WO2020015242A1 - 一种基于三维地图的视频应用和调度预警系统平台 - Google Patents
一种基于三维地图的视频应用和调度预警系统平台 Download PDFInfo
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Definitions
- the present invention relates to the field of big data technology, and in particular, to a video application and scheduling early warning system platform based on a three-dimensional map.
- the visual command center often used by the public security department can realize the dispatching of police forces and the delivery of tasks, which improves the response efficiency of the public security department when the police situation occurs, but it still cannot prevent the social situation caused by the police situation. Damage caused by economic benefits.
- the occurrence of the police situation usually involves the offender deploying the crime at the crime location and then committing the crime, and then the public security department intervenes after the relevant personnel report the alarm. As a result, the occurrence of the police situation will inevitably cause damage to social and economic benefits. Therefore, we urgently need a system platform that can provide early warning of crimes and reduce the occurrence of police situation on the social and economic benefits.
- the present invention provides a three-dimensional map-based police dispatch and early warning management system with high visualization, good scheduling effect, and early warning function.
- the invention discloses a three-dimensional map-based video application and dispatch early warning system platform, which includes: a three-dimensional map system, a video monitoring system, a personnel vehicle inspection system, a personnel vehicle inspection system, a personnel flow collection system, and an electronic fence early warning system; a three-dimensional map.
- the system is used to establish a three-dimensional map, and can be zoomed in, zoomed out, moved, and rotated in any direction within the three-dimensional map.
- the video surveillance system is used to video monitor a specified area and display the position information of the monitored area in three dimensions.
- personnel and vehicle inspection system which is used to monitor the inspection trajectories of personnel and vehicles, and display the corresponding inspection trajectories in a three-dimensional map
- personnel flow acquisition system which is used to collect personnel flow information in a specified area and perform statistical analysis
- electronic The fence early warning system is used to arm and monitor the alarm situation of the blacklisted personnel or the number of people in the designated area. If an alarm situation occurs, it will be reminded.
- the video surveillance system includes:
- Front-end monitoring equipment for real-time monitoring and shooting of specified areas and generating video information
- Monitoring display module for receiving video information and displaying it in real time
- the monitoring and control module is configured to display the position information of the front-end monitoring device on a three-dimensional map and control the front-end monitoring device.
- the personnel and vehicle inspection system includes: an inspection and positioning terminal configured to acquire positioning information of a person or a vehicle and used to receive inspection tasks; an inspection statistics module configured to statistically analyze personnel based on the positioning information and Vehicle inspection trajectory; inspection trajectory management module, which is used to view and retrieve personnel and vehicle inspection trajectories, and display them on a three-dimensional map; and inspection task management module, which is used to formulate inspection tasks and send them to the inspection and positioning terminal.
- the personnel flow collection system includes: a code detection device for collecting a mobile phone IMEI code and a mobile phone IMSI code in a designated area; and a personnel analysis module for collecting a mobile phone collected by the code detection device.
- the IMEI code and the mobile phone IMSI code are analyzed to obtain the corresponding personnel information, and the corresponding personnel icon is generated and displayed in the three-dimensional map; and the communication base station is used to provide a data network for the code detection device.
- the personnel information includes a residence period of the personnel, a length of time, a frequency of walking, and a frequency of occurrence with the personnel.
- the personnel analysis module performs collision analysis on the personnel information to obtain the motion trajectory of the corresponding person, the resident residence, the temporary residence, and the motion trajectory of the accompanying person.
- the electronic fence early warning system includes: a first fence module for setting a number of people early warning detection range and a number of people for early warning; and a number of people early warning module for acquiring the data collected by the code detection device.
- Mobile phone IMEI code and mobile phone IMSI code and analyze the statistics of mobile phone IMEI code or mobile phone IMSI code that fall into the detection range of the number of people.
- the second fence module For setting a warning detection range for personnel; and a personnel warning module for obtaining a mobile phone IMEI code and a mobile phone IMSI code collected by the code detection device, and the mobile phone IMEI code or mobile phone IMSI code of a preset blacklisted person Perform a comparison. If a matching result appears and falls within the range of personnel early warning detection, a personnel early warning will be issued.
- the electronic fence early warning system further includes an early warning information recording module for storing the number of people early warning and the person early warning and historical information can be consulted.
- the three-dimensional map-based video application and dispatch early warning system platform further includes: a public facility management system for monitoring the status of the public facility and displaying the location information of the public facility on the three-dimensional map.
- the three-dimensional map-based video application and dispatch early warning system platform further includes: a drone live broadcast system for managing drone cruise for video monitoring, and monitoring the position information and video monitoring of the drone. The information is displayed on a three-dimensional map.
- the advantages of the present invention that are different from the prior art are:
- the three-dimensional map-based video application and dispatch early warning system platform of the present invention is provided with a three-dimensional map system, video monitoring system, and electronic fence early warning system, and provides a visual and intuitive command and decision environment.
- FIG. 1 is a schematic structural diagram of a three-dimensional map-based video application and scheduling early warning system platform in an embodiment
- FIG. 2 is a schematic structural diagram of a video monitoring system in an embodiment
- FIG. 3 is a schematic structural diagram of a human vehicle inspection system in the embodiment
- FIG. 4 is a schematic structural diagram of a personnel flow collection system in the embodiment.
- FIG. 5 is a schematic structural diagram of an electronic fence early warning system according to an embodiment
- FIG. 6 is a schematic structural diagram of a drone live broadcast system in an embodiment
- FIG. 7 is a schematic structural diagram of a case management system in the embodiment.
- FIG. 8 is a schematic structural diagram of an emergency plan management system in the embodiment.
- FIG. 1 is a schematic structural diagram of a three-dimensional map-based video application and scheduling early warning system platform in an embodiment.
- the present invention provides a three-dimensional map-based video application and dispatch early warning system platform 100, which includes a three-dimensional map system 101, a video monitoring system 102, a personnel vehicle inspection system 103, a personnel flow collection system 104, and an electronic fence early warning system 105.
- the present invention also includes a database.
- the database is used to store data including all data information generated during operation of the present invention. At the same time, the database can add, delete, query and modify the stored data in the database. And so on.
- the three-dimensional map system 101 is mainly used to establish a three-dimensional map.
- the three-dimensional map is produced by positioning the shooting area.
