WO2018110640A1 - Terminal portable, procédé de commande de terminal portable et programme - Google Patents

Terminal portable, procédé de commande de terminal portable et programme Download PDF

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Publication number
WO2018110640A1
WO2018110640A1 PCT/JP2017/044878 JP2017044878W WO2018110640A1 WO 2018110640 A1 WO2018110640 A1 WO 2018110640A1 JP 2017044878 W JP2017044878 W JP 2017044878W WO 2018110640 A1 WO2018110640 A1 WO 2018110640A1
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Prior art keywords
evacuation
recommended
emergency
map data
mode
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PCT/JP2017/044878
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English (en)
Japanese (ja)
Inventor
博久 藤川
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ポケットシェルター株式会社
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Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=59969495&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2018110640(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by ポケットシェルター株式会社 filed Critical ポケットシェルター株式会社
Publication of WO2018110640A1 publication Critical patent/WO2018110640A1/fr

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B27/00Alarm systems in which the alarm condition is signalled from a central station to a plurality of substations
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/005Traffic control systems for road vehicles including pedestrian guidance indicator
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers

Definitions

  • the present invention relates to a mobile terminal, a mobile terminal control method, and a program.
  • Designated emergency evacuation site is a facility that meets certain standards such as safety for each type of abnormal phenomenon such as floods and tsunamis as an evacuation site to escape from danger when a disaster occurs or may occur Or it is a place designated by the municipal mayor (Article 49-4 of the Act), and the designated evacuation center has a risk of disaster and allows the evacuated residents to stay for as long as necessary until the danger of the disaster disappears. Or it is a place designated by the mayor as a facility for temporarily staying inhabitants who cannot return home due to a disaster (Article 49-7 of the Act).
  • the nearest emergency evacuation site is not necessarily suitable as an evacuation site at the time of a specific disaster, and there are many cases where a suitable emergency evacuation site and an evacuation route to the emergency evacuation site are not grasped.
  • a map application (hereinafter referred to as “app”) that includes a search function that uses a current location detection function such as GPS (Global Positioning System) has been installed.
  • a current location detection function such as GPS (Global Positioning System)
  • GPS Global Positioning System
  • the base station or the relay station may be damaged, and as a result, the evacuation route using the communication function of the mobile terminal may not be confirmed.
  • Some map apps can obtain evacuation routes even if the map function is downloaded to the mobile terminal in advance and the communication function is not available.
  • map data is intended for use during normal times, not at the time of a disaster, addresses, etc. for each point such as general restaurants, shops, leisure facilities, gas stations, tourist spots, etc. Since various types of information such as telephone numbers and service contents are included, the capacity occupied in the internal memory when holding such map data in the portable terminal has become large.
  • Some emergency evacuation sites and emergency evacuation sites can be displayed. Usually, this is also based on the assumption that a normal data connection is established.
  • Table 1 is an excerpt of a list of evacuation sites entitled “Designation of evacuation sites and evacuation roads in the event of an earthquake disaster” issued by the Tokyo Metropolitan Urban Development Bureau in May 2013 (see Non-Patent Document 1). Is.
  • the “Tama River Riverbed / Futako Bridge Area” shown in Table 1 is effective as an emergency evacuation site in the event of a fire.
  • a tsunami occurs, such a place near a river is not suitable as an emergency evacuation site.
  • Non-Patent Document 2 a site that provides a service for presenting a so-called evacuation site that presents an emergency evacuation site to a user has been established (see Non-Patent Document 2).
  • Patent Document 1 does not have a function for notifying a suitable emergency evacuation site according to the type of disaster that has occurred. Further, even the service shown in Non-Patent Document 2 does not determine whether each emergency evacuation site is appropriate according to the type of disaster. Therefore, there is a problem that it is not easy to access the evacuation route in the state of emergency and mental panic. Therefore, it is difficult for the user who received the emergency bulletin to secure an evacuation route to an emergency evacuation site that is suitable for emergency, and in some cases evacuates to an unsuitable evacuation site. It can also be damaged.
  • the present invention has been made in view of the above-described reasons, and an object thereof is to provide a mobile terminal, a mobile terminal control method, and a program that present an emergency evacuation route to a user quickly and easily after a disaster occurs.
  • the emergency early warning, the current position detection function of the mobile terminal, and the map application are utilized to provide a suitable evacuation route to a recommended evacuation site according to the disaster that occurred quickly when the disaster occurred.
  • a mobile terminal is: A mobile terminal that displays a map showing a travel route from the current position to the recommended evacuation site using the current position detection function, Storage means for storing map data for evacuation including at least geolocation data of the recommended evacuation site; Emergency early warning receiving means for receiving emergency early warning including at least emergency earthquake early warning via a wireless communication line; In response to the reception of the emergency bulletin by the emergency bulletin receiving means, the recommended evacuation site existing at the nearest position is determined based on the current position specified using the current position detection function and the map data for evacuation.
  • a preferred and recommended evacuation site identification means for identifying the preferred and recommended evacuation site;
  • the map data for evacuation is acquired from the storage means, based on the acquired map data, the suitable recommended evacuation place is displayed from the current position, and the evacuation route to the suitable recommended evacuation place designated by the user is obtained, Map display means capable of displaying the evacuation route on the map data;
  • Mode switching means for switching the operation mode to an evacuation mode for displaying the preferred recommended evacuation place when the emergency bulletin receiving means receives the emergency bulletin;
  • Setting means for setting whether or not the mode switching means switches the operation mode to the evacuation mode,
  • the mode switching means displays a first message when the current position is located in the vicinity of the preferred recommended evacuation place or the preferred recommended evacuation place, and the current position is the preferred recommended evacuation place and the preferred recommended evacuation place.
  • the setting means sets in advance that the mode switching means switches the operation mode to the evacuation mode only when the emergency early warning receiving means receives a specific emergency early warning among the emergency early warnings.
  • the mobile terminal control method includes: Storing evacuation map data including data indicating recommended evacuation sites; Receiving an emergency bulletin including at least an earthquake early warning via a communication line; In response to receiving the emergency bulletin, based on the current position and the map data for evacuation, identifying the recommended evacuation site present at the nearest position as a preferred recommended evacuation site; A step of switching the operation mode to an evacuation mode for displaying the preferred recommended evacuation place when the emergency bulletin is received; Obtaining stored evacuation map data; When the current position is located near the preferred recommended evacuation place or the preferred recommended evacuation place, a first message is displayed, and the current position is not located near the preferred recommended evacuation place and the preferred recommended evacuation place. If directly or indirectly switching to the evacuation mode; And a step of setting the operation mode in advance so as to switch to the evacuation mode only when a specific emergency bulletin is received among the emergency bulletins.
  • a program is: The computer included in the mobile device Storage means for storing evacuation map data including data indicating recommended evacuation sites; Emergency early warning receiving means for receiving emergency early warning including at least emergency earthquake early warning via a communication line, Corresponding to the reception of the emergency bulletin by the emergency bulletin receiving means, the recommended evacuation place existing at the nearest position is suitable based on the current position specified using the current position detection function and the map data for evacuation Preferred recommended evacuation site identification means to identify as recommended evacuation site, Obtaining the map data for evacuation from the storage means, obtaining the preferred recommended evacuation place from the current position based on the obtained map data, obtaining an evacuation route to the preferred recommended evacuation place designated by the user, Map display means capable of displaying an evacuation route on the map data; Mode switching means for switching the operation mode to an evacuation mode for displaying the preferred recommended evacuation place when the emergency bulletin receiving means receives the emergency bulletin; Setting means for setting whether or not the mode switching means switches the operation mode to the evacuation mode; A program that functions as The mode switching means displays a first
  • an emergency evacuation route is provided to a user quickly and easily after a disaster occurs.
