NFT work display method and device, equipment, storage medium and computer program product
By scoring NFT works and displaying them on multi-level treasure maps, combining unlocking rules and interactive points mechanisms, the problem of NFT works lacking visual appeal and interactivity is solved, and a more layered and interactive display effect is achieved.
Patent Information
- Application Number
- CN202510547009.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-08-05
AI Technical Summary
The existing NFT works display methods lack visual appeal and interactivity, making it difficult to inspire users to explore content with high collection value.
By rating the collection value of NFT works and displaying them on multi-level treasure maps, unlocking rules are set, and users unlock more advanced areas layer by layer through interactive points, displaying graphic features dynamic adjustments to enhance attractiveness.
It has improved the visual hierarchy and user interaction in NFT works, stimulated users' interest in exploring higher collection value, and enhanced the platform's interactivity and user participation.
Smart Images

Figure CN120429504A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of blockchain technology, and in particular to a method, device, equipment, storage medium and computer program product for displaying NFT works. Background Art
[0002] The current display method of NFT works usually adopts a static display method, which cannot effectively attract users' attention or provide a rich visual experience, and is prone to cause visual fatigue. In addition, the access method is relatively simple, and there is a lack of mechanisms to encourage users to explore more content in depth, which reduces users' motivation for exploration and the interactivity of the platform. As a result, when there are many and messy NFT collections, it is difficult for users to find NFT collections with collection value and higher value. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a method, device, equipment, storage medium and computer program product for displaying NFT works. By displaying NFT works on a multi-level treasure map according to their collection value, the display method is made more layered and visually attractive, and by unlocking them layer by layer, users are encouraged to explore NFT works with higher collection value.
[0004] To achieve the above objectives, an embodiment of the present invention provides an NFT work display method, including:
[0005] Score the NFT work based on its own value and the current selling price to obtain the collection value of the NFT work;
[0006] Based on the collection value of the NFT work, the display position of the NFT work on the multi-level treasure map is determined; wherein each level of the multi-level treasure map is set with corresponding unlocking rules.
[0007] As an improvement to the above solution, before scoring the NFT work based on its own value and the current selling price to obtain the collection value of the NFT work, the method further includes:
[0008] The NFT work is scored based on the market demand, rarity, historical transaction data and the number of works owned by the owner to obtain the intrinsic value of the NFT work.
[0009] As an improvement to the above solution, determining the display location of the NFT work on the multi-level treasure map based on the collection value of the NFT work includes:
[0010] Determine the target level of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein the collection value of the multi-level treasure map decreases from the inner layer to the outer layer; the collection value of the NFT works on the same level of the multi-level treasure map is the same;
[0011] According to the theme of the NFT work, determine the target area of the NFT work at the target level.
[0012] As an improvement to the above solution, determining the target area of the NFT work at the target level according to the theme of the NFT work includes:
[0013] Based on the same target level, the target area size of the NFT works of each theme at the target level is determined according to the total collection value of the NFT works of each theme and the total collection value of the NFT works of all themes.
[0014] As an improvement to the above solution, the method further includes:
[0015] In response to a user's access request, the NFT artwork on the outermost layer of the multi-level treasure map is displayed by default; wherein the NFT artwork is displayed in a preset graphic;
[0016] The user's interactive behavior is obtained and the interactive behavior is scored. When the score reaches the unlocking rule, the NFT work of the corresponding level is displayed.
[0017] As an improvement to the above solution, the method further includes:
[0018] Based on the machine learning algorithm or deep learning model, predict the user's preference for the NFT work according to the interactive behavior and calculate the recommendation score of the NFT work;
[0019] Based on the recommendation score, the characteristics of the display graphics of the NFT work are controlled; wherein the characteristics include size, brightness and flashing frequency.
[0020] The embodiment of the present invention further provides an NFT work display device, comprising:
[0021] A scoring module is used to score the NFT work based on its own value and the current selling price of the NFT work to obtain the collection value of the NFT work;
[0022] A display module is used to determine the display position of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein each level of the multi-level treasure map is set with corresponding unlocking rules.
[0023] An embodiment of the present invention also provides a terminal device, including a processor, a memory, and a computer program stored in the memory and configured to be executed by the processor, wherein when the processor executes the computer program, it implements any of the above-mentioned NFT work display methods.
