WO2018230656A1 - Système de fourniture d'informations de site, procédé de fourniture d'informations de site, et programme - Google Patents

Système de fourniture d'informations de site, procédé de fourniture d'informations de site, et programme Download PDF

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Publication number
WO2018230656A1
WO2018230656A1 PCT/JP2018/022764 JP2018022764W WO2018230656A1 WO 2018230656 A1 WO2018230656 A1 WO 2018230656A1 JP 2018022764 W JP2018022764 W JP 2018022764W WO 2018230656 A1 WO2018230656 A1 WO 2018230656A1
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WIPO (PCT)
Prior art keywords
unit
display
map
information
point
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Application number
PCT/JP2018/022764
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English (en)
Japanese (ja)
Inventor
瞬 岩▲崎▼
浅海 壽夫
詩園 徳永
アンドリ ピディン
トマス ポンテフラクト
ユゼ リ
久和 山根
Original Assignee
本田技研工業株式会社
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Application filed by 本田技研工業株式会社 filed Critical 本田技研工業株式会社
Priority to JP2019525525A priority Critical patent/JP7332471B2/ja
Publication of WO2018230656A1 publication Critical patent/WO2018230656A1/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
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B29/00Maps; Plans; Charts; Diagrams, e.g. route diagram
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B29/00Maps; Plans; Charts; Diagrams, e.g. route diagram
    • G09B29/10Map spot or coordinate position indicators; Map reading aids

Definitions

  • the present invention relates to a point information providing system, a point information providing method, and a program.
  • the present application claims priority based on Japanese Patent Application No. 2017-1119022 filed in Japan on June 16, 2017, the contents of which are incorporated herein by reference.
  • the present invention has been made in consideration of such circumstances, and a point information providing system and a point information providing method capable of arousing a user's interest in a specific point and giving a motivation to stop at the point.
  • One of the purposes is to provide a program.
  • the point information providing system includes a display unit (140), a position specifying unit (120) for specifying the position of the own device, a position specified by the position specifying unit, When the predetermined distance to the specific point is within a reference distance that increases corresponding to the map range displayed on the display unit, the presence of the specific point is masked to notify the presence. And a display control unit (130) that controls the display unit to display an image on a map displayed on the display unit.
  • the display control unit masks at least a part of the related information of the specific point and associates an image informing the presence with the specific point on the map
  • the display unit is controlled so as to be displayed on the screen.
  • the display control unit masks at least a part of the related information of the specific point corresponding to at least one of the user's interest or preference and notifies the presence.
  • the display unit is controlled to display an image on the map.
  • the display unit, the position specifying unit for specifying the position of the own device, and the position specified by the position specifying unit are displayed on the display unit.
  • the image is within a reference area that increases corresponding to the map range, an image informing the presence by masking at least a part of the related information of a predetermined specific point is displayed on the map displayed on the display unit.
  • a display control unit that controls the display unit.
  • the point information providing system includes an imaging unit (150) that images a real space, a display unit, a position specifying unit that specifies the position of the own device, and the position specifying unit.
  • an imaging unit 150
  • a display unit a position specifying unit that specifies the position of the own device
  • the position specifying unit When the distance between the specified position and a predetermined specific point is within a reference distance that increases as the angle of view increases, an image is created by masking at least part of the related information of the specific point
  • a display control unit that controls the display unit so as to be superimposed on the through image of the imaging unit.
  • the display control unit further includes a map in which a distance between the position specified by the position specifying unit and a predetermined specific point is displayed on the display unit.
  • the display unit is configured to display an image informing the existence by masking at least a part of the related information of the specific point on the map displayed on the display unit.
  • a display pattern for displaying on the map an image informing the presence by masking at least a part of the related information of the specific point, and an image for informing the presence of the specific point. The display unit is controlled so that the display pattern to be displayed superimposed on the image can be switched.
  • the information processing apparatus further includes a reception unit (140) that receives an input of a destination, and the display control unit is specified by the position specifying unit. A specific point within a predetermined distance from the route from the received position to the destination received by the reception unit, and masking at least a part of the route passing through the acquired specific point and the related information of the specific point Then, the display unit is controlled to display an image informing the presence on the map.
  • the reception unit further receives an input of a type of the specific spot and a priority of the type
  • the display control unit receives the specific specified by the reception unit
  • An itinerary is generated based on the type related to the point and the priority of the type, and the display unit is controlled to display the generated information related to the itinerary on the map.
  • the computer specifies the position of the own device, and the distance between the specified position and a predetermined specific point is displayed on the display unit.
  • the image is displayed on the map displayed on the display unit by masking at least a part of the related information of the specific point when the distance is within a reference distance that increases corresponding to the map range.