  • map data specialized for evacuation route display is configured to be resident in the portable terminal, the evacuation route can be easily obtained along with the reception of the emergency early warning even when the communication line is interrupted.
  • the user can visually check the relative safety of the current position and its surroundings, and it is easy to quickly determine whether or not evacuation is necessary.
  • Embodiment 1 It is a block diagram which shows the structural example of the portable terminal concerning Embodiment 1 of this invention.
  • 3 is a flowchart illustrating an example of processing executed by a control unit according to Embodiment 1.
  • 4 is a flowchart illustrating an example of processing for identifying a preferred recommended evacuation site in the first embodiment.
  • 6 is a flowchart illustrating an example of a process for determining and displaying the relative safety of the current position in the first stage of the attribute requirement specifying step that the recommended evacuation site should have in Embodiment 1.
  • 6 is a diagram showing an example of a display screen of the display unit according to Embodiment 1.
  • FIG. It is a flowchart which shows an example of the process which the control part which concerns on Embodiment 2 of this invention performs.
  • 10 is a flowchart illustrating an example of processing executed by a control unit according to Embodiment 2.
  • 10 is a diagram showing a display screen of a display unit according to Embodiment 2.
  • FIG. 10 is a diagram showing a display screen of a display unit according to Embodiment 2.
  • FIG. 10 is a diagram showing a display screen of a display unit according to Embodiment 2.
  • FIG. It is a figure which shows the display screen of the display part which concerns on a modification.
  • FIG. 1 is a block diagram illustrating a configuration example of the mobile terminal 100 according to the present embodiment.
  • a portable terminal 100 includes a communication circuit 102, a GPS function unit 103, a control unit 104, a memory (storage means) 105, a power control unit 106, a display unit 107, an operation unit 108, a voice input / output unit 109, and a bus 101 that connects the respective units.
  • the internal control and data exchange of the mobile terminal 100 are executed via the bus 101.
  • the bus 101 includes a control bus and a data bus, and the control of the operation of each unit directly or indirectly connected to the bus 101 and transmission of necessary data are executed via the bus 101.
  • the communication circuit 102 transmits / receives data to / from a base station of a mobile phone operator via an antenna (not shown) in the mobile terminal 100, and carries data at a remote place via the bus 101 and the control unit 104. It can be imported into the terminal 100.
  • the GPS function unit 103 processes a signal received from a satellite via an antenna (not shown) arranged in the mobile terminal 100, and calculates coordinates indicating the current position of the mobile terminal 100 on the ground.
  • the memory 105 may be used by an operating system used by the control unit 104, a program such as a map application (hereinafter referred to as “app”), an evacuation mode application, and portable terminals such as an e-mail, an address book, and user information. Store some data.
  • the memory 105 stores general map data and evacuation map data.
  • General map data includes basic map data such as roads, sidewalks, and passages placed on the ground, and restaurants, commercial facilities, stations, buildings, government offices, sightseeing spots, emergency evacuations displayed on the map indicated by the basic map data. Includes both additional information about the location, etc. That is, the general map data includes information for specifying a general commercial facility.
  • the structure of this general map data is a layer structure composed of basic road data, detailed road data, etc. constituting basic map data and building information, character data, shape data, background data, etc., which are auxiliary information. It has become. Then, the control unit 104 causes the display unit 107 to display data obtained by combining these data.
  • the attached information includes basic attribute data indicating an address code, a block code, an address, a house number, a name, and the like.
  • Evacuation map data is data that specifies recommended evacuation sites, and is data that covers the entire country of Japan where emergency bulletins are sent from telecommunications carriers.
  • the map data for evacuation is different from the general map data, and does not include information for specifying a general commercial facility.
  • the map data for evacuation includes at least geolocation data of recommended evacuation sites, and includes basic map data and data indicating recommended evacuation sites.
  • the map data for evacuation has a small capacity compared to the capacity of the map information when displaying a map of an area of the same area because it does not include the attached information regarding the restaurant, the commercial facility and the like.
  • the map data for evacuation includes information on each recommended evacuation site.
  • emergency evacuation sites information on emergency evacuation sites in the event of a fire transmitted from local public bodies, etc., information based on original field surveys. And specific attribute parameters set for each emergency evacuation site.
  • the map data for evacuation includes at least data indicating a recommended evacuation site and data indicating a road adjacent thereto.
  • the basic map data may not include coloring, detailed data on roads, information indicating road widths, and the like.
  • Evacuation map data includes publicly available safety data regarding disaster prevention. This safety data meets the new earthquake resistance standard based on the Building Standards Act (June 1, 1981, revised Building Standards Law Enforcement Ordinance), or June 1, 2000 (Heisei 12). Buildings that conform to the Japanese Building Standards Act and the revision of the construction order, or that conform to the standards of the “National Network Committee for the Promotion of Seismic Diagnosis and Rehabilitation of Existing Buildings” (abbreviated as “National Seismic Network Committee”) It is data indicating whether a plate relating to an object has been issued or whether the building has a Tokyo earthquake proofing mark.
  • this map data contains information related to safety in disaster prevention through a specific investigation or verification by the evacuation map data creator. It is added to the whole area or a part of a specific map.
  • the user can confirm the safety of the building at that time by displaying a predetermined mark or plate icon on the map. It is possible to confirm, and such a recommended evacuation site and its vicinity are set as a recommended evacuation site as a relatively safe place.
  • private houses For example, in buildings that have been granted standards conforming certified buildings or that have been given the Tokyo earthquake resistance mark. Some of the places are considered unsuitable for recommending to general users.
  • a recommended suitability flag (mark) indicating whether or not to use a building or area that is recognized as satisfying the new earthquake resistance standard as a recommended evacuation site is included in this map data, and the map in this embodiment described in detail below.
  • a difference according to the presence or absence of the recommended suitability flag can be provided.
  • the recommended suitability flag is, for example, a bit “1” that satisfies the new earthquake resistance standard and is a recommended evacuation site, and a bit “0” that satisfies the new earthquake resistance standard but is not a recommended evacuation site.
  • the recommended evacuation site in this embodiment includes an emergency evacuation site and an additional building or area.
  • the recommended evacuation site is a combination of one that includes only the emergency evacuation site, one that includes a part of the emergency evacuation site, or one that includes a part of the emergency evacuation site and an additional building or area. May be.
  • the recommended evacuation site may be all or only part of the emergency evacuation site, or may be regarded as including some or all of the emergency evacuation site and further including an evacuation site recommended based on other criteria. It is.
  • the recommended evacuation sites can include all buildings that meet the new earthquake resistance standards, and only buildings excluding private houses etc. are displayed depending on the presence / absence of the recommended propriety flag included in the map data. It is also possible to make a selection that allows the user to set display / non-display based on the presence / absence of a recommended suitability flag.
