Output system, output method, and output program

The output system addresses the limitation of conventional systems by optimizing display screens based on user behavioral characteristics, improving user convenience and information grasp through tailored display modes.

JP7847780B2Active Publication Date: 2026-04-20GODOT INC
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
GODOT INC
Filing Date
2023-04-25
Publication Date
2026-04-20

AI Technical Summary

Technical Problem

Conventional portal site generation systems do not consider user behavioral characteristics, limiting user convenience and effectiveness in providing information.

Method used

An output system that acquires action characteristic information and outputs display information in a mode corresponding to the user's behavioral characteristics, utilizing behavioral science approaches to optimize the display screen for individual user needs.

Benefits of technology

Enables providing information that is tailored to the user's behavioral characteristics, enhancing user convenience and effectiveness in grasping the purpose and content of the information, thereby encouraging appropriate actions.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide information in consideration of a behavioral characteristic of a user.SOLUTION: An output system includes: a behavioral characteristic acquisition unit that in response to access from an information processing device of a user, acquires behavioral characteristic information concerning a behavioral characteristic indicating a property of an action of the user, which is associated with the user; and a display information output unit that based on a correspondence between the behavioral characteristic and a display mode of a display screen indicating provision information to be provided to the user, outputs first display information for displaying the display screen on the information processing device in a display mode corresponding to the behavioral characteristic indicated by the behavioral characteristic information.SELECTED DRAWING: Figure 1
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Description

Technical Field

[0001] The present invention relates to an output system, an output method, and an output program.

Background Art

[0002] Conventionally, a technique for displaying a display screen optimized for each user has been known.

[0003] For example, the portal site generation system described in Patent Document 1 stores by associating user identification information and keywords input by the user. When the system receives a generation request for a portal site including a portlet from a user, it generates a portlet using portlet data, and when the generated portlet includes a keyword corresponding to the identification information of the user who is the generation request source of the portal site, it changes the generated portlet so that the characters including the keyword are highlighted. Then, the system generates a portal site using the generated portlet or the changed portlet.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] Incidentally, in recent years, efforts to utilize behavioral science approaches, based on theories of behavioral science that scientifically study human behavior, in service development have been spreading in various fields such as public policy, healthcare, retail, and education. By using behavioral science approaches, it is possible to provide services optimized for users. In other words, by using behavioral science approaches, users can receive various kinds of information in a manner that is easier, more efficient, or less likely to be overlooked, according to their individual behavioral characteristics.

[0006] However, the portal site generation system described in Patent Document 1 assumes that keywords corresponding to users are memorized in advance. Therefore, the system does not take into account the user's behavioral characteristics, and user convenience is limited.

[0007] Therefore, the present invention aims to provide information while taking into account the user's behavioral characteristics. [Means for solving the problem]

[0008] An output system according to one aspect of the present invention includes: an action characteristic acquisition unit that acquires action characteristic information relating to action characteristics that indicate the nature of a user's actions, in response to access from a user's information processing device; and a display information output unit that outputs first display information for displaying a display screen on an information processing device in a display mode corresponding to the action characteristics indicated by the action characteristic information, based on the correspondence between the action characteristics and the display mode of a display screen that displays the information provided to the user.

[0009] In this invention, "part" does not merely mean a physical means, but also includes cases where the functions of that "part" are realized by software. Furthermore, even if the functions of one "part" or device are realized by two or more physical means, devices, or software, the functions of two or more "parts" or devices may be realized by one physical means, device, or software. [Effects of the Invention]

[0010] According to the present invention, it becomes possible to provide information while taking into account the user's behavioral characteristics. [Brief explanation of the drawing]

[0011] [Figure 1] This figure shows an overview of the processing in an output system 100, which is one embodiment of the present invention. [Figure 2] This is a diagram showing the configuration of an output system 100, which is one embodiment of the present invention. [Figure 3] This figure shows an example of prior action information stored in the memory unit 110. [Figure 4] This figure shows an example of condition information stored in the memory unit 110. [Figure 5] This figure shows an example of behavioral characteristic information stored in the memory unit 110. [Figure 6] This figure shows an example of a display screen shown on the information processing device 200. [Figure 7] A flowchart illustrating an example of processing in output system 100. [Figure 8] This figure shows an example of the hardware configuration of Computer 800. [Modes for carrying out the invention]

[0012] A preferred embodiment of the present invention will be described with reference to the attached drawings. Figure 1 is a diagram showing an overview of the processing in an output system 100, which is one embodiment of the present invention.

