Migration evaluation support device, migration evaluation support system, and program
The migration evaluation support device improves wandering evaluation by calculating the wandering degree based on route distance ratios and presenting health-related information, addressing the inaccuracy of existing methods and increasing user engagement.
Patent Information
- Application Number
- JP2022054238
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-03-29
- Publication Date
- 2026-01-28
- Estimated Expiration
- 2042-03-29
AI Technical Summary
Existing technologies for evaluating the wandering degree at a target location, such as cities or tourist spots, are not accurate due to the use of physical quantities like time and distance, which do not directly reflect the actual wandering behavior, leading to ineffective encouragement of users to explore these locations.
A migration evaluation support device that calculates the wandering degree by determining the ratio of walking distance along a route to the straight-line distance, using route information and correcting the wandering degree over time, and presents this information through display, audio, or image formats, along with health-related information to enhance user engagement.
The device provides a more accurate evaluation of wandering behavior, increasing user motivation to explore by presenting meaningful health-related information, thereby enhancing the evaluation and promotion of migration to these locations.
Smart Images

Figure 0007807966000001 
Figure 0007807966000002 
Figure 0007807966000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a shopping mall evaluation support device, a shopping mall evaluation support system, and a program. [Background technology]
[0002] In recent years, many television programs have been broadcast that introduce spots around the country, such as travel programs, gourmet programs, and city walking programs (so-called "machibura" programs). As a result, there is a growing demand to rediscover unexpected sights and aspects of spots in familiar places and faraway places.
[0003] The following techniques can be applied to meet this demand.
[0004] Patent Document 1 discloses a technology for acquiring feature feature information that characterizes features related to a location determined by a user based on the location information of the location, and transmitting the acquired feature feature information to a network system that records third-party information sent by a third party other than the user.
[0005] With this technology, when related information related to the transmitted feature information is extracted from the recorded third-party information and transmitted, the transmitted related information is presented to the user. Therefore, with this technology, information about facilities that the user is completely unaware of can be recognized by associating it with a location determined by the user.
[0006] In cities, tourist destinations, and other areas, it is extremely important to encourage not only local residents but also people from far away to visit in large numbers in order to revitalize the area.
[0007] In contrast, the technology described in Patent Document 1 can present unexpected information to users, but does not necessarily effectively encourage users to browse.
[0008] As a technology that can be applied to solve this problem, Patent Document 2 by the present applicant discloses a migration promotion support device that aims to effectively promote migration. This migration promotion support device includes an acquisition unit that acquires a physical quantity that indicates the subject's degree of interest in a target location based on the subject's actual behavior in the target location, and a derivation unit that derives the subject's evaluation value for the target location using the physical quantity acquired by the acquisition unit. The migration promotion support device also includes a registration unit that registers the evaluation value derived by the derivation unit in a storage unit in a state that can be referenced by others. [Prior art documents] [Patent documents]
[0009] [Patent Document 1] Japanese Patent Application Laid-Open No. 2015-11550 [Patent Document 2] Japanese Patent Application Publication No. 2020-109600 Summary of the Invention [Problem to be solved by the invention]
[0010] However, in the technology disclosed in Patent Document 2, the evaluation value for a target location is derived using physical quantities such as the time spent by the subject at the target location, the distance from a specified starting point to the target location, and the travel time from the starting point to the target location.
[0011] As described above, the technology disclosed in Patent Document 2 derives an evaluation value using physical quantities that are not directly related to the evaluation value, and therefore, it is not always possible to derive an evaluation value with high accuracy. As a result, there is a problem that it is not always possible to contribute to supporting the evaluation of wandering. This problem is particularly pronounced with respect to an evaluation value that indicates the degree to which a subject felt that they had wandered around a target location (hereinafter referred to as "wandering degree"). Note that the wandering degree (the degree to which a subject felt that they had wandered around) here refers to the degree to which a subject walked around a target location, such as a city or a tourist spot, to see and hear about objects of interest, rather than walking in a straight line toward a destination.
[0012] The present invention has been made in consideration of the above circumstances, and aims to provide a migration evaluation support device, a migration evaluation support system, and a program that can contribute to supporting migration evaluation at a higher level. [Means for solving the problem]
[0013] The device for supporting the evaluation of the roaming of the subject in the target area of the roaming is To the destination An acquisition unit that acquires route information indicating a walking route, and a distance per unit time of the route indicated by the route information acquired by the acquisition unit, The distance of the route along the road to the destination, which is also stored in advance in a storage unit. a derivation unit that derives a degree of movement indicating a ratio to a distance along a road; and information related to the degree of movement derived by the derivation unit. By a display unit, an audio playback device, or an image forming device Present Take control A presentation unit is provided.
[0014] According to the device for supporting the evaluation of the roaming of the subject in the target area of the roaming, To the destination Obtain route information indicating a walking route, and calculate the distance per unit time of the route indicated by the obtained route information. The distance along the road to the destination, which is also stored in advance in the storage unit. The degree of movement, which indicates the ratio of the distance along the road to the distance, is calculated, and information related to the degree of movement is displayed. By a display unit, an audio playback device, or an image forming device Present Take controlThis allows the degree of wandering to be derived as an indication of the actual degree of wandering, which can contribute to supporting the evaluation of wandering at a higher level.
[0015] The wandering evaluation support device according to the present invention as set forth in claim 2 is the wandering evaluation support device as set forth in claim 1, wherein the derivation unit calculates, as the wandering degree, a distance per unit time of the route indicated by the route information, To the destination This derives the ratio of the distance from the start point to the end point to the straight-line distance.
[0016] According to the device for supporting user's route evaluation according to the present invention as set forth in claim 2, the degree of user's route is calculated by calculating the distance per unit time of the route indicated by the route information, To your destination By deriving the ratio of the distance from the start point to the end point to the straight-line distance, the degree of wandering can be derived by applying the straight-line distance instead of the distance along the road, making it possible to derive the degree of wandering more easily.
[0017] The migration evaluation support device of the present invention described in claim 3 is a migration evaluation support device described in claim 1 or claim 2, wherein the derivation unit corrects the migration degree using the rate of change of the migration degree over time.