  • a program causes a computer to specify the position of the own device, and a map range in which a distance between the specified position and a predetermined specific point is displayed on the display unit
  • the display unit is configured to display on the map displayed on the display unit an image informing the presence by masking at least a part of the related information of the specific point. It is a program to be controlled.
  • the user can be interested in a specific point and can be motivated to stop by the point.
  • the point information providing system can clearly communicate the position of a specific point to the user.
  • the point information providing system can provide a specific point in accordance with the user's interests and preferences.
  • the point information providing system can display an image indicating the presence of a specific point in the reference area on condition that the user has entered the reference area. Therefore, it is possible to arouse the user's interest in a specific point and provide a motivation to stop at that point.
  • the point information providing system displays the image indicating the presence of the specific point in association with the object in the real space displayed on the display unit, so that the specific point can be easily provided to the user. Can be grasped. Therefore, it is possible to arouse the user's interest in a specific point and provide a motivation to stop at that point.
  • the user can switch between a specific point displayed on the map and a specific point displayed superimposed on the through image according to his / her preference.
  • the point information providing system can display a detour route for stopping at a specific point, so as to arouse the user's interest in the specific point and provide a motivation to stop at the point. it can.
  • the point information providing system can provide an itinerary corresponding to the setting information set by the user.
  • FIG. (1) for demonstrating the specific example of display control of point information.
  • FIG. (2) for demonstrating the specific example of display control of point information.
  • FIG. (3) shows an example of the content of action history information.
  • flowchart shows an example of the flow of the point information provision process of 1st Embodiment.
  • FIG. 1 is a diagram illustrating a configuration example of a spot information providing system 1 according to the first embodiment.
  • the point information providing system 1 includes, for example, one or more terminal devices 100 and a server device 200.
  • the terminal device 100 and the server device 200 communicate via the network NW.
  • the network NW includes, for example, a radio base station, a Wi-Fi access point, a communication line, a provider, the Internet, and the like.
  • the terminal device 100 is a portable terminal device such as a smartphone or a tablet terminal.
  • the terminal device 100 may be a wearable terminal such as an HMD (Head-Mounted Display) or wearable glass, or may be a stationary navigation device mounted on a vehicle.
  • HMD Head-Mounted Display
  • the terminal device 100 includes, for example, a communication unit 110, a position specifying unit 120, an application execution unit 130, a touch panel 140, an imaging unit 150, and a storage unit 160.
  • the position specifying unit 120 and the application execution unit 130 are realized by a hardware processor such as a CPU (Central Processing Unit) executing a program (software). Further, one or both of the position specifying unit 120 and the application execution unit 130 may be realized by hardware such as LSI (Large Scale Integration), ASIC (Application Specific Integrated Circuit), or FPGA (Field-Programmable Gate Array). It may be realized by cooperation of software and hardware.
  • LSI Large Scale Integration
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array
  • the program may be stored in advance in a storage device (for example, the storage unit 160) such as an HDD (Hard Disk Drive) or a flash memory, or is stored in a removable storage medium such as a DVD or CD-ROM.
  • the storage medium may be installed in a storage device by being attached to a drive device (not shown).
  • One or both of the application execution unit 130 and the spot information providing unit 230 is an example of a “display control unit”.
  • the touch panel 140 is a combination of a “display unit” and a “reception unit”.
  • the communication unit 110 communicates with the server device 200 via the network NW.
  • the communication unit 110 is a communication interface such as a wireless communication module, for example.
  • the position specifying unit 120 specifies the position of the terminal device (own device) 100.
  • the position specifying unit 120 specifies the position (for example, latitude, longitude, altitude) of the terminal device 100 based on a signal received from a GNSS (Global Navigation Satellite System) satellite, for example. Further, the position specifying unit 120 may specify the position of the terminal device 100 based on the position of the radio base station, the radio wave intensity, and the like.
  • GNSS Global Navigation Satellite System
  • the application execution unit 130 is realized by executing the navigation application 162 stored in the storage unit 160.
  • the navigation application 162 is, for example, an application program for providing a map corresponding to a point designated by the user or providing a specific point based on a predetermined condition.
  • designated spot information information indicating a spot designated by the user is referred to as designated spot information.
  • the user performs a scroll operation or a place name input operation while looking at the map, and instructs the terminal device 100 where he / she wants to see.
  • the point indicated by this is designated point information. Details of the function of the application execution unit 130 will be described later.
  • the touch panel 140 is an LCD (Liquid Crystal Display) or an organic EL (Electro Luminescence) display device, and has a function of displaying a map or an image and a function of detecting the position of the user's finger with respect to the display surface.