  • a color that can be distinguished from other areas of the map for example, green
  • the color can be classified in stages such as green, blue, and colorless according to the degree of safety, and further, it can be classified into yellow, orange, and red as the degree of danger increases.
  • color coding is a plurality of different colors depending on the type of disaster (earthquake, tsunami, flood, fire, etc.). Such color-coded information is also used as safety data by the evacuation mode application.
  • red, green, and blue are handled as 1 bit each, 8 colors can be displayed when colorless and black are included. As a result, 8 types of disasters can be handled. Become.
  • a place that can be a recommended evacuation site for a specific disaster type is an area colored green (for example, a high ground) )
  • the evacuation mode application adds or deletes information related to safety, that is, safety data, to or from a specific building or region or a whole or part of a specific map by investigating or verifying by itself. May be configured for use.
  • the evacuation mode application can create or modify individual evacuation map data including recommended evacuation sites according to the user's selection and preference.
  • the map data for evacuation includes information on the evacuation site for staying for a certain period after the emergency evacuation in addition to the evacuation site and ensuring the living environment of the evacuees.
  • This evacuation site information can be used to confirm the location, name, response capability, etc. even during normal times. Once you have moved to the recommended evacuation site, use normal route search means to move to that location. It becomes the target point.
  • the control unit 104 includes a microprocessor, and executes main processes in the portable terminal 100 by reading and executing programs stored in the control unit 104 and the memory 105.
  • the control unit 104 functions as an emergency early warning receiving unit 1041, a map display unit 1042, an operation mode switching unit 1043, and a setting unit 1044.
  • the emergency bulletin receiving unit 1041 receives the emergency bulletin via the communication line connected by the communication circuit 102.
  • the operation mode switching unit 1043 receives the emergency bulletin from the mobile terminal 100 when the emergency bulletin receiving unit 1041 receives the emergency bulletin. Switch to the evacuation mode that displays at least the recommended evacuation site nearest to you.
  • the operation mode switching unit 1043 displays a first message described later when the current position is located at or near the recommended evacuation site.
  • the operation mode switching means 1043 switches the operation mode to the evacuation mode directly or indirectly when the current position is not located in the recommended evacuation place and the vicinity thereof.
  • the setting unit 1044 sets whether the operation mode switching unit 1043 switches the operation mode of the mobile terminal 100 to the evacuation mode.
  • the setting unit 1044 sets in advance that the operation mode switching unit 1043 switches the operation mode to the evacuation mode only when the emergency bulletin reception unit 1041 receives a specific emergency bulletin among the emergency bulletins. .
  • the attribute specifying unit 1045 specifies attribute requirements that the recommended evacuation site should have in accordance with the emergency bulletin.
  • the preferred recommended evacuation site specifying means 1046 is the attribute requirement specified by the attribute specifying unit 1045 from the current position of the mobile terminal 100 specified by the GPS function unit 103 and located in the nearest location from the current position among the recommended evacuation sites. Identify the preferred and recommended evacuation sites that have been met.
  • the map display unit 1042 displays the recommended evacuation site specified by the evacuation map data, and causes the display unit 107 to display the evacuation route to the preferred recommended evacuation site specified by the suitable recommended evacuation site specifying unit 1046.
  • the control unit 104 can detect the current position of the mobile terminal 100 based on the output from the GPS function unit 103, but the communication circuit 102 or other devices can be detected by triangulation based on a distance difference from a plurality of base stations. It is also possible to detect the current position based on the output from the input circuit.
  • the power control unit 106 plays a role of switching between a normal operation and a power saving operation in which power consumption is reduced more than usual according to an instruction from the control unit 104.
  • the power control unit 106 switches to the power saving operation, for example, the communication function in the communication circuit 102 is temporarily interrupted, the brightness of the display unit 107 is reduced, and the operation speed (clock speed) of the control unit 104 is reduced. Power consumption is reduced.
  • the display unit 107 is usually a dot matrix composed of a large number of minute light emitting points, a group of semiconductor switches connected to each of the large number of light emitting points, and a filter.
  • This type of display unit 107 is usually composed of a liquid crystal or an OLED (Organic / Light / Emitting / Diode).
  • OLED Organic / Light / Emitting / Diode
  • the image seen from the surface changes when the light emission point is partially turned on and off by the semiconductor switch group.
  • the evacuation map data for displaying the evacuation route according to the present invention is displayed on the display unit 107.
  • the operation unit 108 is composed of a switch group that accepts an operation from the user with respect to the mobile terminal 100, and is generally composed of a pressure sensor and a push button.
  • FIG. 1 is a block diagram showing the main functions in the mobile terminal. Components such as a control unit and a memory may be distributed in a plurality of LSIs or IC chips. Is not necessarily physically separated.
  • the communication circuit 102 and the GPS function unit 103 may be integrated, and the power supply control unit 106 may be a part of the control unit 104.
  • a commercially available digitizer has a pressure-sensitive sensor disposed on a display unit, and the functions of the display unit 107 and the operation unit 108 are integrated.
  • each element is configured from a semiconductor product in which a control unit and a memory are individually integrated.
  • the control unit 104 When the mobile terminal 100 is performing a normal operation, when the user selects one of the icons of a plurality of applications displayed on the display unit 107, the control unit 104 activates a specific application stored in the memory 105. When the user performs a necessary operation on the operation unit 108, the control unit 104 executes a program corresponding to a specific application stored in the memory 105.
  • the map application stored in the memory 105 is for displaying the current position and the route to the destination.
  • the destination is selected by the user inputting a destination name and attributes (for example, a station, a post office, a recommended evacuation site, etc.) via the operation unit 108.
  • a destination name and attributes for example, a station, a post office, a recommended evacuation site, etc.
  • the mobile terminal 100 allows the route from the current position to the destination even when there is no input of the destination name or the like via the operation unit 108 by the user. Can be displayed.
  • the communication circuit 102 is configured to receive an emergency bulletin transmitted from a base station of a mobile phone operator and to execute processing according to the received emergency bulletin in the display unit 107, the voice input / output unit 109, and the control unit 104. Has been.
  • Emergency early warnings are information including “Earthquake Early Warning”, “Tsunami Warning”, “Special Warning” delivered by the Japan Meteorological Agency, etc., “Disaster / Evacuation Information” delivered by the national / local governments, etc. It contains different types of information such as tsunami warning and special warning.
  • the emergency bulletin is broadcast (broadcast) from the base station of the mobile phone operator to the user's mobile terminal in the target area selected by the mobile phone operator. Also, the mobile phone operator or other service provider can change the emergency bulletin that can be received by the mobile terminal 100 or add additional information.
  • the emergency bulletin in this specification is based on the use of a service that simultaneously distributes messages to a mobile terminal 100 (such as a telephone or a smartphone) in a specific area in a manner that is less susceptible to congestion, and a normal e-mail service. Any or both of those used.
  • emergency bulletins include special warnings that are issued when heavy rain, storms, storm surges, waves, storm snow, and heavy snow that are expected to occur once every several decades, and serious damage to the residential area. And / or “special warning regarding eruption” that is announced when an eruption occurs or is expected.
  • the memory 105 stores the evacuation mode application.
