect the lives and property of tourists.
[0003] Currently, existing scenic area monitoring methods rely on a relatively simple setup of detection equipment. Even when staff recognize the need for additional detection equipment applicable to diverse scenic area environments, they rely solely on manual experience to deploy the equipment. However, this manual setup method is not only inefficient and poorly adaptable, but also difficult to reuse. Therefore, it cannot simultaneously meet the comprehensiveness, reliability, and efficiency requirements of scenic area security control. Summary of the Invention
[0004] In response to the problems in the existing technology, the present application provides a scenic area monitoring method and device, which can realize real-time monitoring of scenic spots in multiple scenarios, and can effectively improve the comprehensiveness and effectiveness of scenic area safety prevention and control. At the same time, it can realize efficient and safe protection preparation for scenic spots through personalized Internet of Things device configuration and deployment, effectively improving the efficiency and reliability of scenic area monitoring plans and Internet of Things device layout.
[0005] To solve the above technical problems, this application provides the following technical solutions:
[0006] In a first aspect, the present application provides a scenic area monitoring method, comprising:
[0007] Based on the current multi-scene characteristics and environmental characteristics of the target scenic area, select the corresponding target security plan from the preset security plans;
[0008] Outputting the target security plan to set up and / or check various IoT devices corresponding to the target security plan in the target scenic area;
[0009] The monitoring data collected by each of the IoT devices is received in real time to perform safety control on the target scenic spot based on the monitoring data.
[0010] Furthermore, before selecting a corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area, the method further includes:
[0011] Receiving and storing multiple security plans for the target scenic area;
[0012] Among them, the security plan is used to store the correspondence between the various scene feature combinations, environmental features and Internet of Things device combinations of the target scenic area; the scene feature combination contains multiple scene features, and the Internet of Things device contains multiple Internet of Things devices and the layout location of each of the Internet of Things devices.
[0013] Furthermore, the multi-scene features include: at least two categories of people flow monitoring areas, amusement facilities, cultural assets, flammable places and flood-prone landslide sites in the target scenic area.
[0014] Furthermore, the environmental characteristics include: at least one of the current season of the target scenic spot, the ambient temperature range, tourist flow restriction requirement data, and the type of tour day;
[0015] The types of tour days include: peak season or off-season, and also include: holidays or non-holidays.
[0016] Furthermore, the various IoT devices corresponding to the target security plan include: infrared sensors installed in the crowd monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and at least two of precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
[0017] Furthermore, the real-time receiving of monitoring data collected by each of the IoT devices to perform safety control on the target scenic spot based on the monitoring data includes:
[0018] Receive monitoring data collected by each of the IoT devices in real time;
[0019] The monitoring data collected by each of the IoT devices is sent to a display screen in real time for visual display;
[0020] Furthermore, it is determined whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, an early warning message for the target monitoring data is issued.
[0021] Furthermore, the determining whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, includes:
[0022] If an infrared sensor is installed in the pedestrian flow monitoring area, the infrared data collected by the infrared sensor is received in real time. If it is detected that the infrared data exceeds the pedestrian flow threshold corresponding to the pedestrian flow monitoring area, an early warning message is issued to indicate that the pedestrian flow monitoring area is overloaded.
[0023] Furthermore, the determining whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, includes:
[0024] If the amusement facility is provided with a GPS positioning device, the positioning data collected by the GPS positioning device is received in real time. If it is detected that the position displayed by the positioning data exceeds the fixed area range corresponding to the GPS positioning device, an early warning message is issued to indicate that the amusement facility is operating abnormally.
[0025] Furthermore, the determining whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, includes:
[0026] If an infrared sensing alarm device is installed at the cultural asset, the infrared sensing data collected by the infrared sensing alarm device will be received in real time. If it is detected that the infrared sensing data is alarm data, an early warning message will be issued to show that the cultural asset is at risk of being stolen.
[0027] Furthermore, the determining whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, includes:
[0028] If smoke and temperature sensors are installed in the flammable place, the smoke and temperature data collected by the smoke and temperature sensors are received in real time. If it is detected that the smoke and temperature data exceed the preset smoke and temperature thresholds, an early warning message is issued to indicate that there is a fire risk in the flammable place.
[0029] Furthermore, the determining whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, includes:
[0030] If a precipitation sensor and a soil moisture sensor are installed in the flood-prone landslide site, the precipitation and soil moisture data collected by the precipitation sensor and the soil moisture sensor are received in real time. If it is detected through detection that the precipitation and soil moisture data exceed the preset precipitation and soil moisture thresholds, an early warning message is issued to indicate that the flood-prone landslide site has a flood and landslide risk.
[0031] In a second aspect, the present application provides a scenic area monitoring device, comprising:
[0032] The plan selection module is used to select the corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area;
[0033] A plan output module, configured to output the target security plan so as to set up and / or check various IoT devices corresponding to the target security plan in the target scenic area;
[0034] The safety control module is used to receive the monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data.
[0035] Furthermore, it also includes:
[0036] A plan storage module, configured to receive and store a plurality of security plans for the target scenic area;
[0037] Among them, the security plan is used to store the correspondence between the various scene feature combinations, environmental features and Internet of Things device combinations of the target scenic area; the scene feature combination contains multiple scene features, and the Internet of Things device contains multiple Internet of Things devices and the layout location of each of the Internet of Things devices.
[0038] Furthermore, the multi-scene features include: at least two categories of people flow monitoring areas, amusement facilities, cultural assets, flammable places and flood-prone landslide sites in the target scenic area.
[0039] Furthermore, the various IoT devices corresponding to the target security plan include: infrared sensors installed in the crowd monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and at least two of precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
[0040] Furthermore, the security control module includes:
[0041] A monitoring unit, configured to receive monitoring data collected by each of the IoT devices in real time;
[0042] A display unit, used to send the monitoring data collected by each of the IoT devices to a display screen in real time for visual display;
[0043] The early warning unit is used to determine whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, an early warning information for the target monitoring data is issued.
[0044] In a third aspect, the present application provides an electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the scenic area monitoring method when executing the program.
[0045] In a fourth aspect, the present application provides a computer-readable storage medium having a computer program stored thereon, which implements the scenic area monitoring method when executed by a processor.