  • LCD Liquid Crystal Display
  • organic EL Electro Luminescence
  • the imaging unit 150 is a digital camera using a solid-state imaging device such as a CCD (Charge-Coupled Device) or a CMOS (Complementary Metal-Oxide Semiconductor).
  • a CCD Charge-Coupled Device
  • CMOS Complementary Metal-Oxide Semiconductor
  • the storage unit 160 is realized by a ROM (Read Only Memory), a RAM (Random Access Memory), a flash memory, or the like.
  • the storage unit 160 stores, for example, a navigation application 162 executed by the application execution unit 130, a download map 164, and download point information 166.
  • the download map 164 is a map of a predetermined range centering on a point designated by the user.
  • the predetermined range is a range in which the radius around the designated point information is a predetermined distance (for example, 0.1 [km], 1 [km], 10 [km], 100 [km]).
  • the download point information 166 includes point information in the map area (map range) of the download map 164.
  • the point information is information on a specific point classified into categories such as a tourist spot, a theme park, a meal, and an event, for example.
  • the information related to a specific point includes information such as the attribute (for example, facility attribute), name (for example, facility name), address, and telephone number of the point.
  • the server device 200 includes, for example, a communication unit 210, a map providing unit 220, a spot information providing unit 230, and a storage unit 240.
  • the map providing unit 220 and the point information providing unit 230 are realized by a hardware processor such as a CPU executing a program. Further, one or both of the map providing unit 220 and the location information providing unit 230 may be realized by hardware such as LSI, ASIC, FPGA, or may be realized by cooperation of software and hardware.
  • the program may be stored in advance in a storage device (for example, the storage unit 240) such as an HDD or a flash memory, or is stored in a removable storage medium such as a DVD or a CD-ROM, and the storage medium is a drive It may be installed in a storage device by being attached to a device (not shown).
  • a storage device for example, the storage unit 240
  • the storage unit 240 such as an HDD or a flash memory
  • a removable storage medium such as a DVD or a CD-ROM
  • the storage medium is a drive It may be installed in a storage device by being attached to a device (not shown).
  • the communication unit 210 communicates with the terminal device 100 via the network NW.
  • the communication unit 210 is a communication interface such as a NIC (Network Interface Card).
  • the map providing unit 220 transmits a map in a predetermined range centered on the designated point information to the terminal device 100.
  • the point information providing unit 230 transmits the point information included in the map area provided by the map providing unit 220 to the terminal device 100. Details of the functions of the map providing unit 220 and the point information providing unit 230 will be described later.
  • the storage unit 240 is realized by a ROM, RAM, HDD, flash memory, or the like.
  • map information 242 point information 244, and action history information 246 are stored.
  • the map information 242 is a map having a range of each prefecture, all over Japan, foreign countries, and the like.
  • the map information 242 includes, for example, road information and building information associated with map coordinates, building address information (address / zip code), and sightseeing information.
  • the point information 244 is information on a specific point associated with the map coordinates of the map information 242, for example.
  • FIG. 2 is a diagram illustrating an example of the contents of the spot information 244.
  • the point information 244 is information in which a position, a type, and a name are associated with a point ID that is identification information of a specific point.
  • the type information is, for example, information on genres such as sightseeing spots, theme parks, meals, and categories such as events.
  • the name is a name of a facility, building, store, or the like associated with a specific point.
  • the behavior history information 246 is, for example, a behavior history of a user who owns the terminal device 100.
  • the behavior history includes, for example, information on a specific point where the user is estimated to have stayed.
  • FIG. 3 is a diagram for explaining a map and point information providing service by cooperation between the application execution unit 130 and the server device 200.
  • the application execution unit 130 starts operating.
  • the application execution unit 130 displays an input screen for inputting a place name or the like on the touch panel 140, and acquires designated point information by receiving an input instruction for the place name from the input screen.
  • the application execution unit 130 transmits the acquired designated point information to the server device 200.
  • the map providing unit 220 of the server device 200 refers to the map information 242 stored in the storage unit 240, acquires a map having a radius [km] around the designated point information, and transmits the acquired map to the terminal device 100. To do.
  • the application execution unit 130 causes the storage unit 160 to store a predetermined range of map acquired from the server device 200 as the download map 164.
  • the application execution unit 130 displays a GUI (Graphical user interface) switch for displaying point information on the displayed map on the touch panel 140 and receives an operation of the GUI switch by the user, It is determined that the point information acquisition request has been received.
  • the application execution unit 130 transmits a point information acquisition request included in the designated point information to the server device 200.
  • the spot information providing unit 230 When the spot information providing unit 230 receives a spot information acquisition request, the spot information providing unit 230 refers to the spot information 244 stored in the storage unit 240, acquires spot information existing within a predetermined range from the specified spot information, and acquires the spot information.
  • the point information is transmitted to the terminal device 100.