[0024] An embodiment of the present invention also provides a computer-readable storage medium, which includes a stored computer program, wherein when the computer program is running, the device where the computer-readable storage medium is located is controlled to execute any of the above-mentioned NFT work display methods.
[0025] An embodiment of the present invention also provides a computer program product, which includes a computer program or computer instructions. When the computer program or the computer instructions are executed by a processor, the NFT work display method described in any one of the above items is implemented.
[0026] Compared to existing technologies, the present invention provides a method, apparatus, device, storage medium, and computer program product for displaying NFT artworks. The advantages of the method include: scoring NFT artworks based on their intrinsic value and their current selling price to determine their collectible value; determining their display location on a multi-level treasure map based on their collectible value; and configuring unlocking rules for each level of the multi-level treasure map. By displaying NFT artworks on a multi-level treasure map based on their collectible value, the present invention enhances the presentation and visual appeal. The graphics' size, brightness, and flashing frequency are adjusted based on the recommended score, enhancing the effectiveness of the information presented. By creating a multi-level treasure map, users can only access unlocked NFT areas, encouraging them to explore NFT artworks of higher collectible value through progressive unlocking. By introducing a treasure map access unlocking mechanism, users are encouraged to accumulate points through interaction to unlock higher-level treasure map areas, thereby increasing user engagement and interactivity. By establishing an NFT collection value rating method based on market demand, rarity, historical transaction data and the number of works by the owner, the transparency and reliability of the assessment are improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a flow chart of a preferred embodiment of a method for displaying NFT works provided by the present invention;
[0028] Figure 2 This is a schematic diagram of the display effect of an NFT work display method provided by the present invention;
[0029] Figure 3This is a schematic structural diagram of a preferred embodiment of an NFT artwork display device provided by the present invention;
[0030] Figure 4 It is a structural diagram of a preferred embodiment of a terminal device provided by the present invention. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0032] See also Figure 1 , Figure 1 The figure is a flow chart of a preferred embodiment of a method for displaying NFT works provided by the present invention. The method for displaying NFT works includes:
[0033] S1, scoring the NFT work based on its own value and the current selling price of the NFT work to obtain the collection value of the NFT work;
[0034] S2. Determine the display location of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein each level of the multi-level treasure map is provided with corresponding unlocking rules.
[0035] Specifically, the embodiment of the present invention combines NFT works and treasure maps. First, the NFT works are scored according to the intrinsic value of the NFT works and the current selling price of the NFT works to obtain the collection value of the NFT works. Here, the collection value score or collection value rating can be used to characterize the collection value of the NFT works. The higher the collection value score or collection value rating, the greater the collection value of the NFT work in the market. Exemplarily, the NFT collection value score = NFT work intrinsic value score ÷ NFT current selling price. After obtaining the collection value score, the number of collection value ratings and the rating range in each collection value rating can be set, and the collection value rating can be determined according to the collection value score. Then, according to the collection value of the NFT work, the display position of the NFT work on the multi-level treasure map is determined. Among them, each level of the multi-level treasure map is set with corresponding unlocking rules. For example, please refer to Figure 2 , Figure 2This is a schematic diagram of the display effect of an NFT work display method provided by the present invention. It should be noted that the multi-level treasure map in this embodiment is preferably a plurality of concentric rings, and the NFT works are displayed in different sector-shaped theme areas on the concentric ring diagram of the treasure map according to their collection value. However, it can also be set to other multi-level forms, not limited to concentric rings.
[0036] The embodiment of the present invention displays NFT works on a multi-level treasure map according to their collection value, making the display more layered and visually attractive, and motivating users to explore NFT works with higher collection value by unlocking them layer by layer.
[0037] In another preferred embodiment, before scoring the NFT work based on its own value and the current selling price of the NFT work to obtain the collection value of the NFT work, the method further includes:
[0038] The NFT work is scored based on the market demand, rarity, historical transaction data and the number of works owned by the owner to obtain the intrinsic value of the NFT work.