[0013] The output system 100 is an information processing system implemented by an output program. The output system 100 is an information processing system that outputs display information for displaying information provided to the user on the user's information processing device in a display manner corresponding to the user's behavioral characteristics.

[0014] First, the user accesses the display system through the user's information processing device. The display system is, for example, a homepage (e.g., a portal site) that provides provided information. At this time, the user's information processing device outputs behavior characteristic information to the display system (S101). The display system outputs the behavior characteristic information to the output system 100 (S102).

[0015] Subsequently, based on the correspondence between the behavior characteristics indicated by the behavior characteristic information and the display mode of the display screen for displaying the provided information, the output system 100 outputs first display information for displaying on the information processing device a display screen for displaying the provided information in the display mode corresponding to the behavior characteristics to the display system (S103). The display system outputs the first display information to the user's information processing device. The user refers to the display screen displayed by the first display information (S104).

[0016] Here, the provided information provided to the user (information referencer) is not particularly limited, and includes, for example, public provided information provided by a country or a local public entity to citizens, etc., or private provided information provided by a private company or a private organization to the user. The public provided information includes, for example, information regarding health check guidance, information regarding vaccination guidance, information regarding tax payment guidance, or information regarding guidance on public systems (e.g., subsidy systems, grant systems, etc.). The private provided information includes, for example, information regarding guidance on products or services provided by a private company or a private organization.

[0017] The purpose of providing the provided information is not merely to provide the provided information to the user, but to cause the user who has received the provided information to take an action corresponding to the provided information. Conventionally, when providing the provided information, for example, from the perspective of fairness among users or design costs, in principle, the same provided information, UI (user interface), or UX (user experience) is provided to all users.

[0018] In this regard, humans have the characteristic that if they cannot immediately grasp the purpose and content of the guidance, they will abandon or postpone understanding it over time. Moreover, there are individual differences in this characteristic, and it is conceivable that this characteristic will change over time even in the same individual. Therefore, considering the behavior characteristics of users is a very important factor in designing an information-providing medium. Designing an information-providing medium without considering the constraints derived from mental bandwidth wastes the time and effort of users, and for example, may damage the satisfaction of citizens with administrative services, the entire administration, or the trust in private companies or private organizations.

[0019] Therefore, the output system 100 outputs display information in consideration of the behavior characteristics of the user. As a result, the provided information for each user can be provided through the UI (user interface) or UX (user experience) for each user. Moreover, the user can immediately grasp the purpose and content of the guidance and execute actions corresponding to the provided information.

[0020] FIG. 2 is a diagram showing the configuration of an output system 100 according to an embodiment of the present invention. The output system 100 is communicably connected to an information processing apparatus 200 and a display system 300 via a network such as the Internet. Details of the output system 100 will be described later.

[0021] The information processing apparatus 200 is a computer used by the user, such as a smartphone, a tablet terminal, or a personal computer.

[0022] The user accesses the display system 300 through the information processing apparatus 200 and refers to the display information (for example, the first display information and the second display information described later) output by the output system 100.

[0023] Note that the information processing apparatus 200 may directly access the output system 100 and acquire display information without going through the display system 300.

[0024] The display system 300 is an information processing system that displays a display screen on the information processing device 200 that displays the provided information based on the displayed information. The display system 300 is, for example, an information processing system that displays a portal site or landing page that provides the provided information to the user.

[0025] In Figure 2, one information processing device 200 and one display system 300 are shown, but there may be multiple information processing devices 200 and multiple display systems 300.

[0026] Next, the details of the output system 100 will be described. The output system 100 includes a storage unit 110, a pre-evaluation unit 120, a pre-action acquisition unit 130, a condition setting unit 140, an action characteristic acquisition unit 150, a display information generation unit 160, and a display information output unit 170. Each of the units shown in Figure 2 can be realized, for example, by using a storage area or by having a processor execute a program stored in the storage area.