  • “within a predetermined range” refers to, for example, the range of the map transmitted to the terminal device 100 by the map providing unit 220.
  • the application execution unit 130 causes the storage unit 160 to store the spot information received from the server device 200 as the download spot information 166.
  • the application execution unit 130 acquires the scale of the map designated by the user as the scale information, and controls the touch panel 140 so that the map of the download map 164 is enlarged / reduced based on the acquired scale information.
  • the scale is designated by, for example, operations such as pinch-in and pinch-out, and operations on the slide lever displayed corresponding to the scale.
  • the application execution unit 130 acquires the spot information included in the map area displayed on the touch panel 140 at the scale specified by the user from the download spot information 166. In addition, the application execution unit 130 calculates the distance between the position of the point information and the position of the terminal device 100 specified by the position specifying unit 120, and determines whether the calculated distance is within the reference distance. .
  • the reference distance is, for example, a distance that increases corresponding to the map range.
  • An example of an index for determining the map range is a map scale.
  • the reference distance is a distance associated with the scale when the map is displayed on the touch panel 140, and increases as the scale denominator increases when the scale numerator is 1.
  • An increase in the scale denominator means a reduction in the scale. As the scale denominator increases, a wider area map is displayed on the touch panel 140, and as the scale denominator decreases, a narrower area map (enlarged map) is displayed on the touch panel 140.
  • FIG. 4 is a diagram for explaining the relationship between the scale denominator r and the reference distance.
  • the horizontal axis in FIG. 4 indicates the scale denominator r, and the vertical axis indicates the reference distance f (r).
  • the application execution unit 130 derives a reference distance corresponding to the scale denominator based on at least one characteristic relationship in which the reference distance tends to increase as the scale denominator increases.
  • FIG. 4 shows three curves 300 to 304 that have different reference distance increasing trends as the scale denominator increases.
  • the difference in increasing tendency means that the amount of increase in the reference distance is different from the amount of increase in the scale denominator.
  • the application execution unit 130 derives a reference distance corresponding to the scale denominator based on the curves 300 to 304 as illustrated, or other characteristic relationships.
  • characteristic relations for example, sparse density of facility information in urban areas, suburbs, etc., a visual range (line-of-sight distance) due to height difference, and the like may be used.
  • Non-linear display mode means, for example, the front side of the map is 100 [m / pixel], the center is 80 [m / pixel], and the rear side is 40 [m / pixel].
  • Display modes and display modes such as spherical or curved surface display. In such a case, an index for determining the map range is not a scale, and for example, a parameter associated with a display mode or the like is an M value.
  • the application execution unit 130 masks at least a part of the related information of the specific point Then, the touch panel 140 is controlled so as to display an image informing the existence on the map.
  • “Mask at least a part of the related information of a specific point” is to mask information such as a name, an address, and a telephone number among the point information acquired from the download point information 166.
  • the “image notifying the presence of a specific point” is, for example, an icon indicating a specific symbol.
  • the image that indicates the presence of a specific point may be an image that indicates a facility attribute.
  • an image notifying the presence of a specific point may be edited by the user.
  • the user selects an image that indicates the presence of a specific point displayed on the screen for the purpose of searching for detailed information on the specific point, the name, address, telephone number, etc. are masked. Information is not displayed.
  • the application execution unit 130 does not display an image that indicates the presence of a specific point on the map.
  • 5 and 6 are diagrams (No. 1 and No. 2) for explaining a specific example of the display control of the spot information.
  • the user P walking near the A station starts the navigation application 162 of the terminal device 100 and displays a map with the B station as designated point information.
  • the application execution unit 130 acquires the reference distance Th1 [km] corresponding to the scale of the map, and determines a specific point from the position of the terminal device 100. Distance X [km] is calculated. Then, the application execution unit 130 controls the touch panel 140 to display an icon 410 that indicates the presence of a specific point on the map 400 when the calculated distance X is equal to or less than the reference distance Th1. For example, the application execution unit 130 controls the touch panel 140 to display the icon 410 at a position on the map 400 corresponding to a specific point.
  • the application execution unit 130 controls the touch panel 140 to display the map 400 at a scale corresponding to the received instruction.
  • the application execution unit 130 acquires a reference distance Th2 [km] corresponding to the scale 1/1000.
  • the reference distance Th2 is a shorter distance than the reference distance Th1.
  • the reference distance Th2 is shorter than the distance X.
  • the application execution unit 130 does not display the icon 410 that indicates the presence of the specific point because the distance X from the position of the terminal device 100 to the specific point exceeds the reference distance Th2.
  • the application execution unit 130 displays the icon 410 on the map.
  • Touch panel 140 is controlled to display on 400A.
