Method for automatically calculating scores using a user's mobile terminal in a hybrid golf system and hybrid golf system using the same
The integration of a mobile device-based automatic score calculation method in hybrid golf systems addresses the challenge of manual scoring by automating the process across virtual and real golf play, enhancing user experience and accuracy.
Patent Information
- Application Number
- JP2024575213
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-06-22
- Filing Date
- 2023-06-21
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2043-06-21
AI Technical Summary
Conventional hybrid golf systems require manual and often inaccurate user input for scoring during real-field play, complicating the calculation of scores and reducing the overall gaming experience.
An automatic score calculation method using a user's mobile device, which integrates with a hybrid golf system to automatically track and calculate scores by combining virtual golf course play with real-field play, utilizing motion sensors and mobile devices to detect shots and guide users through the scoring process.
The method simplifies and enhances the scoring process by automating the calculation of scores across both virtual and real golf play, improving user convenience and accuracy.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a hybrid golf system in which, when playing virtual golf using a virtual golf simulation device, a user moves to a real field and plays approach shots and putting on the real field when a virtual ball lands on or near the green, and relates to an automatic score calculation method using a user's mobile device and a hybrid golf system using the same. [Background technology]
[0002] As the number of golfers has increased in recent years, so-called screen golf systems have appeared, which allow users to practice golf or enjoy a virtual golf round using a virtual golf simulation system.
[0003] Such a screen golf system involves installing a screen that can project images of a virtual golf course indoors, and when a user hits a golf ball towards the screen, the system detects the speed and direction of the golf ball and displays the movement of the golf ball on the image on the screen.The system is constantly evolving technologically to go beyond the level of a simple golf game to enjoy indoors and provide users with the sense of realism of playing a round of golf on a real golf course.
[0004] Conventional screen golf systems only display a simulated image of a virtual golf course and the ball's trajectory on the virtual golf course through a screen installed in front of the user hitting the ball, so they are limited in providing the user with the same sense of realism as playing a round of golf at an actual golf course.
[0005] A so-called hybrid golf system has emerged that overcomes the limitations of conventional screen golf systems, providing users with the reality of playing a round of golf on a real golf course, while also being able to be implemented in spaces much smaller than a real golf course.
[0006] The hybrid golf system is a system that combines a real field where users can actually play golf with a screen golf system where users can play virtual golf. Part of the golf play on a hole takes place on a virtual golf course implemented in the screen golf system, and the rest of the play takes place by actually playing golf on a real field.
[0007] For example, in the case of a PAR-4 hole, the tee shot and second shot are played through a virtual golf simulation on a virtual golf course through the screen golf system, and the third shot and putting can be played as if the user were moving to the actual field and playing on a real golf course.
[0008] However, in the portion where golf play proceeds in a virtual golf simulation on a virtual golf course through a screen golf system, the number of strokes for each of the multiple users is calculated automatically, so each user does not need to worry about calculating the score. However, once field play begins, each user plays on the field, so each user must calculate the number of strokes for each user and calculate the score themselves, just like when playing a round of golf on a real golf course, which makes score calculation cumbersome and makes it difficult to calculate accurately.
[0009] In relation to this, conventionally, each user carries a golf terminal connected to a screen golf system, and during field play, the user inputs the number of strokes through the golf terminal each time the user takes a stroke or by relying on memory of the number of strokes in the field.
