Scenic spot card punching method and device, electronic equipment and storage medium

By obtaining scenic area maps and crowd flow data for route planning and navigation prompts, the problems of tourist congestion and authenticity at scenic spot check-ins are solved, and an efficient and safe scenic spot check-in experience is achieved.

CN120673493APending Publication Date: 2025-09-19ZHENSHI INFORMATION TECH SHANGHAI CO LTD
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Patent Information

Application Number
CN202510936171.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The existing method of checking in at scenic spots leads to tourist congestion, reduced safety, and cannot ensure authentic check-in. Especially for tourists who are not familiar with the scenic spots, it is impossible to check in accurately.

Method used

By obtaining scenic area maps, crowd flow data and check-in tasks, and using path planning and navigation methods, it provides a variety of navigation prompts (vibration, projection, voice) to guide tourists to the check-in points, and judges the check-in results based on preset conditions, and updates the path in real time to avoid congestion.

Benefits of technology

It improves the accuracy and efficiency of check-in at scenic spots, reduces tourist congestion, ensures the authenticity and safety of check-in, and enhances the interactive experience and fun of tourists.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention discloses a scenic spot card punching method and device, electronic equipment and a storage medium. The method comprises the following steps: if it is detected that a first user enters a target scenic area, if yes, obtaining a scenic spot map corresponding to the target scenic spot, visitor flow rate data corresponding to each scenic spot area in the target scenic spot, a scenic spot clock-in task set by a second user for the target scenic spot, a scenic spot clock-in mode selected by the first user or the second user, and a navigation mode selected by the first user; path planning is carried out based on the scenic spot clock-in mode, the scenic spot map, the visitor flow rate data and the scenic spot clock-in task, and a clock-in path of the first user in the target scenic spot is determined; performing navigation prompt on the first user based on the navigation mode, the card punching path and the real-time position information of the first user; if it is detected that the first user is located in the scenic spot clock-in range, the scenic spot clock-in result of the first user is determined based on the preset clock-in condition and the clock-in operation of the first user, and therefore the scenic spot clock-in efficiency is improved.
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Description

Technical Field

[0001] The embodiments of the present invention relate to the field of navigation and positioning technology, and in particular to a method, device, electronic device and storage medium for checking in at a scenic spot. Background Art

[0002] With the development of technology, more and more scenic spots are attracting tourists through intelligent check-in methods, and setting rewards for completing check-in to increase tourists' enthusiasm and interest in visiting the scenic spots.

[0003] Currently, most scenic spots use a fixed check-in point system to ensure check-ins at scenic spots. However, this fixed-point check-in system can cause crowding and reduce visitor safety. Furthermore, this fixed-point check-in system is relatively simple and prone to fraudulent check-ins, making it impossible to ensure that visitors actually check in. Furthermore, most tourists are first-time visitors and are unfamiliar with the locations of various attractions and check-in points, making it difficult to accurately check in. Summary of the Invention

[0004] The embodiments of the present invention provide a method, device, electronic device and storage medium for clocking in at a scenic spot, so as to accurately and conveniently enable users to clock in at a scenic spot, thereby improving the efficiency of clocking in at a scenic spot.

[0005] In a first aspect, an embodiment of the present invention provides a method for checking in at a scenic spot, comprising:

[0006] If it is detected that the first user enters the target scenic spot, a scenic spot map corresponding to the target scenic spot, traffic data corresponding to each scenic spot area in the target scenic spot, a scenic spot check-in task set by the second user for the target scenic spot, a scenic spot check-in method selected by the first user or the second user, and a navigation method selected by the first user are obtained;

[0007] performing path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task to determine the check-in path of the first user within the target scenic spot;

[0008] Providing navigation prompts to the first user based on the navigation method, the check-in path, and the real-time location information of the first user;

[0009] If it is detected that the first user is within the check-in range of the scenic spot, the scenic spot check-in result of the first user is determined based on the preset check-in conditions and the check-in operation of the first user.

[0010] Optionally, the method further includes: generating navigation prompt information corresponding to the scenic spot check-in task based on the check-in path and the real-time location information of the first user; and providing navigation prompts to the first user based on the navigation method and the navigation prompt information.

[0011] Optionally, the method also includes: if the navigation mode is a vibration navigation mode, converting the navigation prompt information into a navigation prompt instruction under the vibration navigation mode, and providing a vibration navigation prompt to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a projection navigation mode, converting the navigation prompt information into a navigation prompt instruction under the projection navigation mode, and providing a projection navigation prompt to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a voice navigation mode, converting the navigation prompt information into a navigation prompt instruction under the voice navigation mode, and providing a voice navigation prompt to the first user based on the navigation prompt instruction.

[0012] Optionally, the method also includes: if the preset check-in condition is a close-range check-in condition, then when the check-in operation of the first user meets the close-range check-in condition, the current scenic spot is marked as being in a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a task check-in condition, then when the check-in operation of the first user meets the task check-in condition, the current scenic spot is marked as being in a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a time limit check-in condition, then when the check-in operation of the first user meets the time limit check-in condition, the current scenic spot is marked as being in a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user.

[0013] Optionally, the method also includes: if it is detected that there are unchecked-in attractions in the scenic spot check-in results, path planning is performed based on the re-acquired traffic data corresponding to the scenic spot area to which the unchecked-in attractions belong, and the check-in path of the first user in the target scenic spot is updated.

[0014] Optionally, the method also includes: structuring the scenic area map based on the scenic spot check-in task and the crowd flow data to construct a weighted directed graph; the nodes in the weighted directed graph include: high-flow scenic spots, low-flow scenic spots and key path points; the weights corresponding to the edges in the weighted directed graph include physical distance and estimated travel time; analyzing and processing the scenic spot check-in method to determine the path planning constraints; based on a preset multi-objective optimization algorithm, the weighted directed graph and the path planning constraints, determining the check-in path of the first user in the target scenic spot.