  • the application execution unit 130 may control the touch panel 140 so that the display of the icon 410 is terminated when the user arrives near the point where the icon 410 is displayed. Arriving near the point means that the distance between the position of the terminal device 100 and the specific point is within a predetermined distance Th3.
  • the predetermined distance Th3 is a shorter distance than the reference distances Th1 and Th2, and is a distance of, for example, several [m].
  • the application execution unit 130 transmits behavior information in which the point ID corresponding to the specific point of arrival is associated with the date and time of arrival to the server device 200.
  • the point information providing unit 230 of the server device 200 receives the behavior information from the terminal device 100, and stores the received behavior information as the behavior history information 246 in the storage unit 240.
  • FIG. 7 is a diagram illustrating an example of the contents of the action history information 246.
  • the action history information 246 is information in which a point ID and an arrival date / time are associated with a user ID for identifying a user. By storing the action history information 246, it is possible to acquire statistical information such as points where there are many users staying and users who stay many times.
  • FIG. 8 is a flowchart illustrating an example of a flow of point information providing processing according to the first embodiment.
  • the application execution unit 130 receives the designated spot information (step S100), and transmits the received designated spot information and the spot information acquisition request to the server device 200 (step S102).
  • the designated point information and the point information acquisition request may be transmitted to the server device 200 at different timings.
  • the communication unit 110 receives a map and spot information in a predetermined range including the designated spot information from the server device 200 (step S104).
  • the application execution unit 130 stores the received map of the predetermined range in the storage unit 160 as the download map 164, and stores the point information corresponding to the map in the storage unit 160 as the download point information 166 (step S106).
  • the position specifying unit 120 acquires the position information of the terminal device 100 (step S108).
  • the application execution unit 130 acquires map scale information displayed on the touch panel 140 (step S110).
  • the application execution unit 130 controls the touch panel 140 to display a map corresponding to the acquired scale (step S112).
  • the application execution unit 130 calculates the distance between the position of the terminal device 100 and a specific point included in the point information included in the map displayed on the touch panel 140 (step S114).
  • the application execution unit 130 determines whether or not the calculated distance is within a reference distance associated with the map range (step S116).
  • the application execution unit 130 controls the touch panel 140 to display an image informing the existence on the map by masking at least a part of the related information of the specific point ( Step S118).
  • the application execution unit does not display an image informing the specific point on the map.
  • the application execution unit 130 determines whether or not to end the map information providing process (step S120). If the map information providing process is not terminated, the application execution unit 130 returns to the process of step S108. In addition, when the map information providing process is ended, the application execution unit 130 ends the process of this flowchart.
  • the icon 410 that notifies the existence is displayed on the displayed map by masking at least a part of the related information of the specific point. It is possible to arouse the user's interest in a specific point and provide a motivation to stop at that point. That is, according to the point information providing system 1 of the first embodiment, when you look at the wide area map, you can see that there is something around it, but when you look at the detailed map, you cannot know the position unless you get closer. . In such a situation, the user is urged to stop at a specific point and see what is there. In addition, there may be an economic benefit for the operator of a facility at a specific point. In addition, according to the first embodiment, it is possible to provide a service such as a stamp rally associated with a specific point, or to provide a discount service according to the number of times the user headed to the position of the specific point.
  • a service such as a stamp rally associated with a specific point, or to provide a discount service according to the number of times the user headed to the
  • the spot information providing unit 230 narrows down the spot information based on information on at least one of the user's interests and preferences, and transmits the narrowed spot information to the terminal device 100.
  • information related to at least one of the user's interest or preference is referred to as interest / taste information.
  • FIG. 9 is a diagram illustrating a configuration example of the point information providing system 2 according to the second embodiment.
  • the terminal device 100A includes an application execution unit 130A
  • the server device 200A includes a point information providing unit 230A and user information 248.
  • the functions of the other components are the same as in the first embodiment.
  • FIG. 10 is a diagram showing an example of the contents of the user information 248.
  • interest preference information is associated with the user ID.
  • the interest / taste information is information that is input by the user or automatically extracted with reference to the action history information 246.
  • the application execution unit 130A displays, on the screen, a GUI switch that displays an interest / taste information setting screen for setting interest / taste information during execution of a map and spot information providing service.
  • 130 A of application execution parts will display an interest preference information setting screen on the touch panel 140, if selection of the GUI switch which displays an interest preference information setting screen is received.
  • FIG. 11 is a diagram showing an example of the interest / taste information setting screen 402.
  • the interest / taste information setting screen 402 includes, for example, information on interest or preference set in advance, a check box for selecting information, and a GUI switch for ending the interest / taste information setting screen.
  • 130 A of application execution parts transmit the interest preference information selected by the user to the server apparatus 200A.
