Design evaluation method and system for products suitable for aging
By positioning the activity areas of the elderly in public facilities, collecting and analyzing chat records, and building a social platform and data stack, the problem of insufficient authenticity and enthusiasm of the elderly in evaluating data is solved, and the design and improvement efficiency of aging-friendly products is improved.
Patent Information
- Application Number
- CN202510593231.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-08-12
AI Technical Summary
Among the existing evaluation methods for aging-friendly products, the elderly have low participation, insufficient authenticity and enthusiasm for evaluation data, and there are problems with operational difficulty and resistance to online evaluation and questionnaire surveys.
By drawing a distribution map of public facilities, selecting friendly spaces, using Bluetooth receivers to collect signals and locate co-users, collecting chat records and extracting evaluation features, building an information exchange platform, generating a data stack and playing recommended advertisements, establishing a social interaction and emergency guardian mechanism, and optimizing the evaluation process.
It has improved the authenticity and enthusiasm of the evaluation data of the elderly, enhanced the efficiency of product improvement, improved product quality and satisfaction, and promoted the sense of participation and belonging of the elderly.
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Figure CN120471658A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of product design evaluation, and in particular to a method and system for evaluating the design of aging-friendly products. Background Art
[0002] Age-friendly products refer to products that are specifically designed and optimized for the elderly, such as mobile phones with simplified operating interfaces, easy-to-operate microwave ovens, and electric water heaters with safety protection capabilities. These products will fully consider the special physical, cognitive, and sensory needs of the elderly.
[0003] In the product iteration process of aging-friendly products, actual user evaluations are very important reference data. The actual users of aging-friendly products are the elderly. The existing methods of obtaining evaluations mostly use online evaluations or questionnaires. However, online evaluations and questionnaires themselves have some problems. For example, some elderly people do not know how to operate online evaluation systems, which affects the amount of evaluation data obtained. Some elderly people are resistant to questionnaires, which reduces the authenticity of the evaluation data.
[0004] Therefore, how to improve the authenticity and enthusiasm of the elderly's evaluation data on aging-friendly products is what this application hopes to solve. Summary of the Invention
[0005] The purpose of the present invention is to provide a method and system for evaluating the design of aging-friendly products to solve the problems raised in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solutions:
[0007] A method for evaluating the design of an aging-friendly product, comprising:
[0008] Draw a map of public facilities and select friendly spaces, where the friendly spaces include at least activity centers and community squares. Obtain access to display screens pre-deployed in the friendly spaces. Build an information exchange platform, obtain registration information uploaded by users, and generate a personal configuration data set, where the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, select users who use the same aging-friendly product and define them as co-users.
[0009] Using a Bluetooth receiver pre-installed in the friendly space, real-time signals are collected to find common users in the friendly space. Based on the real-time signals, the real-time locations of the common users are located, and it is determined whether the common users have met. If so, the duration of the meeting is calculated. Chat records of the common users are collected, evaluation features are extracted, and uploaded to the information exchange platform.
[0010] The same aging-friendly products corresponding to the common users are defined as the same product, and recommended advertisements for the same product are obtained and sent to the display screen. A corresponding relationship between the same product and the common users is established, and all the same products in the friendly space are traversed;
[0011] Create a number block corresponding to the same product one by one, and upload the corresponding recommended advertisement to the number block, sort all the number blocks in order of the encounter duration from longest to shortest, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage permission to the root node, embed a linkage mechanism in the data stack, and pop the number block with the highest ranking into the root node.
[0012] Furthermore, the step of obtaining permission to use the display screen pre-deployed in the friendly space includes:
[0013] Based on the real-time location, establishing a mapping between the display screen and the co-user;
[0014] Through the mapping, several auxiliary nodes are linked to the root node, and the usage rights are distributed to the auxiliary nodes.
[0015] Furthermore, the step of selecting users who use the same aging-friendly product and defining them as common users includes:
[0016] An emergency protection mechanism is established based on the same product and the information exchange platform, wherein the emergency protection mechanism is as follows: when the same product obtains abnormal usage information, an emergency call text message is generated and pushed to the common user;
[0017] A sharing community is constructed through the common users, and the sharing community is integrated into the information exchange platform.