[0015] In a second aspect, an embodiment of the present invention further provides a scenic spot check-in device, the device comprising:

[0016] An information acquisition module, configured to, upon detecting that a first user has entered a target scenic spot, acquire a scenic spot map corresponding to the target scenic spot, crowd flow data corresponding to each scenic spot area in the target scenic spot, a scenic spot check-in task set by a second user for the target scenic spot, a scenic spot check-in method selected by the first user or the second user, and a navigation method selected by the first user;

[0017] a check-in path determination module, configured to perform path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task, and determine the check-in path of the first user within the target scenic spot;

[0018] a navigation prompt module, configured to provide navigation prompts to the first user based on the navigation mode, the check-in path, and the real-time location information of the first user;

[0019] The scenic spot check-in result determination module is used to determine the scenic spot check-in result of the first user based on preset check-in conditions and the check-in operation of the first user if it is detected that the first user is within the scenic spot check-in range.

[0020] In a third aspect, an embodiment of the present invention further provides an electronic device, comprising:

[0021] one or more processors;

[0022] a memory for storing one or more programs;

[0023] When the one or more programs are executed by the one or more processors, the one or more processors implement the scenic spot check-in method provided by any embodiment of the present invention.

[0024] In a fourth aspect, an embodiment of the present invention provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements a scenic spot check-in method as provided in any embodiment of the present invention.

[0025] In a fifth aspect, an embodiment of the present invention provides a computer program product, including a computer program, which, when executed by a processor, implements the scenic spot check-in method provided by any embodiment of the present invention.

[0026] The technical solution of an embodiment of the present invention is as follows: if it is detected that the first user enters a target scenic spot, then a scenic spot map corresponding to the target scenic spot, crowd flow data corresponding to each scenic spot area in the target scenic spot, a scenic spot check-in task set by the second user for the target scenic spot, a scenic spot check-in method selected by the first user or the second user, and a navigation method selected by the first user are obtained; based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task, path planning is performed to determine the check-in path of the first user in the target scenic spot; based on the navigation method, the check-in path and the real-time location information of the first user, navigation prompts are given to the first user, so that the first user can follow the navigation prompts to accurately reach the check-in scenic spot, thereby improving the scenic spot check-in efficiency of the first user in the scenic spot; if it is detected that the first user is within the scenic spot check-in range, the scenic spot check-in result of the first user is determined based on the preset check-in conditions and the check-in operation of the first user.

[0027] It should be understood that the content described in this section is not intended to identify the key or important features of the embodiments of the present invention, nor is it intended to limit the scope of the present invention. Other features of the present invention will become readily understood through the following description. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] 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 description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0029] Figure 1 This is a flow chart of a method for checking in at a scenic spot provided by the first embodiment of the present invention;

[0030] Figure 2 This is a flow chart of a method for checking in at a scenic spot provided by the second embodiment of the present invention;

[0031] Figure 3 This is a structural diagram of a scenic spot check-in device provided by the third embodiment of the present invention;

[0032] Figure 4 2 is a schematic diagram of the structure of an electronic device for implementing the scenic spot check-in method according to an embodiment of the present invention. DETAILED DESCRIPTION

[0033] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.

[0034] It should be noted that the terms "first", "second", etc. in the description and claims of the present invention and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present invention described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0035] Example 1

[0036] Figure 1 A flowchart of a scenic spot check-in method is provided for the first embodiment of the present invention. This embodiment is applicable to scenic spot check-in situations, especially to scenic spot check-in interactions based on children's watches. The method can be executed by a scenic spot check-in device, which can be implemented in the form of hardware and / or software. The scenic spot check-in device can be configured in an electronic device, such as a watch. Figure 1 As shown, the method includes:

[0037] S110. If it is detected that the first user enters the target scenic spot, obtain the scenic spot map corresponding to the target scenic spot, the crowd flow data corresponding to each scenic spot area in the target scenic spot, the scenic spot check-in task set by the second user for the target scenic spot, the scenic spot check-in method selected by the first user or the second user, and the navigation method selected by the first user.

[0038] The first user may be a user who checks in at a scenic spot within a scenic area. The target scenic area may be the scenic area where the first user is checking in. The scenic area map may be a map containing information within the scenic area. The scenic area map may include all scenic spots and accessible paths within the scenic area. The scenic area area may be the area enclosed by the geofence corresponding to the scenic spot. Users can check in within the scenic area. Foot traffic data may refer to the number of people within the scenic area at the time the data was acquired. Foot traffic data can be used to reflect the congestion level and traffic efficiency of the scenic area. The second user may be a user who sets a scenic spot check-in task for the first user. The scenic spot check-in task may refer to the scenic spot selected by the second user from the target scenic area for the first user to check in. The scenic spot check-in method may refer to the method by which the user completes the check-in at the scenic spot within the target scenic area. For example, the scenic spot check-in method may include, but is not limited to, checking in at the scenic spots in order of recommended priority, checking in at the shortest distance, and checking in at the shortest time. The navigation method may refer to the navigation method selected by the second user for the check-in path.

[0039] In this embodiment, the child is the first user and the child's parent is the second user. Parents can set scenic spot check-in tasks for their children during the current visit based on the attributes of the scenic spot (such as a zoo or science and technology museum) and historical check-in records.