  • the location information providing unit 230 ⁇ / b> A When the location information providing unit 230 ⁇ / b> A receives the hobby preference information from the terminal device 100, the location information providing unit 230 ⁇ / b> A associates the received hobby preference information with the user ID that identifies the user of the terminal device 100 as user information 248.
  • the data is stored in the storage unit 240.
  • the spot information providing unit 230A refers to the action history information 246, extracts a user ID of interest whose type frequency or number of times for the spot ID is equal to or greater than a threshold value, and uses the extracted type as interest preference information.
  • the user information 248 may be stored in the storage unit 240.
  • the spot information providing unit 230A When there is a request for acquisition of spot information from the terminal device 100A, the spot information providing unit 230A refers to the user information 248 based on the user ID of the terminal device 100A, and interest preference information corresponding to the user ID. To extract. Then, the spot information providing unit 230A extracts spot information having a type that matches the interest / taste information from the spot information corresponding to the map in a predetermined range based on the designated spot, and uses the extracted spot information as the terminal device 100. Send to.
  • the application execution unit 130 calculates the distance between the position from the terminal device 100 and the position of the point information based on the point information transmitted by the point information providing unit 230A, and when the calculated distance is within the reference distance.
  • the touch panel 140 is controlled to display an icon indicating the presence of the point information.
  • a sightseeing spot is set as the interest / taste information, so three icons 410 a to 410 c that are within the reference distance and whose type is a sightseeing spot are displayed on the map 400.
  • the application execution unit 130 sets a reference area based on the scale instead of the reference distance based on the scale, and indicates the presence of a specific point when the terminal device 100 is within the reference area.
  • An icon 410 is displayed. The functions of the other components are the same as in the first embodiment.
  • FIG. 12 is a diagram for explaining display control of the icon 410 based on the reference area.
  • a setting example of the reference area 420 when the scale of the map 400B is 1/10000 is shown.
  • the application execution unit 130 sets a reference area 420 that increases as the scale denominator of the map 400B increases.
  • the reference area 420 is, for example, an area associated with an area such as a tourist facility or a theme park. Unlike the first and second embodiments, the reference area 420 is not an area of a predetermined range centered on the position of the terminal device 100. It is an area according to the area classification in the theme park.
  • the application execution unit 130 sets the entire theme park as a reference area when the scale denominator is a large first value, and when the scale denominator is a second value smaller than the first value (the map is enlarged). When displayed, only the amusement park area in the theme park is set as the reference area.
  • the application execution unit 130 controls the touch panel 140 to display only the map 400B without displaying the icon 410.
  • the application execution unit 130 displays the touch panel 140 so as to display icons 410d to 410f that notify the presence of a specific point in the reference area 420. Control.
  • the same effect as that of the first embodiment can be obtained, and on / off of an icon that notifies the presence of a specific point in association with the reference region can be switched. it can. Therefore, for example, an icon indicating the presence of a tourist spot or theme park attraction or event point can be displayed on condition that the user has entered a facility area such as a tourist spot or theme park. It is possible to further arouse interest in the point where is displayed.
  • the application execution unit 130 notifies the presence of a specific point on the through image captured by the imaging unit 150 instead of displaying an icon that notifies the presence of the specific point on the map. Display icon.
  • the functions of the other components are the same as in the other embodiments.
  • the imaging unit 150 images a real space included in the angle of view according to an imaging instruction from the user.
  • the application execution unit 130 controls the touch panel 140 to display a real space image captured by the imaging unit 150.
  • the application execution unit 130 acquires the imaging direction and the imaging magnification included in the camera parameters of the imaging unit 150.
  • the application execution unit 130 analyzes the captured image and recognizes an object such as a building or a road included in the image.
  • the application execution unit 130 acquires the position in the real space included in the angle of view from the imaging direction and the imaging magnification based on the position of the terminal device 100 specified by the position specifying unit 120, and the acquired position The position of the object is acquired by associating it with the position of the object included in the image.
  • the application execution unit 130 refers to the download spot information 166 based on the acquired object position, and determines whether or not the spot information corresponding to the object position included in the image exists.
  • the application execution unit 130 calculates the distance between the position of the terminal device 100 specified by the position specifying unit 120 and the specific point of the point information, and the calculated distance Is within a reference distance based on the angle of view.
  • the reference distance based on the angle of view is a distance that increases as the angle of view increases.
  • the application executing unit 130 displays a specific image on the captured image captured by the imaging unit 150.
  • the touch panel 140 is controlled so that at least a part of the relevant information of the point is masked and the icon 410 notifying the presence is superimposed and displayed.
  • FIG. 13 is a diagram illustrating an example in which a captured image 430 and an icon 410g that notifies the presence of a specific point are displayed on the touch panel 140.