[0018] Furthermore, the step of using a Bluetooth receiver pre-installed in the friendly space to collect real-time signals, finding common users in the friendly space, and locating the real-time locations of the common users based on the real-time signals includes:
[0019] Obtain a Bluetooth coverage map of the friendly space and mark the deployment locations of Bluetooth receivers;
[0020] Using triangulation, the real-time location of each user in the friendly space is calculated.
[0021] Furthermore, the steps of collecting the chat records of common users, extracting evaluation features, and uploading them to the information exchange platform include:
[0022] Based on the information exchange platform, a selection pop-up window for audio collection is sent to the co-user, and yes and no buttons are embedded in the selection pop-up window;
[0023] When the co-user selects the yes button, the chat records of the co-user are collected, and the chat records are compared with the feature data set to identify the evaluation features.
[0024] Furthermore, the step of defining the same aging-friendly products corresponding to the common users as the same product and obtaining recommended advertisements for the same product includes:
[0025] Input the chat records into a pre-built personality analysis model, output the user's personality deviation, and traverse the common items of common users;
[0026] Several versions of the recommended advertisement are obtained, and the versions are adjusted based on the same items.
[0027] Furthermore, the step of creating a data block corresponding to the same product one by one and uploading the corresponding recommended advertisement to the data block includes:
[0028] Uploading the evaluation features to corresponding digital blocks, integrating the digital blocks corresponding to each recommended advertisement, and generating an evaluation set;
[0029] The tags generated by the friendly space are inserted into the evaluation set, and the evaluation set is sent to a preset terminal.
[0030] Furthermore, a selection module is configured to draw a distribution map of public facilities and select friendly spaces, wherein the friendly spaces include at least activity centers and community squares, obtain access to display screens pre-deployed in the friendly spaces, build an information exchange platform, obtain registration information uploaded by users, and generate a personal configuration data set, wherein the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, users who use the same aging-friendly product are selected and defined as co-users.
[0031] an uploading module, configured to utilize a Bluetooth receiver pre-installed in the friendly space to collect real-time signals, identify common users in the friendly space, locate the real-time locations of the common users based on the real-time signals, determine whether the common users have met, and if so, calculate the duration of the meeting, collect chat records of the common users, extract evaluation features, and upload them to the information exchange platform;
[0032] A traversal module is used to define the same aging-friendly products corresponding to common users as the same product, obtain recommended advertisements for the same product, and send them to the display screen, establish a corresponding relationship between the same product and the common user, and traverse all the same products in the friendly space;
[0033] A pop-up module is used to create a number block corresponding to the same product one by one, upload the corresponding recommended advertisement to the number block, sort all the number blocks in the order of the encounter duration from long to short, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage permission to the root node, embed a linkage mechanism into the data stack, and pop out the number block with the highest ranking to the root node.
[0034] Furthermore, the selection module includes:
[0035] an establishing unit, configured to establish a mapping between the display screen and the common user according to the real-time position;
[0036] a distribution unit, configured to link a plurality of auxiliary nodes to the root node via the mapping, and distribute the usage rights to the auxiliary nodes;
[0037] A push unit is configured to establish an emergency protection mechanism based on the same product and the information exchange platform, wherein the emergency protection mechanism is: when the same product obtains abnormal usage information, it generates an emergency call text message and pushes it to the common user;
[0038] The integration unit is used to build a sharing community through the common users and integrate the sharing community into the information exchange platform.
[0039] Furthermore, the upload module includes:
[0040] A marking unit, used to obtain a Bluetooth coverage map in the friendly space and mark the deployment location of the Bluetooth receiver;
[0041] a computing unit, configured to calculate the real-time position of each user in the friendly space by using a triangulation method;
[0042] An embedding unit, configured to send a pop-up window for selecting audio collection to a co-user based on the information exchange platform, and embed a yes or no button in the pop-up window;
[0043] The identification unit is used to collect the chat records of the co-users after the co-users select the yes button, compare the chat records with the feature data set, and identify the evaluation features.