[0040] Specifically, the children's watch worn by the first user obtains the location information of the first user at a low frequency. When it is detected that the location information of the first user is located in the target scenic area for the first time, it is determined that the first user has entered the target scenic area. At this time, the scenic area map corresponding to the target scenic area is obtained at one time. The watch can pre-download the scenic area vector map, and only load the current area map layer after the first user enters the scenic area to achieve scenic area map acquisition, thereby saving storage space and download traffic. By connecting to the target scenic area data monitoring center, the flow of people data corresponding to each scenic area in the target scenic area at the current moment is obtained. The scenic spot check-in task set and transmitted by the second user for the target scenic area is obtained. The first user can choose to use the scenic spot check-in method transmitted together with the scenic spot check-in task of the second user, or can select the scenic spot check-in method on the watch operation interface. The watch obtains the navigation method selected by the user on the operation interface.

[0041] S120: Perform path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task to determine the check-in path of the first user in the target scenic spot.

[0042] The check-in path may refer to a check-in path for a scenic spot determined based on the actual situation in the target scenic spot and user preferences. The check-in path may be displayed on a scenic spot map.

[0043] Specifically, by utilizing prompt word engineering technology, combined with scenic spot check-in methods, scenic spot maps, crowd flow data, and scenic spot check-in tasks, path generation prompt words that can be used as input for the large language model are generated, and based on the output results of the large language model, the check-in path of the first user in the target scenic spot is determined.

[0044] On the basis of the above technical solutions, "path planning based on the scenic spot check-in method, scenic spot map, crowd flow data and scenic spot check-in tasks to determine the check-in path of the first user in the target scenic spot" may include: structuring the scenic spot map based on the scenic spot check-in tasks and crowd flow data to construct a weighted directed graph; the nodes in the weighted directed graph include: high-flow scenic spots, low-flow scenic spots and key path points; the weights corresponding to the edges in the weighted directed graph include physical distance and estimated travel time; analyzing and processing the scenic spot check-in method to determine the path planning constraints; based on the preset multi-objective optimization algorithm, the weighted directed graph and the path planning constraints, determine the check-in path of the first user in the target scenic spot.

[0045] Among them, a weighted directed graph may refer to a directed graph in which check-in spots and forks in the scenic area map are abstracted as nodes, and traversable paths are abstracted as edges. Both high-flow attractions and low-flow attractions belong to the check-in attractions in the scenic area check-in task. High-flow attractions and low-flow attractions are determined by traffic data and preset traffic thresholds. Key path points include forks in the road and attractions that are not involved in the scenic area check-in task. Path planning constraints may refer to conditions that need to be met to generate a check-in path. For example, the total time required to complete the check-in at all attractions in the scenic area check-in task is the shortest. The preset multi-objective optimization algorithm may refer to a pre-set method of constructing a target optimization function using a weighted directed graph, and solving the target optimization function according to the path planning constraints to obtain a check-in path.

[0046] Specifically, based on the scenic spot check-in task, the check-in spots in the scenic area map are determined and calibrated. Based on the comparison of the flow of people data and the preset flow of people threshold, the high-flow and low-flow scenic spots in the check-in spots are determined and calibrated. The calibrated scenic area map is structured to construct a weighted directed graph. The check-in method of the scenic spot is analyzed and processed to determine the path planning constraints. Based on the preset multi-objective optimization algorithm and the nodes and edges in the weighted directed graph, a target optimization function with the total check-in time as the dependent variable is constructed, and the target optimization function is solved using the path planning constraints to determine the check-in path of the first user in the target scenic area.

[0047] In this embodiment, if only physical distance is considered, a shortest path algorithm (such as Dijkstra) can be used. Multi-objective optimization can use an improved genetic algorithm or ant colony algorithm to balance objectives such as time, human flow, and task sequence.

[0048] S130: Providing navigation prompts to the first user based on the navigation method, the check-in path, and the real-time location information of the first user.

[0049] The navigation mode may be, but is not limited to, a display navigation mode. The first user's real-time location information is obtained by activating the high-frequency location acquisition mode when the watch detects that the first user is within the target scenic area. All information obtained in S110 can be understood as being obtained once when the first user first enters the target scenic area, and the first user's real-time location information can be understood as being obtained in real time when the first user is within the target scenic area.

[0050] Specifically, prompt information for subsequent path navigation for the first user is generated based on the real-time location information and the check-in path of the first user, and the prompt information for path navigation is provided to the first user as a navigation prompt according to the navigation method.

[0051] Based on the above technical solution, "providing navigation prompts to the first user based on the navigation method, check-in path and the real-time location information of the first user" may include: generating navigation prompt information corresponding to the scenic spot check-in task based on the check-in path and the real-time location information of the first user; providing navigation prompts to the first user based on the navigation method and the navigation prompt information.

[0052] The navigation prompt information may refer to prompt information for the first user on how to move next.

[0053] Specifically, based on the check-in path and the first user's real-time location information, a navigation prompt is generated corresponding to the scenic spot check-in task, such as "50 meters ahead, the Panda Ridge check-in point." If the navigation mode is voice navigation, the navigation prompt is given to the first user through the watch's speaker, i.e., "Go 50 meters forward to reach the Panda Ridge check-in point."

[0054] On the basis of the above technical solution, "providing navigation prompts to the first user based on the navigation mode and navigation prompt information" may include: if the navigation mode is a vibration navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the vibration navigation mode, and a vibration navigation prompt is given to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a projection navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the projection navigation mode, and a projection navigation prompt is given to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a voice navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the voice navigation mode, and a voice navigation prompt is given to the first user based on the navigation prompt instruction.

[0055] The navigation mode may further include: a vibration navigation mode and a projection navigation mode.