[0039] Specifically, in the embodiment of the present invention, the self-value score can be used to characterize the self-value of the NFT work. The self-value score factors include but are not limited to market demand (number of views, number of collections and attention), rarity (number of similar works), historical transaction data, and the number of works by the owner. Exemplarily, the self-value score of the NFT work = (W1×market demand) + (W2×rarity) + (W3×historical transaction data) + (W4×number of works by the owner); wherein W1, W2, W3, and W4 are all weight coefficients, which can be adjusted according to the specific situation.
[0040] For example, let's assume there's a digital art NFT with a market demand score of 8, a rarity score of 9, a historical transaction data score of 7, and a number of owned works score of 6. The weight coefficients are W1 = 0.4, W2 = 0.3, W3 = 0.2, and W4 = 0.1. If the current selling price is 100 ETH, the NFT's own value score is:
[0041] NFT work’s own value score = (0.4×8)+(0.3×9)+(0.2×7)+(0.1×6)=3.2+2.7+1.4+0.6=7.9
[0042] Finally, the collection value score of this NFT is:
[0043] NFT collection value score = 7.9 ÷ 100 = 0.079
[0044] Finally, when converting the NFT collection value score into a number between 1 and 100, the following formula can be used for normalization:
[0045] NFT collection value score (normalized) = (NFT collection value score - minimum score) / (maximum score - minimum score) × 100
[0046] Among them, the minimum score is the lowest NFT collection value score, and the maximum score is the highest NFT collection value score.
[0047] After obtaining the NFT collection value rating, set the number of NFT collection value ratings. For example, if the number of ratings is set to 10, the rating range of each rating is [1-10], [11-20], ..., [91-100].
[0048] The embodiments of the present invention improve the transparency and reliability of the assessment by establishing an NFT collection value rating method based on market demand, rarity, historical transaction data and the number of works by the owner.
[0049] In another preferred embodiment, determining the display location of the NFT work on a multi-level treasure map based on the collection value of the NFT work includes:
[0050] Determine the target level of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein the collection value of the multi-level treasure map decreases from the inner layer to the outer layer; the collection value of the NFT works on the same level of the multi-level treasure map is the same;
[0051] According to the theme of the NFT work, determine the target area of the NFT work at the target level.
[0052] Specifically, the embodiment of the present invention determines the target level of the NFT work on the multi-level treasure map based on the collection value of the NFT work. Among them, the collection value of the multi-level treasure map decreases from the inner layer to the outer layer; the collection value of the NFT works on the same level of the multi-level treasure map is the same. The embodiment of the present invention is divided into multiple theme areas according to the type of NFT work. Each theme area focuses on displaying NFT works of a specific category or style, such as: "digital art", "virtual real estate", "science fiction", etc. According to the theme of the NFT work, the target area of the NFT work at the target level is determined.
[0053] For example, NFT works are scattered on a concentric ring diagram according to their collection value ratings. NFT works with the same collection value rating are distributed on the same ring. The higher the collection rating, the closer it is to the center of the circle. Each ring is divided into multiple fan-shaped theme areas according to the actual number of NFT work themes. NFT works with the same theme are distributed in the same fan-shaped area. The size of the fan-shaped theme area is proportional to the sum of the collection value ratings of all NFT works within the theme.
[0054] For example, a rating range can be set, for example, from 1 to 10, with 10 being closest to the center of the circle. Assume there are N collectible value ratings, evenly distributed on concentric rings. Each NFT work can then be placed on the corresponding ring according to its collectible value rating, and its angular position on that ring is determined based on its collectible value rating.
[0055] Specifically, suppose there are n collection value ratings (from 1 to n), the radius of the ring is R, and the spacing between the rings is D. Then the radius of the ring of the i-th collection value rating can be expressed as:
[0056] ri=R-(i-1)×D;
[0057] For example: Suppose there are 10 collection value ratings, the radius of the ring is 10, and the spacing between the rings is 2. Then the radius of the ring for the first collection value rating is 10, the second is 8, and so on.
[0058] Assuming that the collection value rating of an NFT work is 7, it should be placed on the 7th ring and a random angular position should be selected on the ring.
[0059] In another preferred embodiment, determining the target area of the NFT work at the target level according to the theme of the NFT work includes:
[0060] Based on the same target level, the target area size of the NFT works of each theme at the target level is determined according to the total collection value of the NFT works of each theme and the total collection value of the NFT works of all themes.