[0010] However, the method of having a user input the number of strokes during his / her field play through a golf terminal is still cumbersome, and there are still problems such as inputting the wrong number by mistake or forgetting to input the score, making it difficult to calculate accurately. [Prior art documents] [Patent documents]
[0011] [Patent Document 1] Korean Patent Publication No. 10-2013-0030536 [Patent Document 2] Korean Patent Publication No. 10-2012-0036155 [Patent Document 3] Korean Patent Publication No. 10-2012-0036156 [Patent Document 4] Korean Patent Publication No. 10-2012-0009933 Summary of the Invention [Problem to be solved by the invention]
[0012] The present invention is intended to solve the problems of the prior art as described above, and to provide an automatic score calculation method using a user's mobile device in a hybrid golf system, in which scores are automatically calculated by playing on a virtual golf course using a screen golf system in a hybrid golf system, and then scores are automatically calculated using the user's mobile device when playing on a real field, thereby automatically calculating the score for the entire golf play, and a hybrid golf system using the same. [Means for solving the problem]
[0013] In one embodiment of the hybrid golf system according to the present invention, an automatic score calculation method using a user's mobile device is provided in a hybrid golf system having a field where a plurality of users can play actual golf, and a screen golf module provided on one side of the field where users can play golf on a virtual golf course. The method includes the steps of: calculating the number of virtual golf strokes of each user based on golf play progressed on the virtual golf course using a simulator in the screen golf module; starting field play on the field following golf play on the virtual golf course, and transmitting information about the golf play from the simulator to the mobile device carried by each of the plurality of users; detecting shots of each user from motion data of each user detected by a motion sensor built into the mobile device carried by each user; and calculating a score for each user by adding the number of virtual golf strokes of each user to the number of shots of each user detected by the motion data.
[0014] Preferably, the step of detecting each user's shot includes a step of providing shot guidance to the mobile device of the user whose turn it is to take a shot according to the shot order based on the ball position of each user on the virtual golf course; a step of transmitting motion data obtained by a motion sensor of the mobile device that guided the shot to a control unit of the system; and a step of the control unit analyzing the motion data to determine whether the user has taken a shot.
[0015] Preferably, the step of calculating the score of each user includes the steps of: providing shot guidance to the mobile device of the user whose turn it is to take a shot; and, when the shot of the user is detected from motion data detected by a motion sensor of the mobile device that provided the shot guidance, prompting the user to select whether or not to hole out through the mobile device; and, when the user selects to hole out through the mobile device, calculating the score by adding the number of shots of the user based on the shot detection to the number of virtual golf strokes of the user, and excluding the user from the shot detection targets.
[0016] Preferably, the step of calculating the score of each user includes the steps of: providing a shot guide to the mobile device of the user whose turn it is to take a shot; if the shot of the user is detected from motion data detected by a motion sensor of the mobile device that provided the shot guide, prompting the user to select whether or not to hole out through the mobile device; and, if the user does not select to hole out through the mobile device, adding the number of shots of the user based on the shot detection to the number of virtual golf strokes of the user and waiting for the next shot detection.
[0017] Preferably, the step of detecting each user's shot includes a step of providing shot guidance to the mobile terminal of the user whose turn it is to take a shot according to a shot order based on the ball position of each user on the virtual golf course, and a step of allowing the user to manually input a shot through the mobile terminal if shot detection fails within a preset time after the shot guidance.
[0018] Meanwhile, a hybrid golf system according to one embodiment of the present invention includes a screen golf module provided on one side of a field where a plurality of users can play actual golf and where the screen golf module is provided to allow the users to play golf on a virtual golf course; a simulator provided in the screen golf module and implementing a virtual golf simulation image of the virtual golf course and the golf plays of each of the plurality of users; and a control unit that calculates the number of virtual golf strokes of each user as the screen golf module plays golf on the virtual golf course, analyzes motion data of each user sensed by a motion sensor built into a mobile device carried by each user while play on the field is progressing, senses each user's shots, and calculates each user's score by adding the sensed number of shots of each user to the number of virtual golf strokes.
[0019] Preferably, the field play is opened, and shot guidance is given by the mobile device of the user whose turn it is to take a shot according to the shot order based on the ball position of each user on the virtual golf course, and the motion sensor of the mobile device that gave the shot guidance detects the motion of the user, and the acquired motion data is transmitted to and analyzed by the control unit to determine whether the user has taken a shot.