[0027] The memory unit 110 stores information to be processed in the output system 100. The memory unit 110 can store, for example, pre-action information, condition information, and behavioral characteristic information, which will be described later.

[0028] The pre-evaluation unit 120 generates behavioral science component information for the pre-display screen, which displays the information to be provided in advance.

[0029] Here, the pre-display screen may be a screen that displays different display information from the display information output by the display information output unit 170, which will be described later. In other words, the pre-display screen may be a display screen that is not optimized based on the user's behavioral characteristics.

[0030] Behavioral science component information is, for example, data that associates each of several predetermined behavioral science component elements with the numerical values ​​of those behavioral science component elements on the pre-display screen. In other words, the pre-evaluation unit 120 evaluates the strength of each behavioral science component element on the pre-display screen, thereby making it possible to clearly identify behavioral science components that should be avoided and those that should be used.

[0031] The pre-evaluation unit 120 can, for example, combine scraping technology or behavioral characteristic discrimination technology to automatically calculate the total amount of information provided on the pre-display screen (number of characters, number of bytes, etc.) and behavioral science quality (average time required for viewing, other quantitative indicators such as sampling map analysis, etc.), and generate behavioral science component information.

[0032] The algorithm for generating behavioral science component information by the pre-evaluation unit 120 is not particularly limited, but may include, for example, an algorithm that mimics the on-center and off-center mechanisms within ganglion cells in human retinal cells, an algorithm that utilizes a deep learning model trained using human gaze data when viewing images, or a combination or applicability of these.

[0033] The pre-action acquisition unit 130 acquires pre-action information regarding the user's actions in advance, such as referring to a pre-display screen that displays the information to be provided, and stores the pre-action information in the storage unit 110.

[0034] Pre-use behavior information is, for example, information showing the browsing history of pre-display screens by pre-users. Pre-use behavior information includes, for example, information indicating the time when a pre-user browsed the pre-display screen, the duration of browsing, and the scope of browsing. If a pre-use user includes multiple pre-users, the pre-use behavior information may be statistically analyzed information (for example, the mean, median, and mode of each value) obtained from the pre-use behavior information of multiple pre-users.

[0035] The pre-view behavior information may also include information showing heatmaps for each of the multiple sections included in the pre-view screen. For example, the heatmap may show higher values ​​for sections that the user has viewed for a longer period of time.

[0036] The pre-action acquisition unit 130 can acquire pre-action information, for example, by analyzing the access log of the information processing device 200 that references the pre-display screen.

[0037] Figure 3 shows an example of pre-action information stored in the memory unit 110. The pre-action information stored in the memory unit 110 includes, for example, a pre-action ID, average dwell time information, and average scroll count information.

[0038] The pre-action ID is information that identifies the pre-action information processed by the output system 100. The average dwell time information is information that shows the average dwell time of each of the multiple pre-users who continued to view the pre-displayed screen. The average scroll count information is information that shows the average of the range (number of scrolls on the web page) that each of the multiple pre-users viewed on the pre-displayed screen.

[0039] The condition setting unit 140 sets conditions related to the display mode of the display screen that displays the provided information based on the prior action information, and stores the condition information related to the set conditions in the storage unit 110.

[0040] The conditions indicated by the condition information represent, for example, the conditions under which a certain percentage of users who receive the display screen can actually access the display screen. The conditions for the display screen may be, for example, the time required to access the display screen, the number of scrolls, or the number of characters displayed on the display screen.

[0041] Furthermore, the conditions indicated by the conditional information could also be a condition that, if the user is elderly, video content should not be placed around important information. Because human vision tends to pay more attention to dynamic videos than static images, even if important information is placed in the center for elderly users, their attention will be drawn to dynamic elements such as videos around it.

[0042] Furthermore, the conditions indicated by the conditional information may also be written as, for example, the attention resource budget.

[0043] Figure 4 shows an example of condition information stored in the memory unit 110. The condition information stored in the memory unit 110 includes, for example, a condition ID, required time condition information, and scroll count condition information.