[0046] It can be seen from the above technical solution that the present application provides a scenic area monitoring method and device, the method comprising: based on the current multi-scene characteristics and environmental characteristics of the target scenic area, selecting a corresponding target security plan from various preset security plans; outputting the target security plan to set up and / or check the various Internet of Things devices corresponding to the target security plan in the target scenic area; receiving the monitoring data collected by each of the Internet of Things devices in real time to perform safety control on the target scenic area based on the monitoring data, selecting a corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area, and outputting the target security plan to set up and / or check the corresponding device in the target scenic area. The various IoT devices corresponding to the target security plan can achieve efficient and safe protection preparations for the scenic area through personalized IoT device configuration and deployment when the scenic area is in different environments and when adding or deleting scenes, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and IoT device layout; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic area based on the monitoring data, it can effectively achieve the comprehensiveness and effectiveness of security control for scenic areas involving multiple scenarios, and can effectively improve the reusability of security plans, thereby effectively improving the safety and reliability of scenic area operations, and improving the user experience of scenic area staff and tourists. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0048] Figure 1 This is a schematic diagram of the relationship between the scenic area monitoring device in the embodiment of the present application and each Internet of Things device, client device and display screen.
[0049] Figure 2 This is a first flow chart of the scenic area monitoring method in the embodiment of the present application.
[0050] Figure 3 This is a second flow chart of the scenic area monitoring method in the embodiment of the present application.
[0051] Figure 4 This is a third flow chart of the scenic area monitoring method in the embodiment of the present application.
[0052] Figure 5 This is a schematic diagram of the first structure of the scenic area monitoring device in the embodiment of the present application.
[0053] Figure 6 This is a second structural diagram of the scenic area monitoring device in the embodiment of the present application.
[0054] Figure 7 It is a structural diagram of the safety control module in the scenic area monitoring device in the embodiment of the present application.
[0055] Figure 8 This is a functional architecture diagram of the scenic area Internet of Things security protection system provided by the application example of this application.
[0056] Figure 9 It is a structural diagram of an electronic device in an embodiment of the present application. DETAILED DESCRIPTION
[0057] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0058] In the existing scenic area monitoring method, the setting of detection equipment is relatively simple. Even if the staff realizes that it is necessary to add detection equipment suitable for the scenic area environment in multiple scenarios, they can only rely on manual experience to deploy the equipment. However, this manual setting method not only has low deployment efficiency and poor applicability, but is also difficult to reuse. Therefore, it cannot simultaneously meet the security comprehensiveness, reliability and efficiency requirements of the scenic area security control. The embodiment of the present application provides a scenic area monitoring method, which selects a corresponding target security plan from each preset security plan based on the current multi-scenario characteristics and environmental characteristics of the target scenic area; outputs the target security plan to set and / or check each IoT device corresponding to the target security plan in the target scenic area; receives the monitoring data collected by each IoT device in real time to perform security control on the target scenic area based on the monitoring data, and selects the corresponding target security plan from each preset security plan based on the current multi-scenario characteristics and environmental characteristics of the target scenic area, and outputs the target security plan. The target security plan is to set up and / or check the various IoT devices corresponding to the target security plan in the target scenic area. When the scenic area is in different environments and when scenes are added or deleted, it can achieve efficient and safe protection preparation for the scenic area through personalized IoT device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and IoT device layout; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic area based on the monitoring data, it can effectively achieve the comprehensiveness and effectiveness of security control for scenic areas involving multiple scenarios, and can effectively improve the reusability of security plans, thereby effectively improving the safety and reliability of scenic area operations, and improving the user experience of scenic area staff and tourists.
[0059] Based on the above content, the present application also provides a scenic area monitoring device for implementing the scenic area monitoring method provided in one or more embodiments of the present application. The scenic area monitoring device can be a server, see Figure 1The scenic area monitoring device can communicate and connect with each client device in sequence by itself or through a third-party server, etc. The scenic area monitoring device can receive the scenic area monitoring instruction sent by the client device, and select the corresponding target security plan from the preset security plans according to the current multi-scene characteristics and environmental characteristics of the target scenic area specified by the scenic area monitoring instruction; output the target security plan to set up and / or check the various IoT devices corresponding to the target security plan in the target scenic area; at the same time, the scenic area monitoring device can also communicate and connect with each IoT device, receive the monitoring data collected by each IoT device in real time, and perform safety control on the target scenic area based on the monitoring data; in addition, the scenic area monitoring device can also communicate and connect with the display screen set in the security room, etc., to send the monitoring data and warning information collected by each IoT device to the display screen for display, so that all data can be uploaded in real time and visually managed, and presented to the scenic area security personnel on duty, thereby building a solid line of defense for scenic area safety warning.
[0060] In another practical application scenario, the scenic area monitoring portion of the aforementioned scenic area monitoring device can be executed in a server such as described above, or all operations can be completed in the client device. The specific selection can be based on the processing capabilities of the user terminal device and the limitations of the user's usage scenario. This application is not limited to this. If all operations are completed in the user terminal device, the user terminal device may also include a processor for specific processing of scenic area monitoring.
[0061] It is understood that the client device may include any mobile device capable of hosting an application, such as a smartphone, a tablet electronic device, a network set-top box, a portable computer, a personal digital assistant (PDA), a vehicle-mounted device, a smart wearable device, etc. The smart wearable device may include smart glasses, a smart watch, a smart bracelet, etc.
[0062] The client device may include a communication module (i.e., a communication unit) that can establish a communication connection with a remote server to implement data transmission with the server. The server may include a server on the task scheduling center side, and in other implementation scenarios, may also include a server on an intermediate platform, such as a server on a third-party server platform that has a communication link with the task scheduling center server. The server may include a single computer device, a server cluster consisting of multiple servers, or a server structure of a distributed device.
[0063] The server and the mobile terminal may communicate using any suitable network protocol, including network protocols that have not yet been developed as of the filing date of this application. Examples of such network protocols include TCP / IP, UDP / IP, HTTP, and HTTPS. Furthermore, examples of such network protocols include RPC (Remote Procedure Call Protocol) and REST (Representational State Transfer) protocols, which are used on top of the aforementioned protocols.
[0064] In one or more embodiments of the present application, radio frequency identification (RFID) technology: a non-contact automatic identification technology, which uses radio frequency signals to achieve contactless information transmission through spatial coupling (alternating magnetic field or electromagnetic field) and achieves the purpose of identification through the transmitted information, automatically identifying the target object, and the identification work does not require human intervention, and can work in various harsh environments.