[0020] Preferably, when the control unit detects a shot of the corresponding user, the control unit allows the corresponding user to select whether or not to hole out through the corresponding mobile device, and if the corresponding user selects to hole out through the mobile device, the control unit calculates a score by adding the number of shots of the corresponding user based on the shot detection to the number of virtual golf strokes of the corresponding user, and excludes the corresponding user from the target of shot detection. [Effects of the Invention]
[0021] In the hybrid golf system according to the present invention, the automatic score calculation method using the user's mobile device and the hybrid golf system using the same automatically calculates scores by playing on a virtual golf course using a screen golf system in the hybrid golf system, and then automatically calculates scores using the mobile device carried by each user when playing on a real field. This allows the score for the entire golf play to be calculated automatically, so that the user playing golf using the hybrid golf system does not have to count the number of strokes each time, as the score is calculated automatically, thereby improving the convenience for the user. [Brief explanation of the drawings]
[0022] [Figure 1] 1 is a diagram showing the configuration of a hybrid golf system according to an embodiment of the present invention. [Figure 2] FIG. 2 is a block diagram showing the control system of the hybrid golf system shown in FIG. 1. [Figure 3] 2 is a diagram showing a user playing virtual golf while watching an image projected on a screen inside the screen golf module shown in FIG. 1. [Figure 4] 1 is a flowchart showing a process for an automatic score calculation method using a user's mobile terminal in a hybrid golf system according to an embodiment of the present invention. [Figure 5] 1 is a flowchart showing a process for an automatic score calculation method using a user's mobile terminal in a hybrid golf system according to an embodiment of the present invention. [Figure 6] 1 is a schematic diagram illustrating an automatic score calculation method using a user's mobile terminal in a hybrid golf system according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0023] The automatic score calculation method using a user's mobile terminal in a hybrid golf system according to the present invention and the hybrid golf system using the same will be described in detail with reference to the accompanying drawings.
[0024] First, the configuration of a hybrid golf system according to an embodiment of the present invention will be described with reference to FIGS.
[0025] FIG. 1 shows the configuration of a hybrid golf system according to an embodiment of the present invention, and FIG. 2 shows the control system of the hybrid golf system shown in FIG.
[0026] As shown in FIG. 1, a hybrid golf system according to an embodiment of the present invention includes a real field 200 that allows a user to play real golf, and a screen golf module 100 that is provided on one side of the real field 200 and includes a virtual golf simulation device that allows a user to play golf on a virtual golf course.
[0027] The above-mentioned screen golf module 100 includes the configuration of a typical screen golf system, i.e., the configuration of a virtual golf simulation device that projects an image of a virtual golf course onto a screen in front of the user, senses when the user hits a ball toward the screen from the hitting box 120, and based on the sensing result, realizes a simulation image of a virtual ball moving on the above-mentioned virtual golf course image, thereby allowing the user to play virtual golf.
[0028] The screen golf module 100 may be provided in a box or booth shape with an entrance 110 on one side, and may be in a shape with all sides closed or partially open.
[0029] The screen golf module 100 can be configured to include a screen 300 on a surface from which the actual field 200 is viewed.
[0030] The screen 300 can project images of a virtual golf course and a simulation image iVG of a game played on the virtual golf course output by an image output device 420 (e.g., a beam projector) installed inside the screen golf module 100, and provide the images to the user.
[0031] Meanwhile, the actual field 200 may be realized as a portion of an entire hole on an actual golf course, and may be formed to include a green 210 and a hole cup 212 as shown in FIG. 1, and may include surrounding areas 220 such as the fairway, rough, and bunkers around the green 210, allowing the user to take approach shots and putts.
[0032] The hybrid golf system according to an embodiment of the present invention allows a user to play part of a golf game on a virtual golf course using a screen golf module 100 and the rest of the golf game on a real field 200 .
[0033] For example, when playing golf on a PAR-4 hole, the user plays virtual golf on the virtual golf course of the PAR-4 hole using the screen golf module 100 (the user hits a golf shot from the hitting box toward the screen, and the sensing device detects the hit ball to simulate the golf play), and the user moves directly to the actual field 200 to play golf on the remaining part of the PAR-4 hole.
[0034] For example, the tee shot and second shot of a PAR-4 hole can be performed in the screen golf module 100 through virtual golf play on a virtual golf course, and the third shot (approach shot) and putting can be performed by the user moving from the screen golf module 100 to the actual field 200 and continuing golf play on the actual field 200.
[0035] The hybrid golf system according to an embodiment of the present invention utilizes a mobile terminal owned by each user. Here, the mobile terminal may be a personal mobile communication terminal such as a smartphone or tablet, or a dedicated terminal provided separately to each user who uses the hybrid golf system. However, if the mobile terminal is a dedicated terminal as described above, it is preferable that the mobile terminal includes a GPS module, a camera, etc. and is capable of running applications like a smartphone or tablet.