- the accuracy of the positioning plan is accurate to the centimeter level, and the corresponding ground positioning signal transmission source is established according to the range of the positioning plan.
- shooting is performed by a drone.
- the drone and the ground positioning signal transmission source wirelessly determine the positioning information of the positioning plan.
- the drone takes at least five aerial photos of the same shooting area from multiple angles.
- Each aerial image is equipped with GPS accurate points.
- each aerial image is cut and stitched according to the actual latitude and longitude of the corresponding shooting area to form a modeling map. Repeat the previous steps to create a three-dimensional map.
- 3 modeling maps and finally import all the modeling maps into a geographic information system software such as Supermap, and generate a three-dimensional map through the three-dimensional GIS component of the geographic information system software.
- a geographic information system software such as Supermap
- the three-dimensional map is more closely related to the implemented site.
- Location information is more accurate and visual, and at the same time, The orientation may be arbitrarily enlarged, reduced, moved and rotated, so the user can view a geographical analysis of the actual traffic situation and easy to make more precise, effective command and dispatch.
- FIG. 2 is a schematic structural diagram of a video surveillance system in the embodiment.
- the video surveillance system 102 is configured to perform video surveillance on a designated area and display the location information of the surveillance area on a three-dimensional map.
- the video surveillance system 102 includes a front-end surveillance device 1021, a surveillance display module 1022, and a surveillance control module 1023.
- the front-end monitoring device 1021 may use a conventional surveillance camera.
- the number of front-end monitoring devices 1021 is at least one. It is mainly used for real-time monitoring and shooting of a specified area and generates video information. It also stores video information in a database.
- the front-end monitoring device 1021 may also use a surveillance camera with an infrared function. In this way, the video monitoring system 102 can be guaranteed to operate normally at night.
- the monitoring display module 1022 is used to receive video information and display it in real time. It is displayed through a window displayed in a three-dimensional map.
- the display mode can be divided into two types. One is a window that separately displays the screen of a front-end monitoring device 1021. The second is to display multiple monitoring pictures in a window, wherein the multiple monitoring pictures are displayed in turn by multiple front-end monitoring devices 1021.
- the monitoring and control module 1023 is used to display the position information of the front-end monitoring device 1021 on a three-dimensional map and control the front-end monitoring device 1021. At the same time, it is also used to control the monitoring display module 1022 to display the monitoring screen of the front-end monitoring device 1021 in real time. .
- the monitoring and control module 1023 can control the front-end monitoring device 1021 to control the front-end monitoring device 1021 to perform panning, tilting, and zooming. Specifically, the monitoring control module 1023 controls the front-end monitoring device 1021 through a control window.
- the control window There are control keys on the top, bottom, left, and right of the front-end monitoring device 1021 to control the swing, automatic swing, zoom, and other control keys.
- the monitoring control module 1023 displays the front-end monitoring device 1021 in the form of an icon on a three-dimensional map.
- the icon may be a camera-shaped icon, or of course, other shapes.
- the position of the icon is corresponding to the position of the corresponding front-end monitoring device 1021.
- the information is the same, that is, the latitude and longitude information of the camera shape on the three-dimensional map is the same as the actual latitude and longitude of the front-end monitoring device 1021.
- the monitoring screen corresponding to the front-end monitoring device 1021 is retrieved. Monitor the distribution of the area, and quickly call the monitoring screen of the front-end monitoring device 1021 that needs to view the monitoring situation.
- the video monitoring system 102 further includes a video recording module 1024.
- the video recording module 1024 is used to obtain video information in a database, and the video recording module 1024 is also used to view historical video information of the front-end monitoring device 1021. And playback for the corresponding historical video information or playback for a set time period.
- FIG. 3 is a schematic structural diagram of a human vehicle inspection system in the embodiment.
- the personnel vehicle inspection system 103 is used to monitor the inspection trajectories of personnel and vehicles, and displays the corresponding inspection trajectories on a three-dimensional map.
- the personnel vehicle inspection system 103 includes an inspection positioning terminal 1031, an inspection statistical module 1032, an inspection trajectory management module 1033, and an inspection. Task management module 1034.
- the inspection and positioning terminal 1031 is used to obtain the positioning information of a person or a vehicle, and is used to receive inspection tasks.
- the number of inspection and positioning terminals 1031 is at least one, and the inspection and positioning terminal 1031 is a smart terminal such as a mobile terminal or a mobile phone. It can be a pre-installed terminal installed on a vehicle, such as a vehicle-mounted multimedia system.
- the inspection and positioning terminal 1031 has a GPS module and a communication module, and uses the GPS module to obtain the positioning information of a person or a vehicle, and then uploads the positioning information to a database through the communication module.
- the inspection statistics module 1032 is used to statistically analyze the inspection trajectories of personnel and vehicles according to the positioning information.
- the inspection statistics module 1032 obtains the positioning information of the positioning information of people or vehicles on the database, performs statistical inspection of the inspection trajectories of personnel and vehicles, and patrols the inspection.
- the trajectory is displayed in a three-dimensional map. In this way, the corresponding personnel and vehicle inspection trends can be monitored in real time.
- Inspection trajectory management module 1033 is used to view and retrieve historical inspection trajectories of personnel and vehicles, and display them on a three-dimensional map.
- the viewing mode can be viewed and played back through the time bar.
- the time bar can be used to view personnel and vehicles.
- the position of the person and the vehicle on the corresponding inspection track is displayed as the position corresponding to the time.
- the inspection task management module 1034 is used to formulate an inspection task and send it to the inspection positioning terminal 1031.
- the inspection task may consist of one or more inspection points. Each inspection point is displayed on a three-dimensional map. After the inspection task is completed, it is sent to the inspection location.
- the inspection task content includes: executive information, task content information, and task time limit information.
- the sending method may be a short message or other communication interface to the inspection positioning terminal 1031 through the communication interface of the inspection positioning terminal 1031.
- the patrol task management module 1034 is also used to view the patrol task record, which includes the personnel information, task content information, and task dispatch time corresponding to each patrol task.
- the personnel vehicle inspection system 103 further includes an inspection feedback module 1035.
- the inspection feedback module 1035 is used to display the feedback information of the inspection positioning terminal 1031 corresponding to the assigned inspection task in a list form.
- the feedback information includes text Descriptions, photos, and short videos so that you can easily understand the detailed process that takes place during the inspection task.