[0061] Specifically, the embodiment of the present invention is based on the same target level, and determines the target area size of each theme's NFT works at the target level according to the total collection value of each theme's NFT works and the total collection value of all themes' NFT works. Exemplarily, according to the theme of the NFT work, the ring is divided into several sector areas, each sector area represents a specific NFT work theme, such as: "digital art", "virtual real estate", etc. The size of the sector area is proportional to the sum of the comprehensive collection value ratings of all NFT works in the theme. If the total collection value of a theme's NFT works is high, then its sector area will also be relatively larger.
[0062] Assuming that a circle is divided into T sectors, and the total value of the NFT collection of each theme t is expressed as S_t, the angle theta_t of sector t can be calculated as:
[0063] theta_t = (S_t / (the total collection value of NFT works of all themes)) * 360 degrees;
[0064] In the formula, "the sum of the collection value of NFT works of all themes" is the sum of the collection value ratings of NFT works of all themes in the same level, and "360 degrees" is the total degree of a circle.
[0065] For example, assume there are three NFT themes: digital art (A), virtual real estate (B), and science fiction (C). The total collection value of NFTs for digital art is 500, virtual real estate is 300, and science fiction is 200.
[0066] Calculate the angle of each sector using the above formula:
[0067] theta_A=(500 / (500+300+200))*360 degrees=180 degrees
[0068] theta_B = (300 / 1000)*360 degrees = 108 degrees
[0069] theta_C=(200 / 1000)*360 degrees=72 degrees
[0070] This approach allows each NFT piece’s position on the circle to be closely correlated with its collectible value rating, and demonstrates the relative importance of each theme through the size of the sector.
[0071] like Figure 2 The diagram shows the NFT treasure map display effect. Each color on the circle represents a different NFT theme area. Each circle represents an NFT collection rating. The size of each NFT graphic (color / flashing frequency) reflects the different collection values under the same collection rating.
[0072] The embodiment of the present invention distributes NFT works on a concentric ring chart according to their collection value rating, making the display more intuitive and increasing the visual layering.
[0073] In another preferred embodiment, the method further comprises:
[0074] In response to a user's access request, the NFT artwork on the outermost layer of the multi-level treasure map is displayed by default; wherein the NFT artwork is displayed in a preset graphic;
[0075] The user's interactive behavior is obtained and the interactive behavior is scored. When the score reaches the unlocking rule, the NFT work of the corresponding level is displayed.
[0076] Specifically, users access the NFT treasure map through terminal devices. Each NFT work is displayed on a ring in a graphic form, not limited to circles / ovals / squares. The outermost ring of the treasure map ring is displayed by default and has access to it (the outermost ring is the NFT work with the lowest collection level). The NFT works on other rings are displayed in a locked manner (such as Figure 2 By obtaining the user's interactive behavior and accumulating points for the user's interactive behavior, when the points reach the unlocking rule, the NFT works of the corresponding level will be displayed.
[0077] For example, users can choose to visit the NFT theme area on the treasure map ring based on their personal interests. They can obtain unlocking points through interactive methods (i.e., interactive behaviors) such as answering pre-set questions, collecting NFTs, liking NFTs, and commenting on NFTs. When the points reach a certain threshold, the access rights to the theme on the next level of the treasure map will be unlocked. The specific method is as follows:
[0078] Unlock points accumulation = (answer points + collection NFT points + like NFT points + comment NFT points)
[0079] Among them, each interactive method has a corresponding point value. Users obtain corresponding points by participating in interactive activities, and then the accumulated points are the cumulative value of unlocked points.
[0080] For example: Assume that answering a question earns 20 points, collecting an NFT earns 10 points, liking an NFT earns 5 points, and commenting on an NFT earns 15 points. If a user answers one question (20 points), collects two NFTs (10 points), likes one NFT (5 points), and comments on one NFT (15 points), then the user's unlocked points will be: unlocked points = 20 + 10 + 5 + 15 = 50
[0081] When the accumulated unlock points reach a certain threshold, the user can unlock access to a specific theme in the next level of the treasure map. For example, the threshold for unlocking NFT works in the second-level [Digital Art] theme area is set at 100. When the user's unlock points reach or exceed 100, the user will unlock access to the next level of the theme.