[0036] As shown in Figure 2, it is desirable that each user plays golf while carrying their own mobile terminal (M1, M2, M3, M4) regardless of the type of terminal. Each mobile terminal (M1, M2, M3, M4) can be configured to wirelessly communicate with the control unit 401 through the communication unit 404 of the simulator 400.
[0037] It is desirable that each user's mobile terminal (M1, M2, M3, M4) executes an application for using the hybrid golf system according to one embodiment of the present invention, logs in, and is set up in advance for wireless communication with the simulator's communication unit 404.
[0038] As shown in Figures 1 and 2, the simulator 400 provided inside the screen golf module 100 includes a control unit 401, an image processing unit 402, and a data storage unit 403. The control unit 401 can receive sensing data from the sensing device 410 and implement a virtual golf simulation image through the image processing unit 402, and the control unit 401 can be configured to communicate with each user's mobile terminal (M1, M2, M3, M4) through the communication unit 404 to exchange data.
[0039] The simulator (400) stores information about the virtual golf play while the user is playing the virtual golf game through the virtual golf simulation, and when the field play starts, transmits the information about the virtual golf play to each mobile terminal (M1, M2, M3, M4) carried by each user, and transmits information about the ball position, which is the position on the field corresponding to the ball position on the virtual golf course of each user, to each mobile terminal (M1, M2, M3, M4), so that the user can play the field according to the guidance of each mobile terminal.
[0040] FIG. 3 shows a user U playing virtual golf while viewing an image iVG projected on a screen 300 inside the screen golf module 100 shown in FIG.
[0041] The sensing device 410 may be implemented as a camera-based device that senses the movement of at least one of the golf club and the ball during a user's golf swing. When a user U hits a golf ball placed on a golf mat 122 at a hitting box 120 with a golf shot, the camera captures and collects an image of the hit golf ball 1, and the sensing device performs image processing and analysis on the collected image to calculate sensing information regarding the movement of the golf ball 1 and transmits the calculated information to the control unit 401.
[0042] An operating device (not shown) may be further provided as a means for the user to operate to set up the virtual golf simulation environment or to adjust the aiming during the virtual golf round.
[0043] The data storage unit 403 stores all data necessary for visualizing the virtual golf simulation, including data related to the virtual golf course that visualizes an actual golf course and data related to the topography of the virtual golf course, thereby providing data that can realize a virtual environment in which a user can play a virtual golf round on a virtual golf course selected by the user.
[0044] The data storage unit 403 can be configured to store all of the various data related to the virtual golf course, or can be configured to temporarily store various data related to the virtual golf course transmitted from a server (not shown) via a network.
[0045] The image processing unit 402 processes information to display an image of the virtual golf course on the screen using data about the virtual golf course stored in the data storage unit 403, and processes information to display the trajectory of the golf ball hit by the user in an image that is simulated on the virtual golf course.
[0046] The image processed by the image processor 402 is output through an image output device 420 such as a projector and projected onto the screen 300, allowing the user U to view the image iVG projected onto the screen shutter 300.
[0047] The image processor 402 may be implemented as a modularized component that performs image processing functions in an independent device, or may be implemented as an independent device itself.
[0048] The control unit 401 is in charge of controlling all processes for the virtual golf simulation, and performs various calculations and controls to simulate the movement of the virtual ball on the virtual golf course based on sensing information about the moving golf ball and a physics engine according to the sensing results of the sensing device 410. Based on these various calculations and controls, an image iVG is realized in which the virtual ball is simulated on the virtual golf course according to the sensing results of the sensing device and the physics engine.
[0049] The control unit 401 determines whether the requirements for playing field on an actual field are met during the process of playing virtual golf using a virtual golf course, and if the requirements for playing field are met, the control unit 401 can guide the user by video / audio through the screen image iVG to move to the field 200 and play field.
[0050] When multiple users play a round of golf together, the above-mentioned field play can be displayed when all users' balls (virtual balls on the image) are located within a predetermined range on the virtual golf course, for example, within a predetermined radius range based on the hole cup (the hole cup on the green of the virtual golf course).