[0044] The condition ID is information that identifies the condition information processed by the output system 100. The required time condition information is information about the condition regarding the time required to view the display screen. The scroll count condition information is information about the condition regarding the number of scrolls required to view the display screen.

[0045] The behavioral characteristics acquisition unit 150 acquires behavioral characteristics information relating to the nature of the user's behavior, which is associated with the user, in response to access through the information processing device 200, and stores it in the storage unit 110.

[0046] The behavioral characteristics acquisition unit 150 acquires behavioral characteristics information based, for example, on access method information indicating how the information processing device 200 accesses the display system 300. Specifically, for example, the output system 100 may acquire access method information based on identification information indicated by a QR code (registered trademark) issued individually to the user or identification information indicated by a URL (Uniform Resource Locator) issued individually to the user. The above individual issuance may be carried out, for example, by sending a postcard to the user, sending an email, sending a short message, notifying the user account, etc.

[0047] In this case, the behavioral characteristics acquisition unit 150 may acquire behavioral characteristics information based on a predetermined correspondence between access methods and behavioral characteristics.

[0048] Furthermore, at this time, the behavioral characteristic acquisition unit 150 may acquire behavioral characteristic information based on a MECE (Mutually Exclusive and Collectively Exhaustive) type nudge cocktail or an adaptive nudge cocktail linked to the access method. This allows the behavioral characteristic acquisition unit 150 to assign certain behavioral characteristic information to users who access the site after receiving a notification linked to that information.

[0049] Here, a nudge cocktail is a set of data (e.g., messages to a user) that can be generated in accordance with each of several behavioral characteristics that can be associated with a user. A MECE nudge cocktail is, for example, a nudge cocktail generated for all participants in the initial stages of an intervention using a behavioral science approach. An adaptive nudge cocktail is, for example, a nudge cocktail generated based on behavioral change factors adapted to the participant, and is a nudge cocktail generated for participants who have shown some response to a MECE nudge cocktail. Nudge cocktails, MECE nudge cocktails, and adaptive nudge cocktails can be generated by techniques known to those skilled in the art.

[0050] If the behavioral characteristics acquisition unit 150 cannot acquire behavioral characteristics information based on the access method, the behavioral characteristics acquisition unit 150 may acquire predicted behavioral characteristics information based on, for example, the user's access time, information about the homepage the user was accessing immediately before accessing the display system 300 (i.e., site information before transition), etc.

[0051] Furthermore, the behavioral characteristics acquisition unit 150 can acquire behavioral characteristics information again based on behavioral information related to actions on the display screen, which will be displayed according to the display information described later. As a result, the display information generation unit 160, which will be described later, can generate display information that is further optimized according to the user's actions on the display screen.

[0052] Figure 5 shows an example of behavioral characteristic information stored in the memory unit 110. The behavioral characteristic information stored in the memory unit 110 includes, for example, a user ID and behavioral characteristic content information.

[0053] The User ID is information that identifies the user of output system 100. The Behavioral Characteristics Content Information is information about the content of the behavioral characteristics.

[0054] The display information generation unit 160 generates display information (particularly first display information) for displaying the display screen on the information processing device 200 in a display mode corresponding to the behavioral characteristics indicated by the behavioral characteristics information, based on the correspondence between the behavioral characteristics and the display mode of the display screen that displays the provided information.

[0055] Here, the display mode includes, for example, a display mode relating to the display position where the provided information is displayed on the display screen. However, the display mode is not limited to a display mode relating to the display position, and may also include, for example, a display mode relating to the size of the display, the color of the display, or the animation behavior during display.

[0056] Furthermore, the display method may include, for example, the duration for which the information is displayed, the timing for displaying the information (e.g., time, time zone, date, day of the week, month, season, or year), or a combination thereof. In other words, the display method may display the information at a specific time, for a specific duration, and in a specific position. This allows users to grasp the desired information or the information they should refer to more easily, for example, without having to scan the entire display screen.