[0044] Compared with the prior art, the present invention has the following beneficial effects:
[0045] By identifying friendly spaces, we can accurately locate the activity areas of the elderly and promote social interaction, thereby greatly improving the source of design evaluation data. By identifying common users, we can enhance social interaction and provide data support for the improvement of aging-friendly products. By extracting evaluation features, we can determine the elderly's evaluation of aging-friendly products, optimize product design, and improve product quality and satisfaction. By obtaining and playing recommended advertisements, it is helpful to establish dialogues among the elderly related to the aging-friendly products shown in the advertisements, promote the enthusiasm of the elderly who watch the advertisements to evaluate aging-friendly products, and help increase the amount of evaluation data and the authenticity of the evaluation data. By building a data stack, we can optimize the playback process of recommended advertisements, so that while promoting aging-friendly products, we can accurately obtain feedback data from the target group, enhance the sense of participation and belonging of the elderly group, and greatly improve the improvement efficiency of aging-friendly products. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention.
[0047] Figure 1 This is a flowchart of the aging-friendly product design and evaluation method provided by an embodiment of the present invention.
[0048] Figure 2 This is a block diagram of the first sub-process of the aging-friendly product design and evaluation method provided by an embodiment of the present invention.
[0049] Figure 3 This is a block diagram of the second sub-process of the aging-friendly product design and evaluation method provided by an embodiment of the present invention.
[0050] Figure 4 This is a block diagram of the third sub-process of the aging-friendly product design and evaluation method provided in an embodiment of the present invention.
[0051] Figure 5 This is a block diagram of the fourth sub-process of the aging-friendly product design and evaluation method provided in an embodiment of the present invention.
[0052] Figure 6 This is a block diagram of the composition of the aging-friendly product design and evaluation system provided by an embodiment of the present invention.
[0053] Figure 7 This is a block diagram of the components of the selected modules in the aging-friendly product design and evaluation system provided by an embodiment of the present invention.
[0054] Figure 8 This is a block diagram of the composition of the upload module in the aging-friendly product design and evaluation system provided by an embodiment of the present invention.
[0055] Figure 9This is a block diagram of the composition of the traversal module in the aging-friendly product design and evaluation system provided by an embodiment of the present invention.
[0056] Figure 10 This is a block diagram of the composition of the pop-up module in the aging-friendly product design and evaluation system provided by an embodiment of the present invention. DETAILED DESCRIPTION
[0057] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0058] In Example 1, Figure 1 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown and described in detail below:
[0059] S100: Draw a distribution map of public facilities and select friendly spaces, where the friendly spaces include at least activity centers and community squares, obtain usage rights for display screens pre-deployed in the friendly spaces, build an information exchange platform, obtain registration information uploaded by users, and generate a personal configuration data set, where the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, select users who use the same aging-friendly product and define them as co-users.
[0060] Draw a distribution map of public facilities in the area, where public facilities include: residential, office buildings, shops and shopping malls, etc. Mark the location and type of each building in the public facilities distribution map, and define places where the elderly gather as friendly spaces, which include: activity centers, community squares, parks and elderly care centers, etc. In real life, friendly spaces are generally the core areas for the elderly to exchange information. By demarcating friendly spaces, the evaluation source of adaptive products can be determined; display devices are deployed in friendly spaces, where the display devices can be advertising screens, billboards or other display devices; and an information exchange platform is built, where the information exchange platform is mainly used to collect, analyze and store aging-friendly products. Design evaluation, and the information exchange platform also has a social module and an information exchange community, etc., and opens the registration channel of the information exchange platform. Users register by entering basic information (such as name, age, contact information, place of residence and aging-friendly products used, etc.) and other additional information; after the registration is completed, the registration information corresponding to each user is integrated to generate a personal configuration data set, which includes: the names of all aging-friendly products used by each user, the Bluetooth beacon signal of the user's device and the user's friend list in the information exchange platform; in the user's friend list, find out users who use the same aging-friendly product as the user, and refer to the found users as co-users.
[0061] For example, user A uses aging-friendly products including: a blood pressure monitor, a mobile phone with a simplified operating interface, an easy-to-operate microwave oven, and an electric water heater with safety protection capabilities. In his friend list, user B also uses a mobile phone and a microwave oven with aging-friendly configurations, so the two are co-users; it should be noted that the number of co-users can be two, three, or more.