[0065] In one or more embodiments of the present application, sensor recognition technology: that is, using various sensors to identify, compare, classify and judge the collected characteristic information, which includes various physical quantities, chemical quantities or biological quantities, such as pressure, vibration, sound, smoke, water immersion, temperature, humidity, light intensity, radiation intensity, etc.
[0066] In one or more embodiments of the present application, satellite positioning technology: through a satellite system composed of dozens of satellites covering the entire world, it is ensured that at any time, any point on the earth can observe 4 satellites at the same time, thereby ensuring that the satellite can collect the longitude and latitude and altitude of the observation point, realizing navigation, positioning, timing and other functions, and has the advantages of high precision, high efficiency and low cost.
[0067] The details are described in detail through the following embodiments and application examples.
[0068] In order to achieve real-time monitoring of scenic spots in multiple scenarios and improve the personalization and reusability of monitoring, this application provides an embodiment of a scenic spot monitoring method, see Figure 2 The scenic area monitoring method executed by the scenic area monitoring device specifically includes the following contents:
[0069] Step 100: Based on the current multi-scene characteristics and environmental characteristics of the target scenic area, a corresponding target security plan is selected from various preset security plans.
[0070] In step 100, the scenic area monitoring device can receive a scenic area monitoring instruction sent by a client device, wherein the scenic area monitoring instruction can include the current multi-scene characteristics and environmental characteristics of the target scenic area, and the current multi-scene characteristics and environmental characteristics of the target scenic area can be pre-selected or set by the staff of the target scenic area. Then, the scenic area monitoring device can select a security plan suitable for the current multi-scene characteristics and environmental characteristics of the target scenic area from various security plans pre-stored in a local or accessible database as the target security plan.
[0071] Step 200: Output the target security plan to set up and / or check each IoT device corresponding to the target security plan in the target scenic area.
[0072] In step 200, the scenic area monitoring device may transmit the target security plan to the client device that issued the scenic area monitoring command, so that scenic area staff can set up and / or verify the IoT devices corresponding to the target security plan within the target scenic area according to the target security plan. Furthermore, the scenic area monitoring device may transmit the target security plan to a preset display screen for display.
[0073] It can be understood that the setting and / or inspection of each IoT device corresponding to the target security plan means that for the IoT devices that have been set up at the corresponding location, the staff of the target scenic area can perform quality inspection, maintenance or replacement and other inspection operations on them, and for the IoT devices that have not yet been set up at the corresponding location, the staff of the target scenic area can deploy them.
[0074] Step 300: Receive the monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data.
[0075] Understandably, once an alert is triggered, a swift and efficient response is the best way to minimize losses. Staff can use the sensor location data recorded by the configuration module to determine the specific location of the danger or alarm, and then conduct dispatch and command operations. The location deployment and network configuration plans for sensors and IoT devices within the scenic area, depending on the season and work requirements, will be stored as scenic area security plans for staff to select from, ensuring high reusability and continuous iteration to better address security and early warning needs in different situations.
[0076] As can be seen from the above description, the scenic area monitoring method provided in the embodiment of the present application selects a corresponding target security plan from various preset security plans based on the current multi-scenario characteristics and environmental characteristics of the target scenic area, and outputs the target security plan to set and / or check the various IoT devices corresponding to the target security plan in the target scenic area. When the scenic area is in different environments, and when adding or deleting scenes, it can achieve efficient and safe protection preparations for the scenic area through personalized IoT device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and IoT device layout; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic area based on the monitoring data, it can effectively achieve the comprehensiveness and effectiveness of security control for scenic areas involving multiple scenarios, and can effectively improve the reusability of security plans, thereby effectively improving the safety and reliability of scenic area operations, and improving the user experience of scenic area staff and tourists.
[0077] In order to further improve the efficiency and reliability of deploying personalized security plans, an embodiment of the scenic area monitoring method provided in this application is provided. Figure 3 The scenic area monitoring method further includes the following contents before step 100:
[0078] Step 010: Receive and store multiple security plans for the target scenic area; wherein the security plans are used to store the correspondence between each scene feature combination, environmental feature and IoT device combination of the target scenic area; the scene feature combination includes multiple scene features, and the IoT device includes multiple IoT devices and the layout location of each IoT device.
[0079] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can effectively improve the efficiency and reliability of deploying personalized security plans by setting the security plan to store the correspondence between each scene feature combination, environmental characteristics and Internet of Things device combination of the target scenic area. It can also effectively improve the convenience and efficiency of staff when deploying scenic area security according to the security plan, thereby effectively saving the time cost of deployment and improving the user experience of scenic area staff.
[0080] In order to further improve the applicability and comprehensiveness of the scenic area monitoring method, in one embodiment of the scenic area monitoring method provided in this application, the multi-scene features in the scenic area monitoring method specifically include the following:
[0081] At least two of the following categories in the target scenic area: crowd flow monitoring areas, amusement facilities, cultural assets, flammable places, and flood-prone landslide sites.
[0082] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can effectively improve the pertinence and personalization of the selected target security plan by setting multi-scene features to at least two categories of crowd monitoring areas, amusement facilities, cultural assets, flammable places and flood-prone landslide sites in the target scenic area, and can further improve the applicability and comprehensiveness of the scenic area monitoring method, and thus can achieve efficient and safe protection preparations for the scenic area through personalized Internet of Things device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and Internet of Things device layout.
[0083] In order to further improve the applicability and comprehensiveness of the scenic area monitoring method, in one embodiment of the scenic area monitoring method provided in this application, the environmental characteristics in the scenic area monitoring method specifically include the following:
[0084] The target scenic spot currently has at least one of the season, ambient temperature range, visitor flow limit requirement data and tour day type; wherein the tour day type includes: peak season or off-season, and also includes: holidays or non-holidays.
[0085] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can further improve the environmental applicability and personalization of the selected target security plan by setting the environmental characteristics to at least one of the season, ambient temperature range, tourist flow limit requirement data and tour day type, and thus can achieve efficient and safe protection preparation for the scenic area through personalized IoT device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and IoT device layout.