[0057] The display information generation unit 160 can, for example, generate provision priority information that associates each of the multiple provision information items with a display priority. The display system 300, which receives the output of the display information from the display information output unit 170 (described later), displays each of the multiple provision information items in the section corresponding to the priority indicated by the provision priority information. If the number of multiple provision information items exceeds the number of sections, the excess provision information may not be displayed.

[0058] Furthermore, the display information generation unit 160 can generate display information based on the condition information. That is, the display information generation unit 160 can generate display information that conforms to the conditions indicated by the condition information.

[0059] In other words, the display information generation unit 160 can generate display information that conforms to the attention resource budget indicated by the condition information. This makes it possible to avoid situations where, for example, since human vision tends to focus more on dynamic videos than static images, video-format information is placed around important information for elderly users, causing their attention to be diverted to the surrounding information.

[0060] In this case, the output system 100 may, for example, determine whether the generated display information conforms to the conditions indicated by the condition information, and the display information output unit 170, described later, may output the display information according to the determination result. As a result, the display information output unit 170 can output display information that conforms to the conditions indicated by the condition information.

[0061] Furthermore, the display information generation unit 160 may generate display information for a predetermined user based on its past record of generating first display information for that predetermined user, displaying the provided information that was displayed in the previously generated display information. In other words, although the display position of the provided information may differ between the previously generated display information and the newly generated display information, the type of provided information displayed may be the same. This allows the predetermined user to understand the provided information that was included in the display screen they previously viewed, even when viewing a new display screen, thus preventing confusion for the predetermined user.

[0062] Furthermore, the display information generation unit 160 can generate display information (particularly second display information) for displaying a display screen on the information processing device 200 in a display mode corresponding to the behavioral characteristics indicated by the behavioral characteristics information acquired again by the behavioral characteristics acquisition unit 150, based on the behavioral characteristics information acquired again by the behavioral characteristics acquisition unit 150.

[0063] In this case, the display information generation unit 160 may generate second display information in response to a display information update request received from the user (for example, a web page update request). This allows the output system 100 to generate and output the second display data at an appropriate time without interfering with the user's viewing of the display screen.

[0064] The display information output unit 170 outputs display information (first display information and second display information).

[0065] The display information output unit 170 may output the display information to the display system 300, or to the information processing device 200. If the display information output unit 170 outputs the display information to the display system 300, the display system 300 may further output the display information to the information processing device 200.

[0066] Figure 6 shows an example of a display screen shown on the information processing device 200.

[0067] The screen shown in Figure 6 is displayed based on either the first or second display information. The screen shown in Figure 6 includes, for example, a title area 610 for displaying the title of the display screen, and partition areas 611 to 619 for displaying multiple sections for displaying the provided information. In this case, the provided information is displayed in at least one of the multiple partition areas 611 to 619. Note that the number and arrangement of partition areas are not limited to the example shown in Figure 6.

[0068] The partition area 612 is located in the center of the top row of the display screen. Therefore, for example, the highest priority information is placed in the partition area 612.

[0069] Furthermore, the priority ranking of partitioned areas may be the same for all users, or it may differ for each user (for example, for each user attribute). This allows the output system 100 to output display information that displays the provided information with greater accuracy and in a display format that is optimal for the user.

[0070] Furthermore, the information provided in the partitioned area may all be displayed for the same duration or timing, or at least one of them may be displayed for a different duration or timing. This allows the output system 100 to provide information to the user more flexibly, for example, in a partition, duration, and timing that is suitable for the user.

[0071] The first display information generated by the display information generation unit 160 differs for each user. More specifically, the information provided in each of the partitioned areas 611 to 619 in the display information generated by the display information generation unit 160 differs according to the user's behavioral characteristics. That is, the first provided information may be displayed in partitioned area 611 on the display screen of the first user and in partitioned area 612 on the display screen of the second user.

[0072] Furthermore, the second display information generated by the display information generation unit 160 based on the acquired behavioral characteristic information may differ from the first display information. That is, the first provided information may be displayed in partition area 611 on the display screen that displays the first display information, and in partition area 612 on the display screen that displays the second display information.

[0073] Figure 7 is a flowchart showing an example of processing in the output system 100.