[0062] S200: Using a Bluetooth receiver pre-installed in the friendly space, real-time signals are collected to find common users in the friendly space. Based on the real-time signals, the real-time positions of the common users are located to determine whether the common users have met. If so, the duration of the meeting is calculated. Chat records of the common users are collected, evaluation features are extracted, and uploaded to the information exchange platform.
[0063] A Bluetooth receiver is installed in the friendly space, where the Bluetooth receiver is mainly used to collect the user's Bluetooth beacon signal to identify the user's identity. In addition, multiple Bluetooth receivers can be used to calculate the user's real-time location by analyzing the strength of the collected Bluetooth beacon signal. If the distance between any two co-users is less than a threshold, it means that the two co-users have met. At this time, the timestamp integrated in the Bluetooth receiver is used to record the duration of the meeting. An audio collection request is pushed to the two co-users, and the chat history of the co-users is recorded. Natural language processing technology is used to perform semantic analysis and sentiment mining on the collected chat history, and evaluation features containing user opinions and attitudes, such as positive comments, negative feedback, and suggestions, are extracted. At the same time, information such as keywords and emotional tendencies is extracted, and such information is defined as evaluation features. The evaluation features are anonymized and uploaded to the information exchange platform after processing.
[0064] S300: defining the same aging-friendly products corresponding to the common users as the same product, obtaining recommended advertisements for the same product, and sending them to the display screen, establishing a corresponding relationship between the same product and the common users, and traversing all the same products in the friendly space.
[0065] The same aging-friendly products used by co-users are defined as the same product, and a corresponding relationship between the same product and the co-users is established. It should be noted that each group of co-users corresponds to at least one same product; recommended advertisements for the same product are obtained from public data or aging-friendly product suppliers, and the recommended advertisements are played on the display screen; if there are multiple same products in a group of co-users, there will also be multiple recommended advertisements.
[0066] S400: Create digital blocks corresponding to the same products one by one, and upload the corresponding recommended advertisements to the digital blocks, sort all the digital blocks in descending order of the encounter duration, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage rights to the root node, embed a linkage mechanism into the data stack, and pop the digital block with the highest ranking into the root node.
[0067] Create digital blocks that correspond one to one with the same product, where the digital block is the basic unit for storing data and is mainly used to represent the same product; upload the recommended advertisements corresponding to the same product to the digital block, establish a correspondence between common users, the same product and the recommended advertisements, and sort the digital blocks in descending order of encounter time based on the correspondence to generate a data stack, where the data stack is similar to a queue, but the difference between the two is that when data is moved out of the data stack, it will first pass through the root node; the root node is mainly used to coordinate and manage all digital blocks and control the playback of recommended advertisements; when the digital block enters the root node, the root node will start the linkage mechanism, which is: the recommended advertisement corresponding to the digital block is sent to the display screen and played on the display screen.
[0068] In Example 2, Figure 2 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The steps of obtaining the use rights of the display screen pre-deployed in the friendly space are described in detail as follows:
[0069] S101: Based on the real-time location, a mapping between the display screen and the co-user is established.
[0070] If there are multiple displays in a friendly space, configure a unique display for each group of common users.
[0071] S102: Linking a plurality of auxiliary nodes to the root node via the mapping, and distributing the usage rights to the auxiliary nodes.
[0072] Several auxiliary nodes are linked to the root node, wherein the number of the auxiliary nodes is the same as the number of display screens. The auxiliary nodes and the root node have the same data structure, and each auxiliary node controls the playback of one display screen.
[0073] Continuing to elaborate on the example in S100, if A's friend list also includes friend C, and C is also using an aging-friendly mobile phone, then A and B are a group of co-users, and A and C are a group of co-users. In real life, there may be more groups of co-users. The recommended advertisement corresponding to A and B is defined as A, the recommended advertisement corresponding to A and C is defined as B, and the recommended advertisements of other co-users are defined as C, D, E and F, etc. The data stack is DBECAF. Assume that there are multiple display screens deployed in the friendly space (No. 1 and No. 2, etc.). At this time, D is sent to the root node and played using display screen No. 1, and B is sent to the auxiliary node and played using display screen No. 2. The advantage of this is that all display screens can be fully utilized, the topic generation speed can be increased, and the source of evaluation data can be expanded. In the above process, the role of the root node and the auxiliary node is to control the playback of advertisements on the display screen.