[0056] Specifically, if the navigation mode is vibration navigation, the navigation prompt information is converted into a navigation prompt instruction for the vibration navigation mode, and a vibration navigation prompt is provided to the first user based on the navigation prompt instruction. In this embodiment, in the vibration navigation mode, navigation instructions can be given by the direction of vibration. For example, if the motors on both sides of the watch strap vibrate, the left vibration indicates a left turn, the right vibration indicates a right turn, and both sides vibrate to indicate going straight.

[0057] Specifically, if the navigation mode is projection navigation, the navigation prompt information is converted into navigation prompt instructions for the projection navigation mode, and a projection navigation prompt is provided to the first user based on the navigation prompt instructions. In this embodiment, in the projection navigation mode, a laser module in the watch can project a dynamic arrow on the arm or the ground. For example, a blue arrow indicates the walking direction of the check-in attraction currently being traveled to, and a red arrow indicates that the current route is being deviated.

[0058] For example, if the first user agrees to turn on the parent-child collaborative navigation mode, the second user's mobile phone can synchronously display the first user's real-time location information and check-in path, so that the second user can manually adjust the check-in path on the mobile phone (such as avoiding the construction area, or letting the first user and the second user meet), and synchronize the adjusted route to the first user's watch in real time.

[0059] S140: If it is detected that the first user is within the check-in range of the scenic spot, determine the first user's check-in result for the scenic spot based on preset check-in conditions and the first user's check-in operation.

[0060] Among them, the scenic spot check-in task may also include preset check-in conditions selected by the second user. The scenic spot check-in range may refer to the area range within the scenic spot where the check-in device can detect the check-in operation of the first user. The preset check-in conditions may refer to the pre-set detection conditions for judging the authenticity of the user's check-in. The check-in operation may refer to the check-in operation that the user needs to complete according to the preset check-in conditions. The scenic spot check-in result may refer to the result of whether the scenic spot check-in task is fully completed. For example, the scenic spot check-in results can be marked on the scenic spot map using the marking method for check-in attractions in different statuses. Attractions that have not been completed can be marked with a flashing red dot, while attractions that have been completed can be marked with a green dot. Public service facilities, such as toilets and rest areas, can also be pre-marked on the scenic spot map.

[0061] Specifically, a location comparison is performed based on the first user's real-time location information and the check-in range of the scenic spot. If the first user is detected to be within the check-in range, a determination is made as to whether the first user has successfully checked in at the current scenic spot based on preset check-in conditions and the first user's check-in operation. If the check-in at the current scenic spot fails, the first user is prompted to check in again according to the preset check-in conditions. If the check-in at the current scenic spot is successful, the check-in status of the current scenic spot in the scenic spot check-in result is updated from "not checked in" to "checked in", thereby obtaining an updated scenic spot check-in result.

[0062] On the basis of the above technical solution, "determining the first user's scenic spot check-in result based on the preset check-in condition and the first user's check-in operation" may include: if the preset check-in condition is a close-range check-in condition, then when the first user's check-in operation meets the close-range check-in condition, the current scenic spot is marked as a check-in completed state, and the first user's scenic spot check-in result is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a task check-in condition, then when the first user's check-in operation meets the task check-in condition, the current scenic spot is marked as a check-in completed state, and the first user's scenic spot check-in result is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a time limit check-in condition, then when the first user's check-in operation meets the time limit check-in condition, the current scenic spot is marked as a check-in completed state, and the first user's scenic spot check-in result is determined based on the check-in status of each scenic spot corresponding to the first user.

[0063] Among them, the proximity check-in condition can refer to a specific distance from the check-in attraction to achieve the check-in operation. The task check-in condition can refer to completing a challenge task to achieve the check-in operation. The time limit check-in condition can refer to the check-in interval between each attraction meeting the preset time limit requirement. In this embodiment, if a scenic spot has at least two preset check-in conditions, the current attraction will be marked as check-in completed if all preset check-in conditions are met.

[0064] Specifically, if the preset check-in condition is a close-range check-in condition, when the first user's check-in operation meets the close-range check-in condition, the current attraction is marked as checked-in complete, and the first user's check-in result for the attraction is determined based on the check-in status of each attraction corresponding to the first user. For example, if the first user's watch is within a certain distance of the NFC tag at the attraction, a valid check-in is achieved, i.e., the check-in is successful.

[0065] Specifically, if the preset check-in condition is a task check-in condition, when the first user's check-in operation meets the task check-in condition, the current attraction is marked as checked-in completed, and the first user's check-in result for the attraction is determined based on the check-in status of each attraction corresponding to the first user. For example, the first user can scan the QR code of a designated exhibit with the watch camera, or measure the ambient decibel level to meet the standard, which can effectively check in, that is, successfully check in.

[0066] Specifically, if the preset check-in condition is a time-limited check-in condition, then when the first user's check-in operation meets the time-limited check-in condition, the current scenic spot will be marked as a check-in completion state, and the first user's scenic spot check-in result will be determined based on the check-in status of each scenic spot corresponding to the first user. For example, if the time interval between the first user's check-in time at the current scenic spot and the check-in time at the previous scenic spot is within a specific time range, an effective check-in can be achieved, that is, the check-in is successful. It can be understood that the time-limited check-in condition is used to detect whether the reasonable travel time between adjacent check-in points is reasonable. If it takes at least 10 minutes to get from the bird area to the panda area, but the first user's corresponding check-in time interval is 3 minutes, it is regarded as an illegal check-in and is determined to be a check-in failure, thereby preventing remote cheating, ensuring user fairness, and improving user experience.