[0074] First, the pre-evaluation unit 120 generates behavioral science component information on the pre-display screen (S701). The pre-behavior acquisition unit 130 acquires pre-behavior information (S702). The condition setting unit 140 sets conditions based on the pre-behavior information and generates condition information (S703).

[0075] Next, the behavioral characteristics acquisition unit 150 acquires behavioral characteristics information (S704). The display information generation unit 160 generates first display information based on the correspondence between the behavioral characteristics and the display mode of the display screen that displays the provided information, and the display information output unit 170 outputs the first display information (S705).

[0076] Furthermore, the behavioral characteristics acquisition unit 150 acquires behavioral characteristics information generated based on behavioral information relating to the user's actions on the display screen corresponding to the first display information (S706). The display information generation unit 160 generates second display information based on the correspondence between the behavioral characteristics and the display mode of the display screen that displays the provided information, and the display information output unit 170 outputs the second display information (S707).

[0077] Next, with reference to Figure 8, an example of a hardware configuration when the output system 100 is implemented by the computer 800 will be described. Figure 8 is a diagram showing an example of the hardware configuration of the computer 800.

[0078] As shown in Figure 8, the computer 800 includes, for example, a processor 801, memory 802, storage device 803, input I / F unit 804, data I / F unit 805, communication I / F unit 806, and display device 807.

[0079] Computer 800 may be, for example, a server computer, a personal computer (e.g., a desktop, laptop, tablet, etc.), a media computer platform (e.g., a cable, satellite set-top box, digital video recorder, etc.), a handheld computer device (e.g., a PDA, email client, etc.), or any other type of computer or communication platform.

[0080] The processor 801 is a control unit that controls various processes in the computer 800 by executing programs stored in memory 802.

[0081] Memory 802 is a storage medium such as RAM (Random Access Memory). Memory 802 temporarily stores the program code of the program executed by the processor 801, as well as data required during program execution.

[0082] The storage device 803 is a non-volatile storage medium such as a hard disk drive (HDD) or flash memory. The storage device 803 stores the operating system and various programs necessary to implement the above configurations.

[0083] The input interface unit 804 is a device for receiving input from the user. The input interface unit 804 can be, for example, a keyboard, mouse, touch panel, various sensors, or a wearable device. The input interface unit 804 may be connected to the computer 800 via an interface such as USB (Universal Serial Bus).

[0084] The data I / F unit 805 is a device for inputting data from outside the computer 800. The data I / F unit 805 is, for example, a drive device for reading data stored on various storage media. The data I / F unit 805 may be located outside the computer 800. If the data I / F unit 805 is located outside the computer 800, it is connected to the computer 800 via an interface such as USB.

[0085] The communication interface unit 806 is a device for performing data communication with external devices of the computer 800 via a network such as the Internet, either by wire or wireless connection. The communication interface unit 806 may be located outside the computer 800. If the communication interface unit 806 is located outside the computer 800, it is connected to the computer 800 via an interface such as USB.

[0086] The display device 807 is a device for displaying various types of information. The display device 807 may be, for example, a liquid crystal display, an organic EL (Electro-Luminescence) display, or a display for a wearable device. The display device 807 may be located outside the computer 800. If the display device 807 is located outside the computer 800, it is connected to the computer 800, for example, via a display cable. Furthermore, if a touch panel is used as the input I / F unit 804, the display device 807 may be integrated with the input I / F unit 804.

[0087] In this way, the output system 100 can not only provide information in accordance with the behavioral characteristics of users accessing the display system 300, but also output display information that enables users to take actions corresponding to that information. Users can obtain information that is more relevant to themselves and their interests without having to browse the display screen from corner to corner or provide any personal information, thus saving time searching for the information they want.

[0088] An embodiment of the present invention has been described above. The output system 100 can acquire behavioral characteristic information associated with a user in response to access by the information processing device 200, and output first display information based on the correspondence between the behavioral characteristics and the display mode of the display screen that displays the provided information. As a result, the output system 100 can provide information while taking into account the user's behavioral characteristics.

[0089] Furthermore, the output system 100 can set conditions regarding the display mode of the display screen based on prior behavior information, and output first display information based on the condition information. As a result, the output system 100 can provide information that takes into account the user's behavioral characteristics within a range that the user can tolerate.