[0018] According to the migration evaluation support device of the present invention as set forth in claim 3, the migration degree can be derived with higher accuracy by correcting the migration degree using the rate of change of the migration degree over time.
[0019] The device for supporting evaluation of a user's visits according to the present invention as set forth in claim 4 is the device for supporting evaluation of a user's visits according to any one of claims 1 to 3, wherein the presenting unit presents a user with a visit that is meaningful to the user by using the visit degree derived by the deriving unit. and includes health-related information Provide the relevant target with meaningful information The display unit, the audio playback device, or the image forming device Further presentation Take control It is something.
[0020] According to the device for supporting the evaluation of the movement of the user according to the present invention, the derived degree of movement is used to provide a user with a meaningful experience. and includes health-related information Provide the relevant target with meaningful information By a display unit, an audio playback device, or an image forming device Further presentation Take control This allows the target person to feel the significance of wandering around, and as a result, increases their motivation to wander around.
[0022] Also, Claim 4 According to the migration evaluation support device of the present invention described above, by including health-related information in the meaningful information, motivation to migrate can be further increased.
[0023] Claim 5 The wandering evaluation support device according to the present invention described in claim 4 In the wandering evaluation support device described in the above, the health-related information includes at least one of information on mental health and information on physical health.
[0024] Claim 5 According to the migration evaluation support device of the present invention described above, by including at least one of information on mental health and information on physical health in the health information, it is possible to allow the subject to understand the included health information.
[0025] Claim 6 The wandering evaluation support device according to the present invention described in claims 1 to 5 is 5 10. The device for supporting the evaluation of the movement of the user according to claim 1, wherein the deriving unit calculates the movement degree based on an attribute of the user. Depending on It is derived.
[0026] Claim 6 According to the device for supporting the evaluation of the movement of the user, the degree of movement is calculated based on the attribute of the user. Depending on By deriving the degree of movement, it is possible to derive the degree of movement with higher accuracy.
[0027] Claim 7 The migration evaluation support system according to the present invention described in claims 1 to 5 is 6and a terminal having a transmission unit that transmits the route information to the acquisition unit of the mobility evaluation support device, and a display control unit that controls the display of the mobility degree related information presented by the presentation unit of the mobility evaluation support device on a display unit.
[0028] Claim 7 According to the present invention, the migration evaluation support system described in To the destination Obtain route information indicating a walking route, and calculate the distance per unit time of the route indicated by the obtained route information. The distance along the road to the destination, which is also stored in advance in the storage unit. The degree of movement, which indicates the ratio of the distance along the road to the distance, is calculated, and information related to the degree of movement is displayed. By a display unit, an audio playback device, or an image forming device Present Take control This allows the degree of wandering to be derived as an indication of the actual degree of wandering, which can contribute to supporting the evaluation of wandering at a higher level.
[0029] Claim 8 The program according to the present invention described above is for the target person in the target area for travel. To the destination Obtain route information indicating a walking route, and calculate the distance per unit time of the route indicated by the obtained route information. The distance of the route along the road to the destination, which is also stored in advance in a storage unit. The degree of movement, which indicates the ratio of the distance along the road to the distance, is calculated, and information related to the degree of movement is displayed. By a display unit, an audio playback device, or an image forming device Present Take control , and have the computer execute the processing.
[0030] Claim 8 According to the program of the present invention described above, To the destination Obtain route information indicating a walking route, and calculate the distance per unit time of the route indicated by the obtained route information. The distance along the route to the destination is stored in advance in the storage unit. The degree of movement, which indicates the ratio of the distance along the road to the distance, is calculated, and information related to the degree of movement is displayed. By a display unit, an audio playback device, or an image forming device Present Take control This allows the degree of wandering to be derived as an indication of the actual degree of wandering, which can contribute to supporting the evaluation of wandering at a higher level. [Effects of the Invention]
[0031] As described above, the present invention can contribute to supporting the evaluation of migration at a higher level. [Brief explanation of the drawings]
[0032] [Figure 1] 1 is a block diagram illustrating an example of a hardware configuration of a wander evaluation support system according to an embodiment. [Figure 2] 1 is a block diagram illustrating an example of a functional configuration of a shopping mall evaluation support system according to an embodiment. [Figure 3] FIG. 10 is a diagram for explaining the degree of movement according to the embodiment, and is a plan view showing an example of a road-like route and an actual movement route. [Figure 4] FIG. 2 is a schematic diagram illustrating an example of a configuration of a target region information database according to the embodiment. [Figure 5] FIG. 2 is a schematic diagram illustrating an example of a configuration of a subject information database according to the embodiment. [Figure 6] 10 is a flowchart illustrating an example of a terminal process according to the embodiment. [Figure 7] 10 is a flowchart illustrating an example of a migration evaluation support process according to the embodiment. [Figure 8] FIG. 2 is a front view showing an example of the configuration of an initial screen according to the embodiment. [Figure 9] FIG. 10 is a front view showing an example of a configuration of a mobility degree display screen according to the embodiment. [Figure 10] FIG. 10 is a front view showing an example of the configuration of a meaningful information display screen according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0033] Hereinafter, an example of an embodiment of the present invention will be described in detail with reference to the drawings. In this embodiment, the present invention will be described as being applied to a navigation evaluation support system including a navigation evaluation support device configured by a server computer or the like and a plurality of subject terminals, each of which is a terminal used individually by a subject.
[0034] First, the configuration of a shopping mall migration evaluation support system 90 according to this embodiment will be described with reference to Fig. 1. As shown in Fig. 1, the shopping mall migration evaluation support system 90 according to this embodiment includes a shopping mall migration evaluation support device 10 and a plurality of target user terminals 30, each of which is capable of accessing a network 80. Examples of the shopping mall migration evaluation support device 10 include information processing devices such as personal computers and server computers. Examples of the target user terminals 30 include portable terminals such as smartphones, tablet terminals, and PDAs (Personal Digital Assistants, mobile information terminals).