- FIG. 4 is a schematic structural diagram of a personnel flow collection system in the embodiment.
- the personnel flow collection system 104 is used to collect personnel flow information in a designated area and perform statistical analysis.
- the personnel flow collection system 104 can obtain personnel information in a designated area, so that personnel in the area can be monitored.
- the personnel flow collection system 104 includes a code detection device 1041, a personnel analysis module 1042, and a communication base station 1043.
- the number of code detection devices 1041 is at least one, and is mainly used to collect mobile phone IMEI codes and mobile phone IMSI codes in a specified area, and also includes mobile phone IMEI codes and location information of mobile phone IMSI codes.
- the code detection device 1041 can use the conventional mobile phone code detection device 1041 on the market, such as the mobile phone code detection device of Beijing Xinmi'an Technology Co., Ltd.
- the IMSI code of the mobile phone is the international mobile user identification code, which is assigned internationally to uniquely identify a mobile user.
- the number is also the unique identification given to the mobile phone user during the operation of the mobile communication network. Therefore, once the IMSI of a mobile phone user is obtained, the unique identity of the mobile phone communication can be obtained.
- the current mobile phone IMEI code needs to be associated with The personal identification card is bound. Therefore, combining the mobile phone IMEI code and mobile phone IMSI code can determine the identity information of a person, and the code detection device 1041 can collect the mobile phone IMEI code and mobile phone IMSI code in a specified area.
- the personnel analysis module 1042 is used to analyze the mobile phone IMEI code and mobile phone IMSI code collected by the code detection device 1041 to obtain corresponding personnel information, and generate corresponding personnel icons to be displayed in a three-dimensional map. In this way, personnel can be analyzed and located. By analyzing the place and time of the mobile phone's IMEI code and mobile phone's IMSI code, information such as the residence period of the personnel, the length of time, the frequency of walking, and the frequency of the accompanying personnel's appearance are obtained. The above personnel information is displayed in a three-dimensional map in a visual manner, for example, in a graphical manner such as a heat map, a cluster, and a histogram. The personnel analysis module 1042 also performs collision analysis on the above-mentioned personnel information to obtain the motion trajectory of the corresponding person, the resident residence, the temporary residence, and the motion trajectory of the accompanying person.
- the communication base station 1043 is mainly used to provide a data network for the code detection device 1041. It can be a conventional integrated steel structure communication base station 1043 on the market. It can also be a wireless portable base station such as a wireless portable base station of the type NT747. The collected mobile phone IMEI code and mobile phone IMSI code information can be uploaded to the database through the communication base station 1043.
- FIG. 5 is a schematic structural diagram of an electronic fence early warning system in the embodiment.
- the electronic fence early warning system 105 is used for arming monitoring to monitor whether a blacklisted person or an excessive number of alarms occurs in a designated area, and to alert if an alarm occurs.
- the blacklisted personnel are corresponding personnel who need to be controlled.
- the excessive number of guards is mainly to monitor whether there are abnormal numbers in a designated area and a specified period of time, and to monitor the occurrence of warnings in the designated area, such as crowd gambling, drug transactions, drug abuse, multi-person brawls, and illegal immigration.
- the electronic fence early warning system 105 includes a first fence module 1051, a number of people early warning module 1052, a second fence module 1053, and a person early warning module 1054.
- the first fence module 1051 is used to set the number of people early warning detection range and the number of people to be warned.
- the first fence module 1051 sets the number of people early warning detection range on a three-dimensional map.
- the number of people early warning detection range is irregular or regular closed graphics.
- a fence module 1051 presets a pre-alert person value (that is, the number value of the mobile phone IMEI or the number value of the mobile phone IMSI code).
- the number of people early warning module 1052 is used to obtain the mobile phone IMEI code and mobile phone IMSI code collected by the code detection device 1041, and analyze and count the number of mobile phone IMEI codes or mobile phone IMSI codes that fall into the detection range of the people's early warning. If the mobile phone IMEI code or mobile phone IMSI If the number of codes exceeds the number of early warning people, an early warning alarm is issued.
- the early warning alarm of the number of people can be a graphic or a text message, and the early warning alarm of the number of people is displayed in a three-dimensional map to remind.
- the early warning alarm of the number of people includes the alarm time and the corresponding alarm. It describes the number of people in the early warning detection range and the number of people in the early warning detection range. In this way, users can quickly find the early warning location and respond in time.
- the number of people early warning module 1052 issues a number of people early warning alarm.
- a closed circle with a 300m radius is set in an empty and unoccupied area, and the number of people to be alerted is set to 1 person.
- the number of people The early warning module 1052 issues an early warning alarm for the number of people.
- the second fence module 1053 is used to set a warning detection range for personnel. Similarly, the second fence module 1053 sets a warning detection range for personnel on a three-dimensional map. The warning detection range for the personnel is irregular or regular closed graphics.
- the personnel early warning module 1054 is used to obtain the mobile phone IMEI code and mobile phone IMSI code collected by the code detection device 1041.
- the personnel early warning module 1054 uses the above mobile phone IMEI code and mobile phone IMSI code to preset the blacklisted person's mobile phone IMEI code or mobile phone.
- the IMSI codes are compared. If there is a matching result, and the corresponding mobile phone IMEI code and mobile phone IMSI code fall within the range of early warning detection of personnel, an early warning alarm is issued.
- the early warning alarm of the personnel can be in the form of graphic or text information, and It is displayed in a three-dimensional map for reminding.
- the personnel early warning alarm includes the alarm time, the personnel early detection range corresponding to the alarm, etc.
- the personnel early warning module 1054 sends the marker signal to the personnel analysis module 1042, and the personnel analysis module 1042 distinguishes and marks the corresponding personnel icon according to the marker signal, and the marking distinction method can be color Differentiate, for example, ordinary people are marked in blue, and blacklisted people are marked in red.
- the number of people early warning detection range is a closed circle with a radius of 200m, when the mobile phone IMEI code or the mobile phone IMSI code falls within the 200m radius of the closed circle personnel warning detection range and the preset blacklisted person's mobile phone IMEI code or mobile phone If the IMSI codes match, the personnel early warning module 1054 issues a personnel early warning alarm.
- the electronic fence early warning system 105 further includes an early warning information recording module 1055.
- the early warning information recording module 1055 is used to store the number of people early warning and personnel early warning.
- the early warning information recording module 1055 may also Pre-alert alarms and pre-alert alarms are stored in the database.
