Game path guiding method and system

By receiving tourists' check-in and taking photos with monitoring screen analysis, path guidance information is generated, and the problem of inefficiency in the existing technology when looking for photos and taking photos is solved, achieving a more efficient and personalized gaming experience.

CN120128682APending Publication Date: 2025-06-10MOUTAI INST
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Patent Information

Application Number
CN202510333070.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-06-10

AI Technical Summary

Technical Problem

The existing tourist attractions lack guidance on the check-in and photo spots in terms of guided tour paths, and cannot plan the best play paths for tourists based on the crowding of check-in and the personalized needs of tourists, resulting in low efficiency and poor shooting results when looking for check-in and photo spots.

Method used

By receiving the style information of tourists’ check-in and take photos, we determine the appropriate photos and take photos, and use the monitoring screen to analyze and predict the queue time of each photos and take photos, generating path guidance information to help tourists visit efficiently. At the same time, we monitor the location of tourists in real time and provide check-in and photo guidance information to help tourists take better photos.

Benefits of technology

It improves tourists' satisfaction with the check-in and photo spots, improves the convenience and efficiency of the travel experience, and provides a more personalized, efficient and high-quality gaming experience.

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Abstract

The invention is suitable for the technical field of path guiding, and provides a playing path guiding method and system, and the method comprises the following steps: receiving clock-in and photographing style information, and determining a plurality of clock-in and photographing points based on the clock-in and photographing style information; determining a camera number group according to a card punching photographing point, and calling a monitoring picture group corresponding to the camera number group; analyzing the monitoring picture group, and predicting the queuing duration of each clock-in photographing point; generating path guide information according to the current position of the tourist, the position of each card punching and photographing point and the queuing duration; and monitoring the position of the tourist in real time, and when the position of the tourist is at a card punching and photographing point, generating card punching and photographing guidance information. The card punching and photographing style preference of tourists is fully considered, the card punching and photographing guidance information is provided, and the satisfaction degree of card punching and photographing is improved. The tourist is helped to efficiently visit each card punching and photographing point through the path guiding information, and the convenience and experience of tourism are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of path guidance, and specifically relates to a method and system for guiding a play path. Background Art

[0002] At present, with the booming development of the tourism industry, tourists' requirements for tourism experiences are increasing day by day, and taking photos at check-in spots has become an essential part of the tourism process. Currently, in terms of guiding play paths, most tourist attractions mainly rely on traditional signposts, tour guide explanations, or simple map navigation to provide direction guidance for tourists. However, these methods lack guidance for check-in photo spots, do not consider the real-time queuing situation, and cannot plan the optimal play path for tourists according to the congestion degree of check-in photo spots and tourists' personalized needs. Tourists often have to blindly search for check-in photo spots in the scenic area. When they encounter a situation where the queue is too long, they can only wait helplessly or change their plans temporarily. At the same time, during the process of taking photos at check-in spots, tourists may not be able to take satisfactory photos due to a lack of professional photography skills and understanding of the surrounding environment of the check-in photo spots. Therefore, there is a need to provide a method and system for guiding a play path to solve the above problems. Summary of the Invention

[0003] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a method and system for guiding a play path to solve the problems existing in the above background art.

[0004] The present invention is implemented as follows. A method for guiding a play path, the method includes the following steps: Receive check-in photo style information, and determine a number of check-in photo spots based on the check-in photo style information; Determine a camera number group according to the check-in photo spots, and retrieve the corresponding monitoring video group of the camera number group; Analyze the monitoring video group to predict the queuing duration of each check-in photo spot; Generate path guidance information according to the current position of the tourist, the position of each check-in photo spot, and the queuing duration; Monitor the tourist's position in real time. When the tourist's position is at a check-in photo spot, generate check-in photo guidance information.

[0005] As a further solution of the present invention: the step of determining a number of check-in photo spots based on the check-in photo style information specifically includes: Extract a number of photo styles from the check-in photo style information, and input the photo styles into the check-in photo library; Match the photo styles with the check-in photo spots in the check-in photo library, and output a number of check-in photo spots.