[0086] In order to further improve the comprehensiveness, effectiveness, and reliability of IoT device deployment in scenic areas, in one embodiment of a scenic area monitoring method provided in this application, each IoT device corresponding to a target security plan in the scenic area monitoring method specifically includes the following:
[0087] At least two of the following: infrared sensors installed in the pedestrian flow monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
[0088] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can effectively improve the comprehensiveness, effectiveness and reliability of the deployment of Internet of Things equipment in the scenic area by installing at least two of the infrared sensors in the crowd monitoring area, the GPS positioning devices in the amusement facilities, the infrared sensing alarm devices in the cultural assets, the smoke and temperature sensors in the flammable places, and the precipitation sensors and soil moisture sensors in the flood-prone and landslide-prone areas.
[0089] In order to further improve the reliability and efficiency of the safety control of the target scenic area, an embodiment of the scenic area monitoring method provided in this application is provided. Figure 4 , step 300 in the scenic area monitoring method specifically includes the following contents:
[0090] Step 310: Receive monitoring data collected by each of the IoT devices in real time;
[0091] Step 320: Sending the monitoring data collected by each of the IoT devices to a display screen in real time for visual display;
[0092] Step 330: Determine whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, issue an early warning message for the target monitoring data.
[0093] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application sends the monitoring data collected by each of the IoT devices to a display screen in real time for visual display; and determines whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, an early warning information for the target monitoring data is issued, which can effectively improve the reliability and efficiency of security control of the target scenic area.
[0094] In order to further improve the reliability and effectiveness of warning of overload in a crowd monitoring area of a scenic spot, in one embodiment of a scenic spot monitoring method provided in this application, step 330 of the scenic spot monitoring method specifically includes the following:
[0095] Step 331: If an infrared sensor is provided in the pedestrian flow monitoring area, infrared data collected by the infrared sensor is received in real time. If it is detected that the infrared data exceeds the pedestrian flow threshold corresponding to the pedestrian flow monitoring area, an early warning message is issued to indicate that the pedestrian flow monitoring area is overloaded.
[0096] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can further improve the reliability, efficiency and effectiveness of the warning of overload of people in the crowd monitoring area in the scenic area by issuing a warning information for displaying that the crowd monitoring area is overloaded if it is detected that the infrared data exceeds the crowd threshold corresponding to the crowd monitoring area.
[0097] In order to further improve the reliability and effectiveness of early warning of abnormal operation of amusement facilities in a scenic area, in one embodiment of a scenic area monitoring method provided in this application, step 330 of the scenic area monitoring method specifically includes the following contents:
[0098] Step 332: If a GPS positioning device is installed in the amusement facility, the positioning data collected by the GPS positioning device is received in real time. If it is detected that the position displayed by the positioning data exceeds the fixed area corresponding to the GPS positioning device, an early warning message is issued to indicate that the amusement facility is operating abnormally.
[0099] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can further improve the reliability, efficiency and effectiveness of the warning of abnormal operation of amusement facilities in the scenic area by issuing a warning message for displaying abnormal operation of the amusement facilities if it is detected that the location displayed by the positioning data exceeds the fixed area range corresponding to the GPS positioning device.
[0100] In order to further improve the reliability and effectiveness of early warning of the risk of theft of cultural assets in scenic spots, in one embodiment of the scenic spot monitoring method provided in this application, step 330 of the scenic spot monitoring method specifically includes the following contents:
[0101] Step 333: If an infrared sensing alarm device is installed at the cultural asset, infrared sensing data collected by the infrared sensing alarm device is received in real time. If it is detected that the infrared sensing data is alarm data, an early warning message is issued to indicate that the cultural asset is at risk of being stolen.
[0102] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can further improve the reliability, efficiency and effectiveness of the warning of the risk of theft of cultural assets in the scenic area by issuing early warning information to show that the cultural assets are at risk of being stolen if it is detected that the infrared sensing data is alarm data.
[0103] In order to further improve the reliability and effectiveness of early warning of fire risks in flammable places in scenic areas, in one embodiment of a scenic area monitoring method provided in this application, step 330 in the scenic area monitoring method specifically includes the following:
[0104] Step 334: If smoke and temperature sensors are installed in the flammable place, smoke and temperature data collected by the smoke and temperature sensors are received in real time. If it is detected that the smoke and temperature data exceed the preset smoke and temperature thresholds, a warning message is issued to indicate that there is a fire risk in the flammable place.
[0105] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application can further improve the reliability, efficiency and effectiveness of the warning of the fire risk in the flammable places in the scenic area by issuing a warning information for indicating that the flammable place has a fire risk if it is detected that the smoke and temperature data exceed the preset smoke and temperature thresholds.
[0106] In order to further improve the reliability and effectiveness of early warning of flood and landslide risks in flood-prone areas in scenic areas, in one embodiment of a scenic area monitoring method provided in this application, step 330 of the scenic area monitoring method specifically includes the following:
[0107] Step 335: If a precipitation sensor and a soil moisture sensor are installed at the flood-prone site, precipitation and soil moisture data collected by the precipitation sensor and the soil moisture sensor are received in real time. If it is detected through detection that the precipitation and soil moisture data exceed preset precipitation and soil moisture thresholds, a warning message is issued to indicate that the flood-prone site has a flood and landslide risk.
[0108] From the above description, it can be seen that the scenic area monitoring method provided in the embodiment of the present application, by issuing a warning information for indicating that the flood and landslide-prone site has a flood and landslide risk if it is detected that the precipitation and soil moisture data exceed the preset precipitation and soil moisture thresholds, can further improve the reliability, efficiency and effectiveness of the warning of flood and landslide risks in flood and landslide-prone sites in the scenic area.
[0109] From the software level, in order to achieve real-time monitoring of scenic spots in multiple scenarios and improve the personalization and reusability of monitoring, the present application provides an embodiment of a scenic spot monitoring device for executing all or part of the contents of the scenic spot monitoring method, see Figure 5 The scenic area monitoring device specifically includes the following contents:
[0110] The plan selection module 10 is used to select a corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area;
[0111] The plan output module 20 is used to output the target security plan to set up and / or check each IoT device corresponding to the target security plan in the target scenic area;
[0112] The safety control module 30 is used to receive the monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data.
[0113] The embodiment of the scenic area monitoring device provided in this application can be specifically used to execute the processing flow of the embodiment of the scenic area monitoring method in the above embodiment. Its functions are not described in detail here, and reference can be made to the detailed description of the above method embodiment.