[0090] Furthermore, the output system 100 can again acquire behavioral characteristic information generated based on behavioral information regarding the user's actions on the display screen, and output second display information based on the acquired behavioral characteristic information. This allows the output system 100 to provide information while further considering the user's actions on the display screen.

[0091] This embodiment is provided to facilitate understanding of the present invention and is not intended to limit its interpretation. The present invention may be modified or improved without departing from its spirit, and equivalents thereof are also included. [Explanation of symbols]

[0092] 100 Output system, 110 Storage unit, 120 Pre-evaluation unit, 130 Pre-action acquisition unit, 140 Condition setting unit, 150 Action characteristic acquisition unit, 160 Display information generation unit, 170 Display information output unit, 200 Information processing device, 300 Display system

Claims

1. A behavioral characteristics acquisition unit acquires access method information indicating how the user accesses the information processing device, and behavioral characteristics information including behavioral characteristics indicating the nature of the user's actions. A display information generation unit associates the behavioral characteristics with the display modes of the display screen that displays the information provided to the user, and generates first display information that includes information to display the display screen on the information processing device in a display mode associated with the behavioral characteristics indicated by the behavioral characteristics information, A display information output unit that outputs the first display information, Equipped with, The behavioral characteristic acquisition unit associates certain behavioral characteristic information with a notification, the access method information includes the notification information, and acquires the behavioral characteristic information by assigning the behavioral characteristic information associated with the notification to the user who accessed the information processing device via a notification having individually issued identification information, based on the notification information included in the access method information. Output system.

2. A pre-action acquisition unit acquires pre-action information regarding the actions of a user who refers to a pre-display screen that displays the aforementioned information in advance. The system further comprises a condition setting unit that associates the aforementioned pre-action information with the display mode conditions of the display screen, sets the conditions associated with the pre-action information, and generates condition information. The display information generation unit generates the first display information that conforms to the conditions indicated by the condition information. The output system according to claim 1.

3. The behavioral characteristics acquisition unit acquires the behavioral characteristics information again, The display information generation unit generates second display information, which includes information to display the display screen on the information processing device in a display mode associated with the behavioral characteristics indicated by the behavioral characteristics information acquired again. The display information output unit outputs the second display information. The output system according to claim 1 or 2.

4. The output system according to claim 1 or 2, wherein the display mode includes a display mode relating to the display position on which the provided information is displayed.

5. The aforementioned display screen includes a plurality of sections for displaying the provided information, The display position includes at least one of the plurality of sections. The output system according to claim 4.

6. Computers The system acquires access method information indicating how the user accesses the system through its information processing device, and behavioral characteristics information including behavioral characteristics indicating the nature of the user's actions. The behavioral characteristics are associated with the display mode of the display screen that displays the information provided to the user, and first display information is generated that includes information to display the display screen on the information processing device in a display mode associated with the behavioral characteristics indicated by the behavioral characteristics information. Outputting the first display information, Output method, The acquisition of the aforementioned behavioral characteristic information involves associating certain behavioral characteristic information with a notification, and the access method information includes the notification information. The user who accessed the information processing device via the notification having individually issued identification information is then assigned the behavioral characteristic information associated with the notification, based on the notification information included in the access method information, and the behavioral characteristic information is acquired by using this information. Output method.

7. On the computer, A behavioral characteristics acquisition unit acquires access method information indicating how a user accesses an information processing device, and behavioral characteristics information including behavioral characteristics indicating the nature of the user's actions. A display information generation unit associates the behavioral characteristics with the display modes of the display screen that displays the information provided to the user, and generates first display information that includes information to display the display screen on the information processing device in a display mode associated with the behavioral characteristics indicated by the behavioral characteristics information, A display information output unit that outputs the first display information, This is an output program for achieving the following: The behavioral characteristic acquisition unit associates certain behavioral characteristic information with a notification, the access method information includes the notification information, and acquires the behavioral characteristic information by assigning the behavioral characteristic information associated with the notification to the user who accessed the information processing device via a notification having individually issued identification information, based on the notification information included in the access method information. Output program.

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