[0006] As a further solution of the present invention: The step of analyzing the monitoring video group and predicting the queuing duration at each check-in and photo-taking point specifically includes: Retrieve the queuing area monitoring video in the monitoring video group, determine the queuing area, and identify the queuing length in the queuing area; Retrieve the scenic area monitoring video in the monitoring video group and identify the crowd density in the scenic area monitoring video; Predict the number of people taking photos based on the queuing length and crowd density, retrieve the unit photo-taking duration of the check-in and photo-taking point, and determine the queuing duration according to the predicted number of people taking photos and the unit photo-taking duration.

[0007] As a further solution of the present invention: The step of generating path guidance information according to the current location of the tourist, the location of each check-in and photo-taking point, and the queuing duration specifically includes: Retrieve the queuing duration change trend information of each check-in and photo-taking point and calculate the moving time from each check-in and photo-taking point to the current location of the tourist; Determine the estimated waiting duration when the tourist arrives according to the current time, the moving time, the queuing duration, and the queuing duration change trend information; Recommend the next check-in and photo-taking point according to the moving time and the estimated waiting duration, and generate path guidance information.

[0008] As a further solution of the present invention: The step of generating check-in and photo-taking guidance information specifically includes: Retrieve the check-in and photo-taking sample photos and recommended composition information according to the check-in and photo-taking point, and shooting parameter information is marked on each check-in and photo-taking sample photo; Receive the photo-taking assistance instruction input by the tourist, and the photo-taking assistance instruction includes paid assistance and free assistance; Send the photo-taking assistance instruction to the accounts of people near the current photo-taking point; Receive the confirmation assistance instruction and send the account information of the account that issued the confirmation assistance instruction to the tourist account.

[0009] As a further solution of the present invention: The method further includes: Monitor the tourist's location in real time, and generate a lecture prompt pop-up window when the tourist's location is at the lecture point; Receive the lecture feedback instruction input by the tourist, and the lecture feedback instruction is detailed lecture, concise lecture or skip lecture.

[0010] Another object of the present invention is to provide a play path guidance system, and the system includes: A check-in and photo-taking point determination module, which is used to receive the check-in and photo-taking style information and determine several check-in and photo-taking points based on the check-in and photo-taking style information; The monitoring screen group retrieval module is used to determine the camera number group according to the clock-in and photo-taking points, and retrieve the corresponding monitoring screen group of the camera number group; The queuing duration prediction module is used to analyze the monitoring screen group and predict the queuing duration of each clock-in and photo-taking point; The path guidance generation module is used to generate path guidance information according to the current position of the tourist, the position of each clock-in and photo-taking point, and the queuing duration; The clock-in and photo-taking guidance module is used to monitor the tourist's position in real time, and generate clock-in and photo-taking guidance information when the tourist's position is at the clock-in and photo-taking point.

[0011] As a further solution of the present invention: the queuing duration prediction module includes: The queuing length recognition unit is used to retrieve the queuing area monitoring screen in the monitoring screen group, determine the queuing area, and recognize the queuing length in the queuing area; The crowd density recognition unit is used to retrieve the scenic area monitoring screen in the monitoring screen group and recognize the crowd density in the scenic area monitoring screen; The queuing duration determination unit is used to predict the number of people taking photos based on the queuing length and crowd density, retrieve the unit photo-taking duration of the clock-in and photo-taking point, and determine the queuing duration according to the predicted number of people taking photos and the unit photo-taking duration.

[0012] As a further solution of the present invention: the path guidance generation module includes: The moving time calculation unit is used to retrieve the queuing duration change trend information of each clock-in and photo-taking point and calculate the moving time from each clock-in and photo-taking point to the tourist's current position; The estimated waiting duration unit is used to determine the estimated waiting duration when the tourist arrives according to the current time, the moving time, the queuing duration, and the queuing duration change trend information; The path guidance information unit is used to recommend the next clock-in and photo-taking point according to the moving time and the estimated waiting duration, and generate path guidance information.