[0082] It should be noted that the unlocking rules here can be targeted at levels, theme areas or specific NFT works.
[0083] This embodiment of the present invention accumulates points by comprehensively evaluating user interactions (answering questions, saving, liking, and commenting). Points are used to unlock higher-level treasure layers. This gamification element is an effective way to increase user activity, motivating users to unlock more content through interactive activities, thereby increasing user engagement and platform stickiness. The next level of thematic areas is automatically unlocked based on the user's points, providing a personalized user experience.
[0084] In another preferred embodiment, the method further comprises:
[0085] Based on the machine learning algorithm or deep learning model, predict the user's preference for the NFT work according to the interactive behavior and calculate the recommendation score of the NFT work;
[0086] Based on the recommendation score, the characteristics of the display graphics of the NFT work are controlled; wherein the characteristics include size, brightness and flashing frequency.
[0087] Specifically, the embodiment of the present invention collects the user's interaction behavior data at the previous level, for example:
[0088] Question answering data: Analyzes users' responses to questions, including accuracy and speed. Answers with high accuracy and speed can reflect the user's broad interests and high enthusiasm.
[0089] Collection and Like Data: Considers the user's collection and likes of existing NFT works, as well as the frequency and number of collections and likes. NFTs with a high number of collections and likes may reflect the user's preference for a specific theme or style.
[0090] NFT Comment Data: Analyzes the content and sentiment of users’ comments on NFT works, as well as the number and frequency of comments. Positive and constructive comments may reflect users’ recognition and interest in the NFT work.
[0091] Based on the above interactive behavior data, based on machine learning algorithms (such as collaborative filtering, content recommendation, etc.) or deep learning models (such as neural networks), according to the user's interactive behavior and the characteristics of the NFT work, predict the user's preference for the new NFT work, and calculate the recommendation score of the next level of NFT work. The recommendation score can be a continuous value between 0 and 1, which indicates the user's preference for the NFT work. The higher the value, the more likely the user is to be interested in the NFT work. According to the recommendation score, the characteristics of the display graphics of the NFT work are controlled. Among them, the characteristics include size, brightness, and flashing frequency. The higher the recommendation score, the larger the display graphics of the NFT work (such as Figure 2 The larger the radius of the circle on each ring shown), the higher the brightness and the faster the flashing frequency.
[0092] For example, the calculation formula for the radius of the displayed graphic (taking a circular graphic display as an example) is as follows:
[0093] Radius = minimum radius + (recommended points × (maximum radius - minimum radius))
[0094] Among them, the minimum radius is the minimum radius of the NFT work graphic display, which is used to indicate the lowest recommendation score; the maximum radius is the maximum radius of the NFT work graphic display, which is used to indicate the highest recommendation score.
[0095] For example, suppose there is a digital art NFT work on the NFT platform with a recommended score of 0.8, a minimum radius of 10 pixels, and a maximum radius of 100 pixels. According to the above formula, the radius of the work can be calculated:
[0096] Radius = 10 + (0.8 × (100 - 10)) = 10 + (0.8 × 90) = 10 + 72 = 82 pixels
[0097] Therefore, for this digital art NFT work with a recommended score of 0.8, the radius of its graphic display should be 82 pixels.
[0098] The brightness and flicker frequency are calculated similarly to the NFT display graphics.
[0099] This embodiment of the present invention analyzes and recommends NFT artworks that match users' preferences in real time based on their interactive data on the treasure map (such as likes, favorites, and comments), increasing the system's dynamic responsiveness. The size, brightness, and flashing frequency of the NFT display are dynamically adjusted based on the recommendation score. This innovative visual display improves the efficiency and appeal of information transmission and enhances the effectiveness of information expression.
[0100] Correspondingly, the present invention also provides an NFT work display device that can implement all the processes of the NFT work display method in the above embodiment.
[0101] See also Figure 3 , Figure 3 This is a schematic diagram of a preferred embodiment of an NFT artwork display device provided by the present invention. The NFT artwork display device comprises:
[0102] Scoring module 301, for scoring the NFT work based on its own value and the current selling price of the NFT work, to obtain the collection value of the NFT work;
[0103] The display module 302 is used to determine the display position of the NFT work on the multi-level treasure map according to the collection value of the NFT work; wherein each level of the multi-level treasure map is set with corresponding unlocking rules.