  • the application execution unit 130 determines the position of the terminal device 100. To the distance from the building 440C. Then, when the calculated distance is within the reference distance, the application execution unit 130 controls the touch panel 140 so that an icon 410g that notifies the presence of a specific point is displayed at the position of the building 440C. When the calculated distance exceeds the reference distance, the application execution unit 130 controls the touch panel 140 so as not to display the icon 410d.
  • the application execution unit 130 may control the touch panel 140 so that a display pattern for displaying the icon 410g on the captured image 430 and a display pattern for displaying the icon 410g on the map can be switched.
  • the application execution unit 130 displays a GUI switch such as a switch button 450 for switching a display pattern on the touch panel 140 as shown in FIG.
  • the application execution part 130 controls the touch panel 140 so that a display pattern may be switched, when the switching operation by the displayed switching button 450 is received.
  • the same effect as that of the first embodiment can be obtained, and the icon 410d can be displayed in association with the object in the real space displayed on the touch panel 140.
  • the user can easily grasp a specific point.
  • the application execution unit 130 causes the touch panel 140 to display a route to a destination on a map or a detour route for stopping at a specific point near the route.
  • the specific point near the route is, for example, a point whose shortest distance from the specific point to the route is within a predetermined distance.
  • FIG. 14 is a diagram illustrating a configuration example of the point information providing system 3 according to the fifth embodiment.
  • the terminal device 100B includes an application execution unit 130B
  • the server device 200B includes a map providing unit 220B, a point information providing unit 230B, and a route search unit 250.
  • the functions of the other components are the same as in the first embodiment.
  • the application execution unit 130B displays an input screen for inputting a destination on the touch panel 140, and receives the destination input instruction from the input screen, thereby acquiring the destination.
  • the application execution unit 130B may receive information on the user's moving means (for example, walking, vehicle) from the touch panel 140 from the input screen.
  • the application execution unit 130B transmits the position and the destination of the terminal device 100 specified by the position specifying unit 120 to the server device 200B.
  • the map providing unit 220B of the server device 200B refers to the map information 242, acquires a map in a predetermined range including the destination and the position of the terminal device 100, and transmits the acquired map to the terminal device 100B.
  • the spot information providing unit 230 refers to the spot information 244, acquires the spot information included in the map acquired by the map providing unit 220B, and transmits the acquired spot information to the terminal device 100B.
  • the route search unit 250 searches for a route from the position of the terminal device 100 to the destination with reference to the map information 242. For example, the route search unit 250 acquires a route that travels from the current position of the terminal device 100 to the destination in the shortest time or the shortest distance. Further, the route search unit 250 passes, for example, the vicinity of a specific point within a range not exceeding a predetermined time (for example, 30 [minutes]) from the shortest time on the basis of the shortest time route from the current position to the destination. Get the detour route to be.
  • a predetermined time for example, 30 [minutes]
  • the route search unit 250 uses a shortest distance route from the current position to the destination as a reference, and a detour that passes through the vicinity of a specific point within a range not exceeding a predetermined distance (for example, 10 [km]) from the shortest distance.
  • a route may be acquired.
  • the route search unit 250 transmits to the terminal device 100B the shortest time or the shortest distance route, a detour route based on the route, and route-related information including the remaining time until arrival on each route and the remaining travel distance. To do.
  • the application execution unit 130B controls the touch panel 140 to display the acquired shortest time or shortest distance route or the detour route on the map.
  • FIG. 15 is a diagram illustrating a display example of a route arriving at the destination in the shortest time.
  • the application execution unit 130B searches the shortest time route 462a on the map 460 including the current position (S point) and the G point. Then, the touch panel 140 is controlled to display the route related information 464a.
  • FIG. 16 is a diagram showing a display example of a detour route passing through a vicinity of a specific point.
  • the application execution unit 130B controls the touch panel 140 so that the detour route 462b and route-related information 464b that are transmitted from the server device 200B via two specific points are displayed on the map 460.
  • the application execution unit 130B masks at least part of the related information of the two specific points and notifies the presence.
  • the touch panel 140 is controlled so that the icons 410h and 410i are displayed on the map 460.
  • the application execution unit 130B alternately switches the route 462a and the route related information 464a shown in FIG. 15, the route 462b, the route related information 464b, and the icons 410h and 410i shown in FIG. 16 at predetermined time intervals.
  • the touch panel 140 may be controlled so as to display on the 460.
  • the application execution unit 130B may display a GUI switch for route switching, and may control the touch panel 140 to switch the route on the map 460 when a switching operation is accepted.
  • the application execution unit 130B accepts that the screen of the touch panel 140 is tapped in a state where either the path 462a or 462b is displayed, the application execution unit 130B determines that the displayed path has been determined, and determines that path.