  • the evacuation mode application switches the operation mode of the mobile terminal 100 to the evacuation mode when the emergency bulletin is received.
  • the evacuation mode application activates the map application and displays the evacuation route from the current position of the mobile terminal 100 specified by the GPS function unit 103 to the nearest evacuation site.
  • This evacuation mode application is automatically activated when the power of the mobile terminal 100 is turned on, and an operation for activating the evacuation mode application by the user is unnecessary.
  • the evacuation mode application may be configured to start only when the user performs an operation for starting the evacuation mode application on the mobile terminal 100.
  • this evacuation mode application can also select whether or not to activate the evacuation mode depending on the content of the received emergency bulletin.
  • the selection of evacuation mode activation is set according to the type and extent of the disaster included in the emergency bulletin. For example, taking a tsunami warning as an example, there are three types: a large tsunami warning, a tsunami warning, and a tsunami warning. Of these, a large tsunami warning and a tsunami warning are targeted for emergency warning. In addition, if there is a numerical announcement in the Great Tsunami Warning, it will be announced in three stages, more than 10 meters, 5 to 10 meters, and 3 to 5 meters.
  • the evacuation mode is activated in the case of a large tsunami warning, for example, in the case of a large tsunami warning, but in the case of a tsunami warning, the evacuation mode should not be activated. Is possible. However, since the presence or absence of activation of the evacuation mode is irrelevant to the presence or absence of the display of the emergency bulletin, the emergency bulletin is always displayed by the portable terminal 100.
  • the mobile terminal 100 When the mobile terminal 100 receives the emergency bulletin via the communication line connected to the communication circuit 102, the mobile terminal 100 operates in the evacuation mode, and evacuates from the nearest recommended evacuation site and the current location of the mobile terminal 100 to the recommended evacuation site. The route is displayed together with the emergency bulletin (not shown).
  • the evacuation mode is determined according to the breaking news category such as earthquake, tsunami, and heavy rain included in the emergency breaking news and the severity (for example, seismic intensity 5 or more in the case of an earthquake). It is also possible to configure as described above.
  • the breaking news category such as earthquake, tsunami, and heavy rain included in the emergency breaking news and the severity (for example, seismic intensity 5 or more in the case of an earthquake). It is also possible to configure as described above.
  • the evacuation mode application Is released.
  • the setting as to whether or not the mobile terminal 100 can perform the operation transition to the evacuation mode can be performed in the initial setting of the mobile terminal 100.
  • This setting can also be performed by performing a setting operation in the evacuation mode app and a release operation for releasing the operation in the evacuation mode on the mobile terminal 100 during the evacuation mode app operation.
  • This manual stop of the evacuation mode may or may not be necessary to evacuate immediately depending on the contents of the displayed emergency bulletin, so that the user can select the judgment. For example, when a user is on an upper floor in a safe high-rise building based on seismic design, it is rather than immediately going to an evacuation site when an earthquake or tsunami occurs. This is because it may be preferable to stay on the spot.
  • FIG. 2 is a flowchart for explaining an example of the operation of the control unit 104 of the mobile terminal 100 according to the present embodiment. Each step shown in this flowchart is sequentially processed by the control unit 104 executing a program stored in the memory 105.
  • control unit 104 determines whether or not an emergency bulletin has been received (step S201).
  • step S201 determines that the emergency bulletin has not been received (step S201: No).
  • step S202 the normal processing is continued (step S202).
  • the mobile terminal 100 appropriately executes a call, communication, activation of various applications, and the like according to a user operation. Thereafter, the process of step S201 is executed.
  • control part 104 determines with having received the emergency bulletin (step S201: Yes)
  • it will switch the operation mode of the portable terminal 100 to evacuation mode (step S203).
  • the control unit 104 stops the operation of other applications until a cancellation instruction is issued to instruct the user to cancel the evacuation mode.
  • the control unit 104 acquires the current position of the mobile terminal 100 specified by the GPS function unit 103 (step S204).
  • the GPS function unit 103 constantly or periodically updates the current position, the current position already acquired in the cache memory or the like can be used.
  • control unit 104 specifies a preferred recommended evacuation site that is located in the nearest location from the current location of the mobile terminal 100 acquired by referring to the location data of the recommended evacuation site and that satisfies a preferable attribute as an evacuation site. (Step S205).
  • “nearest” does not necessarily mean a recommended evacuation site that has the shortest linear distance from the current position of the mobile terminal 100, but the recommended length of the arrival route from the current position of the mobile terminal 100 is the shortest. It may mean an evacuation site. Further, in the case of “nearest”, it is not limited to one recommended evacuation site, but single or plural (for example, two to three) according to the default setting at the time of shipping the portable terminal 100 in advance or the setting by the user thereafter. It may be a recommended evacuation site.
  • step S205 the process of identifying the preferred recommended evacuation site in this embodiment (step S205) will be described using an example of identifying the nearest recommended evacuation site based on the map data held in the memory 105 in the mobile terminal 100.
  • the recommended evacuation site data included in the latest map data it can be performed after the step of selecting map data (step S207 or step S208) described later.
  • the control unit 104 decodes the contents of the emergency bulletin received by the emergency bulletin receiving unit 1041 (step S2051).
  • This emergency bulletin may be composed of a specific code that cannot be identified by the user itself, or may be composed of a text message, an e-mail, or the like that displays the type of disaster intended to be read by a person.
  • control unit 104 identifies the attribute requirements that the recommended evacuation site should have according to the content of the acquired emergency bulletin and confirms the safety (step S2052).
  • the emergency bulletin is a tsunami warning that notifies the arrival of a tsunami.
  • evacuation to a recommended evacuation site facing the sea or river or a recommended evacuation site with a low sea level is inappropriate. Therefore, the control unit 104 is at an upper floor that is at least considerably higher than the height at which the assumed tsunami reaches or is higher than the height at which the assumed tsunami of a building that can withstand the tsunami reaches, A place where emergency evacuation can be performed is identified as an attribute requirement that the recommended evacuation place should have.
  • the emergency bulletin is a torrential rain warning that informs that there is a high risk of landslides due to torrential rain.
  • the control unit 104 identifies a place that is not located under the cliff as an attribute requirement that the recommended evacuation place should have.
  • the control part 104 specifies the attribute requirements according to each of multiple types of alarm, when an emergency early warning is what alert
  • step S2052 for identifying the attribute requirements that the recommended evacuation site should have and confirming safety will be described based on FIG.
  • the control unit 104 first acquires an attribute of a region such as a building or a park to which the acquired current position belongs from map information before specifying the nearest recommended evacuation site.
  • control unit 104 proceeds to identification of the habit attribute requirement and safety confirmation (step S2052).
  • step S20521 attribute requirements that a suitable recommended evacuation site should have are specified based on the disaster type information obtained by decoding the emergency bulletin.
  • the warning may be a large place such as a park that has a structure that can withstand the expected seismic intensity or a structure that does not collapse. This is an attribute requirement that a suitable recommended evacuation site should have.
  • step S20522 the map data related to the current location is referred to, and whether or not safety data related to disaster prevention is attached to the point is checked. Data is acquired (step S20522).
  • Step S20523 it is determined whether or not the current location is a relatively safe place by referring to and comparing the characteristics that the recommended evacuation site should have and the safety data obtained from the map data (safety confirmation step).