[0013] As a further solution of the present invention: the clock-in and photo-taking guidance module includes: The composition parameter display unit is used to retrieve the clock-in and photo-taking sample pictures and recommended composition information according to the clock-in and photo-taking point, and the shooting parameter information is marked on each clock-in and photo-taking sample picture; The photo-taking assistance instruction unit is used to receive the photo-taking assistance instruction input by the tourist, and the photo-taking assistance instruction includes paid assistance and free assistance; The assistance instruction sending unit is used to send the photo-taking assistance instruction to the account of the person near the current photo-taking point; The account information sending unit is used to receive the confirmation assistance instruction and send the account information of the person who issued the confirmation assistance instruction to the tourist account.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention determines a number of check-in photo-taking points according to the check-in photo-taking style information, and the check-in photo-taking points are adapted to the photo-taking styles in the check-in photo-taking style information, fully considering the check-in photo-taking style preferences of tourists, and improving the satisfaction of check-in photo-taking. By analyzing the monitoring video group, the queuing duration of each check-in photo-taking point is predicted, and path guidance information is generated according to the current position of the tourist, the position of each check-in photo-taking point, and the queuing duration, helping tourists visit each check-in photo-taking point efficiently and enhancing the convenience and experience of tourism. In addition, the tourist's position is also monitored in real time. When the tourist's position is at the check-in photo-taking point, check-in photo-taking guidance information is generated to guide the tourist to compose pictures accurately and integrate the surrounding characteristic elements into the photos, providing a more personalized, efficient, and high-quality play experience for tourists. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a flowchart of a play path guidance method; Figure 2 is a flowchart of determining a number of check-in photo-taking points in a play path guidance method; Figure 3 is a flowchart of predicting the queuing duration of each check-in photo-taking point in a play path guidance method; Figure 4 is a flowchart of generating path guidance information in a play path guidance method; Figure 5 is a flowchart of generating check-in photo-taking guidance information in a play path guidance method; Figure 6 is a flowchart of generating an explanation prompt pop-up window in a play path guidance method; Figure 7 is a schematic structural diagram of a play path guidance system. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] In order to make the objectives, technical solutions, and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0017] The following describes the specific implementation of the present invention in detail with reference to specific embodiments.

[0018] As Figure 1 shown, an embodiment of the present invention provides a play path guidance method, and the method includes the following steps: S100, receiving check-in photo-taking style information, and determining a number of check-in photo-taking points based on the check-in photo-taking style information; S200, determining a camera number group according to the check-in photo point, and retrieving a monitoring screen group corresponding to the camera number group; S300, analyzes the monitoring screen group and predicts the queue time for each check-in and photo-taking point; S400, generating path guidance information according to the current location of the tourist, the location of each check-in and photo-taking point, and the queue time; S500, real-time monitoring of the tourist's location is performed, and when the tourist is at a check-in and photo-taking point, check-in and photo-taking guidance information is generated.

[0019] It should be noted that tourists often want to leave beautiful moments at popular attractions or distinctive check-in photo spots, share them on social media, record their travel experiences and show them to friends and family. At present, scenic spots lack guidance on check-in photo spots, lack real-time consideration of queuing conditions, and cannot plan the best travel route for tourists based on the congestion of check-in photo spots and the personalized needs of tourists (such as check-in photo style preferences). Tourists can often only blindly look for check-in photo spots in scenic spots. When they encounter too many people queuing, they can only wait helplessly or change their plans temporarily, resulting in low travel efficiency. At the same time, during the check-in photo process, tourists may not be able to take satisfactory photos due to lack of professional shooting skills and understanding of the surrounding environment of the check-in photo spot. For example, it is unclear about the best shooting angle and how to integrate the characteristic elements around the check-in photo spot into the photo, which greatly reduces the tourists' check-in photo experience. The embodiments of the present invention are intended to solve the above problems.