  • the touch panel 140 is controlled to be displayed on the screen.
  • the fifth embodiment in addition to the same effects as the first embodiment, not only the shortest route and the route based on the shortest time are displayed, but also a stop at a specific point.
  • a stop at a specific point By displaying the detour route, it is possible to arouse the user's interest in a specific point and provide a motivation to stop at that point.
  • the route search unit 250 generates an itinerary based on the point information type and priority setting information received from the user, and displays information about the generated itinerary.
  • the itinerary is, for example, an action plan that passes at least one specific point while moving from the current position to the destination.
  • the functions of the other components are the same as those of the other embodiments (particularly the fifth embodiment).
  • the application execution unit 130B causes the touch panel 140 to display information for setting information regarding the type and priority. In addition, the application execution unit 130B acquires information regarding the type and priority set by the user.
  • FIG. 17 is a diagram for explaining type and priority setting information.
  • the application execution unit 130B controls the touch panel 140 so as to display a radar chart shown in FIG.
  • the application execution unit 130B obtains setting information regarding the type and priority for each item of the radar chart received by the touch panel 140.
  • eight types accommodation, total time, number of meals, theme park, landscape, sightseeing, hot spring, fee
  • the application execution unit 130B transmits the setting information, the position of the terminal device 100, and the destination to the server device 200B.
  • the route search unit 250 searches for a route from the position of the terminal device 100 to the destination with reference to the map information 242.
  • the route search unit 250 generates an itinerary based on the setting information and the point information for the route from the current position to the destination.
  • the itinerary includes the stay time in which the user stays with respect to the point information.
  • the route search unit 250 sets the stay time longer as the priority of the type included in the setting information is higher.
  • the route search unit 250 may set a specific destination point according to the itinerary time zone. For example, in the morning or noon time zone, the application execution unit 130B sets a specific point whose type is meal. When there are a plurality of specific points, the route search unit 250 may select a predetermined number of points in descending order of priority.
  • FIG. 18 is a diagram illustrating an example of itinerary information generated by the route search unit 250.
  • time, arrival point, stay time, and type are associated with each other.
  • the arrival point is address information corresponding to a specific point.
  • the route search unit 250 generates the itinerary information and the route corresponding to the itinerary information illustrated in FIG. 18, and transmits the generated itinerary information and the route to the terminal device 100B.
  • the application execution unit 130B controls the touch panel 140 to display, for example, itinerary information illustrated in FIG. Further, the application execution unit 130B may control the touch panel 140 so as to display a route corresponding to the itinerary information on the map.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Remote Sensing (AREA)
  • General Physics & Mathematics (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Business, Economics & Management (AREA)
  • Educational Administration (AREA)
  • Educational Technology (AREA)
  • Mathematical Physics (AREA)
  • Automation & Control Theory (AREA)
  • Navigation (AREA)
  • Instructional Devices (AREA)

Abstract

La présente invention concerne un système de fourniture d'informations de site. Ledit système de fourniture d'informations de site comprend : une unité d'affichage ; une unité de spécification d'emplacement pour spécifier l'emplacement d'un dispositif hôte ; et une unité de commande d'affichage qui, lorsque la distance entre l'emplacement spécifié par l'unité de spécification d'emplacement et un site spécifique déterminé est à l'intérieur d'une distance de référence qui augmente en fonction d'une échelle de carte affichée par l'unité d'affichage, commande l'unité d'affichage de sorte qu'une image de notification de présence, avec au moins une partie des informations associées du site spécifique masqué, est affichée superposée sur la carte affichée par l'unité d'affichage.
PCT/JP2018/022764 2017-06-16 2018-06-14 Système de fourniture d'informations de site, procédé de fourniture d'informations de site, et programme WO2018230656A1 (fr)

Priority Applications (1)

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JP2019525525A JP7332471B2 (ja) 2017-06-16 2018-06-14 地点情報提供システム、地点情報提供方法、およびプログラム

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JP2017119022 2017-06-16

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CN112492525A (zh) * 2020-11-18 2021-03-12 北京沃东天骏信息技术有限公司 信息推送系统、方法、装置、电子设备及存储介质

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JP2008033061A (ja) * 2006-07-28 2008-02-14 Softbank Bb Corp 周辺情報表示装置および周辺情報表示システム
JP2009236844A (ja) * 2008-03-28 2009-10-15 Panasonic Corp ナビゲーション装置、ナビゲーション方法およびナビゲーションプログラム
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CN112492525A (zh) * 2020-11-18 2021-03-12 北京沃东天骏信息技术有限公司 信息推送系统、方法、装置、电子设备及存储介质
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