[0035] The subject terminal 30 according to this embodiment is a terminal carried by each of a plurality of subjects who are intended to use the migration evaluation support system 90. The subject terminal 30 includes a CPU (Central Processing Unit) 31, a memory 32 serving as a temporary storage area, a non-volatile memory unit 33, an input unit 34 such as a touch panel, a display unit 35 such as a liquid crystal display, and a media read / write device (R / W) 36. The subject terminal 30 also includes a camera 38, a microphone 39, a GPS (Global Positioning Systems) 40, an acceleration sensor 41, and a wireless communication unit 42. The CPU 31, memory 32, memory unit 33, input unit 34, display unit 35, media read / write device 36, camera 38, microphone 39, GPS 40, acceleration sensor 41, and wireless communication unit 42 are interconnected via a bus B1. The media read / write device 36 reads information from and writes information to a recording medium 37.
[0036] The storage unit 33 is realized by an HDD (Hard Disk Drive), an SSD (Solid State Drive), a flash memory, or the like. The storage unit 33 serves as a storage medium and stores a terminal processing program 33A. The terminal processing program 33A is stored (installed) in the storage unit 33 when a recording medium 37 on which the terminal processing program 33A is written is set in the medium reading and writing device 36 and the medium reading and writing device 36 reads the terminal processing program 33A from the recording medium 37. The CPU 31 reads the terminal processing program 33A from the storage unit 33, expands it in the memory 32, and sequentially executes the processes of the terminal processing program 33A.
[0037] On the other hand, the shopping mall evaluation support device 10 is a device that comprehensively stores and uses various information handled by the shopping mall evaluation support system 90. The shopping mall evaluation support device 10 includes a CPU 11, a memory 12 as a temporary storage area, a non-volatile storage unit 13, an input unit 14 such as a keyboard and mouse, a display unit 15 such as a liquid crystal display, a medium reading and writing device 16, and a communication interface (I / F) unit 18. The CPU 11, memory 12, storage unit 13, input unit 14, display unit 15, medium reading and writing device 16, and communication I / F unit 18 are connected to one another via a bus B2. The medium reading and writing device 16 reads information written in a recording medium 17 and writes information to the recording medium 17.
[0038] The storage unit 13 is realized by an HDD, an SSD, a flash memory, or the like. A shopping mall evaluation support program 13A is stored in the storage unit 13 as a storage medium. The shopping mall evaluation support program 13A is stored (installed) in the storage unit 13 when a recording medium 17 having the program 13A written therein is set in the medium reading and writing device 16, and the medium reading and writing device 16 reads the program 13A from the recording medium 17. The CPU 11 reads the shopping mall evaluation support program 13A from the storage unit 13, expands it in the memory 12, and sequentially executes the processes of the shopping mall evaluation support program 13A.
[0039] Furthermore, a target area information database 13B and a target person information database 13C are stored in the storage unit 13. The target area information database 13B and the target person information database 13C will be described in detail later.
[0040] Next, the functional configuration of the migration evaluation support device 10 and the target person terminal 30 according to this embodiment will be described with reference to Fig. 2. Fig. 2 is a block diagram showing an example of the functional configuration of the migration evaluation support system 90 according to this embodiment.
[0041] 2, the shopping mall evaluation support device 10 includes an acquisition unit 11A, a derivation unit 11B, and a presentation unit 11C. The CPU 11 of the shopping mall evaluation support device 10 executes the shopping mall evaluation support program 13A, thereby functioning as the acquisition unit 11A, the derivation unit 11B, and the presentation unit 11C.
[0042] The acquisition unit 11A according to this embodiment acquires route information indicating a walking route of a subject in a target location for wandering (hereinafter referred to as a "spot").
[0043] In this embodiment, the route information is acquired using the GPS 40 provided in the target person terminal 30, but this is not limiting. For example, the route information may be acquired using RFID (Radio Frequency Identification) or a beacon.
[0044] Furthermore, the derivation unit 11B according to this embodiment derives a degree of wandering indicating the ratio of the distance per unit time of the route indicated by the route information acquired by the acquisition unit 11A to the distance along the road. Note that, although 10 minutes is applied as the unit time in this embodiment, it is not limited thereto, and it may be a time shorter than 10 minutes or a time longer than 10 minutes.
[0045] Here, a method for deriving a mobility degree according to this embodiment will be described with reference to Fig. 3. Fig. 3 is a diagram for explaining the mobility degree according to this embodiment, and is a plan view showing an example of a road-like route and an actual movement route.
[0046] As shown in Fig. 3, consider a case where there are multiple stores A, B, ... on a street corner or the like, facing a common road 60. In this case, for example, if a target person is between stores H and I and is heading to store A with the purpose of purchasing something, the target person will usually take a route K1 that follows the road to store A (hereinafter referred to as a "road-following route").
[0047] On the other hand, even in the same case, if the subject wanders around looking for something that interests him, he will take a winding route K2 to store A rather than the direct route K1.
[0048] Therefore, the derivation unit 11B according to this embodiment derives the ratio R of the walking distance D1 per unit time of the route indicated by the above route information to the road distance D2, as a value indicating the degree of wandering, as shown in the following formula (1).
[0049] R=D1 / D2 (1)
[0050] In this embodiment, the degree of visitation is derived as a value indicating which level in a predetermined number of levels (in this embodiment, 10 levels from 1 to 10) the degree of visitation corresponds to. Therefore, the degree of visitation in this embodiment is derived by converting the value of the ratio R so that the larger the value of the ratio R, the closer the value becomes to 10.
[0051] Then, the presentation unit 11C according to this embodiment presents the information related to the degree of movement derived by the derivation unit 11B.
[0052] In this embodiment, the mobility-related information is the mobility itself derived by the derivation unit 11B, and an image simulating a facial expression according to the magnitude of the mobility (hereinafter referred to as a "face image"), but this is not limited thereto. For example, only one of the mobility and the face image may be applied as the mobility-related information. Furthermore, in this embodiment, presentation by the presentation unit 11C is performed by display on the display unit, but this is not limited thereto. For example, presentation by the presentation unit 11C may be performed by audio using an audio playback device such as a speaker, or by printing using an image forming device such as a printer.