- the early-warning information recording module 1055 can consult the historical information of the early-warning alarms of the number of people and the early-warning alarms of the personnel, so that it is convenient for analysis and statistical early-warning areas.
- the three-dimensional map-based video application and dispatch early warning system platform 100 further includes a public facility management system 106.
- the public facility management system 106 is mainly used to monitor the status of public facilities such as fire hydrants, city street lights, telephone booths, etc., and it can detect various working conditions, such as the presence of fire hydrants, with condition monitoring sensors installed on the public facilities. Open, whether the place is in place, whether it has expired.
- the public facility management system 106 displays the location information of public facilities in a three-dimensional map in the form of icons, so that users can quickly understand the distribution of public facilities.
- FIG. 6 is a schematic structural diagram of a case management system in the embodiment.
- the three-dimensional map-based video application and dispatch early warning system platform 100 also includes a drone live broadcast system 107.
- the drone live broadcast system 107 is mainly used to manage drone cruise for video surveillance, and to monitor the drone's location information and video surveillance. Information is displayed on a three-dimensional map in real time.
- the drone live broadcast system 107 includes a drone management module 1071 and a drone display module 1072. Among them, the drone management module 1071 is used to connect with the drone At the same time, the drone management module 1071 controls the drone to transmit its positioning information in real time.
- the drone management module 1071 displays the position of the drone on the three-dimensional map as an icon according to the positioning information of the drone. Can be convenient for monitoring with drones.
- the drone display module 1072 displays the video captured on the drone in real time and on a three-dimensional map. The display mode is displayed on the three-dimensional map through one or more windows.
- FIG. 7 is a schematic structural diagram of an emergency plan management system in the embodiment.
- the three-dimensional map-based video application and dispatch early warning system platform 100 further includes a case management system 108, which is mainly used for case inquiry, release, and feedback.
- the case management system 108 includes a case management module 1081, a case inquiry module 1082, a case issuing module 1083, and a case feedback module 1084.
- the case management module 1081 is used to display the case information of the case in the form of a list. In this way, it is convenient for the user to dispatch case tasks according to the situation of the case. At the same time, the case management module 1081 is also used to add, edit, and delete cases. The added cases are displayed on the three-dimensional map in the form of icons. Editing the cases can change the content recorded in the case and its marked position.
- the case query module 1082 is used to quickly query the case.
- the case query module 1082 searches the case for information on the case using the search box, and then the case management module 1081 analyzes and retrieves the relevant information and directly selects the corresponding case for display. This is convenient. The user quickly finds the corresponding case situation.