[0020] In the embodiment of the present invention, the scenic spot needs to formulate a small program, and tourists need to authorize the small program for real-time location. The small program has a built-in electronic map of the scenic spot. In the small program, tourists can upload punch-in photo style information, which includes one or more photo styles, such as fresh and natural style, retro literary style, fashionable and trendy style, sports and vitality style, etc. The embodiment of the present invention will automatically determine several punch-in photo points according to the punch-in photo style information. These punch-in photo points are adapted to the photo styles in the punch-in photo style information, fully considering the tourists' punch-in photo style preferences, and improving the satisfaction of punch-in photo. Then, the embodiment of the present invention will determine the camera number group according to the punch-in photo point. The relationship between the punch-in photo point and the camera number group needs to be formulated in advance. The camera corresponding to the camera number group is set at the punch-in photo point, and the monitoring screen group corresponding to the camera number group is retrieved. Then, the monitoring screen group is analyzed to predict the queue time of each punch-in photo point. Then, the path guidance information will be automatically generated according to the current location of the tourist, the location of each punch-in photo point, and the queue time, helping tourists to efficiently visit each punch-in photo point, thereby improving the convenience and experience of tourism. In addition, the tourists' locations will be monitored in real time. When tourists are at a check-in and photo-taking point, check-in and photo-taking guidance information will be generated to guide tourists to accurately compose their pictures and incorporate surrounding characteristic elements into their photos, providing tourists with a more personalized, efficient and high-quality travel experience.

[0021] like Figure 2 As shown, as a preferred embodiment of the present invention, the step of determining a plurality of check-in and photo-taking points based on the check-in and photo-taking style information specifically includes: S101, extracting a plurality of photographing styles from the check-in photographing style information, and inputting the photographing styles into a check-in photographing library; S102, matching the photographing style with the check-in photographing points in the check-in photographing library, and outputting a plurality of check-in photographing points.

[0022] In the embodiment of the present invention, a check-in photo library is constructed in advance, and the check-in photo library contains all the check-in photo points in the scenic area, and each check-in photo point corresponds to one or more photo styles. The embodiment of the present invention automatically extracts all photo styles in the check-in photo style information, and performs style matching between the photo styles and the check-in photo points in the check-in photo library. When any photo style corresponding to the check-in photo point is the same as the extracted photo style, it is considered to be matched successfully, and a number of matching check-in photo points are output.

[0023] like Figure 3 As shown, as a preferred embodiment of the present invention, the step of analyzing the monitoring screen group and predicting the queue time of each check-in photo point specifically includes: S301, calling the queuing area monitoring picture in the monitoring picture group, determining the queuing area, and identifying the queue length in the queuing area; S302, calling up the scenic area monitoring picture in the monitoring picture group, and identifying the crowd density in the scenic area monitoring picture; S303, predicting the number of people taking photos based on the queue length and crowd density, retrieving the unit photo taking time of the check-in photo taking point, and determining the queue time according to the predicted number of people taking photos and the unit photo taking time.

[0024] In the embodiment of the present invention, each camera number group has two camera numbers corresponding to two cameras, one camera is used to collect the monitoring screen of the queue area, and the other camera is used to collect the monitoring screen of the scenic area. In order to avoid the confusion caused by punching in and taking pictures, each punching in and taking pictures point is correspondingly provided with a queue area. The queue area can be determined through the monitoring screen of the queue area, and the queue length in the queue area can be automatically identified. It is easy to understand that tourists who play at the scenic spot to which the punching in and taking pictures point belongs may also punch in and take pictures later. Therefore, the embodiment of the present invention will also identify the crowd density in the monitoring screen of the scenic area. Here, the crowd density can be obtained by the frame difference method. The principle of the frame difference method is to detect the moving target by calculating the difference between two adjacent frames of images. Since pedestrians are moving in the monitoring screen, there will be obvious differences between two adjacent frames. The specific steps are: calculating the difference image of two adjacent frames of images; binarizing the difference image to obtain a binary image; performing connected area analysis on the binary image to extract the moving target; counting the pixel area or number of the moving target to calculate the crowd density. Finally, the embodiment of the present invention predicts the number of people taking photos based on the queue length and crowd density: the predicted number of people taking photos = K1×queue length + K2×crowd density, where K1 and K2 are constant coefficients. The unit photo duration of the punch-in photo point is then retrieved, and the queue duration is obtained by multiplying the predicted number of people taking photos by the unit photo duration, where the unit photo duration is a preset constant.

[0025] like Figure 4 As shown, as a preferred embodiment of the present invention, the step of generating path guidance information according to the current location of the tourist, the location of each check-in and photo-taking point, and the queuing time specifically includes: S401, retrieve the queue time change trend information of each check-in and photo-taking point, and calculate the travel time from each check-in and photo-taking point to the current location of the tourist; S402, determining the estimated waiting time when the tourist arrives based on the current time, the travel time, the queue time, and the queue time change trend information; S403, recommending the next check-in and photo-taking point based on the travel time and the estimated waiting time, and generating path guidance information.