[0074] In Example 3, Figure 2 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The steps of selecting users who use the same aging-friendly product and defining them as common users are described in detail below:
[0075] S103: Based on the same product and the information exchange platform, an emergency protection mechanism is established, wherein the emergency protection mechanism is: when the same product obtains abnormal usage information, an emergency call text message is generated and pushed to the common user.
[0076] When the same product detects abnormal usage information, such as abnormal blood pressure values measured by a blood pressure monitor, abnormal operation of a microwave oven, or an electric water heater triggering an overheating or leakage alarm, an emergency call text message is generated. The text message content contains key information such as product type, description of the abnormal situation, time, location, and corresponding jointly used personal information. The emergency call text message is pushed to co-users for rapid information sharing, ensuring that users can receive timely attention and processing when abnormal situations occur, thereby improving the safety of product use.
[0077] S104: Building a sharing community through the common users, and integrating the sharing community into the information exchange platform.
[0078] In the information exchange platform, a sharing community is built where users can post updates, share experiences, organize activities, etc.; thereby improving the source of evaluation data, facilitating users to share experiences, and enhancing user satisfaction with aging-friendly products.
[0079] In Example 4, Figure 3 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The following details the steps of using a Bluetooth receiver pre-installed in the friendly space to collect real-time signals, find common users in the friendly space, and locate the real-time locations of the common users based on the real-time signals.
[0080] S201: Obtain a Bluetooth coverage map in the friendly space and mark the deployment location of the Bluetooth receiver.
[0081] Obtain the deployment locations of Bluetooth receivers from the friendly space builder and adjust the deployment locations to eliminate signal reception blind spots and build signal overlapping areas to ensure that the Bluetooth beacon signals of each user in the friendly space can be accessed by at least three Bluetooth receivers.
[0082] S202: Calculate the real-time location of each user in the friendly space using triangulation.
[0083] Furthermore, using triangulation, multiple coverage circles are drawn with the Bluetooth receiver as the center and the distance between the user and the Bluetooth receiver as the radius. The intersection of the coverage circles is the user's real-time location.
[0084] In Example 5, Figure 3 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The steps of collecting chat records of common users, extracting evaluation features, and uploading them to the information exchange platform are described in detail below:
[0085] S203: Based on the information exchange platform, a selection pop-up window for audio collection is sent to the co-user, and yes and no buttons are embedded in the selection pop-up window.
[0086] Through the information exchange platform, a pop-up window for selecting audio collection authorization is sent to co-users to obtain audio collection permissions. Two buttons, "Yes" and "No", are embedded in the pop-up window. When the co-user clicks the "Yes" button, it means that he or she confirms to start audio collection.
[0087] S204: When the co-user selects the Yes button, the chat records of the co-user are collected, and the chat records are compared with the feature data set to identify the evaluation features.
[0088] After the co-user selects the "Yes" button, the chat records of the two are collected, the collected chat content is transcribed into text or key information is directly extracted, the extracted key information is compared with the feature data set, and the evaluation features in the chat records are identified, where the evaluation features include: emotional tendencies, key opinion points and commonly used evaluation vocabulary, etc. The feature data set is a collection of evaluation features, which is pre-prepared by professionals.
[0089] In Example 6, Figure 4 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The following details the steps of defining the same aging-friendly products corresponding to common users as the same product and obtaining recommended advertisements for the same product.
[0090] S301: Input the chat record into a pre-built personality analysis model, output the user's personality deviation, and traverse the same items of common users.
[0091] From the existing technology, a personality analysis model is selected, the collected chat records are input into the personality analysis model, and the user's personality deviation is output, where the personality deviation is the difference between the personality analysis result and the standard model baseline. The personality deviation can be: extroversion, introversion, emotional stability and openness, etc.; the personality deviation of each user is determined, and the common items of common users are determined, where the common items can be understood as the common personality characteristics of common users.