- Case distribution module 1083 is used to distribute cases.
- the cases and online inspectors are displayed in the form of a list, and then the cases are matched with the inspectors by selecting a pairing method. After completing the pairing, the case distribution module 1083 locates the terminal through inspections.
- the communication interface of 1031 sends basic information of the case to the inspection and positioning terminal 1031.
- the case feedback module 1084 is configured to receive case feedback information sent by the patrol positioning terminal 1031. After receiving the basic information of the case, the patrol positioning terminal 1031 sends text case feedback information to the case feedback module 1084, where the case feedback information includes a text description , Photos or short videos, so that users can track the progress of the case.
- FIG. 8 is a schematic structural diagram of an emergency plan management system in the embodiment.
- the three-dimensional map-based video application and dispatch early warning system platform 100 also includes an emergency plan management system 109.
- the emergency plan management is used to provide handling plans for various types of unexpected cases.
- the content of the plan is text content.
- the emergency plan management system 109 includes emergency plan management.
- the emergency plan management module 1091 is used to edit the plan, including adding, deleting, and exporting the plan.
- the registered plan includes the information of the responding personnel, the content of the emergency plan, the type of early warning, and the type of the case.
- exporting the plan it can be PDF or WORD. Export documents in common formats.
- the emergency plan query module 1092 is used to search and query the plan.
- the query method uses the search box to search the content of the plan. In this way, users can quickly find the corresponding plan for handling the case and improve the response speed of case processing.
- the three-dimensional map-based video application and dispatch early warning system platform 100 of the present invention is provided with a three-dimensional map system 101, a video monitoring system 102, and an electronic fence early warning system 105 to provide a visual and intuitive command and decision environment to realize the police force. Dispatch, early warning of blacklisted personnel, and early warning of excessive numbers of people, early warning of the occurrence of warnings, and reducing the impact of warnings on socioeconomic benefits.
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- Alarm Systems (AREA)
Abstract
本发明揭示一种基于三维地图的视频应用和调度预警系统平台,包括用于建立三维地图的三维地图系统;用于对指定区域进行视频监控的视频监控系统,;用于监控人员、车辆的巡查轨迹的人员车辆巡查系统;用于采集指定区域的人员流动信息并进行统计分析的人员流动采集系统;用于布防监控指定区域是否出现黑名单人员或者人数超标的警情的电子围栏预警系统。本发明设置有三维地图系统、视频监控系统以及电子围栏预警系统,提供可视、直观的指挥决策环境,实现警力调度、黑名单人员以及人数超标预警,提前预警警情发生,降低警情发生对社会经济效益的影响。
Description
本发明涉及大数据技术领域,具体地,涉及一种基于三维地图的视频应用和调度预警系统平台。
近年来,随着公安网络基础设施条件和信息化应用水平的不断提高,警用地理信息系统也开始越来越受到业务应用部门的重视。当前,110指挥中心、警卫、治安、刑侦、缉毒、消防、交通管理等部门和基层公安机关对利用地理信息技术,实现信息整合与共享应用的需求日益迫切,公安部颁布了大量警用地理信息、应用系统的标准规范,政府部门也已具备了提供基础地理信息数据和遥感影像数据的条件。
为了提高公安安全保卫工作的整体水平,增强公安机关快速反应、反恐、处突能力,将公安信息化与地理信息技术紧密结合,开展警务专用的地理信息应用系统建设,已成为今后一个时期公安信息化建设与应用的一个重要领域和发展方向。
而现有技术中,公安部门常使用的可视化指挥中心可实现对警力实现调度以及任务下发,提高了公安部门在警情发生时的响应效率,但是,仍然无法阻止因警情发生而对社会经济效益造成损害。而警情的发生,一般是由罪犯在犯罪地点进行部署后再进行犯罪,再由相关人员报警后公安部门再进行介入,导致警情的发生必然会对社会经济效益造成损害。因此,我们亟需一种能对犯罪进行预警并降低警情发生对社会经济效益的系统平台。
发明内容
针对现有技术的不足,本发明提供一种可视化程度高、调度效果好以及具备预警功能的基于三维地图的警用调度及预警管理系统。