[0114] As can be seen from the above description, the scenic area monitoring device provided in the embodiment of the present application selects a corresponding target security plan from various preset security plans based on the current multi-scenario characteristics and environmental characteristics of the target scenic area, and outputs the target security plan to set and / or check the various IoT devices corresponding to the target security plan in the target scenic area. When the scenic area is in different environments and when scenes are added or deleted, efficient and safe protection preparations for the scenic area can be achieved through personalized IoT device configuration and deployment, and the efficiency and reliability of the scenic area monitoring plan and IoT device layout can be effectively improved; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic area based on the monitoring data, the comprehensiveness and effectiveness of security control for scenic areas involving multiple scenarios can be effectively achieved, and the reusability of security plans can be effectively improved, thereby effectively improving the safety and reliability of scenic area operations and improving the user experience of scenic area staff and tourists.
[0115] In order to further improve the efficiency and reliability of deploying personalized security plans, an embodiment of the scenic area monitoring device provided in this application is provided. Figure 6 The scenic area monitoring device further specifically includes the following contents:
[0116] The plan storage module 01 is used to receive and store multiple security plans for the target scenic area; wherein, the security plan is used to store the correspondence between each scene feature combination, environmental feature and Internet of Things device combination of the target scenic area; the scene feature combination includes multiple scene features, and the Internet of Things device includes multiple Internet of Things devices and the layout location of each of the Internet of Things devices.
[0117] From the above description, it can be seen that the scenic area monitoring device provided in the embodiment of the present application can effectively improve the efficiency and reliability of deploying personalized security plans by setting the security plan to store the correspondence between each scene feature combination, environmental characteristics and Internet of Things device combination of the target scenic area. It can also effectively improve the convenience and efficiency of staff when deploying scenic area security according to the security plan, thereby effectively saving the time cost of deployment and improving the user experience of scenic area staff.
[0118] In order to further improve the applicability and comprehensiveness of the scenic area monitoring method, in one embodiment of the scenic area monitoring device provided in this application, the multi-scene features in the scenic area monitoring device specifically include the following:
[0119] At least two of the following categories in the target scenic area: crowd flow monitoring areas, amusement facilities, cultural assets, flammable places, and flood-prone landslide sites.
[0120] From the above description, it can be seen that the scenic area monitoring device provided in the embodiment of the present application can effectively improve the pertinence and personalization of the selected target security plan by setting the multi-scene features to at least two categories of crowd monitoring areas, amusement facilities, cultural assets, flammable places and flood-prone landslide sites in the target scenic area, and can further improve the applicability and comprehensiveness of the scenic area monitoring method, and thus can achieve efficient and safe protection preparations for the scenic area through personalized Internet of Things device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic area monitoring plan and Internet of Things device layout.
[0121] In order to further improve the comprehensiveness, effectiveness, and reliability of IoT device deployment in scenic areas, in one embodiment of a scenic area monitoring device provided in this application, each IoT device corresponding to a target security plan in the scenic area monitoring device specifically includes the following:
[0122] At least two of the following: infrared sensors installed in the pedestrian flow monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
[0123] From the above description, it can be seen that the scenic area monitoring device provided in the embodiment of the present application can effectively improve the comprehensiveness, effectiveness and reliability of the deployment of Internet of Things equipment in the scenic area by means of at least two of the infrared sensors set in the crowd monitoring area, the GPS positioning device set in the amusement facility, the infrared sensing alarm device set at the cultural asset, the smoke and temperature sensors set in the flammable place, and the precipitation sensor and soil moisture sensor set in the flood-prone landslide site.
[0124] In order to further improve the reliability and efficiency of security control of the target scenic area, an embodiment of the scenic area monitoring device provided in this application is provided. Figure 7 The security control module 30 in the scenic area monitoring device specifically includes the following contents:
[0125] The monitoring unit 31 is used to receive the monitoring data collected by each of the IoT devices in real time.
[0126] The display unit 32 is used to send the monitoring data collected by each of the IoT devices to a display screen in real time for visual display.
[0127] The early warning unit 33 is used to determine whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, it issues an early warning message for the target monitoring data.
[0128] From the above description, it can be seen that the scenic area monitoring device provided in the embodiment of the present application sends the monitoring data collected by each of the IoT devices to a display screen in real time for visual display; and determines whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, it issues early warning information for the target monitoring data, which can effectively improve the reliability and efficiency of security control of the target scenic area.
[0129] In order to further illustrate this solution, the application example of this application provides a scenic area monitoring method, which aims to provide a technical solution for an Internet of Things security system based on a configurable network layer. It is divided into three modules: a scenic area Internet of Things configuration module, a real-time online monitoring module, and an alarm linkage command module.
[0130] These correspond to the three layers of the IoT architecture: the perception layer, the network layer, and the application layer. The perception layer primarily comprises common sensor nodes that make up the wireless sensor network; the network layer primarily comprises network communication infrastructure, including mobile communication networks and the Internet; and the application layer encompasses various IoT applications in real-world scenarios.
[0131] Most major scenic area alarm systems use wired sensor networks. This approach consumes a lot of materials, is complex to construct and maintain, and has poor scalability. Furthermore, the wiring is prone to aging, corrosion, and wear, resulting in a high failure rate and difficulty in troubleshooting and repairing. Traditional regional and centralized alarm systems often use multi-wire and bus-based connections, meaning that detectors, alarms, and controllers are connected by two or more cables, resulting in high installation costs. Furthermore, different scenic areas have different security warning requirements for different areas: forests require fire warnings, slopes require landslide warnings, and recreational facilities require anti-theft warnings. Configuring different types of wireless sensors based on the needs of different locations is a more scientific and efficient protection solution. In this market demand environment, the application example of this application provides a configurable IoT security system based on the network layer that can effectively address the personalized security warning needs of different scenic area staff. This not only offers significant cost advantages for high-reuse scenarios, but also allows for targeted warning deployment for different areas of the scenic area. Furthermore, it allows for continuous iteration of the deployment plan within the scenic area based on the service characteristics of different seasons and time periods, thereby improving the safety and protection level of the scenic area.
[0132] Network engineers needed to design a network-layer configuration model for all IoT sensors within the scenic area. This model needed to accommodate both internet and private intranet environments. Front-end and back-end technical developers were tasked with developing a visual, real-time sensor monitoring and management module, as well as an alarm linkage and command module based on security plan management.