[0053] Furthermore, the derivation unit 11B according to this embodiment corrects the degree of migration using the rate of change of the degree of migration over time. Note that in this embodiment, when the rate of change of the degree of migration per unit time (corresponding to the "provisional migration degree" described later) over time does not change smoothly but changes in a sawtooth pattern, the correction applied is to increase the overall degree of migration within the corresponding spot (in this embodiment, the simple average value of the provisional migration degrees) by a predetermined value, but it goes without saying that the correction is not limited to this.
[0054] Furthermore, the presentation unit 11C according to this embodiment further presents meaningful information (hereinafter simply referred to as "meaningful information") that is meaningful to the subject using the degree of mobility derived by the derivation unit 11B. Here, the presentation unit 11C according to this embodiment applies health-related information as meaningful information, and in particular, the presentation unit 11C according to this embodiment applies both mental health-related information and physical health-related information as the health-related information. However, this is not limited to this embodiment. For example, when the degree of mobility derived by the derivation unit 11B is equal to or less than a predetermined threshold, information introducing to the user spots that have a higher degree of mobility than the degree of mobility, which is determined to be a total degree of mobility (described later), may be applied as meaningful information. Furthermore, only either the mental health-related information or the physical health-related information may be applied as health-related information.
[0055] Here, the derivation unit 11B according to this embodiment derives the degree of movement for each attribute of the subject. In this embodiment, three types of attributes, namely, gender, age, and height, are applied as the attributes, but this is not limitative. For example, one or a combination of two of these three types of attributes may be applied as the attributes, or other attributes such as weight may be applied in addition to these three types as the attributes.
[0056] On the other hand, the subject terminal 30 according to this embodiment includes a transmission unit 31A and a display control unit 31B. The CPU 31 of the subject terminal 30 executes the terminal processing program 33A, thereby functioning as the transmission unit 31A and the display control unit 31B.
[0057] The transmission unit 31A according to this embodiment transmits route information to the acquisition unit 11A of the mobility evaluation support device 10. The display control unit 31B controls the display of the mobility degree related information presented by the presentation unit 11C of the mobility evaluation support device 10 on the display unit 35.
[0058] Next, the target area information database 13B according to this embodiment will be described with reference to Fig. 4. Fig. 4 is a schematic diagram showing an example of the configuration of the target area information database 13B according to this embodiment.
[0059] As shown in FIG. 4, the target area information database 13B according to this embodiment stores information such as target area names, target area positions, social heat map images, migration routes, spot names, spot positions, and overall migration degrees.
[0060] The target area name is information indicating the name of the target area (hereinafter simply referred to as "target area") that is the target of the migration evaluation support system 90, and the target area position is information indicating the location where the corresponding target area is located. In this embodiment, the target area is an area surrounded by a circle in a planar view, and the target area position is defined as the coordinate position in a two-dimensional coordinate system of a pair of diagonal corners of a circumscribing rectangle in a planar view of the circular area. However, this is not limiting, and for example, instead of the circle, other shapes such as an ellipse or a rectangle may be applied, or instead of the coordinate position in the two-dimensional coordinate system, latitude and longitude may be applied.
[0061] The social heat map image is an image showing a map that highlights locations with a large amount of information that matches the target user's category by displaying areas with different densities or colors overlaid on a map image that is normally displayed for the corresponding target area. In other words, in this embodiment, each target user is asked to answer multiple questions in advance, and the responses are analyzed and classified to determine each target user's category in advance. The social heat map image according to this embodiment is then displayed overlaid on the map image so that the density increases with the amount of information (in this embodiment, information posted on a social networking service (SNS)) that matches the target user's category. However, this density change is not limited to this, and the color may also be changed in order from high density to low density, such as red → yellow → green.
[0062] In this embodiment, the migration evaluation support device 10 is connected to a server that provides the latest social heat map images of each target area via a network 80 or the like, and the latest social heat map images are obtained from this server to sequentially update the target area information database 13B. However, this is not limited to this form, and the migration evaluation support device 10 itself may also be configured to sequentially update the social heat map images corresponding to each target person.
[0063] Furthermore, the travel route is information indicating a route recommended for travel in the corresponding target area, the spot name is information indicating the name of a spot included in the corresponding target area, and the spot position is information indicating the location of the corresponding spot. In this embodiment, the spot is an area surrounded by a circle in a planar view, and the spot position is defined as a coordinate position in a two-dimensional coordinate system of a pair of diagonal corners of a circumscribing rectangle of the circular area in a planar view. However, this is not limited to this form, and for example, the circle may be replaced by another shape such as an ellipse or a rectangle, or latitude and longitude may be used instead of the coordinate position in the two-dimensional coordinate system.
[0064] In this embodiment, the above-mentioned travel routes and spots are extracted from information posted on SNS using AI (artificial intelligence) technology, but the present invention is not limited to this. For example, travel routes and spots may be extracted from the homepage of a television program that introduces spots in various locations, such as a travel program, a gourmet program, or a city walking program (a so-called city stroll program).
[0065] In this way, in this embodiment, information indicating recommended routes to travel in the target area is provided, and this information is presented to the subject, but it goes without saying that the subject does not necessarily have to travel exactly along the presented route, and can simply walk around to see and hear about objects of interest.
[0066] Furthermore, the above-mentioned overall mobility degree is information indicating the overall value of the above-mentioned mobility degree for the corresponding spot. In this embodiment, the simple average value of the mobility degree of all subjects at the corresponding spot is applied as the overall mobility degree, but this is not limited to this. For example, a weighted average value of the mobility degree of all subjects at the corresponding spot, in which the weight of people with an important attribute is relatively increased, may be applied as the overall mobility degree. Hereinafter, the information stored in the target area information database 13B will be collectively referred to as "target area information."
[0067] Next, the subject information database 13C according to this embodiment will be described with reference to Fig. 5. Fig. 5 is a schematic diagram showing an example of the configuration of the subject information database 13C according to this embodiment.