[0067] The technical solution of an embodiment of the present invention is as follows: if it is detected that the first user enters the target scenic area, the scenic area map corresponding to the target scenic area, the crowd flow data corresponding to each scenic area in the target scenic area, the scenic spot check-in task set by the second user for the target scenic area, the scenic spot check-in method selected by the first user or the second user, and the navigation method selected by the first user are obtained; based on the scenic spot check-in method, the scenic area map, the crowd flow data and the scenic spot check-in task, path planning is performed to determine the check-in path of the first user in the target scenic area; based on the navigation method, the check-in path and the real-time location information of the first user, navigation prompts are given to the first user, so that the first user can follow the navigation prompts to accurately reach the check-in scenic spot, thereby improving the first user's scenic spot check-in efficiency in the scenic area; if it is detected that the first user is within the scenic spot check-in range, the scenic spot check-in result of the first user is determined based on the preset check-in conditions and the check-in operation of the first user.

[0068] Example 2

[0069] Figure 2 This is a flowchart of a method for checking in at a scenic spot provided by the second embodiment of the present invention. This embodiment describes in detail the process of updating the check-in path based on the above embodiment. The explanations of the terms that are the same or corresponding to the above embodiments are not repeated here. Figure 2 As shown, the method includes:

[0070] S210. If it is detected that the first user enters the target scenic spot, obtain the scenic spot map corresponding to the target scenic spot, the crowd flow data corresponding to each scenic spot area in the target scenic spot, the scenic spot check-in task set by the second user for the target scenic spot, the scenic spot check-in method selected by the first user or the second user, and the navigation method selected by the first user.

[0071] S220: Perform path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task to determine the check-in path of the first user in the target scenic spot.

[0072] S230: Providing navigation prompts to the first user based on the navigation method, the check-in path, and the real-time location information of the first user.

[0073] It should be noted that compared with the traditional check-in that relies on mobile phones or paper maps, which leads to weak sense of participation among children and lacks interactive forms that conform to their cognitive characteristics, this embodiment uses children's watches for check-in navigation and prompts, which improves children's interactive experience and fun.

[0074] S240: If it is detected that the first user is within the check-in range of the scenic spot, determine the first user's check-in result for the scenic spot based on the preset check-in conditions and the check-in operation of the first user.

[0075] In this embodiment, the dual interaction design of physical button triggering and automatic NFC sensing on the watch can improve the accuracy of user clocking in, better adapt to children's operating habits, and avoid complex touch screen operations and accidental touches. It also uses multiple technologies such as near-field sensing (NFC / RFID), geo-fencing, and parent-child collaborative verification to ensure that clocking in is strongly associated with the actual location. At the same time, the NFC touch confirmation function on the parent side prevents children from false clocking in or making mistakes.

[0076] S250: If it is detected that there are unchecked-in attractions in the scenic spot check-in results, path planning is performed based on the newly acquired crowd flow data corresponding to the scenic spot area to which the unchecked-in attractions belong, and the check-in path of the first user in the target scenic spot is updated.

[0077] Among them, the unchecked-in attractions may refer to attractions whose check-in status is unchecked-in.

[0078] Specifically, each time the first user successfully completes a scenic spot check-in, the check-in status of the current scenic spot is updated from "unchecked in" to "checked in." At this point, the check-in path is replanned to further improve scenic spot check-in efficiency and phased-in congestion avoidance. In this embodiment, if the check-in status of a scenic spot changes during the first user's scenic spot check-in task, and there are unchecked-in scenic spots in the scenic spot check-in results, the footfall data corresponding to the scenic spot area to which the unchecked-in scenic spots belong is reacquired. Based on the scenic spot check-in method, the scenic spot map, the updated footfall data, and the updated scenic spot check-in task, the path is replanned to obtain an updated check-in path for the first user within the target scenic spot. After obtaining the updated check-in path, S230 and S240 may be continued. If unchecked-in scenic spots are detected in the scenic spot check-in results, S250 may be continued. The loop ends when no unchecked-in scenic spots are detected in the scenic spot check-in results, and the first and second users are notified that the scenic spot check-in task is complete.

[0079] For example, the real-time location information of the first user is obtained, and the real-time trajectory is synchronized with the electronic fence alarm to ensure that the child is active in a safe area, and the real-time location information is used to generate a family travel electronic log.

[0080] The technical solution of the embodiment of the present invention is to update the first user's check-in path within the target scenic area by performing path planning based on the newly acquired traffic data corresponding to the scenic area area to which the unchecked-in scenic area belongs, if the check-in results for the scenic area are detected. Since the traffic data corresponding to each scenic area area will change as the first user moves between check-in scenic areas, each time the first user completes a check-in at a scenic area but has not completed all check-in tasks, path planning can be performed based on the newly acquired traffic data corresponding to the scenic area area to which the unchecked-in scenic area belongs, so as to achieve real-time updates of the check-in path, allowing the first user to avoid congestion and further improving the efficiency of scenic area check-in.

[0081] It should be noted that compared with traditional smart watches with single functions, external devices (such as AR glasses) increase the burden of use. In this embodiment, through the compact design of the strap-embedded NFC chip and the dial micro laser projection module, the punch-in, interaction, and power supply functions are integrated in a limited space. A modular detachable structure (such as a replaceable projection lens) is adopted to reduce maintenance costs and adapt to multiple scene requirements. A dynamic power management strategy can also be adopted to activate the NFC, positioning, and projection modules only after entering the target scenic area to reduce standby energy consumption. And the solar dial is used to assist in power supply to improve the endurance in outdoor strong light environments and reduce dependence on charging.

[0082] The following is an embodiment of a scenic spot check-in device provided by an embodiment of the present invention. This device and the scenic spot check-in method of each of the above embodiments belong to the same inventive concept. For details not fully described in the embodiment of the scenic spot check-in device, please refer to the embodiment of the above-mentioned scenic spot check-in method.