本发明公开的一种基于三维地图的视频应用和调度预警系统平台,包括:三维地图系统、视频监控系统、人员车辆巡查系统、人员车辆巡查系统、人员流动采集系统以及电子围栏预警系统;三维地图系统,用于建立三维地图,并可于该三维地图内进行任意方位的放大、缩小、移动以及旋转;视频监控系统,用于对指定区域进行视频监控,并将监控区域的位置信息显示在三维地图中;人员车辆巡查系统,用于监控人员、车辆的巡查轨迹,并将相应的巡查轨迹显示于三维地图中;人员流动采集系统,用于采集指定区域的人员流动信息并进行统计分析;电子围栏预警系统,用于布防监控指定区域是否出现黑名单人员或者人数超标的警情,若出现布防警情则进行提醒。
根据本发明的一实施方式,所述视频监控系统包括:
前端监控设备,用于对指定区域进行实时监控拍摄并产生视频信息;
监控显示模块,用于接收视频信息并进行实时显示;以及
监控控制模块,用于将前端监控设备的位置信息显示在三维地图上,并且对前端监控设备进行操控。
根据本发明的一实施方式,所述人员车辆巡查系统包括:巡查定位终端,用于获取人员或者车辆的定位信息,并且用于接收巡查任务;巡查统计模块,用于根据定位信息统计分析人员以及车辆的巡查轨迹;巡查轨迹管理模块,用于查看和调取人员以及车辆的巡查轨迹,并显示于三维地图上;以及巡查任务管理模块,用于制定巡查任务并发送至巡查定位终端。
根据本发明的一实施方式,所述人员流动采集系统包括:侦码设备,用于采集指定区域的手机IMEI码以及手机IMSI码;人员分析模块,用于对所述侦码设备采集到的手机IMEI码以及手机IMSI码进行分析得出对应人员信息,并生成对应的人员图标显示在三维地图中;以及通信基站,用于为侦码 设备提供数据网络。
根据本发明的一实施方式,所述人员信息包括人员的驻留时间段、时间长短、走动频次以及随同人员出现的频次。
根据本发明的一实施方式,所述人员分析模块对所述人员信息进行碰撞分析得相应人员的运动轨迹、常住居所、临时居所以及随同人员的运动轨迹。
根据本发明的一实施方式,所述电子围栏预警系统包括:第一围栏模块,用于设定人数预警检测范围以及预警人数值;人数预警模块,用于获取所述侦码设备所采集到的手机IMEI码以及手机IMSI码,并分析统计落入人数预警检测范围的手机IMEI码或者手机IMSI码,若手机IMEI码或者手机IMSI码数量超出预警人数值,则发出人数预警警报;第二围栏模块,用于设定人员预警检测范围;以及人员预警模块,用于获取所述侦码设备所采集到的手机IMEI码以及手机IMSI码,并与预设黑名单人员的手机IMEI码或者手机IMSI码进行比对,若出现相符结果并落入人员预警检测范围内时,则发出人员预警警报。
根据本发明的一实施方式,所述电子围栏预警系统还包括:预警信息记录模块,用于存储所述人数预警警报以及人员预警警报并且可查阅历史信息。
根据本发明的一实施方式,基于三维地图的视频应用和调度预警系统平台还包括:公共设施管理系统,用于监测公共设施状态,并将公共设施的位置信息显示在三维地图中。
根据本发明的一实施方式,基于三维地图的视频应用和调度预警系统平台还包括:无人机直播系统,用于管理无人机巡航进行视频监控,并将无人机的位置信息及视频监控信息显示在三维地图上。
本发明区别于现有技术的有益效果是:本发明的基于三维地图的视频应用和调度预警系统平台设置有三维地图系统、视频监控系统以及电子围栏预警系统,提供可视、直观的指挥决策环境,实现警力调度、黑名单人员预警以及人数超标预警,提前预警警情发生,降低警情发生对社会经济效益的影响。
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为实施例中基于三维地图的视频应用和调度预警系统平台的结构示意图;
图2为实施例中视频监控系统的结构示意图;
图3为实施例中人员车辆巡查系统的结构示意图;
图4为实施例中人员流动采集系统的结构示意图;
图5为实施例中电子围栏预警系统的结构示意图;
图6为实施例中无人机直播系统的结构示意图;
图7为实施例中案件管理系统的结构示意图;
图8为实施例中应急预案管理系统的结构示意图。
以下将以图式揭露本发明的多个实施方式,为明确说明起见,许多实务上的细节将在以下叙述中一并说明。然而,应了解到,这些实务上的细节不应用以限制本发明。也就是说,在本发明的部分实施方式中,这些实务上的细节是非必要的。此外,为简化图式起见,一些习知惯用的结构与组件在图式中将以简单的示意的方式绘示之。
请参考图1所示,其为实施例中基于三维地图的视频应用和调度预警系统平台的结构示意图。
本发明提供一种基于三维地图的视频应用和调度预警系统平台100,其包括:三维地图系统101、视频监控系统102、人员车辆巡查系统103、人员流动采集系统104以及电子围栏预警系统105。在本申请中,本发明还包括一数据库,该数据库用于存储数据包括所有本发明在运行中所产生的数据信息,同时,该数据库可对其内的存储数据进行增加、删除、查询以及改动等操作。
三维地图系统101主要用于建立三维地图,其中三维地图制作先通过对拍摄区域进行定位规划,其中定位规划的精度精确至厘米级,对应定位规划的范围,建立相对应的地面定位信号发射源,接着通过无人机进行拍摄,拍摄过程无人机与地面定位信号发射源通过无线交互确定定位规划的定位信息,然后无人机通过多角度对同一拍摄区域进行拍照至少五个航拍图,如此,每个航拍图都具备GPS精准点位;其次,对每个航拍图根据对应拍摄区域的实际经纬度进行相应裁切以及拼接,形成建模用图,重复前面的步骤制作三维地图对应的区域的多个建模用图,最后将所有建模用图导入地理信息系统软件如Supermap,通过地理信息系统软件的三维GIS组件生成三维地图,如此,三维地图与实现的现场更加贴合,其所显示的位置信息更加精准、形象,同时,于该三维地图内可进行任意方位的放大、缩小、移动以及旋转,如此,使用者可对实际的地理情况以及路况进行查看分析,便于做出更加精准、有效的指挥和调度。
请一并参考图2所示,其为实施例中视频监控系统的结构示意图。视频监控系统102用于对指定区域进行视频监控,并将监控区域的位置信息显示在三维地图中,其中视频监控系统102包括前端监控设备1021、监控显示模块1022以及监控控制模块1023。
前端监控设备1021采用常规的监控摄像头即可,前端监控设备1021的数量为至少一个,其主要用于对指定区域进行实时监控拍摄并产生视频信息,其还将视频信息存储于数据库中,当然的,前端监控设备1021亦可采用具备有红外功能的监控摄像头,如此,可保证视频监控系统102在晚间时段亦能正常运行。
监控显示模块1022用于接收视频信息并进行实时显示,其通过显示于三维地图内的窗口进行显示,其中显示方式可分为两种,其一为一窗口单独显示一前端监控设备1021的画面,其二为一窗口显示多个监控画面,其中多个监控画面由多个前端监控设备1021进行轮流显示。
监控控制模块1023用于将前端监控设备1021的位置信息显示在三维地图上,并且对前端监控设备1021进行操控,同时,其还用于控制监控显示模块1022进行实时显示前端监控设备1021的监控画面。其中监控控制模块1023对前端监控设备1021进行操控时,可分别控制前端监控设备1021进行摆动、俯仰以及缩放等,具体的,监控控制模块1023通过一控制窗口进行操控前端监控设备1021,该控制窗口上设置有分别用于控制前端监控设备1021上、下、左、右四个方向的摆动、自动摆动、缩放等控制键,如此,可方便使用者远程了解对应区域的地理信息,方便后续进行准确的警力调度。其中监控控制模块1023将前端监控设备1021以图标的形式显示于三维地图上,其可为摄像头形状的图标,当然的也可是其他形状的图标,该图标的位置与对应的前端监控设备1021的位置信息相同,即三维地图上摄像头形状的经纬度信息与前端监控设备1021的实际经纬度相同,同时,操控点击摄像头形状的图标即调取出对应前端监控设备1021的监控画面,如此,便于使用者清楚视频监控区域的分布情况,快速调用其所需查看监控情况的前端监控设备1021的监控画面。
请继续参2所示,视频监控系统102还包括一视频记录模块1024,视频记录模块1024用于获取数据库中的视频信息,并且视频记录模块1024还用于查看前端监控设备1021的历史视频信息,并针对相应的历史视频信息进行回放或者针对设置的时间段进行回放。