[0068] As shown in FIG. 5, the subject information database 13C according to this embodiment stores the following information: subject terminal ID (Identification), subject name, attributes, visited spots, visit date and time, walking distance, road distance, provisional wandering degree, and wandering degree.
[0069] The subject terminal ID is information assigned to identify the subject terminal 30 owned by each subject who uses the migration evaluation support system 90, and the subject name is information indicating the name of the corresponding subject.
[0070] In addition, the above attributes are information indicating the above attributes of the corresponding subject, the above visited spots are information indicating the names of spots visited by the corresponding subject, and the visit dates and times are information indicating the dates and times when the corresponding subject visited the corresponding spots.
[0071] The walking distance is information indicating the distance of the walking route of the corresponding subject per unit time (10 minutes in this embodiment) measured when the corresponding subject visited the corresponding spot. The following distance is information indicating the distance of the route corresponding to the following route when the corresponding walking route was walked.
[0072] In this embodiment, the information indicating the walking route stored in the target area information database 13B is stored as information corresponding to the information indicating the road-direction route. Then, in this embodiment, information indicating the route between the positions closest to the start and end positions of the walking route is extracted from the information indicating the walking route, and the distance of the route indicated by the extracted information is used as the road-direction distance. However, the road-direction distance is not limited to this. For example, a map image in a social heat map image may be referenced to extract information indicating the route between the positions on the road closest to the start and end positions of the walking route, and the distance of the route indicated by the extracted information may be used as the road-direction distance.
[0073] Furthermore, the provisional mobility degree is information indicating the mobility degree per unit time corresponding to the corresponding walking distance and road distance, and the mobility degree is information indicating the mobility degree for the entire spot when the corresponding subject visits the corresponding spot. As described above, in this embodiment, the mobility degree is a value corrected according to the rate of change of the provisional mobility degree over time. Note that, hereinafter, the information stored in the subject information database 13C is collectively referred to as "subject information."
[0074] Next, the operation of the shopping mall evaluation support system 90 according to this embodiment will be described with reference to FIGS.
[0075] First, the operation of the subject terminal 30 will be described with reference to Fig. 6. The CPU 31 of any of the subject terminals 30 executes the terminal processing program 33A, thereby executing the terminal processing shown in Fig. 6. The terminal processing shown in Fig. 6 is executed, for example, when an instruction to execute the terminal processing is input from any of the subjects (hereinafter referred to as "subject") via the input unit 34 of their own subject terminal 30.
[0076] In step 200 of Figure 6, the CPU 31 acquires information indicating the location (hereinafter referred to as "location information") from the GPS 40, and in the next step 202, the CPU 31 transmits the acquired location information to the wandering evaluation support device 10 via the wireless communication unit 42.
[0077] In the later-described migration evaluation support process (see also FIG. 7), the migration evaluation support device 10 reads out, from the target area information database 13B, target area information (hereinafter referred to as "implementation target area information") relating to the target area (hereinafter referred to as "implementation target area") that includes the position indicated by the position information received from the target user terminal 30. Furthermore, the migration evaluation support device 10 creates information indicating an initial screen (hereinafter referred to as "initial screen information") (described later) based on the implementation target area information. Then, the migration evaluation support device 10 transmits the implementation target area information and the initial screen information to the target user terminal 30 (hereinafter referred to as "implementation target user terminal") that sent the position information.
[0078] Therefore, in the next step 204, the CPU 31 waits to receive the initial screen information and implementation area information from the wander evaluation support device 10, and in the next step 206, the CPU 31 controls the display unit 35 to display the initial screen indicated by the received initial screen information.
[0079] FIG. 8 shows an example of an initial screen according to this embodiment. As shown in FIG. 8, the initial screen according to this embodiment displays the names and travel routes of each spot included in the target area superimposed on the corresponding position on a social heat map image of the target area. The target person then begins traveling along the travel route displayed on the initial screen. To avoid confusion, this embodiment describes a case where there is only one candidate target area, but this is not limited to this. For example, if there are multiple candidate target areas, the target area with the highest total value of the overall travel rate of the included spots or the target area most recently registered in the target area information database 13B may be selectively applied as the target area. Also, as shown in FIG. 8, the initial screen according to this embodiment displays the circumscribing circles of each spot included in the target area with dashed lines, but it goes without saying that this is not limited to this.
[0080] As mentioned above, the subject does not necessarily have to move exactly along the displayed route, but can just walk around aimlessly to see and hear about objects of interest.
[0081] In the next step 208, the CPU 31 acquires location information from the GPS 40. In the next step 210, the CPU 31 waits until the location indicated by the acquired location information reaches the area of one of the spots included in the received implementation target area information, thereby waiting until the implementation target person arrives at the area of one of the spots (hereinafter referred to as "stay spot") in the implementation target area.
[0082] In the next step 212, the CPU 31 starts counting the number of steps taken by the subject using the output signal from the acceleration sensor 41, and also starts timing using a built-in timing unit (not shown), and in the next step 214, the CPU 31 acquires location information from the GPS 40.
[0083] In the next step 216, the CPU 31 calculates the walking distance of the subject per unit time using the number of steps from this point until the above-mentioned unit time (10 minutes in this embodiment) has elapsed. Note that in this embodiment, the walking distance is calculated by multiplying the counted number of steps by a distance per step that is predetermined according to the attributes of the subject, but this is not limited to this. For example, the walking distance may be the length of the subject's movement route, which is sequentially obtained by the GPS 40.
[0084] Then, in step 216, the CPU 31 controls to transmit information indicating the calculated walking distance, information indicating the walking route corresponding to the walking distance, and information indicating the spot name corresponding to the stay spot as basic information to the wandering evaluation support device 10 via the wireless communication unit 42. Upon receiving the basic information from the subject terminal, the wandering evaluation support device 10 controls to register information related to the received basic information and information indicating a provisional wandering degree (a provisional wandering degree described later) derived using the basic information in the subject information database 13C in a wandering evaluation support process described later.