[0104] Preferably, the scoring module 301 is further configured to:
[0105] The NFT work is scored based on the market demand, rarity, historical transaction data and the number of works owned by the owner to obtain the intrinsic value of the NFT work.
[0106] Preferably, the display module 302 includes:
[0107] A level determination unit 312 is configured to determine a target level for the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein the collection value of the multi-level treasure map decreases from the inner layer to the outer layer; and NFT works on the same level of the multi-level treasure map have the same collection value;
[0108] The area determination unit 322 is used to determine the target area of the NFT work at the target level according to the theme of the NFT work.
[0109] Preferably, the region determining unit 322 is specifically configured to:
[0110] Based on the same target level, the target area size of the NFT works of each theme at the target level is determined according to the total collection value of the NFT works of each theme and the total collection value of the NFT works of all themes.
[0111] Preferably, the device further comprises an unlocking module, configured to:
[0112] In response to a user's access request, the NFT artwork on the outermost layer of the multi-level treasure map is displayed by default; wherein the NFT artwork is displayed in a preset graphic;
[0113] The user's interactive behavior is obtained and the interactive behavior is scored. When the score reaches the unlocking rule, the NFT work of the corresponding level is displayed.
[0114] Preferably, the device further comprises a recommendation module, configured to:
[0115] Based on the machine learning algorithm or deep learning model, predict the user's preference for the NFT work according to the interactive behavior and calculate the recommendation score of the NFT work;
[0116] Based on the recommendation score, the characteristics of the display graphics of the NFT work are controlled; wherein the characteristics include size, brightness and flashing frequency.
[0117] In the specific implementation, the working principle, control process and technical effects achieved by the NFT work display device provided by the embodiment of the present invention are the same as those of the NFT work display method in the above embodiment, and will not be repeated here.
[0118] See also Figure 4 , Figure 4 4 is a schematic diagram of a preferred embodiment of a terminal device provided by the present invention. The terminal device includes a processor 401, a memory 402, and a computer program stored in the memory 402 and configured to be executed by the processor 401. When the processor 401 executes the computer program, it implements the NFT work display method described in any of the above embodiments.
[0119] Preferably, the computer program can be divided into one or more modules / units (e.g., computer program 1, computer program 2, ...), which are stored in the memory 402 and executed by the processor 401 to implement the present invention. The one or more modules / units can be a series of computer program instruction segments capable of implementing specific functions, and the instruction segments are used to describe the execution process of the computer program in the terminal device.
[0120] The processor 401 can be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor can be a microprocessor, or the processor 401 can be any conventional processor. The processor 401 is the control center of the terminal device, and uses various interfaces and lines to connect the various parts of the terminal device.
[0121] The memory 402 mainly includes a program storage area and a data storage area. The program storage area can store an operating system, at least one application required for a function, and the data storage area can store related data. In addition, the memory 402 can be a high-speed random access memory or a non-volatile memory, such as a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) card, and a Flash Card. Alternatively, the memory 402 can be other volatile solid-state memory devices.
[0122] It should be noted that the above terminal device may include, but is not limited to, a processor and a memory. Those skilled in the art will understand that Figure 4 The structural diagram is only an example of the above-mentioned terminal device and does not constitute a limitation on the above-mentioned terminal device. It may include more or fewer components than shown in the figure, or combine certain components, or different components.
[0123] An embodiment of the present invention also provides a computer-readable storage medium, which includes a stored computer program, wherein when the computer program is running, the device where the computer-readable storage medium is located is controlled to execute the NFT work display method described in any of the above embodiments.
[0124] An embodiment of the present invention also provides a computer program product, which includes a computer program or computer instructions. When the computer program or the computer instructions are executed by a processor, the NFT work display method described in any of the above embodiments is implemented.