  • the accuracy of the current location detected by GPS may be indistinguishable, for example, whether it is outside or inside a specific park or building.
  • this message is displayed as the first message, “Your current location is relatively safe, but please evacuate as necessary according to the circumstances.” Is a relatively safe place. "(Here, ⁇ are the recommended evacuation site names such as the Tokyo Metropolitan Government and Yoyogi Park). The building meets the latest earthquake resistance standards, ”“ Current location is relatively safe ”for tsunamis, or“ the buildings there are higher than the expected tsunami height, ”etc. It is necessary to display appropriate characters in a relatively safe place or in the vicinity thereof.
  • the entire screen is transmitted in a more easily understandable manner as a color message to the user.
  • the determination result regarding the relative safety of the current location is also displayed by sound, which is more preferable because it may help the user to recognize more.
  • a first message indicating that it is relatively safe is displayed on the display unit 107, the determination result regarding the safety is notified by the voice input / output unit 109, and a predetermined time has elapsed (for example, 5 After a message read confirmation operation of pressing a predetermined icon displayed on the screen by the user (up to 10 seconds), the process returns to the emergency bulletin reception step S201, and subsequently returns to the state of monitoring the occurrence of the subsequent emergency bulletin.
  • the current location is a building that conforms to the new earthquake resistance standards, a building that conforms to the standards of the “National Seismic Network Committee”, or a building that has the Tokyo earthquake resistance mark attached. Since it is highly possible to withstand the main shock that follows the aftershock for the time being, the current location can be considered relatively safe and the same process can be performed.
  • step S20523 determines whether the current location is relatively dangerous or “depending on the situation.
  • step S20524 start evacuation "on the display unit 107 (step S20524), and after a predetermined period of time that can be recognized by the user (for example, 5 to 10 seconds) or after a read confirmation operation by the user, a preferred recommended evacuation site is selected. The processing moves to step 2053 for specifying.
  • this second message is “Your current location is relatively dangerous, so please evacuate as necessary depending on the surroundings.”, “Please evacuate promptly because this place is dangerous! Public If there is an evacuation instruction from the institution, please follow them. ”,“ Evacuation-related facilities such as evacuation sites in the vicinity are displayed on the map. Let's take necessary evacuation actions according to the surrounding situation. ⁇ If there is a guidance from a firefighter, follow it. Click on the icon to display detailed information and route search. ”Display appropriate screens and / or voices in relatively dangerous places. .
  • Step S20523 the reason for being relatively dangerous is that when an emergency early warning about a large-scale disaster arrives, the risk is increasing almost all over the area, so that this flow is the default (safety confirmation) Step S20523) is set, and usually a message prompting the evacuation action is displayed (step S20524).
  • step 2053 for identifying a preferred recommended evacuation place from the viewpoint of promptly evacuating, and then a map, an evacuation place, and an evacuation route are displayed.
  • a map, an evacuation place, and an evacuation route are displayed.
  • the message display time (for example, 5 to 10 seconds) that can be recognized by the user and the read confirmation operation by the user become unnecessary compared with the case where the current location is in a relatively safe place.
  • the time until the display of the evacuation place is shortened, and it is possible to visually confirm that the evacuation operation is promoted.
  • the message display by text and only displaying the message by voice there is no need to provide a message display time for recognizing the text message for a certain period, and the evacuation site can be displayed more quickly. It becomes possible.
  • the control unit 104 acquires the evacuation map data from the memory 105, and calculates the distance between each recommended evacuation site indicated by the evacuation map data and the current position, thereby obtaining the nearest location.
  • the recommended evacuation site is identified (step S2053).
  • the control unit 104 downloads the map data to the mobile terminal 100 and uses the downloaded map data.
  • both the presence / absence of the recommended propriety flag that is, whether the value of the recommended propriety flag bit is “0” or “1” is equally applied, and the current location is determined. Whether or not it is relatively safe is determined, but in identifying the nearest recommended evacuation site (step S2053), there is a recommended suitability flag (that is, the value of the recommended suitability flag bit is “1”), and only the recommended evacuation sites are searched. Of the recommended evacuation sites that are targeted or searched, only those having a recommended suitability flag are displayed on the screen.
  • the map data for evacuation is composed of numerical values or characters that express combinations of nodes that are road network intersections and other road network node points and links that indicate road sections connecting the nodes.
  • the control unit 104 calculates a relative distance or an arrival distance between the current position and each recommended evacuation site using the node number assigned to each node and the link and information indicating the link number. .
  • the control part 104 makes some recommended evacuation places selected in an order from the shortest calculated relative distance or arrival distance as the nearest recommended evacuation place.
  • the map data for evacuation includes attribute information indicating how much resistance each point of the recommended evacuation site has against what kind of disaster.
  • control unit 104 acquires the attribute information of the nearest recommended evacuation site near the current location from the evacuation map data and sets it in the register in the comparison means (step S2054).
  • control unit 104 determines the attribute requirements of each recommended evacuation site, information on the emergency evacuation site in the event of a fire transmitted from a local government, included in the evacuation map data, information based on an original field survey, and It is identified based on specific attribute parameters set for each recommended evacuation site.
  • control unit 104 sets, in the comparison means, attribute information including attribute flags for each of the four attribute requirements as shown in Table 2 for the nearest evacuation place acquired from the evacuation map data.
  • the recommended evacuation place with the recommended suitability flag “1” is displayed, the recommended evacuation place with the recommended suitability flag “0” is also determined with reference to the attribute flag for safety determination. .
  • the attribute flag when the attribute requirement is satisfied, the attribute flag is set to “1”, and when the attribute requirement is not satisfied, the attribute flag is set to “0”.
  • the attribute information of each recommended evacuation site is composed of 4-bit data composed of 1-bit attribute flags for each of the four types of attribute requirements.
  • the recommended evacuation site X satisfies all four attribute requirements.
  • the recommended evacuation site Y is a recommended evacuation site that is suitable when the emergency bulletin reports a “tsunami warning” or “storm surge warning”, but is an inappropriate recommended evacuation site in other cases.
  • the recommended evacuation site Z is a recommended evacuation site that is suitable when the emergency bulletin reports a “concentrated heavy rain warning” or “large-scale fire alarm”, but is an inappropriate recommended evacuation site in other cases. It is shown that.
  • control unit 104 determines whether or not the attribute information of the nearest recommended evacuation site satisfies the attribute requirements that the specified recommended evacuation site should have (step S2055).
  • control unit 104 determines that the attribute information of the nearest recommended evacuation site does not satisfy the attribute requirement that the specified recommended evacuation site should have (step S2055: No). In this case, the control unit 104 determines whether there are other recommended evacuation sites that have not yet been determined (step S2056).
  • step S2056 If the control unit 104 determines that there are other recommended evacuation sites that have not yet been determined (step S2056: Yes), the nearest recommended evacuation site other than the recommended evacuation sites that have been determined is determined. An evacuation place is specified (step S2053). Thereafter, the processing after step S2054 is executed.
  • step S2056 determines that there are no other recommended evacuation sites that have not yet been determined.
  • step S2057 the control unit 104 determines that there are no other recommended evacuation sites that have not yet been determined.