[0092] S302: Acquire several versions of the recommended advertisement, and adjust the versions based on the same items.
[0093] If there are multiple recommended ads for the same product, the recommended ads that match the common personality traits of the common users are selected.
[0094] In Example 7, Figure 5 The implementation process of the aging-friendly product design evaluation method provided by an embodiment of the present invention is shown. The steps of creating a block corresponding to the same product and uploading the corresponding recommended advertisement to the block are described in detail as follows:
[0095] S401: Upload the evaluation features to corresponding digital blocks, integrate the digital blocks corresponding to each recommended advertisement, and generate an evaluation set.
[0096] The evaluation features of the recommended advertisements are uploaded to the corresponding digital blocks and stored in the digital blocks. In other words, the digital blocks store an evaluation set, which is the evaluation data of the corresponding recommended advertisements.
[0097] S402: Inserting tags generated by the friendly space into the evaluation set, and sending the evaluation set to a preset terminal.
[0098] Generate tags using friendly space and insert them into the evaluation set. This has the advantage of marking the source of the data and facilitating problem tracing. Send the evaluation set to a preset terminal, which is the design evaluation organizer's terminal.
[0099] Figure 6 The following is a structural block diagram of a system for designing and evaluating aging-friendly products according to an embodiment of the present invention. The system 1 includes:
[0100] Selection module 11 is configured to draw a public facility distribution map and select friendly spaces, where the friendly spaces include at least activity centers and community squares, obtain access to display screens pre-deployed in the friendly spaces, build an information exchange platform, obtain registration information uploaded by users, and generate a personal configuration data set, where the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, users who use the same aging-friendly product are selected and defined as co-users.
[0101] The uploading module 12 is configured to utilize a Bluetooth receiver pre-installed in the friendly space to collect real-time signals, identify common users in the friendly space, locate the real-time locations of the common users based on the real-time signals, determine whether the common users have met, and if so, calculate the duration of the meeting, collect chat records of the common users, extract evaluation features, and upload them to the information exchange platform;
[0102] The traversal module 13 is used to define the same aging-friendly products corresponding to common users as the same product, obtain recommended advertisements for the same product, and send them to the display screen, establish a correspondence between the same product and the common user, and traverse all the same products in the friendly space;
[0103] The pop-up module 14 is used to create a number block corresponding to the same product one by one, upload the corresponding recommended advertisement to the number block, sort all the number blocks in the order of the encounter duration from long to short, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage permission to the root node, embed a linkage mechanism into the data stack, and pop out the number block with the highest ranking to the root node.
[0104] Figure 7 The following is a structural block diagram of the system for designing and evaluating age-friendly products according to an embodiment of the present invention. The selection module 11 includes:
[0105] An establishing unit 111 is configured to establish a mapping between the display screen and the co-user according to the real-time location;
[0106] a distribution unit 112, configured to link a plurality of auxiliary nodes to the root node via the mapping, and distribute the usage rights to the auxiliary nodes;
[0107] The push unit 113 is configured to establish an emergency protection mechanism based on the same product and the information exchange platform, wherein the emergency protection mechanism is as follows: when the same product obtains abnormal usage information, it generates an emergency call text message and pushes it to the common user;
[0108] The integration unit 114 is configured to construct a sharing community through the common users and integrate the sharing community into the information exchange platform.
[0109] Figure 8 The following is a structural block diagram of the system for designing and evaluating aging-friendly products according to an embodiment of the present invention. The upload module 12 includes:
[0110] a marking unit 121 for obtaining a Bluetooth coverage map in the friendly space and marking the deployment locations of Bluetooth receivers;
[0111] a calculation unit 122 for calculating the real-time position of each user in the friendly space using triangulation;
[0112] An embedding unit 123 is configured to send a pop-up window for selecting audio collection to the co-users based on the information exchange platform, and embed a yes or no button in the pop-up window;
[0113] The identification unit 124 is configured to collect the chat history of the co-user after the co-user selects the yes button, compare the chat history with the feature data set, and identify the evaluation features.
