The present application claims priority to Korean Patent Application No. 10-2022-67222 filed on May 31, 2022, which is incorporated by reference herein.
The present invention relates to a disaster warning system with active geofencing.
Geofencing refers to a location-based service that notifies a user access status to a specific area.
Disasters are difficult to prevent because of their unexpected occurrences. In particular, when the air is dry, small fires often spread to large wildfires, and large or small fires occur frequently in the city. Examples of disasters include fires, wildfires, floods, infectious diseases, and hazardous chemical leakages.
When the above disaster occurs, it is very important to notify the people in a section set in consideration of a disaster damage prediction area that a disaster has occurred, such that the people in the section set as the disaster damage prediction area may quickly respond to the disaster.
Accordingly, it is necessary that, upon a disaster, the scope of an area that may cause a disaster damage after the disaster is classified into a caution zone and a danger zone on a map based on active geofencing, disaster situations and time series, and information about the caution zone and the danger zone on the map is provided to users' mobile phones and mass media in the section set by the disaster damage prediction range, so as to enable users in the section set by the disaster damage prediction range to quickly and effectively respond to the disaster.
Related art document: Korean Unexamined Patent Publication No. 10-2020-0038894 (Published on Apr. 14, 2020) entitled by “INFORMATION DELIVERY SYSTEM USING GEOFENCE DATA”
The “INFORMATION DELIVERY SYSTEM USING GEOFENCE DATA” according to the above related art document accurately determines whether a mobile device containing location information is located in the corresponding area, so as to provide information about the mobile device located within the area even in a complex geofence area.
However, the “INFORMATION DELIVERY SYSTEM USING GEOFENCE DATA” according to the above related art document cannot provide that, upon a disaster, the scope of an area that may cause a disaster damage after the disaster is classified into a caution zone and a danger zone on a map based on active geofencing, disaster situations and time series, and information about the caution zone and the danger zone on the map is provided to users' mobile phones and mass media in the section set by the disaster damage prediction range.
In order to solve the above-described problems, the present invention provides a disaster warning system with active geofencing, such that, upon a disaster, the scope of an area that may cause a disaster damage after the disaster is classified into a caution zone and a danger zone on a map based on active geofencing, disaster situations and time series, and information about the caution zone and the danger zone on the map is provided to users' mobile phones and mass media in the section set by the disaster damage prediction range.
An aspect of the present invention in order to achieve the above-mentioned object, the disaster warning system with active geofencing includes:
The information notification unit (60) may receive the content for indicating the caution zone and the danger zone on the map provided from the information generating unit (50), and provide the received content to mass media (80) in the section set by the disaster damage prediction range, to allow the mass media (80) to indicate the caution zone and the danger zone on the map, so as to enable the public to see the caution zone and the danger zone on the map.
The disaster warning system further includes a database (30) that stores and manages the disaster information, the weather information and the document information collected by the information collection unit (10), accesses the geofencing analysis unit (40) and the information generation unit (50), and stores and manages an operation history of the information notification unit (60).
According to the present invention, upon a disaster, the scope of an area that may cause a disaster damage after the disaster is classified into a caution zone and a danger zone on a map based on active geofencing, disaster situations and time series, and information about the caution zone and the danger zone on the map is provided to users' mobile phones and mass media in the section set by the disaster damage prediction range, so that users in the section set by the disaster damage prediction range can quickly and effectively respond to the disaster.
Hereinafter, the embodiments of the present invention will be described in detail with reference to the accompanying drawings.
The present invention in the above manner will be described in detail with reference to
In
The geofencing analysis unit 40 complexly analyzes the disaster information, the weather information and the document information collected and provided from the information collection unit 10 to classify, upon a disaster, the scope of an area that may cause a disaster damage after the disaster into a caution zone and a danger zone on a map based on geofencing, disaster situations and time series.
The information generation unit 50, as shown in
The information notification unit 60 receives the content for indicating the caution zone and the danger zone on the map provided from the information generating unit 50, and provides the received content to a user mobile phone 70 in a section set by a disaster damage prediction range, to allow the user mobile phone 70 to indicate the caution zone and the danger zone on the map, so that the user is allowed to see the caution zone and the danger zone on the map.
In addition, the information notification unit 60 receives the content for indicating the caution zone and the danger zone on the map provided from the information generating unit 50, and provides the received content to mass media 80 in the section set by the disaster damage prediction range, to allow the mass media 80 to indicate the caution zone and the danger zone on the map, so that the public is allowed to see the caution zone and the danger zone on the map. The mass media 80 includes a digital signage, bus information system and the like. The information notification unit 60 may communicate with the mass media 80 through a wireless, wired, or wireless and wired information communication network.
The database 30 stores and manages the disaster information, the weather information and the document information collected by the information collection unit 10, accesses the geofencing analysis unit 40 and the information generation unit 50, and stores and manages an operation history of the information notification unit 60.
The control unit 20 is connected to the information collection unit 10 and the database 30 to monitor, manage and control the disaster situation.
According to the present invention as described above, upon a disaster, the scope of an area that may cause a disaster damage after the disaster is classified into a caution zone and a danger zone on a map based on active geofencing, disaster situations and time series, and information about the caution zone and the danger zone on the map is provided to users' mobile phones and mass media in the section set by the disaster damage prediction range, so that users in the section set by the disaster damage prediction range can quickly and effectively respond to the disaster.
The technical idea of the present invention has been described above with the accompanying drawings. However, the above description is provided merely as an exemplary embodiment of the present invention, and does not limit the present invention. Further, it will be apparent that a person having ordinary skill in the art may carry out various deformations and modifications within the scope of the technical idea of the present invention.
Number | Date | Country | Kind |
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10-2022-67222 | May 2022 | KR | national |