[0026] In the embodiment of the present invention, it is necessary to construct queue time change trend information based on the historical data of each check-in and photo-taking point in advance. The queue time change trend information reflects the rate of change of the queue time at the next moment compared to the queue time at the previous moment during the scenic area opening period. The embodiment of the present invention calculates the travel time from each check-in and photo-taking point to the current location of the tourist. In this way, the estimated waiting time when the tourist arrives is determined based on the current time, travel time, queue time, and queue time change trend information. Finally, the next check-in and photo-taking point is recommended based on the result of the travel time plus the estimated waiting time, and path guidance information is generated so that tourists can check in and take photos as soon as possible.

[0027] like Figure 5 As shown, as a preferred embodiment of the present invention, the step of generating punch-in photo guidance information specifically includes: S501, retrieve check-in photo samples and recommended composition information according to the check-in photo point, each check-in photo sample is marked with shooting parameter information; S502, receiving a photo assistance instruction input by a tourist, wherein the photo assistance instruction includes paid assistance and free assistance; S503, sending a photo assistance instruction to an account of a person near the current photo taking point; S504, receiving a confirmation assistance instruction, and sending the account information that issued the confirmation assistance instruction to the visitor account.

[0028] In the embodiment of the present invention, a punch-in photo sample and recommended composition information are provided for each punch-in photo point in advance. The punch-in photo sample can be obtained by hiring a professional photography team to shoot. Each punch-in photo sample is marked with shooting parameter information, such as focal length, aperture, ISO, shutter speed, etc., for tourists to refer to. The recommended composition information can help tourists quickly find the shooting angle and how to integrate the surrounding characteristic elements into the photo. When it is detected that the tourist is at the punch-in photo point, the corresponding punch-in photo sample and recommended composition information will be automatically retrieved. In addition, tourists can also input a photo assistance instruction through the applet, and the photo assistance instruction includes paid assistance and free assistance. The embodiment of the present invention will send the photo assistance instruction to the account of people near the current photo point, such as the user account of the applet within 50 meters of the tourist. When a user is willing to help, enter the confirmation assistance instruction. The embodiment of the present invention will send the account information of the confirmation assistance instruction to the tourist account. The tourist clicks on the account information, and a dialog box will be generated, so that the helper can communicate with the helper, and the social attribute is stronger.

[0029] like Figure 6 As shown, as a preferred embodiment of the present invention, the method further includes: S601, real-time monitoring of the tourist's location, when the tourist is at the explanation point, generating an explanation prompt pop-up window; S602, receiving an explanation feedback instruction input by a tourist, wherein the explanation feedback instruction is a detailed explanation, a concise explanation or skipping the explanation.

[0030] In the embodiment of the present invention, the tourist position is also monitored in real time. When the tourist is at the explanation point, a pop-up window is generated to prevent the tourist from manually operating or missing key information, thereby enhancing the smoothness and immersion of the tour. In addition, personalized selection is provided, providing three feedback options of "detailed / concise / skip" to meet the needs of different tourists for information depth and improve satisfaction.

[0031] like Figure 7 As shown, an embodiment of the present invention further provides a game path guidance system, the system comprising: A check-in photo point determination module 100 is used to receive check-in photo style information and determine a number of check-in photo points based on the check-in photo style information; The monitoring screen group retrieval module 200 is used to determine the camera number group according to the check-in photo point, and retrieve the monitoring screen group corresponding to the camera number group; The queue length prediction module 300 is used to analyze the monitoring screen group and predict the queue length of each check-in and photo-taking point; A path guidance generation module 400 is used to generate path guidance information according to the current location of the tourist, the location of each check-in and photo-taking point, and the queue time; The check-in and photo-taking guidance module 500 is used to monitor the tourist's location in real time, and generate check-in and photo-taking guidance information when the tourist is at a check-in and photo-taking point.