[0114] Figure 9 The following is a structural block diagram of the system for designing and evaluating age-friendly products according to an embodiment of the present invention. The traversal module 13 includes:
[0115] An input unit 131 is used to input the chat records into a pre-built personality analysis model, output the user's personality deviation, and traverse the common items of common users;
[0116] The adjusting unit 132 is configured to obtain multiple versions of the recommended advertisement and adjust the versions based on the same items.
[0117] Figure 10 The following is a structural block diagram of the system for designing and evaluating age-friendly products according to an embodiment of the present invention. The pop-up module 14 includes:
[0118] A generating unit 141 is configured to upload the evaluation features to corresponding digital blocks, integrate the digital blocks corresponding to each recommended advertisement, and generate an evaluation set;
[0119] The inserting unit 142 is configured to insert tags generated by the friendly space into the evaluation set, and send the evaluation set to a preset terminal.
[0120] The selection module 11 is mainly used to complete step S100, the upload module 12 is mainly used to complete step S200, the traversal module 13 is mainly used to complete step S300, and the pop-up module 14 is mainly used to complete step S400;
[0121] The establishment unit 111 is mainly used to complete step S101, the distribution unit 112 is mainly used to complete step S102, the push unit 113 is mainly used to complete step S103, and the integration unit 114 is mainly used to complete step S104;
[0122] The marking unit 121 is mainly used to complete step S201, the calculation unit 122 is mainly used to complete step S202, the embedding unit 123 is mainly used to complete step S203, and the recognition unit 124 is mainly used to complete step S204;
[0123] The input unit 131 is mainly used to complete step S301, and the adjustment unit 132 is mainly used to complete step S302;
[0124] The generating unit 141 is mainly used to complete step S401, and the inserting unit 142 is mainly used to complete step S402.
[0125] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A method for evaluating the design of aging-friendly products, characterized in that: The method comprises: Draw a map of public facilities and select friendly spaces, where the friendly spaces include at least activity centers and community squares. Obtain access to display screens pre-deployed in the friendly spaces. Build an information exchange platform, obtain registration information uploaded by users, and generate a personal configuration data set, where the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, select users who use the same aging-friendly product and define them as co-users. Using a Bluetooth receiver pre-installed in the friendly space, real-time signals are collected to find common users in the friendly space. Based on the real-time signals, the real-time locations of the common users are located, and it is determined whether the common users have met. If so, the duration of the meeting is calculated. Chat records of the common users are collected, evaluation features are extracted, and uploaded to the information exchange platform. The same aging-friendly products corresponding to the common users are defined as the same product, and recommended advertisements for the same product are obtained and sent to the display screen. A corresponding relationship between the same product and the common users is established, and all the same products in the friendly space are traversed; Create a number block corresponding to the same product one by one, and upload the corresponding recommended advertisement to the number block, sort all the number blocks in order of the encounter duration from longest to shortest, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage permission to the root node, embed a linkage mechanism in the data stack, and pop the number block with the highest ranking into the root node.
2. The aging-friendly product design evaluation method according to claim 1, characterized in that: The step of obtaining permission to use the display screen pre-deployed in the friendly space includes: Based on the real-time location, establishing a mapping between the display screen and the co-user; Through the mapping, several auxiliary nodes are linked to the root node, and the usage rights are distributed to the auxiliary nodes.
3. The aging-friendly product design evaluation method according to claim 1, characterized in that: The step of selecting users who use the same aging-friendly product and defining them as common users includes: An emergency protection mechanism is established based on the same product and the information exchange platform, wherein the emergency protection mechanism is as follows: when the same product obtains abnormal usage information, an emergency call text message is generated and pushed to the common user; A sharing community is constructed through the common users, and the sharing community is integrated into the information exchange platform.
4. The method for evaluating aging-friendly product design according to claim 1, wherein: The steps of collecting real-time signals using a Bluetooth receiver pre-installed in the friendly space, finding out common users in the friendly space, and locating the real-time locations of the common users based on the real-time signals include: Obtain a Bluetooth coverage map of the friendly space and mark the deployment locations of Bluetooth receivers; Using triangulation, the real-time location of each user in the friendly space is calculated.