[0083] Example 3

[0084] Figure 3 This is a structural diagram of a scenic spot check-in device provided by the third embodiment of the present invention. Figure 3 As shown, the device includes: an information acquisition module 310, a check-in path determination module 320, a navigation prompt module 330 and a scenic spot check-in result determination module 340.

[0085] Among them, the information acquisition module 310 is used to obtain the scenic area map corresponding to the target scenic area, the crowd flow data corresponding to each scenic area in the target scenic area, the scenic spot check-in task set by the second user for the target scenic area, the scenic spot check-in method selected by the first user or the second user, and the navigation method selected by the first user if it is detected that the first user enters the target scenic area; the check-in path determination module 320 is used to plan the path based on the scenic spot check-in method, scenic area map, crowd flow data and scenic spot check-in task, and determine the check-in path of the first user in the target scenic area; the navigation prompt module 330 is used to provide navigation prompts to the first user based on the navigation method, check-in path and the real-time location information of the first user; the scenic spot check-in result determination module 340 is used to determine the scenic spot check-in result of the first user based on the preset check-in conditions and the check-in operation of the first user if it is detected that the first user is within the scenic spot check-in range.

[0086] The technical solution of an embodiment of the present invention is as follows: if it is detected that the first user enters the target scenic area, the scenic area map corresponding to the target scenic area, the crowd flow data corresponding to each scenic area in the target scenic area, the scenic spot check-in task set by the second user for the target scenic area, the scenic spot check-in method selected by the first user or the second user, and the navigation method selected by the first user are obtained; based on the scenic spot check-in method, the scenic area map, the crowd flow data and the scenic spot check-in task, path planning is performed to determine the check-in path of the first user in the target scenic area; based on the navigation method, the check-in path and the real-time location information of the first user, navigation prompts are given to the first user, so that the first user can follow the navigation prompts to accurately reach the check-in scenic spot, thereby improving the first user's scenic spot check-in efficiency in the scenic area; if it is detected that the first user is within the scenic spot check-in range, the scenic spot check-in result of the first user is determined based on the preset check-in conditions and the check-in operation of the first user.

[0087] Based on the above technical solution, the navigation prompt module 330 may include:

[0088] A navigation prompt information determination submodule, configured to generate navigation prompt information corresponding to the scenic spot check-in task based on the check-in path and the real-time location information of the first user;

[0089] The navigation prompt submodule is used to provide navigation prompts to the first user based on the navigation mode and the navigation prompt information.

[0090] Based on the above technical solution, the navigation prompt submodule is specifically used for: if the navigation mode is a vibration navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the vibration navigation mode, and a vibration navigation prompt is given to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a projection navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the projection navigation mode, and a projection navigation prompt is given to the first user based on the navigation prompt instruction; and / or, if the navigation mode is a voice navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the voice navigation mode, and a voice navigation prompt is given to the first user based on the navigation prompt instruction.

[0091] On the basis of the above technical solution, the scenic spot check-in result determination module 340 is specifically used for: if the preset check-in condition is a close-range check-in condition, then when the first user's check-in operation meets the close-range check-in condition, the current scenic spot is marked as a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a task check-in condition, then when the first user's check-in operation meets the task check-in condition, the current scenic spot is marked as a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, if the preset check-in condition is a time limit check-in condition, then when the first user's check-in operation meets the time limit check-in condition, the current scenic spot is marked as a check-in completion state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user.

[0092] On the basis of the above technical solution, the device further includes:

[0093] The check-in path update module is used to plan the path based on the newly acquired flow of people data corresponding to the scenic spot area to which the unchecked-in scenic spot belongs, if it is detected that there are unchecked-in scenic spots in the scenic spot check-in results, and update the check-in path of the first user in the target scenic spot.

[0094] Based on the above technical solution, the check-in path determination module 320 is specifically used to: structure the scenic area map based on the scenic spot check-in tasks and crowd flow data, and construct a weighted directed graph; the nodes in the weighted directed graph include: high-flow scenic spots, low-flow scenic spots and key path points; the weights corresponding to the edges in the weighted directed graph include physical distance and estimated travel time; analyze and process the scenic spot check-in method to determine the path planning constraints; determine the check-in path of the first user in the target scenic spot based on the preset multi-objective optimization algorithm, weighted directed graph and path planning constraints.

[0095] The scenic spot check-in device provided in the embodiment of the present invention can execute the scenic spot check-in method provided in any embodiment of the present invention, and has the corresponding functional modules and beneficial effects of executing the scenic spot check-in method.

[0096] It is worth noting that in the above-mentioned embodiment of scenic spot check-in, the various units and modules included are only divided according to functional logic, but are not limited to the above-mentioned division, as long as the corresponding functions can be achieved; in addition, the specific names of the functional units are only for the convenience of distinguishing each other, and are not used to limit the scope of protection of the present invention.

[0097] Example 4

[0098] Figure 4 A schematic diagram of the structure of an electronic device 10 that can be used to implement an embodiment of the present invention is shown. The electronic device is intended to represent various forms of digital computers, such as laptop computers, desktop computers, workstations, personal digital assistants, servers, blade servers, mainframe computers, and other suitable computers. The electronic device can also represent various forms of mobile devices, such as personal digital processing, cellular phones, smart phones, wearable devices (such as helmets, glasses, watches, etc.) and other similar computing devices. The components shown herein, their connections and relationships, and their functions are merely examples and are not intended to limit the implementation of the present invention described and / or claimed herein.