[0051] Before the field play starts, that is, while the user is playing virtual golf through the simulator 400 in the screen golf module 100, the virtual golf play is proceeding through the image, so the control unit 401 can automatically calculate each score as the user plays golf shots on the virtual golf course, and after the field play starts, as each user plays on the field, the control unit can calculate each user's score through each user's mobile device.
[0052] As described above, when field play starts, the control unit 401 of the simulator 400 can calculate the ball position on the field corresponding to each user's ball position on the virtual golf course and transmit it to each user's mobile device. Each user's mobile device then provides shot guidance to the user whose turn it is to take a shot according to the shot order, and the control unit of the simulator can identify the user who has received the shot guidance through communication with the mobile device, and can calculate the user's score based on the data collected by the mobile device while communicating with the user's mobile device.
[0053] The control unit 401 can use the field 200 as a coordinate space and calculate the coordinate information of the ball point corresponding to the ball position of each user on the coordinate space.
[0054] Here, "ball position" refers to the position of each user's ball (ball on the image) on the virtual golf course, and "ball point" refers to the position coordinates on the field 200 coordinate space corresponding to each of the aforementioned ball positions.
[0055] As described above, when field play starts, the control unit 401 of the simulator 400 transmits a field play start signal to each user's mobile device (M1, M2, M3, M4) and transmits various information during the virtual golf play process, i.e., map information for the virtual golf course, ball position information on each user's virtual golf course, score information, etc., to enable field play through each mobile device, and the control unit of the simulator receives data from each mobile device and calculates the score while detecting the shots of the users holding each mobile device.
[0056] Meanwhile, an automatic score calculation method using a user's mobile terminal in a hybrid golf system according to an embodiment of the present invention will be described with reference to FIGS.
[0057] 4 and 5 are flowcharts showing a process for an automatic score calculation method using a user's mobile device in a hybrid golf system according to one embodiment of the present invention, and FIG. 6 is a schematic diagram showing an automatic score calculation method using a user's mobile device in a hybrid golf system according to one embodiment of the present invention.
[0058] As shown in FIG. 4, first, a user selects a virtual golf course to play a round of golf using a virtual golf simulation device in a screen golf module and starts the round of golf (S100).
[0059] An image of the selected virtual golf course is projected onto the screen (S110), and the user hits a golf ball towards the screen, and the sensing device senses the hit golf ball (S120).
[0060] The simulator uses the sensing results of the sensing device to create a simulated image of a virtual ball moving on a virtual golf course (S130).
[0061] If the virtual ball lands within a predetermined range around the green on the virtual golf course in the simulation image (S140), it is checked whether all users' balls have landed within the predetermined range around the green on the virtual golf course (S150). If all users' balls have landed within the predetermined range around the green on the virtual golf course, field play begins on the field following the play on the virtual golf course described above (S160).
[0062] As described above, when field play begins, the simulator's control unit calculates the ball location, which is the location on the field corresponding to each user's ball location on the virtual golf course, and transmits each ball location information to each user's mobile device (S170).
[0063] The order of shots taken by the users is determined based on the distance from the ball point of each user to the hole cup, and shot guidance is provided to the mobile device of the user whose turn it is to take a shot based on that order (S210). For example, when it is User 1's turn to take a shot, shot guidance such as "User 1, please take a shot!" is provided on User 1's mobile device.
[0064] If the mobile device provides shot guidance, the mobile device becomes ready to detect whether the user is going to take a shot (S220), and a golf ball can be placed at the user's ball location on the field (S230).
[0065] The golf ball may be placed at the ball location by, for example, a separate ball transport means receiving instructions from the control unit and placing the golf ball at the corresponding ball location, or the user may directly place the golf ball at the ball location according to the guidance of the mobile terminal.
[0066] As described above, when a user receives shot guidance through his / her mobile device and a golf ball is placed at the ball point for the user on the field, the user can hit the golf ball placed at the ball point to make a shot. At this time, a motion sensor built into the mobile device held by the user generates a signal according to the user's movement, and the mobile device or a control unit can analyze the motion sensor signal to determine whether the user has made a shot (S240). Hereinafter, analyzing the motion sensor signal to determine whether the user has made a shot will be referred to as "shot detection."