5. The method for evaluating aging-friendly product design according to claim 3, wherein: The steps of collecting the chat records of common users, extracting evaluation features, and uploading them to the information exchange platform include: Based on the information exchange platform, a selection pop-up window for audio collection is sent to the co-user, and yes and no buttons are embedded in the selection pop-up window; When the co-user selects the yes button, the chat records of the co-user are collected, and the chat records are compared with the feature data set to identify the evaluation features.
6. The method for evaluating aging-friendly product design according to claim 5, wherein: The steps of defining the same aging-friendly products corresponding to common users as the same product and obtaining recommended advertisements for the same product include: Input the chat records into a pre-built personality analysis model, output the user's personality deviation, and traverse the common items of common users; Several versions of the recommended advertisement are obtained, and the versions are adjusted based on the same items.
7. The method for evaluating aging-friendly product design according to claim 1, wherein: The steps of creating blocks corresponding to the same products one by one and uploading the corresponding recommended advertisements to the blocks include: Uploading the evaluation features to corresponding digital blocks, integrating the digital blocks corresponding to each recommended advertisement, and generating an evaluation set; The tags generated by the friendly space are inserted into the evaluation set, and the evaluation set is sent to a preset terminal.
8. A system for evaluating the design of age-friendly products, characterized in that: The system comprises: A selection module is configured to draw a map of public facilities and select friendly spaces, where the friendly spaces include at least activity centers and community squares. The module obtains access to display screens pre-deployed in the friendly spaces, builds an information exchange platform, obtains registration information uploaded by users, and generates a personal configuration data set, where the personal configuration data set includes at least the name of the aging-friendly product used, the Bluetooth beacon signal of the user device, and friend relationships. Based on the name and friend relationships, users who use the same aging-friendly product are selected and defined as co-users. an uploading module, configured to utilize a Bluetooth receiver pre-installed in the friendly space to collect real-time signals, identify common users in the friendly space, locate the real-time locations of the common users based on the real-time signals, determine whether the common users have met, and if so, calculate the duration of the meeting, collect chat records of the common users, extract evaluation features, and upload them to the information exchange platform; A traversal module is used to define the same aging-friendly products corresponding to common users as the same product, obtain recommended advertisements for the same product, and send them to the display screen, establish a corresponding relationship between the same product and the common user, and traverse all the same products in the friendly space; A pop-up module is used to create a number block corresponding to the same product one by one, upload the corresponding recommended advertisement to the number block, sort all the number blocks in the order of the encounter duration from long to short, integrate and generate a data stack, integrate a root node at the top of the data stack, issue the usage permission to the root node, embed a linkage mechanism into the data stack, and pop out the number block with the highest ranking to the root node.
9. The aging-friendly product design evaluation system according to claim 8, characterized in that: The selection module includes: an establishing unit, configured to establish a mapping between the display screen and the common user according to the real-time position; a distribution unit, configured to link a plurality of auxiliary nodes to the root node via the mapping, and distribute the usage rights to the auxiliary nodes; A push unit is configured to establish an emergency protection mechanism based on the same product and the information exchange platform, wherein the emergency protection mechanism is: when the same product obtains abnormal usage information, it generates an emergency call text message and pushes it to the common user; The integration unit is used to build a sharing community through the common users and integrate the sharing community into the information exchange platform.
10. The aging-friendly product design evaluation system according to claim 9, characterized in that: The upload module includes: A marking unit, used to obtain a Bluetooth coverage map in the friendly space and mark the deployment location of the Bluetooth receiver; a computing unit, configured to calculate the real-time position of each user in the friendly space by using a triangulation method; An embedding unit, configured to send a pop-up window for selecting audio collection to a co-user based on the information exchange platform, and embed a yes or no button in the pop-up window; The identification unit is used to collect the chat records of the co-users after the co-users select the yes button, compare the chat records with the feature data set, and identify the evaluation features.
Citation Information
Patent Citations
Method, device and equipment for playing advertisements based on inter-audience relevance information
CN105303998A
Pension management system and method based on Bluetooth connection
CN107105393A
Shopping recommending method, user side, service side, equipment and storage medium
CN108335177A
Advertisement recommendation method and device, electronic equipment and storage medium
CN109636479A
Advertisement recommendation method and device, machine readable storage medium and processor
CN112116367A