[0099] like Figure 4 As shown, the electronic device 10 includes at least one processor 11 and a memory, such as a read-only memory (ROM) 12, a random access memory (RAM) 13, etc., which is communicatively connected to the at least one processor 11. The memory stores a computer program that can be executed by the at least one processor. The processor 11 can perform various appropriate actions and processes according to the computer program stored in the read-only memory (ROM) 12 or the computer program loaded from the storage unit 18 into the random access memory (RAM) 13. Various programs and data required for the operation of the electronic device 10 can also be stored in the RAM 13. The processor 11, ROM 12, and RAM 13 are connected to each other via a bus 14. An input / output (I / O) interface 15 is also connected to the bus 14.

[0100] Multiple components in the electronic device 10 are connected to the I / O interface 15, including an input unit 16, such as a keyboard, a mouse, etc.; an output unit 17, such as various types of displays, speakers, etc.; a storage unit 18, such as a magnetic disk, an optical disk, etc.; and a communication unit 19, such as a network card, a modem, a wireless communication transceiver, etc. The communication unit 19 allows the electronic device 10 to exchange information / data with other devices via a computer network such as the Internet and / or various telecommunication networks.

[0101] The processor 11 can be any general-purpose and / or specialized processing component with processing and computing capabilities. Some examples of the processor 11 include, but are not limited to, a central processing unit (CPU), a graphics processing unit (GPU), various specialized artificial intelligence (AI) computing chips, various processors running machine learning model algorithms, a digital signal processor (DSP), and any other suitable processor, controller, microcontroller, etc. The processor 11 executes the various methods and processes described above, such as the scenic spot check-in method.

[0102] In some embodiments, the attraction check-in method can be implemented as a computer program tangibly contained in a computer-readable storage medium, such as storage unit 18. In some embodiments, part or all of the computer program can be loaded and / or installed on electronic device 10 via ROM 12 and / or communication unit 19. When the computer program is loaded into RAM 13 and executed by processor 11, one or more steps of the attraction check-in method described above can be performed. Alternatively, in other embodiments, processor 11 can be configured to execute the attraction check-in method in any other appropriate manner (e.g., via firmware).

[0103] Various embodiments of the systems and techniques described herein can be implemented in digital electronic circuit systems, integrated circuit systems, field programmable gate arrays (FPGAs), application specific integrated circuits (ASICs), application specific standard products (ASSPs), system-on-chip systems (SOCs), programmable logic devices (CPLDs), computer hardware, firmware, software, and / or combinations thereof. These various embodiments can include being implemented in one or more computer programs that are executable and / or interpreted on a programmable system that includes at least one programmable processor, which can be a special purpose or general purpose programmable processor that can receive data and instructions from a storage system, at least one input device, and at least one output device, and transmit data and instructions to the storage system, the at least one input device, and the at least one output device.

[0104] Computer programs for implementing the methods of the present invention may be written in any combination of one or more programming languages. These computer programs may be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing device, such that when the computer program is executed by the processor, the functions / operations specified in the flowcharts and / or block diagrams are implemented. The computer program may be executed entirely on the machine, partially on the machine, as a stand-alone software package, partially on the machine and partially on a remote machine, or entirely on a remote machine or server.

[0105] In the context of the present invention, computer-readable storage media can be tangible media that can contain or store a computer program for use with an instruction execution system, device or equipment or used in combination with an instruction execution system, device or equipment. Computer-readable storage media can include but are not limited to electronic, magnetic, optical, electromagnetic, infrared or semiconductor systems, devices or equipment, or any suitable combination of the foregoing. Alternatively, computer-readable storage media can be machine-readable signal media. More specific examples of machine-readable storage media can include electrical connections based on one or more lines, portable computer disks, hard disks, random access memories (RAM), read-only memories (ROM), erasable programmable read-only memories (EPROM or flash memory), optical fibers, portable compact disk read-only memories (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the foregoing.

[0106] To provide interaction with a user, the systems and techniques described herein can be implemented on an electronic device having: a display device (e.g., a CRT (cathode ray tube) or LCD (liquid crystal display) monitor) for displaying information to the user; and a keyboard and pointing device (e.g., a mouse or trackball) through which the user can provide input to the electronic device. Other types of devices can also be used to provide interaction with the user; for example, the feedback provided to the user can be any form of sensory feedback (e.g., visual feedback, auditory feedback, or tactile feedback); and input from the user can be received in any form (including acoustic input, voice input, or tactile input).

[0107] The systems and techniques described herein can be implemented in a computing system that includes back-end components (e.g., as a data server), or a computing system that includes middleware components (e.g., an application server), or a computing system that includes front-end components (e.g., a user computer with a graphical user interface or web browser through which a user can interact with implementations of the systems and techniques described herein), or a computing system that includes any combination of such back-end components, middleware components, or front-end components. The components of the system can be interconnected by any form or medium of digital data communication (e.g., a communication network). Examples of communication networks include: a local area network (LAN), a wide area network (WAN), a blockchain network, and the Internet.

[0108] A computing system may include clients and servers. The clients and servers are typically remote from each other and typically interact via a communication network. This client-server relationship arises through computer programs running on the respective computers, creating a client-server relationship. The server may be a cloud server, also known as a cloud computing server or cloud host. This server is a hosting product within the cloud computing service ecosystem that addresses the management difficulties and limited scalability of traditional physical hosting and VPS services.

[0109] An embodiment of the present invention further provides a computer program product, including a computer program, which, when executed by a processor, implements the scenic spot check-in method provided in any embodiment of the present application.

[0110] During the implementation of the computer program product, the computer program code for performing the operations of the present invention can be written in one or more programming languages ​​or a combination thereof, including object-oriented programming languages ​​such as Java, Smalltalk, C++, and also conventional procedural programming languages ​​such as "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, as an independent software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving remote computers, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or it can be connected to an external computer (for example, using an Internet service provider to connect through the Internet). This program product and the scenic spot check-in method disclosed in each embodiment of the present application belong to the same inventive concept, so they will not be repeated here.