[0032] As a preferred embodiment of the present invention, the queuing duration prediction module 300 includes: A queue length identification unit is used to retrieve the queue area monitoring picture in the monitoring picture group, determine the queue area, and identify the queue length in the queue area; A crowd density recognition unit is used to retrieve the scenic area monitoring picture in the monitoring picture group and recognize the crowd density in the scenic area monitoring picture; The queuing time determination unit is used to predict the number of people taking photos based on the queue length and crowd density, retrieve the unit photo taking time of the punch-in photo point, and determine the queuing time according to the predicted number of people taking photos and the unit photo taking time.

[0033] As a preferred embodiment of the present invention, the path guidance generation module 400 includes: A travel time calculation unit is used to retrieve the queue time change trend information of each check-in and photo-taking point, and calculate the travel time from each check-in and photo-taking point to the current location of the tourist; An estimated waiting time unit is used to determine the estimated waiting time when a tourist arrives based on the current time, travel time, queue time, and queue time change trend information; The path guidance information unit is used to recommend the next check-in and photo-taking point based on the travel time and the estimated waiting time, and generate path guidance information.

[0034] As a preferred embodiment of the present invention, the punch-in and photo-taking guidance module 500 includes: A composition parameter display unit, used to retrieve the check-in photo sample and recommended composition information according to the check-in photo point, each check-in photo sample is marked with shooting parameter information; A photo assistance instruction unit, used to receive a photo assistance instruction input by a tourist, wherein the photo assistance instruction includes paid assistance and free assistance; An assistance instruction sending unit, used to send a photo assistance instruction to an account of a person near the current photo taking point; The account information sending unit is used to receive the confirmation assistance instruction and send the account information of issuing the confirmation assistance instruction to the tourist account.

[0035] The above only describes in detail the preferred embodiments of the present invention, which is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

[0036] It should be understood that, although each step in the flow chart of each embodiment of the present invention is shown in sequence according to the indication of the arrow, these steps are not necessarily performed in sequence according to the order indicated by the arrow. Unless there is a clear explanation in this article, the execution of these steps does not have a strict order restriction, and these steps can be performed in other orders. Moreover, at least a portion of the steps in each embodiment may include a plurality of sub-steps or a plurality of stages, and these sub-steps or stages are not necessarily performed at the same time, but can be performed at different times, and the execution order of these sub-steps or stages is not necessarily performed in sequence, but can be performed in turn or alternately with at least a portion of other steps or sub-steps or stages of other steps.

[0037] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by instructing the relevant hardware through a computer program, and the program can be stored in a non-volatile computer-readable storage medium. When the program is executed, it can include the processes of the embodiments of the above-mentioned methods. Among them, any reference to memory, storage, database or other media used in the embodiments provided in this application may include non-volatile and / or volatile memory. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. As an illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM).

[0038] Those skilled in the art will readily appreciate other embodiments of the present disclosure after considering the disclosure in the specification and examples. This application is intended to cover any variations, uses or adaptations of the present disclosure, which follow the general principles of the present disclosure and include common knowledge or customary techniques in the art that are not disclosed in the present disclosure. The specification and examples are intended to be exemplary only, and the true scope and spirit of the present disclosure are indicated by the claims.

Claims

1. A method for guiding a game path, characterized in that: The method comprises the following steps: Receiving check-in photo style information, and determining a number of check-in photo points based on the check-in photo style information; Determine the camera number group according to the check-in photo point, and retrieve the monitoring screen group corresponding to the camera number group; Analyze the surveillance images to predict the queue time at each check-in and photo-taking point; Generate route guidance information based on the current location of tourists, the location of each check-in and photo-taking point, and the length of queue; The tourist location is monitored in real time, and when the tourist is at a check-in and photo-taking point, check-in and photo-taking guidance information is generated.

2. The game path guidance method according to claim 1, characterized in that: The step of determining a plurality of check-in and photo-taking points based on the check-in and photo-taking style information specifically includes: Extracting several photographing styles from the check-in photographing style information, and inputting the photographing styles into the check-in photographing library; The photographing style is matched with the check-in photographing points in the check-in photographing library, and a plurality of check-in photographing points are output.