[0085] In the next step 218, CPU 31 waits until the position indicated by the acquired position information becomes a position where the user leaves the stay spot determined to have been reached in the processing of step 210 (hereinafter referred to as the “leaving spot”).
[0086] In the next step 220, the CPU 31 stops the counting of steps and timing that was started by the processing of step 212, and controls to transmit spot departure information indicating that the subject has left the departure spot to the wandering evaluation support device 10. By the processing of the above steps 214 to 220, the CPU 31 can transmit basic information including information indicating the walking distance per unit time at the departure spot of the subject to the wandering evaluation support device 10, and as a result, information regarding the basic information per unit time and information indicating the provisional wandering degree are sequentially accumulated in the subject information database 13C.
[0087] Then, when the subject leaves the exit spot, the migration evaluation support device 10 uses the provisional migration degrees in chronological order at the exit spot registered in the subject information database 13C to derive the migration degree corresponding to the entire exit spot, and transmits it to the subject terminal.
[0088] Therefore, in the next step 222, the CPU 31 waits to receive the degree of movement from the movement evaluation support device 10, and in the next step 224, the CPU 31 controls the display unit 35 to display a movement degree display screen that mainly displays the received degree of movement.
[0089] An example of a migration degree display screen according to this embodiment is shown in Fig. 9. As shown in Fig. 9, the migration degree display screen according to this embodiment displays the name of the exit spot and the name of the target participant, and also displays the migration degree of the target participant in an adjustable manner. Note that, as shown in Fig. 9, the migration degree display screen according to this embodiment also displays a face image 35D that simulates a facial expression according to the magnitude of the migration degree.
[0090] When the mobility display screen shown in FIG. 9 is displayed on the display unit 35, the subject inputs an instruction to adjust the mobility if the displayed mobility does not match the mobility for the exit spot that the subject subjectively felt. In this embodiment, the instruction to adjust the mobility is input by specifying the increase button 35C when wanting to increase the mobility and by specifying the decrease button 35B when wanting to decrease the mobility, but this is not limited to this. For example, the adjusted value may be directly input in the display area of the mobility. Then, the subject inputs the end button 35A when wanting to end the display of the mobility display screen.
[0091] Therefore, in the next step 226, the CPU 31 waits until the end button 35A is designated. In the next step 228, the CPU 31 transmits information indicating that the end button 35A has been designated (hereinafter referred to as "end information"), together with the adjusted migration degree (hereinafter referred to as "adjusted migration degree") if the migration degree has been adjusted on the migration degree display screen, to the migration evaluation support device 10 via the wireless communication unit 42. Note that if the end button 35A is designated without adjusting the migration degree on the migration degree display screen, the CPU 31 transmits only the end information to the migration evaluation support device 10.
[0092] When the wandering evaluation support device 10 receives the end information from the implementation target terminal, it derives meaningful information, which is information that is meaningful to the implementation target, and transmits it to the implementation target terminal in the wandering evaluation support process described later.
[0093] Therefore, in the next step 230, the CPU 31 waits to receive meaningful information from the wander evaluation support device 10, and in the next step 232, the CPU 31 controls the display unit 35 to display a meaningful information display screen that mainly displays the received meaningful information.
[0094] An example of a meaningful information display screen according to this embodiment is shown in Figure 10. As shown in Figure 10, the meaningful information display screen according to this embodiment displays the name of the exit spot and the name of the target person, as well as meaningful information.
[0095] In this embodiment, information indicating the level of mental health (hereinafter referred to as "mental health level") and information indicating the level of physical health (hereinafter referred to as "physical health level") are applied as meaningful information. Also, in this embodiment, information indicating the level of leisure and enjoyment at the departure spot for the participant is also applied as meaningful information. However, it goes without saying that meaningful information is not limited to these pieces of information.
[0096] When the meaningful information display screen shown in FIG. 10 is displayed on the display unit 35, the subject understands the content of the displayed information and then presses the end button 35A.
[0097] Therefore, in the next step 234, CPU 31 waits until the end button 35A is designated. In the next step 236, CPU 31 determines whether or not the above processing has been completed for all spots in the target area, and if the determination is negative, CPU 31 returns to step 206, but if the determination is positive, CPU 31 ends this terminal processing.
[0098] Next, the operation of the migration evaluation support device 10 will be described with reference to Fig. 7. The CPU 11 of the migration evaluation support device 10 executes the migration evaluation support program 13A, thereby executing the migration evaluation support process shown in Fig. 7. The migration evaluation support process shown in Fig. 7 is executed, for example, when an instruction to execute the migration evaluation support process is input from the operator of the migration evaluation support device 10 via the input unit 14. Note that, in order to avoid confusion, a case will be described here in which the subject ID, subject name, and attribute information of the subject information database 13C are registered in advance.
[0099] In step 300 of Figure 7, CPU 11 waits until location information is received from any of the target terminals 30, and in the next step 302, CPU 11 reads out target area information (=implementation target area information) regarding the target area that includes the location indicated by the received location information from target area information database 13B.
[0100] In the next step 304, the CPU 11 creates the above-mentioned initial screen information using the read-out implementation target area information. In the next step 306, the CPU 11 controls the transmission of the created initial screen information and the read-out implementation target area information to the implementation target person terminal via the communication I / F unit 18 and the network 80. Upon receiving the initial screen information and the implementation target area information, the implementation target person terminal transmits basic information including information indicating the walking distance per unit time at each spot in the visited target area to the wanderlust evaluation support device 10 by the above-mentioned terminal processing.
[0101] Therefore, in the next step 308, the CPU 11 waits until the basic information is received from the subject terminal. In the next step 310, the CPU 11 derives information indicating the path distance corresponding to the information indicating the walking distance included in the received basic information as described above, and derives the provisional wandering degree as described above using the information indicating the walking distance and the path distance. In the next step 312, the CPU 11 stores (registers) each piece of information on the walking distance, the path distance, and the derived provisional wandering degree in the corresponding storage area of the subject information database 13C.
[0102] In the next step 314, the CPU 11 determines whether or not the target person has left the exit spot by determining whether or not spot departure information has been received from the target person terminal, and if the determination is negative, the process returns to step 308, whereas if the determination is positive, the process proceeds to step 316.