  • control unit 104 determines that the nearest recommended evacuation site satisfies the specified attribute requirements (step S2055: Yes)
  • the control unit 104 identifies the nearest recommended evacuation site as a preferred recommended evacuation site (step S2058). Thereafter, processing for determining whether or not the communication line shown in step S206 in FIG. 2 is disconnected is executed.
  • the recommended evacuation site is at least significantly higher than the expected tsunami height, or the expected tsunami of a building that can withstand the tsunami arrives It must be located on an upper floor that is higher than the height you want to evacuate.
  • the control unit 104 sets the attribute information MSB to “1”, that is, the attribute information starts from “8” in hexadecimal notation.
  • the recommended evacuation sites X and Y indicating values between “F” are specified as the preferred recommended evacuation sites.
  • the control unit 104 preferably recommends the recommended evacuation sites X and Z whose third bit from the LSB of the attribute information is “1”. Identify as evacuation site.
  • the control unit 104 preferably recommends the recommended evacuation sites X and Z whose second bit from the LSB of the attribute information is “1”. Identify as evacuation site.
  • the recommended evacuation site is at least a place that is expected to be flooded due to the expected storm surge or a location where the expected storm surge reaches, It must be located at a considerable distance.
  • the urgency is low compared to the tsunami because it is periodic at high tide and is expected in a certain temporal and regional range when storm surges occur.
  • the control unit 104 identifies the recommended evacuation sites X and Y whose LSB of the attribute information is “1” as the preferred recommended evacuation site. .
  • step S2055 the example in which the control unit 104 executes the process of step S2055 has been described.
  • the process of step S2055 is executed by, for example, a comparison circuit (comparator) included in an integrated circuit. Also good.
  • the control unit 104 identifies the recommended evacuation site where the value indicated by the attribute information is a recommended evacuation site where the hexadecimal value is “0” or more. It will be. In this case, any nearest recommended evacuation site is not excluded from the candidates for the preferred recommended evacuation site by the attribute information of the recommended evacuation site.
  • control unit 104 executes a series of processes from step S2051 to S2058 to identify a preferred recommended evacuation site that is the nearest recommended evacuation site suitable for evacuation, and then performs step S206 in FIG. Execute the process.
  • the control unit 104 determines whether or not the communication line for acquiring additional data is interrupted (step S206). It should be noted that this step can be omitted from the user setting or default state. In such a case, the recommended evacuation site is selected based only on the data inherent in the portable terminal, but there is no problem in actual use if sufficient information is held in advance. By eliminating this step, the time until the recommended evacuation site display can be shortened.
  • step S206 If the control unit 104 determines that the communication line is disconnected due to a collapse of a neighboring base station or the like (step S206: Yes), the control unit 104 selects map data stored in advance in the memory 105 of the mobile terminal 100 (step S207). On the other hand, when determining that the communication line can be used normally (step S206: No), the control unit 104 downloads the map data to the portable terminal 100 and selects the downloaded map data (step S208).
  • the map data stored in the memory 105 may be map data used in normal processing.
  • the map data used in the normal processing may be limited to those around the current position when the map application is last used, and information at the time of receiving the emergency bulletin is held in the mobile terminal 100. It may not be.
  • the map data used in normal processing is map data in a range covering the whole of Japan, a considerable amount of memory capacity is consumed when the map data is always stored in the mobile terminal 100. Therefore, when the maximum capacity of the memory 105 of the portable terminal 100 is small, the entire map data cannot be stored in the memory 105.
  • the map data used when the mobile terminal 100 operates in the evacuation mode can make the user recognize the recommended evacuation site and the evacuation route from the current position to the recommended evacuation site. It is enough that the information is included.
  • the map data used when the mobile terminal 100 operates in the evacuation mode may not include data relating to general commercial facilities and the like as the map data used for normal processing. Therefore, the map data used when the mobile terminal 100 operates in the evacuation mode may be relatively small-capacity map data that does not include data related to general commercial facilities. In order to share map data at normal times, it is possible to include data relating to general commercial facilities in local map data used in the evacuation mode. However, according to this embodiment, a relatively large memory capacity is portable. It will be required for the terminal.
  • the advantage that the map data used when the mobile terminal 100 operates in the evacuation mode is the map data in a range that covers the whole of Japan, for example, a user who usually lives only in the vicinity of Tokyo, When you receive an emergency bulletin when you visit Hokkaido or Okinawa, you can display recommended evacuation sites without downloading new map data.
  • the map data used when the mobile terminal 100 operates in the evacuation mode includes, for example, only map data from which information on color is deleted, and information on a required road (however, a road that touches an evacuation site is regarded as a required road). You may be comprised from the map data or the map data which handled all the road widths as fixed.
  • the route to the destination cannot be displayed, but the direction and distance to the destination can be displayed by comparing the current position and destination based on the built-in magnetic sensor and latitude / longitude information. It becomes.
  • a route structure can be searched and displayed in an area having detailed map data including road information, while a hybrid structure in which the direction and distance are indicated in an area having white map data not including road information. It becomes possible.
  • the memory 105 may store map data including only recommended evacuation site data and evacuation route data to the recommended evacuation site.
  • the control part 104 may be comprised so that the data regarding a general commercial facility etc. may be downloaded via a communication line and it may add to the map data which the memory 105 memorize
  • the control unit 104 selects either the map data stored in the memory 105 or the downloaded map data, and then the recommended evacuation site and the current location of the mobile terminal 100 to the selected nearest recommended evacuation site.
  • the evacuation route is displayed on the display unit 107 (step S209).
  • FIG. 5 shows an example of a screen displayed on the display unit 107 that displays one evacuation route 303 to one recommended evacuation site 302 according to the present embodiment.
  • the evacuation route 303 from the current position 301 acquired using the GPS function of the mobile terminal 100 to the recommended evacuation site 302 is displayed by the map application.
  • other roads, terrain, buildings, etc. are not displayed in this figure, but it is needless to say that a map to the extent necessary to guide the user to escape should be displayed at the same time (below The same applies to other figures).
  • the display unit 107 also displays icons for operating the map application.
  • icons for operating the map application In the example shown in FIG. 5, a cancel icon 304, a size adjustment icon 305 for enlarging / reducing the map, a scale icon 306, and a selection icon 307 are displayed.
  • the cancel icon 304 is an icon for canceling the evacuation mode in which the evacuation route 303 to the recommended evacuation site 302 is displayed on the display unit 107.
  • the display unit 107 and the operation unit 108 according to the present embodiment are digitizers arranged in a stacked manner on the surface of the mobile terminal 100, and a desired operation is executed by pressing an appropriate icon.
  • the length and display unit of the scale icon 306 change according to the enlargement or reduction of the image displayed on the display unit 107.
  • the screen can be automatically moved so that the current position 301 is the center, and the scale and arrangement are automatically adjusted so that the current position 301 and the recommended evacuation site 302 are always displayed. You may do it. It is also possible to configure the map to move in a direction in which the user presses and holds a specific point with a finger and slides the finger.
  • the control unit 104 determines whether or not a cancel command has been issued to cancel the evacuation mode by the user (step S210). This release command is made when the user touches the release icon 304 displayed on the display unit 107.
  • the control unit 104 executes again the process of step S206 for determining whether or not the communication line is disconnected. This is because the state of the communication line with the base station changes depending on the location where the user has moved, or the base station that was available at the beginning of the disaster can no longer be used.