[0125] Embodiments of the present invention provide a method, apparatus, device, storage medium, and computer program product for displaying NFT artworks. These methods score NFT artworks based on their intrinsic value and their current selling price to determine their collectible value. Based on their collectible value, the NFT artworks' display locations on a multi-level treasure map are determined. Each level of the multi-level treasure map has corresponding unlocking rules. By displaying NFT artworks on a multi-level treasure map based on their collectible value, the present invention enhances the presentation and visual appeal. The image size, brightness, and flashing frequency are adjusted based on the recommended score, enhancing the effectiveness of the information presented. By setting up a multi-level treasure map, users can only access unlocked NFT areas, encouraging them to explore higher-value NFT artworks through progressive unlocking. By introducing a treasure map access unlocking mechanism, users are encouraged to accumulate points through interaction to unlock higher-level treasure map areas, thereby increasing user engagement and interactivity. By establishing an NFT collectible value rating method based on market demand, rarity, historical transaction data, and the number of NFT artworks owned, the transparency and reliability of the assessment are improved.
[0126] It should be noted that the system embodiment described above is merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed across multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the present embodiment. In addition, in the drawings of the system embodiment provided by the present invention, the connection relationship between the modules indicates that there is a communication connection between them, which can be specifically implemented as one or more communication buses or signal lines. A person of ordinary skill in the art can understand and implement the present invention without inventive work.
[0127] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications are also considered to be within the scope of protection of the present invention.
Claims
1. A method for displaying NFT works, characterized in that: include: Score the NFT work based on its own value and the current selling price to obtain the collection value of the NFT work; Based on the collection value of the NFT work, the display position of the NFT work on the multi-level treasure map is determined; wherein each level of the multi-level treasure map is set with corresponding unlocking rules.
2. The NFT work display method according to claim 1, characterized in that: Before scoring the NFT work based on its own value and the current selling price of the NFT work to obtain the collection value of the NFT work, the method further includes: The NFT work is scored based on the market demand, rarity, historical transaction data and the number of works owned by the owner to obtain the intrinsic value of the NFT work.
3. The NFT work display method according to claim 1, characterized in that: Determining the display location of the NFT work on the multi-level treasure map based on the collection value of the NFT work includes: Determine the target level of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein the collection value of the multi-level treasure map decreases from the inner layer to the outer layer; the collection value of the NFT works on the same level of the multi-level treasure map is the same; According to the theme of the NFT work, determine the target area of the NFT work at the target level.
4. The NFT work display method according to claim 3, characterized in that: Determining the target area of the NFT work at the target level based on the theme of the NFT work includes: Based on the same target level, the target area size of the NFT works of each theme at the target level is determined according to the total collection value of the NFT works of each theme and the total collection value of the NFT works of all themes.
5. The NFT work display method according to claim 4, characterized in that: The method further comprises: In response to a user's access request, the NFT artwork on the outermost layer of the multi-level treasure map is displayed by default; wherein the NFT artwork is displayed in a preset graphic; The user's interactive behavior is obtained and the interactive behavior is scored. When the score reaches the unlocking rule, the NFT work of the corresponding level is displayed.
6. The NFT work display method according to claim 5, characterized in that: The method further comprises: Based on the machine learning algorithm or deep learning model, predict the user's preference for the NFT work according to the interactive behavior and calculate the recommendation score of the NFT work; Based on the recommendation score, the characteristics of the display graphics of the NFT work are controlled; wherein the characteristics include size, brightness and flashing frequency.
7. An NFT work display device, characterized in that: include: A scoring module is used to score the NFT work based on its own value and the current selling price of the NFT work to obtain the collection value of the NFT work; A display module is used to determine the display position of the NFT work on a multi-level treasure map based on the collection value of the NFT work; wherein each level of the multi-level treasure map is set with corresponding unlocking rules.
8. A terminal device, characterized in that: It includes a processor and a memory, wherein a computer program is stored in the memory, and the computer program is configured to be executed by the processor, and when the processor executes the computer program, it implements the NFT work display method as described in any one of claims 1 to 6.
9. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, wherein when the device where the computer-readable storage medium is located executes the computer program, the NFT work display method as described in any one of claims 1 to 6 is implemented.
10. A computer program product, characterized in that The computer program product includes a computer program or computer instructions, and when the computer program or the computer instructions are executed by a processor, the NFT work display method as described in any one of claims 1 to 6 is implemented.
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