3. The game path guidance method according to claim 1, characterized in that: The step of analyzing the monitoring screen group and predicting the queue time of each check-in and photo-taking point specifically includes: Retrieve the queue area monitoring screen in the monitoring screen group, determine the queue area, and identify the queue length in the queue area; Retrieving the scenic area monitoring screen in the monitoring screen group, and identifying the crowd density in the scenic area monitoring screen; The number of people taking photos is predicted based on the queue length and crowd density, the unit photo taking time of the punch-in photo point is retrieved, and the queue time is determined according to the predicted number of people taking photos and the unit photo taking time.

4. The game path guidance method according to claim 1, characterized in that: The step of generating path guidance information according to the current location of the tourist, the location of each check-in and photo-taking point, and the queue time specifically includes: Retrieve the queue time change trend information of each check-in and photo-taking point, and calculate the travel time from each check-in and photo-taking point to the tourist’s current location; Determine the expected waiting time when the visitor arrives based on the current time, travel time, queue time, and queue time change trend information; Recommend the next check-in and photo-taking spot based on the travel time and estimated waiting time, and generate path guidance information.

5. The game path guidance method according to claim 1, characterized in that: The step of generating the punch-in photo taking guidance information specifically includes: Retrieving check-in photo samples and recommended composition information according to the check-in photo point, each check-in photo sample is marked with shooting parameter information; receiving a photographing assistance instruction input by a tourist, wherein the photographing assistance instruction includes paid assistance and free assistance; Send the photo assistance command to the account of people near the current photo point; Receive the confirmation assistance instruction, and send the account information that issued the confirmation assistance instruction to the visitor account.

6. The game path guidance method according to claim 1, characterized in that: The method further comprises: Monitor the location of tourists in real time, and generate a pop-up window to remind them when they are at the explanation point. An explanation feedback instruction input by a tourist is received, wherein the explanation feedback instruction is a detailed explanation, a concise explanation or a skip explanation.

7. A game path guidance system, characterized in that: The system comprises: A check-in photo point determination module is used to receive check-in photo style information and determine a number of check-in photo points based on the check-in photo style information; A monitoring screen group retrieval module is used to determine a camera number group according to a check-in photo point, and retrieve a monitoring screen group corresponding to the camera number group; The queue length prediction module is used to analyze the monitoring screen group and predict the queue length for each check-in and photo-taking point; The path guidance generation module is used to generate path guidance information based on the current location of tourists, the location of each check-in and photo-taking point, and the queue time; The check-in and photo-taking guidance module is used to monitor the tourist location in real time and generate check-in and photo-taking guidance information when the tourist is at the check-in and photo-taking point.

8. The game path guidance system according to claim 7, characterized in that: The queuing time prediction module comprises: A queue length identification unit is used to retrieve the queue area monitoring picture in the monitoring picture group, determine the queue area, and identify the queue length in the queue area; A crowd density recognition unit is used to retrieve the scenic area monitoring picture in the monitoring picture group and recognize the crowd density in the scenic area monitoring picture; The queuing time determination unit is used to predict the number of people taking photos based on the queue length and crowd density, retrieve the unit photo taking time of the punch-in photo point, and determine the queuing time according to the predicted number of people taking photos and the unit photo taking time.

9. The game path guidance system according to claim 7, characterized in that: The path guidance generation module comprises: A travel time calculation unit is used to retrieve the queue time change trend information of each check-in and photo-taking point, and calculate the travel time from each check-in and photo-taking point to the current location of the tourist; An estimated waiting time unit is used to determine the estimated waiting time when a tourist arrives based on the current time, travel time, queue time, and queue time change trend information; The path guidance information unit is used to recommend the next check-in and photo-taking point based on the travel time and the estimated waiting time, and generate path guidance information.

10. The game path guidance system according to claim 7, characterized in that: The punch-in photo taking guidance module includes: A composition parameter display unit, used to retrieve the check-in photo sample and recommended composition information according to the check-in photo point, each check-in photo sample is marked with shooting parameter information; A photo assistance instruction unit, used to receive a photo assistance instruction input by a tourist, wherein the photo assistance instruction includes paid assistance and free assistance; An assistance instruction sending unit, used to send a photo assistance instruction to an account of a person near the current photo taking point; The account information sending unit is used to receive the confirmation assistance instruction and send the account information of issuing the confirmation assistance instruction to the tourist account.