[0111] It should be understood that the various forms of the processes shown above can be used to reorder, add, or delete steps. For example, the steps described in the present invention can be performed in parallel, sequentially, or in a different order, as long as the desired results of the technical solution of the present invention can be achieved. This is not limited herein.

[0112] The above specific embodiments do not limit the scope of protection of the present invention. Those skilled in the art will appreciate that various modifications, combinations, sub-combinations, and substitutions may be made based on design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention are intended to be included within the scope of protection of the present invention.

Claims

1. A method for checking in at a scenic spot, characterized in that: include: If it is detected that the first user enters the target scenic spot, a scenic spot map corresponding to the target scenic spot, traffic data corresponding to each scenic spot area in the target scenic spot, a scenic spot check-in task set by the second user for the target scenic spot, a scenic spot check-in method selected by the first user or the second user, and a navigation method selected by the first user are obtained; performing path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task to determine the check-in path of the first user within the target scenic spot; Providing navigation prompts to the first user based on the navigation method, the check-in path, and the real-time location information of the first user; If it is detected that the first user is within the check-in range of the scenic spot, the scenic spot check-in result of the first user is determined based on the preset check-in conditions and the check-in operation of the first user.

2. The method according to claim 1, characterized in that Providing navigation prompts to the first user based on the navigation mode, the check-in path, and the real-time location information of the first user includes: Generate navigation prompt information corresponding to the scenic spot check-in task based on the check-in path and the real-time location information of the first user; Providing a navigation prompt to the first user based on the navigation mode and the navigation prompt information.

3. The method according to claim 2, characterized in that Providing a navigation prompt to the first user based on the navigation mode and the navigation prompt information includes: If the navigation mode is a vibration navigation mode, converting the navigation prompt information into a navigation prompt instruction under the vibration navigation mode, and performing a vibration navigation prompt to the first user based on the navigation prompt instruction; and / or, If the navigation mode is a projection navigation mode, converting the navigation prompt information into a navigation prompt instruction under the projection navigation mode, and performing a projection navigation prompt to the first user based on the navigation prompt instruction; and / or, If the navigation mode is a voice navigation mode, the navigation prompt information is converted into a navigation prompt instruction under the voice navigation mode, and a voice navigation prompt is given to the first user based on the navigation prompt instruction.

4. The method according to claim 1, wherein The determining of the first user's scenic spot check-in result based on the preset check-in condition and the first user's check-in operation includes: If the preset check-in condition is a close-range check-in condition, then when the first user's check-in operation meets the close-range check-in condition, the current scenic spot is marked as being in a check-in completed state, and the first user's scenic spot check-in result is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, If the preset check-in condition is a task check-in condition, then when the check-in operation of the first user meets the task check-in condition, the current scenic spot is marked as a check-in completed state, and the scenic spot check-in result of the first user is determined based on the check-in status of each scenic spot corresponding to the first user; and / or, If the preset check-in condition is a time limit check-in condition, when the check-in operation of the first user meets the time limit check-in condition, the current scenic spot will be marked as the check-in completed state, and the scenic spot check-in result of the first user will be determined based on the check-in status of each scenic spot corresponding to the first user.

5. The method according to claim 1, wherein After determining the check-in result of the scenic spot, the method further includes: If it is detected that there are unchecked-in attractions in the scenic spot check-in results, path planning is performed based on the newly acquired traffic data corresponding to the scenic spot area to which the unchecked-in attractions belong, and the check-in path of the first user in the target scenic spot is updated.

6. The method according to claim 1, characterized in that The performing of path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task to determine the check-in path of the first user in the target scenic spot includes: The scenic area map is structured based on the scenic spot check-in task and the crowd flow data to construct a weighted directed graph; the nodes in the weighted directed graph include: high-traffic scenic spots, low-traffic scenic spots, and key path points; the weights corresponding to the edges in the weighted directed graph include physical distance and estimated travel time; Analyze and process the check-in method of the scenic spot to determine the path planning constraints; Based on a preset multi-objective optimization algorithm, the weighted directed graph, and the path planning constraints, a check-in path for the first user in the target scenic area is determined.

7. A scenic spot check-in device, characterized in that: The device comprises: An information acquisition module, configured to, upon detecting that a first user has entered a target scenic spot, acquire a scenic spot map corresponding to the target scenic spot, crowd flow data corresponding to each scenic spot area in the target scenic spot, a scenic spot check-in task set by a second user for the target scenic spot, a scenic spot check-in method selected by the first user or the second user, and a navigation method selected by the first user; a check-in path determination module, configured to perform path planning based on the scenic spot check-in method, the scenic spot map, the crowd flow data, and the scenic spot check-in task, and determine the check-in path of the first user within the target scenic spot; a navigation prompt module, configured to provide navigation prompts to the first user based on the navigation mode, the check-in path, and the real-time location information of the first user; The scenic spot check-in result determination module is used to determine the scenic spot check-in result of the first user based on preset check-in conditions and the check-in operation of the first user if it is detected that the first user is within the scenic spot check-in range.

8. An electronic device, characterized in that: The electronic device comprises: one or more processors; a memory for storing one or more programs; When the one or more programs are executed by the one or more processors, the one or more processors implement the scenic spot check-in method as described in any one of claims 1-6.

9. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the scenic spot check-in method as described in any one of claims 1 to 6 is implemented.

10. A computer program product comprising a computer program, characterized in that When the computer program is executed by a processor, the method for checking in at a scenic spot as described in any one of claims 1 to 6 is implemented.