请一并参考图3所示,其为实施例中人员车辆巡查系统的结构示意图。人员车辆巡查系统103用于监控人员、车辆的巡查轨迹,并将相应的巡查轨迹显示于三维地图中,人员车辆巡查系统103包括巡查定位终端1031、巡查统计模块1032、巡查轨迹管理模块1033以及巡查任务管理模块1034。
巡查定位终端1031用于获取人员或者车辆的定位信息,并且用于接收巡查任务,巡查定位终端1031的数量为至少一个,并且巡查定位终端1031其为手持终端如手机、平板电脑等智能终端,亦可为安装于车辆上的预装终端 如车载多媒体系统,巡查定位终端1031具有GPS模块以及通信模块,利用其GPS模块获取的人员或者车辆的定位信息,然后通过通信模块将定位信息上传至数据库。
巡查统计模块1032用于根据定位信息统计分析人员以及车辆的巡查轨迹,巡查统计模块1032获取数据库上人员或者车辆的定位信息的定位信息,进行统计出人员以及车辆实时的巡查轨迹,并且将该巡查轨迹显示于三维地图内,如此,可实时监控相应的人员以及车辆巡查动向。
巡查轨迹管理模块1033,用于查看和调取人员以及车辆的历史巡查轨迹,并显示于三维地图上,其中查看方式可通过时间条的方式进行查看回放,例如,通过时间条查看人员以及车辆的某一时刻的巡查位置时,对应的巡查轨迹上的人员以及车辆位置显示为对应该时刻的位置。
巡查任务管理模块1034,用于制定巡查任务并发送至巡查定位终端1031,其中巡查任务可由一个以及多个巡查点组成,每个巡查点显示于三维地图上,巡查任务完成制定后发送至巡查定位终端1031上,该巡查任务内容包括:执行人员信息、任务内容信息以及任务时限信息,其发送方式可为短信亦可为其他通过巡查定位终端1031的通信接口发送至巡查定位终端1031上。同时,巡查任务管理模块1034还用于查看巡查任务记录,该巡查任务记录包括每个巡查任务对应的人员信息、任务内容信息以及任务派发时间。
请继续参考图3所示,人员车辆巡查系统103还包括巡查反馈模块1035,巡查反馈模块1035用于以列表形式展示已分派的巡查任务对应的巡查定位终端1031的反馈信息,该反馈信息包括文字描述、照片以及短视频,如此,可方便了解到巡查任务中发生详细过程。
请一参考图4所示,其为实施例中人员流动采集系统的结构示意图。人员流动采集系统104,用于采集指定区域的人员流动信息并进行统计分析,通过人员流动采集系统104,可获取指定区域的人员信息,如此,可对该区域的人员进行监控。其中人员流动采集系统104包括侦码设备1041、人员分析模 块1042以及通信基站1043。
侦码设备1041的数量为至少一个,其主要用于采集指定区域的手机IMEI码以及手机IMSI码,同时还包括手机IMEI码以及手机IMSI码的位置信息。侦码设备1041可使用市面上的常规手机侦码设备1041如北京信密安科技有限公司的手机侦码仪,手机IMSI码即国际移动用户识别码,是国际上为唯一识别一个移动用户所分配的号码,也是移动通信网络运营过程中给予移动手机用户的唯一身份标识,因此,获取了一个手机用户的IMSI就可以得到其个手机通信的唯一性标识,同样的,因当下手机IMEI码需要与个人身份证进行绑定,因此,结合手机IMEI码以及手机IMSI码可以确定一个人员的身份信息,而侦码设备1041可对指定区域的手机IMEI码以及手机IMSI码进行采集。
人员分析模块1042用于对侦码设备1041采集到的手机IMEI码以及手机IMSI码进行分析得出对应人员信息,并生成对应的人员图标显示在三维地图中,如此,可对人员进行分析定位,通过对手机IMEI码以及手机IMSI码出现的地点以及时间进行分析,得出如人员的驻留时间段、时间长短、走动频次以及随同人员出现的频次的人员信息。上述的人员信息均以可视化的方式展示于三维地图内,例如热力图、聚类、柱状图等图示方式进行展示。人员分析模块1042还对上述的人员信息进行碰撞分析得到相应人员的运动轨迹、常住居所、临时居所以及随同人员的运动轨迹。
通信基站1043主要用于为侦码设备1041提供数据网络,其可为市面上常规的一体化钢结构通信基站1043亦可为无线便携式基站如型号为NT747的无线便携式基站,如此,侦码设备1041可将所采集的手机IMEI码以及手机IMSI码信息通过通信基站1043上传至数据库。
请一并参考图5所示,其为实施例中电子围栏预警系统的结构示意图。电子围栏预警系统105用于布防监控指定区域是否出现黑名单人员或者人数超标的警情,若出现布防警情则进行提醒。其中黑名单人员为相对应的需要进行管控人员,通过预先设置其该黑名单人员对应的手机IMEI码或者手机IMSI 码。而布防人数超标主要是监测指定区域、指定时间段内是否出现非正常人数,监控该指定区域是否出现如聚众赌博、毒品交易、吸毒、多人斗殴及偷渡等警情的发生,如此,主动进行监测,可及时进行警力调度,防止上述警情对社会经济效益造成进一步损害。电子围栏预警系统105包括第一围栏模块1051、人数预警模块1052、第二围栏模块1053以及人员预警模块1054。
第一围栏模块1051用于设定人数预警检测范围以及预警人数值,第一围栏模块1051于三维地图上进行圈设人数预警检测范围,该人数预警检测范围为不规则或者规则密闭图形,通过第一围栏模块1051预设一预警人数值(即手机IMEI的数量值或者手机IMSI码的数量值)。
人数预警模块1052用于获取侦码设备1041所采集到的手机IMEI码以及手机IMSI码,并分析统计落入人数预警检测范围的手机IMEI码或者手机IMSI码的数量,若手机IMEI码或者手机IMSI码数量超出预警人数值,则发出人数预警警报,其中人数预警警报可为图形或者文字信息的方式,并且人数预警警报显示于三维地图内进行提醒,该人数预警警报包括告警时间、警报对应的所述人数预警检测范围、人数预警检测范围内的人数,如此,使用者可快速找到预警位置从而及时响应。
例如,人数预警检测范围为500m半径的密闭圆形,预警人数值设为20人,当落入该500m半径的密闭圆形的人数预警检测范围内的手机IMEI码或者手机IMSI码数量大于等于20时,则人数预警模块1052发出人数预警警报。又例如,在空旷无人的区域设置数预警检测范围为300m半径的密闭圆形,预警人数设为1人,当该300m半径的密闭圆形内出现1手机IMEI码或者手机IMSI码时,人数预警模块1052发出人数预警警报。
第二围栏模块1053用于设定人员预警检测范围,同样的,第二围栏模块1053于三维地图上进行圈设人员预警检测范围,该人员预警检测范围为不规则或者规则密闭图形。
人员预警模块1054用于获取侦码设备1041所采集到的手机IMEI码以及 手机IMSI码,人员预警模块1054通过将上述的手机IMEI码以及手机IMSI码与预设黑名单人员的手机IMEI码或者手机IMSI码进行比对,若出现相符结果,并且对应的手机IMEI码以及手机IMSI码落入员预警检测范围内时,则发出人员预警警报,该人员预警警报可为图形或者文字信息的方式,并且显示于三维地图内进行提醒,该人员预警警报包括告警时间、警报对应的所述人员预警检测范围等,如此,使用者可快速找到预警位置从而及时响应。另外值得注意的是,如出现相符结果时,人员预警模块1054将标记信号至人员分析模块1042,人员分析模块1042根据该标记信号进对应的人员图标进行区分标示出来,其中标示区分方式可以为颜色区分,例如普通人员用蓝色标记,黑名单人员用红色标记。
例如,人数预警检测范围为200m半径的密闭圆形,当落入该200m半径的密闭圆形的人员预警检测范围内的手机IMEI码或者手机IMSI码与预设黑名单人员的手机IMEI码或者手机IMSI码相符,则人员预警模块1054发出人员预警警报。
请继续参考图5所示,电子围栏预警系统105还包括预警信息记录模块1055,预警信息记录模块1055用于存储所述人数预警警报以及人员预警警报,当然的,预警信息记录模块1055亦可将人数预警警报以及人员预警警报存储于数据库中。同时,预警信息记录模块1055可查阅该人数预警警报以及人员预警警的历史信息,如此,可方便分析以及统计预警高发区。
请继续参考图1所示,基于三维地图的视频应用和调度预警系统平台100还包括公共设施管理系统106。公共设施管理系统106主要用于监测公共设施如:消防栓、城市路灯、电话亭等的状态,可通过与设置于该公共设施上的状态监测传感器进行检测其各种工作状态,如消防栓的是否开启、放置是否到位、是否过期。同时公共设施管理系统106将公共设施的位置信息以图标的形式显示在三维地图中,如此,方便使用者快速了解公共设施的分布情况。