[0103] When repeatedly executing the processes of steps 308 to 314, the CPU 11 stores the information indicating the spot name included in the received basic information and the date and time at that time (the start date and time of the visit) in the corresponding storage area of the target person information database 13C when it first executes the process of step 312. When repeatedly executing the processes of steps 308 to 314, the CPU 11 stores the date and time at that time (the end date and time of the visit) in the target person information database 13C when it finally executes the process of step 312.
[0104] In the next step 316, the CPU 11 reads out information indicating all provisional migration degrees related to the exit spots from the subject information database 13C, and derives the migration degree corresponding to all the exit spots using the provisional migration degrees as described above.
[0105] In the next step 318, the CPU 11 controls to transmit the derived mobility degree to the target user terminal. When the mobility degree is received, the target user terminal displays a mobility degree display screen by terminal processing as described above, and allows adjustment of the mobility degree on the mobility degree display screen. Then, if the adjustment of the mobility degree is accepted, the CPU 11 transmits the above-mentioned adjusted mobility degree and end information to the mobility evaluation support device 10. If the adjustment of the mobility degree is not accepted, the CPU 11 transmits only the end information to the mobility evaluation support device 10.
[0106] Therefore, in the next step 320, the CPU 11 waits until it receives completion information from the implementation target terminal. In the next step 322, the CPU 11 determines whether or not the completion information has been received together with the adjusted mobility degree, thereby determining whether or not the mobility degree has been adjusted by the implementation target terminal. If the determination is affirmative, the process proceeds to step 324.
[0107] In step 324, the CPU 11 stores (registers) the received adjusted mobility degree as information indicating the mobility degree in the object person information database 13C, and then proceeds to step 328.
[0108] On the other hand, if the determination in step 322 is negative, that is, if the adjusted mobility degree has not been received from the implementation target terminal, the process proceeds to step 326 .
[0109] In step 326, the CPU 11 stores (registers) the degree of movement derived by the processing in step 316 as information indicating the degree of movement in the object person information database 13C, and then proceeds to step 328.
[0110] In step 328, the CPU 11 reads all the migration degrees that have been registered up to that point in the target person information database 13C for the spots corresponding to the spot names included in the received basic information, calculates the overall migration degree as described above using the read migration degrees, and stores the calculated overall migration degree in the corresponding area in the target area information database 13B, thereby updating the overall migration degree of the corresponding spot.
[0111] In step 330, the CPU 11 derives the meaningful information described above. In this embodiment, the mental health level and physical health level included in the meaningful information are derived as values indicating the level of each of the mental health level and physical health level out of a predetermined number of levels (10 levels in this embodiment). In this embodiment, the mental health level is derived as a value obtained by taking the relative magnitude of the target person's mobility level (or the adjusted mobility level, if an adjusted mobility level has been received) to the overall mobility level corresponding to the corresponding spot as the median (here, 5). In this embodiment, the physical health level is derived as a value obtained by taking the relative magnitude of the target person's walking distance per unit time to the average value of the walking distances per unit time for all targets corresponding to the corresponding spot as the median (here, 5). However, it goes without saying that the mental health level and physical health level are not limited to these examples.
[0112] In step 332, the CPU 11 transmits the derived meaningful information to the subject terminal.
[0113] In the next step 334, the CPU 11 determines whether processing from step 308 onwards has been completed for all spots in the target area, and if the determination is negative, the process returns to step 308, whereas if the determination is positive, the process proceeds to step 336.
[0114] In step 336, the CPU 11 determines whether a predetermined end timing has arrived, and if the determination is negative, the process returns to step 300, whereas when the determination is positive, the process ends the current shopping mall evaluation support process. Note that in this embodiment, the end timing is the timing when the operator of the shopping mall evaluation support device 10 inputs an instruction to end the shopping mall evaluation support process via the input unit 14, but this is not limited to this.
[0115] In addition, the mobility degree for each subject and the overall mobility degree obtained by the mobility evaluation support device 10 of this embodiment can also be effectively used when carrying out urban planning or regional planning (so-called town development).
[0116] For example, by using the overall mobility index, it is possible to understand that the higher the overall mobility index, the easier it is to "wander around," that is, the more attractive the target area is, the higher its safety is, and ultimately the higher its economic activity is, and it can be used as an index to judge the attractiveness of a target area.
[0117] As described above, according to this embodiment, route information indicating the walking route of a subject in a target area for wandering is acquired, a wandering degree indicating the ratio of the distance per unit time of the route indicated by the acquired route information to the distance along the road is derived, and information related to the wandering degree is presented. Therefore, the wandering degree can be derived as an indication of the actual degree of wandering, which can contribute to a higher level of support for the evaluation of wandering.
[0118] Furthermore, according to this embodiment, the degree of navigation is corrected using the rate of change of the degree of navigation over time, so that the degree of navigation can be derived with higher accuracy.
[0119] Furthermore, according to this embodiment, meaningful information that is meaningful to the target person is further presented to the target person using the derived degree of movement, which allows the target person to feel the significance of movement, thereby increasing their motivation to move around.
[0120] Furthermore, according to this embodiment, the meaningful information includes information about health, which can further increase motivation to wander around.
[0121] Furthermore, according to this embodiment, the health-related information includes both mental health-related information and physical health-related information, so that the subject can understand this health-related information.
[0122] Furthermore, according to this embodiment, the degree of navigation is derived for each attribute of the subject, so that the degree of navigation can be derived with higher accuracy.
[0123] In the above embodiment, the case where the ratio of the distance per unit time of the route indicated by the route information to the distance along the road has been described as the degree of navigation is described, but this is not limiting. For example, the degree of navigation may be calculated by calculating the ratio of the distance per unit time of the route indicated by the route information to the straight-line distance from the start point to the end point of the route. In this case, the degree of navigation can be calculated by applying the straight-line distance instead of the distance along the road, and therefore the degree of navigation can be calculated more easily.