  • the control unit 104 continues to display the evacuation route on the display unit 107 while repeatedly updating the current position of the mobile terminal 100 using the GPS function of the mobile terminal 100 by repeating the processing from step S206 to step S210.
  • step S210 when a cancellation command is issued by the user (step S210: Yes), the control unit 104 ends a series of evacuation modes and returns to the process of step S201 for determining whether or not a new emergency bulletin has been received. At this time, the control unit 104 restores the operation of the other application that has been stopped.
  • control unit 104 may use only the map data stored in the memory 105 and may not use the communication line at all. Alternatively, when the mobile terminal 100 is operating in the evacuation mode, the control unit 104 may use only downloaded map data.
  • map data used when the mobile terminal 100 operates in the evacuation mode is stored in the memory 105 of the mobile terminal 100 in advance. Is preferable from the aspect of crisis management.
  • map data stored in the memory 105 is preinstalled when the mobile terminal 100 is shipped, downloaded after the mobile terminal 100 is shipped, or updated sequentially when the mobile terminal 100 is used.
  • the portable terminal 100 has a function of causing the display unit 107 to display a plurality of recommended evacuation sites or a plurality of evacuation routes.
  • the display of the evacuation route shown in FIG. 5 of the first embodiment displays only the nearest recommended evacuation site, but in some cases, a plurality of recommended evacuation sites and / or a plurality of evacuation routes are displayed. In some cases, it may be preferable that the user can select an evacuation route to be used by himself.
  • the portable terminal 100 according to the present embodiment is more advantageous than that according to the first embodiment.
  • the configuration of portable terminal 100 according to the present embodiment is the same as the configuration shown in FIG.
  • FIG. 6 and 7 are flowcharts showing an example of the operation of the mobile terminal 100 according to the present embodiment.
  • the same reference numerals are assigned to the same processes as those in the first embodiment.
  • the control unit 104 determines whether or not there is a multiple recommended evacuation site display command for instructing to display a plurality of recommended evacuation sites after executing a series of processes from step S201 to S205. Determination is made (step S401). When determining that there is no multiple recommended evacuation site display command (step S401: No), the control unit 104 selects the nearest recommended evacuation site according to a predetermined condition (step S402). On the other hand, when determining that there is a plurality of recommended evacuation site display commands (step S401: Yes), the control unit 104 selects a plurality of recommended evacuation sites (step S403).
  • control unit 104 executes a series of processing from step S206 to S208. Subsequently, as illustrated in FIG. 7, the control unit 104 causes the display unit 107 to display one or more recommended evacuation sites (step S ⁇ b> 404).
  • the control unit 104 determines whether or not there is a command to display a plurality of evacuation routes for each recommended evacuation site (step S405). When it is determined that there is no instruction to display a plurality of evacuation routes (step S405: No), the control unit 104 selects one evacuation route according to a predetermined condition (step S406). On the other hand, when determining that there is a command to display a plurality of evacuation routes (step S405: Yes), the control unit 104 selects a predetermined number of evacuation routes (step S407).
  • control unit 104 causes the display unit 107 to display one or more evacuation routes in a form of additionally displaying one or more recommended evacuation sites (step S408). Thereafter, the processing after step S210 is executed.
  • step S401 the control unit 104 selects a plurality of recommended evacuation sites or one recommended evacuation site depending on whether or not a command to display a plurality of recommended evacuation sites has been given in advance in the process of step S401.
  • the processing content of step S401 is not limited to this.
  • the control unit 104 displays whether or not to display a plurality of recommended evacuation sites and options for the display on the display unit 107, and selects a plurality of recommended evacuation sites or one according to the user's selection.
  • a recommended evacuation site may be selected.
  • control unit 104 displays a character string “Display multiple evacuation sites?” On the display unit 107 and the user touches the release icon 304 or the selection icon 307, the control unit 104 responds accordingly. What is necessary is just to make it process. The same applies to the determination of whether to display a plurality of evacuation routes or one evacuation route for each recommended evacuation site in step S405.
  • the control unit 104 determines that the one recommended evacuation place or one evacuation route cannot be used. It is preferable that the recommended evacuation place or evacuation route can be set to be displayed on the display unit 107.
  • control unit 104 first displays the recommended evacuation place in the process of step S404 and then additionally displays the evacuation route in the process of step S408.
  • the control unit 104 may collectively display the recommended evacuation site information and the evacuation route information on the display unit 107.
  • the evacuation sites and evacuation routes displayed on the display unit 107 are displayed substantially simultaneously. Become.
  • FIG. 8 shows an example of a display screen that displays one evacuation route to a plurality of recommended evacuation sites according to the present embodiment.
  • the recommended evacuation sites A, B, C (501, 502, 503) and evacuation routes 504, 505, 506 from the current position 500 to the recommended evacuation sites 501, 502, 503 are displayed on the display unit 107. It is displayed.
  • FIG. 9 shows an example of a display screen that displays a plurality of evacuation routes according to the present embodiment.
  • a plurality of evacuation routes 602, 603, 604 from the position 600 to the recommended evacuation site 601 are displayed on the display unit 107.
  • FIG. 10 shows an example of a display screen that displays a plurality of evacuation routes 603 and 607 to one recommended evacuation site 601 after the current position of the mobile terminal 100 has moved from the position 600 to the position 605. .
  • the same reference numerals as those in FIG. 9 are assigned to the same recommended evacuation sites and evacuation routes shown in FIG. 9.
  • An evacuation route 607 indicates an evacuation route after the position 605 that is the current position of the mobile terminal 100 in the evacuation route 602.
  • a technique used in a normal map application such as displaying on the display unit 107 so that the traveling direction of the user holding the mobile terminal 100 is on the upper side of the display unit 107 is applied to the present embodiment. Also good.
  • the present embodiment when the current position of the mobile terminal 100 moves from the position 600 to the position 605, only the evacuation route after the position 605 that is the current position of the mobile terminal 100 is displayed on the display unit 107 as shown in FIG.
  • the displayed example has been described.
  • the present invention is not limited to this.
  • FIG. 11 when the current position of the mobile terminal 100 moves from the position 600 to the position 605, from the evacuation route 604 and the position 600 when the current position is the position 600.
  • the route followed by the mobile terminal 100 up to the position 605 may be displayed on the display unit 107 with a broken line.
  • the user can always recognize the evacuation route options as the user approaches the recommended evacuation site 601. For example, when a user is moving on the evacuation route 602 and an inconvenience such as breakage of the evacuation route 602 is found, the user can return to the original position 600 and select the evacuation route 604. .
  • the control unit 104 even when the control unit 104 specifies only three evacuation routes 602, 603, and 604 when the current position of the mobile terminal 100 is the position 600, the control unit 104 moves to the position 605.
  • a new evacuation route from the position 605 which is the new current position to the recommended evacuation site 601 may be specified.
  • the recommended evacuation place from the position 605 that is the new current position may be displayed on the display unit 107.
  • the selection of the process to be assigned to the evacuation mode application is a design matter.
  • the basic OS software may be in charge of the processes in steps S201, S202, and S210
  • the evacuation mode application may be in charge of the processes in steps S203 to S209.