请继续参考图1及6所示,其中图6为实施例中案件管理系统的结构示 意图。基于三维地图的视频应用和调度预警系统平台100还包括无人机直播系统107,无人机直播系统107主要用于管理无人机巡航进行视频监控,并将无人机的位置信息及视频监控信息实时显示在三维地图上。无人机直播系统107包括无人机管理模块1071以及无人机显示模块1072。其中无人机管理模块1071用于与无人机进行连接
,同时无人机管理模块1071控制无人机实时传输其定位信息,无人机管理模块1071在根据无人机的定位信息,将无人机的位置以图标的方式显示于三维地图上,如此,可方便与对无人机的监控。无人机显示模块1072对无人机上所拍摄的视频进行实时显示与三维地图上,其显示方式通过一个或多个窗口显示于三维地图上。通过无人机直播系统107多元化巡查手段,并且利用无人机对人员或车辆较难实施巡查的地区进行巡查,拓展巡查的覆盖面积。
请继续参考图1及7所示,其中图7为实施例中应急预案管理系统的结构示意图。基于三维地图的视频应用和调度预警系统平台100还包括案件管理系统108,案件管理系统108主要用于案件查询、下发以及反馈。案件管理系统108包括案件管理模块1081、案件查询模块1082、案件下发模块1083以及案件反馈模块1084。
其中案件管理模块1081用于以列表的形式展示案件的节本信息,如此,可方便使用者根据案件的情况进行案件任务的派发。同时案件管理模块1081还用于增加、编辑以及删除案件,其中增加的案件以图标的方式显示于三维地图上,对案件进行编辑,可更改案件内记录的内容以及其所标注的位置。
案件查询模块1082用于快速查询案件,案件查询模块1082查询案件的方式以搜索框对案件的信息进行检索,然后案件管理模块1081分析检索相关信息,直接筛选出相应的案件进行显示,如此,方便使用者快速找到相应的案件情况。
案件下发模块1083用于的派发案件,通过列表的形式展示案件以及在线的巡查人员,然后通过选择配对的方式将案件与巡查人员进行配对,完成配 对后,案件下发模块1083通过巡查定位终端1031的通信接口发送案件的基本信息至巡查定位终端1031上。
案件反馈模块1084用于接收巡查定位终端1031所发送的案件反馈信息,所述巡查定位终端1031接收案件的基本信息后,其发送文案件反馈信息至案件反馈模块1084,其中案件反馈信息包括文字描述、照片或者短视频,如此,便于使用者对案件的进度进行跟踪。
请继续参考图1及8所示,其中图8为实施例中应急预案管理系统的结构示意图。基于三维地图的视频应用和调度预警系统平台100还包括应急预案管理系统109,应急预案管理用于针对各类突发案件提供处理预案,预案内容为文本内容,应急预案管理系统109包括应急预案管理模块1091以及应急预案查询模块1092。应急预案管理模块1091用于编辑预案,包括增加、删除以及导出预案,其中增加预案时,登记预案内容包括应对人员信息、应急预案内容、预警类型以及案件类型等,导出预案时可以PDF或WORD等常用格式文档导出。应急预案查询模块1092用于对预案检索查询,其中其查询方式以搜索框对的预案内容进行信息检索,如此,可方便使用者快速找到对应的案件的处理预案,提高案件处理的响应速度。
综上所述,本发明的基于三维地图的视频应用和调度预警系统平台100设置有三维地图系统101、视频监控系统102以及电子围栏预警系统105,提供可视、直观的指挥决策环境,实现警力调度、黑名单人员预警以及人数超标预警,提前预警警情发生,降低警情发生对社会经济效益的影响。
上所述仅为本发明的实施方式而已,并不用于限制本发明。对于本领域技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原理内所作的任何修改、等同替换、改进等,均应包括在本发明的权利要求范围之内。
Claims (10)
- 一种基于三维地图的视频应用和调度预警系统平台,其特征在于,包括:三维地图系统,用于建立三维地图,并可于该三维地图内进行任意方位的放大、缩小、移动以及旋转;视频监控系统,用于对指定区域进行视频监控,并将监控区域的位置信息显示在三维地图中;人员车辆巡查系统,用于监控人员、车辆的巡查轨迹,并将相应的巡查轨迹显示于三维地图中;人员流动采集系统,用于采集指定区域的人员流动信息并进行统计分析;以及电子围栏预警系统,用于布防监控指定区域是否出现黑名单人员或者人数超标的警情,若出现布防警情则进行提醒。
- 根据权利要求1所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述视频监控系统包括:前端监控设备,用于对指定区域进行实时监控拍摄并产生视频信息;监控显示模块,用于接收视频信息并进行实时显示;以及监控控制模块,用于将前端监控设备的位置信息显示在三维地图上,并且对前端监控设备进行操控。
- 根据权利要求1所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述人员车辆巡查系统包括:巡查定位终端,用于获取人员或者车辆的定位信息,并且用于接收巡查任务;巡查统计模块,用于根据定位信息统计分析人员以及车辆的巡查轨迹;巡查轨迹管理模块,用于查看和调取人员以及车辆的巡查轨迹,并显示于三维地图上;以及巡查任务管理模块,用于制定巡查任务并发送至巡查定位终端。
- 根据权利要求1所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述人员流动采集系统包括:侦码设备,用于采集指定区域的手机IMEI码以及手机IMSI码;人员分析模块,用于对所述侦码设备采集到的手机IMEI码以及手机IMSI码进行分析得出对应人员信息,并生成对应的人员图标显示在三维地图中;以及通信基站,用于为侦码设备提供数据网络。
- 根据权利要求4所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述人员信息包括人员的驻留时间段、时间长短、走动频次以及随同人员出现的频次。
- 根据权利要求5所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述人员分析模块对所述人员信息进行碰撞分析得相应人员的运动轨迹、常住居所、临时居所以及随同人员的运动轨迹。
- 根据权利要求1所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述电子围栏预警系统包括:第一围栏模块,用于设定人数预警检测范围以及预警人数值;人数预警模块,用于获取所述侦码设备所采集到的手机IMEI码以及手机IMSI码,并分析统计落入人数预警检测范围的手机IMEI码或者手机IMSI码,若手机IMEI码或者手机IMSI码数量超出预警人数值,则发出人数预警警报;第二围栏模块,用于设定人员预警检测范围;以及人员预警模块,用于获取所述侦码设备所采集到的手机IMEI码以及手机IMSI码,并与预设黑名单人员的手机IMEI码或者手机IMSI码进行比对,若出现相符结果并落入人员预警检测范围内时,则发出人员预警警报。
- 根据权利要求7所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,所述电子围栏预警系统还包括:预警信息记录模块,用于存储所述人数预警警报以及人员预警警报并且可 查阅历史信息。
- 根据权利要求1-8任一所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,基于三维地图的视频应用和调度预警系统平台还包括:公共设施管理系统,用于监测公共设施状态,并将公共设施的位置信息显示在三维地图中。
- 根据权利要求1-8任一所述的基于三维地图的视频应用和调度预警系统平台,其特征在于,基于三维地图的视频应用和调度预警系统平台还包括:无人机直播系统,用于管理无人机巡航进行视频监控,并将无人机的位置信息及视频监控信息显示在三维地图上。
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