[0133] The main difficulties in this process are: on the one hand, building a model for the network layer configuration of IoT sensors, which requires considering the information transmission rate and power consumption of sensors under different network conditions and providing a scientific and effective configuration plan; on the other hand, the management of security plans and alarm linkage command require the guidance of professional public safety personnel.
[0134] Based on this, see Figure 8 The application example of this application aims to provide a scenic area monitoring method implemented by applying the scenic area Internet of Things security protection system. It is a technical solution based on the configurable Internet of Things security system at the network layer, which is divided into three modules: scenic area Internet of Things configuration module, real-time online monitoring module and alarm linkage command module.
[0135] 1. Scenic Area IoT Configuration Module
[0136] When configuring the network layer, wireless networks can support intranets, private networks, and the internet. The use of intranets and private networks can effectively prevent remote hacker attacks, while the internet can enhance human-computer interaction and enable richer communication between IoT devices and people.
[0137] When deploying sensor devices, the deployment location, sensor parameters, and real-time sensor sensing data are all registered and managed online to facilitate device management and data visualization application presentation.
[0138] 2. Real-time online monitoring module
[0139] Real-time data monitoring in different scenarios is an important fulcrum for scenic area safety warning, which is mainly divided into three aspects:
[0140] 1. Infrared sensors monitor crowd flow and control crowd density to address safety risks associated with holiday crowds in scenic spots. The principle is that people passing through the infrared sensing area interrupt or block infrared radiation, causing a change in resistance. Alternatively, the number of people present can be determined by detecting specific infrared radiation emitted by people within a range of approximately 10 meters. A monitoring device consisting of two rows of parallel infrared sensors can measure the number of people entering or exiting a crowd. This technology overcomes the drawbacks of crowd monitoring systems based on image processing, such as blind spots, complex installation, and high network consumption.
[0141] 2. Install GPS positioning devices on amusement facilities to record and upload their coordinates to the server in real time, and equip cultural relics and other cultural assets in the scenic area with infrared sensing alarm devices to implement anti-theft monitoring.
[0142] 3. Deploy smoke and temperature sensors in flammable areas such as forests to monitor fire conditions; deploy precipitation sensors in flood-prone areas such as streams and mountains to monitor landslides.
[0143] All data are uploaded and visually managed in real time, and presented to the scenic area security personnel on duty, building a solid line of defense for scenic area safety warnings.
[0144] 3. Alarm linkage command module
[0145] Once an alert is triggered, an agile and efficient response is the best way to minimize losses. Staff can use the sensor location data recorded by the configuration module to determine the specific location of the danger or alarm, and then conduct dispatch and command work. The location deployment and network configuration plans for sensors and IoT devices within the scenic area, depending on the season and work requirements, will be stored as scenic area security plans for staff to choose from, achieving high reusability and continuous iteration to better address security and early warning needs in different situations.
[0146] In summary, the core of this technical solution lies in the multi-scenario application of IoT technology for scenic area security warnings. Through personalized IoT device configuration and deployment, staff can achieve efficient and safe protection preparations. Furthermore, by backing up deployment plans, they can rationally select different security plans at different times and in different scenarios to meet more personalized needs. Ultimately, this system enables staff to scientifically manage IoT devices and scenic area security, ensuring the safety of tourists and property within the scenic area, as well as the safety and comfort of scenic area facilities.
[0147] Based on this, the core aspects of this application example are threefold: a real-time online monitoring module, a scenic area IoT configuration module, and an alarm linkage command module, corresponding to the three layers of the IoT architecture: the perception layer, the network layer, and the application layer. The perception layer primarily comprises common sensor nodes that make up the wireless sensor network; the network layer primarily comprises network communication infrastructure, including mobile communication networks and the internet; and the application layer encompasses various IoT application scenarios. Specifically, the application of IoT technology in multiple scenarios for scenic area security warnings allows staff to achieve efficient and secure protection through personalized IoT device configuration and deployment. Furthermore, by backing up deployment plans, different security plans can be appropriately selected at different times and in different scenarios to meet more personalized scenic area warning needs.
[0148] The application example technology of this application can realize the network configuration of the Internet of Things early warning system in different scenarios, so as to meet the different requirements of customers for the security system under different network conditions and usage scenarios. At the same time, the monitoring data of the Internet of Things devices can be visualized in real time. The staff can efficiently and conveniently complete the three aspects of tourist safety monitoring, asset protection, and disaster early warning in the scenic area.
[0149] From a hardware perspective, in order to achieve real-time monitoring of scenic spots in multiple scenarios and improve the personalization and reusability of monitoring, the present application provides an embodiment of an electronic device for implementing all or part of the contents of the scenic spot monitoring method. The electronic device specifically includes the following contents:
[0150] Figure 9 Schematic block diagram of the system structure of the electronic device 9600 according to an embodiment of the present application. Figure 9 As shown, the electronic device 9600 may include a central processing unit 9100 and a memory 9140; the memory 9140 is coupled to the central processing unit 9100. It is worth noting that the Figure 9 is exemplary; other types of structures may also be used to supplement or replace this structure to implement telecommunication functions or other functions.
[0151] In one embodiment, the scenic area monitoring function can be integrated into the central processing unit. The central processing unit can be configured to perform the following control:
[0152] Step 100: Based on the current multi-scene characteristics and environmental characteristics of the target scenic area, a corresponding target security plan is selected from various preset security plans.
[0153] Step 200: Output the target security plan to set up and / or check each IoT device corresponding to the target security plan in the target scenic area.
[0154] Step 300: Receive the monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data.
[0155] As can be seen from the above description, the electronic device provided in the embodiment of the present application selects a corresponding target security plan from various preset security plans based on the current multi-scenario characteristics and environmental characteristics of the target scenic spot, and outputs the target security plan to set and / or check the various IoT devices corresponding to the target security plan in the target scenic spot. When the scenic spot is in different environments, and when adding or deleting scenes, it can achieve efficient and safe protection preparations for the scenic spot through personalized IoT device configuration and deployment, and can effectively improve the efficiency and reliability of the scenic spot monitoring plan and IoT device layout; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic spot based on the monitoring data, it can effectively achieve the comprehensiveness and effectiveness of security control for scenic spots involving multiple scenarios, and can effectively improve the reusability of security plans, thereby effectively improving the safety and reliability of scenic spot operations, and improving the user experience of scenic spot staff and tourists.