  • the evacuation mode application may be in charge of all the processing described in FIG.
  • various modifications can be made to the process handled by the evacuation mode application.
  • the example in which the current position detection function is realized by the GPS function unit 103 in the mobile terminal 100 has been described.
  • the current position of the mobile terminal 100 can be specified with a certain degree of accuracy, this is used. It is not limited.
  • each embodiment demonstrated the example which displays a recommendation evacuation place and an evacuation route on the display part 107 of the portable terminal 100, it is not limited to this,
  • an evacuation route is notified to a user with an audio
  • the memory 105 stores voice information instructing the traveling direction in advance, and the control unit 104 appropriately selects the voice information from the memory 105 based on the current position of the mobile terminal 100 and the evacuation map data, What is necessary is just to make it output to the audio
  • map data for evacuation in each of the above embodiments has been described as including recommended evacuation sites located throughout Japan where emergency bulletins are transmitted from communication carriers, the present invention is implemented overseas. Of course, it should be within the range that can be reached by the urgent news of the telecommunications carrier in that country, and the data of recommended evacuation sites in multiple countries or all over the world, as long as the amount of information that is always stored in the mobile terminal 100 allows. Can also be included.
  • the evacuation map data is described as being separated from the general map data. This is intended to reduce the constantly stored data in the mobile terminal 100, It can also be integrated into general map data including recommended evacuation sites.
  • the setting as to whether or not the control means according to the present invention activates the evacuation mode is determined in advance, but it is also possible to set the evacuation mode to be activated at all times when an emergency warning is received.
  • control unit 104 is illustrated as an example of stopping the operation of other applications until a cancellation instruction for instructing the user to cancel the evacuation mode is given. This is because the evacuation route to the recommended evacuation site is displayed even if it is lowered. Depending on the remaining battery level, it is possible to determine whether this operation is to be performed or not, or not to perform this power saving operation itself.
  • the user can use the map data for evacuation according to the present invention when searching for and moving to the nearest evacuation site after evacuating safely to the recommended evacuation site.
  • displaying the plurality of evacuation sites, the movement route display, and the progress display during the movement in the same manner as the recommended evacuation site movement is utilized when the user moves to the evacuation site.
  • an emergency bulletin when an emergency bulletin is received, only the recommended evacuation site is displayed, and the location of evacuation or the route to which location is displayed is determined by the user. It can also be configured to wait for an input of pressing an icon.
  • This embodiment is particularly useful when the emergency bulletin reception is not specified based on the current position, that is, when it is received nationwide. This is because, for example, a case where an earthquake disaster bulletin generated in Kagoshima is received in Hokkaido occurs. In this case, there is no need to take evacuation action.
  • the distance and direction to the recommended evacuation site are simply displayed without indicating the evacuation route. Even if there is no detailed data regarding the road, a simple guide system can be configured in which the vehicle can arrive at the destination by heading in a certain direction.
  • the mobile terminal 100 can be realized by using a normal computer system without depending on a dedicated system.
  • a computer connected to a network stores a program for executing the above operation on a non-transitory recording medium (CD-ROM (Compact Disc Read Only Memory) etc.) that can be read by the computer system.
  • CD-ROM Compact Disc Read Only Memory
  • You may comprise the portable terminal 100 which performs the above-mentioned process by distributing and installing the said program in a computer system.
  • the method of providing the program to the computer is arbitrary.
  • the program may be uploaded to a bulletin board (BBS (Bulletin Board System)) of a communication line and distributed to a computer via the communication line.
  • BBS bulletin Board System
  • the computer activates this program and executes it in the same manner as other applications under the control of the OS (Operating System).
  • OS Operating System
  • SYMBOLS 100 Portable terminal, 101: Bus, 102: Communication circuit, 103: GPS function part, 104: Control part, 105: Memory, 106: Power supply control part, 107: Display part, 108: Operation part, 109: Voice input / output , 301,500: current position, 302: recommended evacuation site, 303: evacuation route, 304: release icon, 305: size adjustment icon, 306: scale icon, 307: selection icon, 501, 502, 503, 601: recommended Evacuation site, 504, 505, 506, 602, 603, 604, 607, 801: evacuation route, 600, 605: position, 1041: emergency early warning receiving means, 1042: map display means, 1043: operation mode switching means, 1044: Setting means, 1045: attribute specifying means, 1046: preferred recommended evacuation site specifying means

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  • Radar, Positioning & Navigation (AREA)
  • Remote Sensing (AREA)
  • Business, Economics & Management (AREA)
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  • Automation & Control Theory (AREA)
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Abstract

Selon la présente invention, une unité de mémoire (105) stocke des données de carte d'évacuation comprenant au moins des données de géolocalisation d'un site d'évacuation recommandé. Un moyen de spécification de site d'évacuation recommandé préféré (1046) spécifie un site d'évacuation recommandé préféré situé à l'emplacement le plus proche sur la base de l'emplacement actuel et des données de carte d'évacuation. Le moyen d'affichage de carte (1042) est apte à afficher le site d'évacuation recommandé préféré le plus proche à partir de l'emplacement actuel sur la base des données de carte acquises à partir de l'unité de mémoire (105), à obtenir une route d'évacuation vers un emplacement désigné par un utilisateur, et à afficher la route d'évacuation sur les données de carte. Le moyen de commutation de mode de fonctionnement (1043) effectue un premier affichage de message si l'emplacement actuel est situé au niveau ou à proximité d'un site d'évacuation recommandé, et passe directement ou indirectement à un mode d'évacuation si l'emplacement actuel n'est pas situé au niveau ou à proximité d'un site d'évacuation recommandé.
PCT/JP2017/044878 2016-12-14 2017-12-14 Terminal portable, procédé de commande de terminal portable et programme WO2018110640A1 (fr)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109241452A (zh) * 2018-11-19 2019-01-18 天津网之易创新科技有限公司 信息推荐方法及装置、存储介质和电子设备

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006292402A (ja) * 2005-04-06 2006-10-26 Xanavi Informatics Corp ナビゲーション装置
JP2012203747A (ja) * 2011-03-25 2012-10-22 Yasuaki Iwai 表示装置、描画用プログラム、防災システム
JP2014068261A (ja) * 2012-09-26 2014-04-17 Kyocera Corp 無線通信端末及び無線通信システム
JP2015053031A (ja) * 2013-08-05 2015-03-19 ソノー電機工業株式会社 ユーザの現在位置と現在方位角を用いて目的の地理的情報を検索してユーザに提供するユーザ携帯端末

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006292402A (ja) * 2005-04-06 2006-10-26 Xanavi Informatics Corp ナビゲーション装置
JP2012203747A (ja) * 2011-03-25 2012-10-22 Yasuaki Iwai 表示装置、描画用プログラム、防災システム
JP2014068261A (ja) * 2012-09-26 2014-04-17 Kyocera Corp 無線通信端末及び無線通信システム
JP2015053031A (ja) * 2013-08-05 2015-03-19 ソノー電機工業株式会社 ユーザの現在位置と現在方位角を用いて目的の地理的情報を検索してユーザに提供するユーザ携帯端末

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109241452A (zh) * 2018-11-19 2019-01-18 天津网之易创新科技有限公司 信息推荐方法及装置、存储介质和电子设备

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