[0124] In the above embodiment, the case where the mobility display screen is displayed as a screen different from the initial screen has been described, but this is not limiting. For example, the mobility display screen may be displayed as a pop-up screen on the initial screen. In this case, an example of a form in which the mobility display screen is displayed in the form of a so-called speech bubble from the position of the exit spot on the initial screen can be given.
[0125] In the above embodiment, the case where the area including the location of the subject terminal is automatically applied as the target area has been described, but this is not limited to this. For example, the subject may specify a remote location away from the location of the subject terminal on an electronic map or by inputting the name of the remote location to specify the target area. In addition, the wandering evaluation support device 10 may acquire information indicating the subject's preference trends in advance, and provide the subject with information on the target area according to the subject's preferences as needed.
[0126] In the above embodiment, the case where the mobility of the target person for each spot is derived and displayed at the timing when the target person leaves the spot has been described, but the present invention is not limited to this. For example, the mobility may be derived and displayed at the timing when the target person leaves the target area.
[0127] In the above embodiment, the case where the migration evaluation support process is executed in the migration evaluation support device 10 has been described, but the present invention is not limited to this. For example, the migration evaluation support process may be executed by each subject terminal 30. In this case, the migration evaluation support device of the present invention is included in the subject terminal 30.
[0128] In the above embodiment, the social heat map image is an image showing a map that highlights locations with a lot of information that matches the target user's category, but the present invention is not limited to this. For example, the social heat map image may be an image in which the higher the overall visitor frequency of a spot, the deeper the red color.
[0129] Furthermore, in the above embodiment, for example, the following various processors can be used as the hardware structure of the processing unit that executes each process of the acquisition unit 11A, the derivation unit 11B, and the presentation unit 11C. As described above, the various processors include a CPU, which is a general-purpose processor that executes software (programs) and functions as a processing unit, as well as dedicated electrical circuits that are processors having a circuit configuration specifically designed to execute specific processes, such as a programmable logic device (PLD) that is a processor whose circuit configuration can be changed after manufacture, such as an FPGA (Field-Programmable Gate Array), and an ASIC (Application Specific Integrated Circuit).
[0130] The processing unit may be configured with one of these various processors, or may be configured with a combination of two or more processors of the same or different types (for example, a combination of multiple FPGAs, or a combination of a CPU and an FPGA).The processing unit may also be configured with a single processor.
[0131] Examples of configuring a processing unit with a single processor include, first, a form in which one processor is configured with a combination of one or more CPUs and software, and this processor functions as the processing unit, as typified by computers such as client and server. Second, a form in which a processor is used to realize the functions of the entire system, including the processing unit, on a single IC (Integrated Circuit) chip, as typified by systems on chips (SoCs). In this way, the processing unit is configured using one or more of the above-mentioned various processors as a hardware structure.
[0132] Furthermore, more specifically, the hardware structure of these various processors can be an electric circuit that combines circuit elements such as semiconductor elements. [Explanation of symbols]
[0133] 10. Migration evaluation support device 11 CPU 11A Acquisition Department 11B Derivation part 11C Presentation section 12 Memory 13 Storage section 13A Migration Evaluation Support Program 13B Subject Area Information Database 13C Target Information Database 14 Input section 15 Display 16 Media reading and writing device 17 Recording Media 18 Communication I / F section 30 Target Device 31 CPU 31A Transmitter 31B Display control unit 32 memory 33 Storage section 33A Terminal Processing Program 34 Input section 35 Display section 36 Media reading and writing device 37 Recording Media 38 Camera 39. Mike 40 GPS 41 Acceleration sensor 42 Radio Communication Department 80 Network 90 Migration Evaluation Support System
Claims
1. an acquisition unit that acquires route information indicating a walking route to a destination of the subject in a target area for wandering; a derivation unit that derives a degree of navigation indicating a ratio of a distance per unit time of the route indicated by the route information acquired by the acquisition unit to a distance of the route along a road toward the destination, the distance being a distance along the road that is a distance stored in advance in a storage unit; a presentation unit that controls the presentation of the mobility-related information regarding the mobility derived by the derivation unit using a display unit, an audio playback device, or an image forming device; A migration evaluation support device equipped with the above.
2. the derivation unit derives, as the degree of movement, a ratio of a distance per unit time of the route indicated by the route information to a straight-line distance from a start point to an end point to the destination; The device for supporting user's shopping experience evaluation according to claim 1 .
3. The derivation unit corrects the degree of movement using a rate of change of the degree of movement over time. The device for supporting user's shopping experience evaluation according to claim 1 or 2.
4. The presentation unit uses the degree of movement derived by the derivation unit to control further presentation of meaningful information, which is meaningful to the subject and includes health-related information, to the subject via the display unit, the audio playback device, or the image forming device. The migration evaluation support device according to any one of claims 1 to 3.
5. The health-related information includes at least one of mental health-related information and physical health-related information. The device for supporting user's shopping experience evaluation according to claim 4.
6. The derivation unit derives the degree of movement according to attributes of the subject person. The migration evaluation support device according to any one of claims 1 to 5.
7. The migration evaluation support device according to any one of claims 1 to 6, a terminal including a transmission unit that transmits the route information to the acquisition unit of the mobility evaluation support device, and a display control unit that controls display of the mobility degree related information presented by the presentation unit of the mobility evaluation support device on a display unit; A migration evaluation support system including:
8. Obtaining route information indicating the walking route to the target destination of the subject in the target area of the roaming; deriving a degree of navigation indicating a ratio of a distance per unit time of the route indicated by the acquired route information to a distance of the route along the road toward the destination, the distance being a distance along the road that is stored in advance in a storage unit; Controlling the display of information related to the derived mobility on a display unit, an audio playback device, or an image forming device; A program that causes a computer to execute a process.
Citation Information
Patent Citations
Server for searching activity area and server for recomending information
JP2003044512A
Information providing device, information providing method and program for providing information
JP2015011550A
Information processing unit
JP2016143426A
Data analysis system and data analysis method
JP2019023851A
Circular tour promotion support device and circular tour promotion support system and program
JP2020109600A