[0156] In another embodiment, the scenic area monitoring device can be configured separately from the central processor 9100. For example, the scenic area monitoring device can be configured as a chip connected to the central processor 9100, and the scenic area monitoring function is realized through the control of the central processor.
[0157] like Figure 9 As shown, the electronic device 9600 may further include: a communication module 9110, an input unit 9120, an audio processor 9130, a display 9160, and a power supply 9170. It is worth noting that the electronic device 9600 does not necessarily have to include Figure 9 In addition, the electronic device 9600 may also include all components shown in Figure 9 For components not shown, reference may be made to the prior art.
[0158] like Figure 9 As shown, the central processing unit 9100 is sometimes also referred to as a controller or operation control, and may include a microprocessor or other processor device and / or logic device. The central processing unit 9100 receives input and controls the operation of various components of the electronic device 9600.
[0159] Memory 9140 can be, for example, one or more of a cache, flash memory, hard drive, removable media, volatile memory, non-volatile memory, or other suitable devices. It can store the aforementioned failure-related information and also store programs that execute the relevant information. The CPU 9100 can execute the programs stored in memory 9140 to implement information storage or processing.
[0160] The input unit 9120 provides input to the central processing unit 9100. The input unit 9120 may be, for example, a keypad or touch input device. The power supply 9170 is used to provide power to the electronic device 9600. The display 9160 is used to display objects such as images and text. The display may be, for example, an LCD display, but is not limited thereto.
[0161] The memory 9140 may be a solid-state memory, such as a read-only memory (ROM), a random access memory (RAM), or a SIM card. Alternatively, it may be a memory that retains information even when power is off, can be selectively erased, and is provided with more data. Examples of such memory are sometimes referred to as EPROMs. The memory 9140 may also be some other type of device. The memory 9140 includes a buffer memory 9141 (sometimes referred to as a buffer). The memory 9140 may include an application / function storage unit 9142 for storing application programs and function programs or processes for executing the operation of the electronic device 9600 by the central processing unit 9100.
[0162] The memory 9140 may also include a data storage unit 9143 for storing data, such as contacts, digital data, pictures, sounds, and / or any other data used by the electronic device. The driver storage unit 9144 of the memory 9140 may include various driver programs for communication functions of the electronic device and / or for executing other functions of the electronic device (such as messaging applications, address book applications, etc.).
[0163] The communication module 9110 is a transmitter / receiver 9110 that transmits and receives signals via an antenna 9111. The communication module (transmitter / receiver) 9110 is coupled to the central processor 9100 to provide input signals and receive output signals, which may be the same as in a conventional mobile communication terminal.
[0164] Based on different communication technologies, multiple communication modules 9110 can be provided in the same electronic device, such as a cellular network module, a Bluetooth module, and / or a wireless local area network module. The communication module (transmitter / receiver) 9110 is also coupled to a speaker 9131 and a microphone 9132 via an audio processor 9130 to provide audio output via the speaker 9131 and receive audio input from the microphone 9132, thereby implementing common telecommunication functions. The audio processor 9130 may include any suitable buffer, decoder, amplifier, etc. Furthermore, the audio processor 9130 is also coupled to the central processing unit 9100, enabling local recording via the microphone 9132 and playback of stored audio via the speaker 9131.
[0165] The embodiments of the present application also provide a computer-readable storage medium capable of implementing all steps of the scenic area monitoring method in the above embodiments. The computer-readable storage medium stores a computer program. When the computer program is executed by a processor, all steps of the scenic area monitoring method in the above embodiments, where the execution subject is a server or a client, are implemented. For example, when the processor executes the computer program, the following steps are implemented:
[0166] Step 100: Based on the current multi-scene characteristics and environmental characteristics of the target scenic area, a corresponding target security plan is selected from various preset security plans.
[0167] Step 200: Output the target security plan to set up and / or check each IoT device corresponding to the target security plan in the target scenic area.
[0168] Step 300: Receive the monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data.
[0169] As can be seen from the above description, the computer-readable storage medium provided in the embodiment of the present application selects a corresponding target security plan from various preset security plans based on the current multi-scenario characteristics and environmental characteristics of the target scenic spot, and outputs the target security plan to set and / or check the various IoT devices corresponding to the target security plan in the target scenic spot. When the scenic spot is in different environments, and when adding or deleting scenes, efficient and safe protection preparations for the scenic spot can be achieved through personalized IoT device configuration and deployment, and the efficiency and reliability of the scenic spot monitoring plan and IoT device layout can be effectively improved; by receiving the monitoring data collected by each of the IoT devices in real time, and performing security control on the target scenic spot based on the monitoring data, the comprehensiveness and effectiveness of security control for scenic spots involving multiple scenarios can be effectively achieved, and the reusability of security plans can be effectively improved, thereby effectively improving the safety and reliability of scenic spot operations, and improving the user experience of scenic spot staff and tourists.
[0170] Those skilled in the art will appreciate that embodiments of the present invention may be provided as methods, apparatus, or computer program products. Thus, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0171] The present invention is described with reference to flowcharts and / or block diagrams of methods, devices (apparatus), and computer program products according to embodiments of the present invention. It should be understood that each process and / or block in the flowchart and / or block diagram, as well as a combination of processes and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.
[0172] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.
[0173] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.
[0174] Specific embodiments are used in the present invention to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only used to help understand the method of the present invention and its core ideas. At the same time, for those skilled in the art, according to the ideas of the present invention, there may be changes in the specific implementation methods and application scopes. In summary, the contents of this specification should not be understood as limiting the present invention.
Claims
1. A scenic area monitoring method, characterized in that: include: Based on the current multi-scene characteristics and environmental characteristics of the target scenic area, select the corresponding target security plan from the preset security plans; Outputting the target security plan to set up and / or check various IoT devices corresponding to the target security plan in the target scenic area; Receiving monitoring data collected by each of the IoT devices in real time to perform safety control on the target scenic spot based on the monitoring data; Outputting the target security plan to set up and / or check each IoT device corresponding to the target security plan in the target scenic area includes: sending the target security plan to a client device that issues a scenic area monitoring instruction, so that the staff of the scenic area sets up and / or checks each IoT device corresponding to the target security plan in the target scenic area according to the target security plan; The setting and / or checking of each IoT device corresponding to the target security plan refers to the target scenic area staff performing quality inspection, repair or replacement inspection operations on IoT devices that have been set up at the corresponding location, and the target scenic area staff deploying IoT devices that have not yet been set up at the corresponding location; the security plan is used to store the corresponding relationship between each scene feature combination, environmental feature and IoT device combination of the target scenic area; the scene feature combination includes multiple scene features, and the IoT device includes multiple IoT devices and the deployment location of each of the IoT devices; The multi-scene features include: at least two of the following categories: crowd flow monitoring areas, amusement facilities, cultural assets, flammable places, and flood-prone and landslide-prone areas in the target scenic area.
2. The scenic area monitoring method according to claim 1, characterized in that: Before selecting a corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area, the method further includes: Receive and store multiple security plans for the target scenic area.
3. The scenic area monitoring method according to claim 1, characterized in that: The environmental characteristics include: at least one of the current season of the target scenic spot, the ambient temperature range, the tourist flow limit requirement data, and the type of tour day; The types of tour days include: peak season or off-season, and also include: holidays or non-holidays.
4. The scenic area monitoring method according to claim 1, characterized in that: The various IoT devices corresponding to the target security plan include: infrared sensors installed in the crowd monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and at least two of precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
5. The scenic area monitoring method according to claim 4, characterized in that: The real-time reception of monitoring data collected by each of the IoT devices to perform safety control on the target scenic spot based on the monitoring data includes: Receive monitoring data collected by each of the IoT devices in real time; The monitoring data collected by each of the IoT devices is sent to a display screen in real time for visual display; Furthermore, it is determined whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, an early warning message for the target monitoring data is issued.
6. The scenic area monitoring method according to claim 5, characterized in that: The determining whether there is target monitoring data meeting the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, including: If an infrared sensor is installed in the pedestrian flow monitoring area, the infrared data collected by the infrared sensor is received in real time. If it is detected that the infrared data exceeds the pedestrian flow threshold corresponding to the pedestrian flow monitoring area, an early warning message is issued to indicate that the pedestrian flow monitoring area is overloaded.
7. The scenic area monitoring method according to claim 5, characterized in that: The determining whether there is target monitoring data meeting the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, including: If the amusement facility is provided with a GPS positioning device, the positioning data collected by the GPS positioning device is received in real time. If it is detected that the position displayed by the positioning data exceeds the fixed area range corresponding to the GPS positioning device, an early warning message is issued to indicate that the amusement facility is operating abnormally.
8. The scenic area monitoring method according to claim 5, characterized in that: The determining whether there is target monitoring data meeting the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, including: If an infrared sensing alarm device is installed at the cultural asset, the infrared sensing data collected by the infrared sensing alarm device will be received in real time. If it is detected that the infrared sensing data is alarm data, an early warning message will be issued to show that the cultural asset is at risk of being stolen.
9. The scenic area monitoring method according to claim 5, characterized in that: The determining whether there is target monitoring data meeting the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, including: If smoke and temperature sensors are installed in the flammable place, the smoke and temperature data collected by the smoke and temperature sensors are received in real time. If it is detected that the smoke and temperature data exceed the preset smoke and temperature thresholds, an early warning message is issued to indicate that there is a fire risk in the flammable place.
10. The scenic area monitoring method according to claim 5, characterized in that: The determining whether there is target monitoring data meeting the corresponding security conditions in the monitoring data collected by each of the IoT devices, and if so, issuing warning information for the target monitoring data, including: If a precipitation sensor and a soil moisture sensor are installed in the flood-prone landslide site, the precipitation and soil moisture data collected by the precipitation sensor and the soil moisture sensor are received in real time. If it is detected through detection that the precipitation and soil moisture data exceed the preset precipitation and soil moisture thresholds, an early warning message is issued to indicate that the flood-prone landslide site has a flood and landslide risk.
11. A scenic area monitoring device, characterized in that: include: The plan selection module is used to select the corresponding target security plan from various preset security plans based on the current multi-scene characteristics and environmental characteristics of the target scenic area; A plan output module, configured to output the target security plan so as to set up and / or check various IoT devices corresponding to the target security plan in the target scenic area; The plan output module is further configured to send the target security plan to the client device that issues the scenic area monitoring instruction, so that the scenic area staff can set up and / or check each IoT device corresponding to the target security plan in the target scenic area according to the target security plan; A safety control module, configured to receive monitoring data collected by each of the IoT devices in real time and perform safety control on the target scenic spot based on the monitoring data; Among them, the setting and / or checking of each IoT device corresponding to the target security plan means that for the IoT devices that have been set up at the corresponding locations, the staff of the target scenic area conduct quality inspection, maintenance or replacement inspection operations on them, and for the IoT devices that have not been set up at the corresponding locations, the staff of the target scenic area deploy them; the security plan is used to store the correspondence between each scene feature combination, environmental features and IoT device combination of the target scenic area; the scene feature combination contains multiple scene features, and the IoT device contains multiple IoT devices and the deployment location of each of the IoT devices; the multiple scene features include: at least two categories of crowd monitoring areas, amusement facilities, cultural assets, flammable places and flood-prone landslide sites in the target scenic area.
12. The scenic area monitoring device according to claim 11, characterized in that: Also includes: The plan storage module is used to receive and store multiple security plans for the target scenic area.
13. The scenic area monitoring device according to claim 11, characterized in that: The various IoT devices corresponding to the target security plan include: infrared sensors installed in the crowd monitoring area, GPS positioning devices installed in the amusement facilities, infrared sensing alarm devices installed at the cultural assets, smoke and temperature sensors installed in the flammable places, and at least two of precipitation sensors and soil moisture sensors installed in the flood-prone and landslide-prone areas.
14. The scenic area monitoring device according to claim 13, characterized in that: The security control module includes: A monitoring unit, configured to receive monitoring data collected by each of the IoT devices in real time; A display unit, used to send the monitoring data collected by each of the IoT devices to a display screen in real time for visual display; The early warning unit is used to determine whether there is target monitoring data that meets the corresponding security conditions in the monitoring data collected by each of the IoT devices. If so, an early warning information for the target monitoring data is issued.
15. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the scenic area monitoring method according to any one of claims 1 to 10 is implemented.
16. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the scenic area monitoring method according to any one of claims 1 to 10 is implemented.
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