[0067] The shot detection as described above can be performed by the mobile device itself, or the signal detected by the motion sensor of the mobile device can be transmitted to the control unit, and the control unit can analyze the signal from the motion sensor to detect the shot.
[0068] At this time, the golf ball may or may not land in the hole depending on the user's shot.
[0069] Although the mobile device can detect the user's movements using a motion sensor, it cannot detect whether the golf ball shot by the user has landed in the hole.
[0070] As described above, if the shot is detected through the mobile device, the hole-out can be confirmed through the mobile device (S250).
[0071] That is, the mobile device can provide an interface to check whether or not a hole has been completed through the display. If the golf ball shot by the user is holed in, the user is considered to have completed the hole. The user can then confirm the completion of the hole through the mobile device, and the number of strokes from the virtual golf play and the number of strokes from the shot detection result can be added together to calculate the user's score (S262).
[0072] If the golf ball shot by the user does not go in, the user is not holed out and must continue with the next shot. Therefore, the user can choose not to hole out through an interface on the mobile device that checks whether or not to hole out.
[0073] In this case, the control unit can add one stroke to the user and then wait until the next shot guidance is given (S272).
[0074] When the shot process for the user is completed in this manner, the process for the next user who is due for a shot is carried out in the same manner as described above (S264).
[0075] Figure 6 shows a schematic diagram of the process described above. As shown in Figure 6, the mobile device (M) held by user 1 (P) guides user 1 (P) when it is his / her turn to take a shot by providing a comment such as "User 1, take your shot!", allowing user 1 (P) to take a golf shot. At this time, the motion sensor of the mobile device (M) detects user 1's motion and acquires motion data, which can be analyzed to determine whether user 1 has taken a shot.
[0076] After detecting the shot on the mobile terminal (M), the mobile terminal (M) can provide a display prompting the user 1 to confirm whether or not the shot was holed out. If the golf ball shot by the user 1 is holed in, the user 1 confirms that the shot was holed out and the score is calculated accordingly, and if the golf ball shot by the user 1 is not holed in, the user 1 continues to perform shot detection without confirming that the shot was holed out.
[0077] After the shot processing for all users has been completed in the above-described manner, steps S210 to S262 or S272 are performed again for each remaining user who has not finished holing out.
[0078] When all users have finished in this manner, the scores of all users on the hole are calculated, and scores for all holes can be calculated in this manner.
[0079] In the above-described manner, one or more users calculate the number of strokes in virtual golf play performed in the screen golf module, and each user's shot in field play performed in the field is sensed through each user's mobile device to calculate the number of strokes, and the total score of all users can be automatically calculated by adding up the number of strokes in the virtual golf play. [Industrial Applicability]
[0080] The automatic score calculation method using a user's mobile device in a hybrid golf system according to the present invention and the hybrid golf system using the same can be used in golf-related industries and the so-called screen golf industry, which allows users to enjoy playing golf based on virtual golf simulations.
Claims
1. A method for automatically calculating a score using a user's mobile terminal in a hybrid golf system including a field where a plurality of users can play actual golf and a screen golf module installed on one side of the field where a plurality of users can play golf on a virtual golf course, calculating the number of virtual golf strokes of each user based on the golf play conducted on the virtual golf course by a simulator in the screen golf module; a step of starting a field play on the field following the golf play on the virtual golf course, and transmitting information about the golf play from the simulator to each of the mobile devices carried by the users; detecting a shot of each user from motion data of each user detected by a motion sensor built in a mobile terminal carried by each user; calculating a score for each user by adding the number of virtual golf strokes for each user to the number of shots for each user detected by the motion data; A method for automatically calculating a score using a user's mobile terminal in a hybrid golf system including the above.
2. The step of detecting a shot of each user includes: a step of providing a shot guide to the mobile device of the user whose turn it is to take a shot according to a shot order based on the ball position of each user on the virtual golf course; a motion sensor of the mobile device that guided the shot detecting the motion of the user and transmitting the acquired motion data to a control unit of the system; 2. The method for automatically calculating a score using a user's mobile terminal in a hybrid golf system according to claim 1, further comprising: a step in which the control unit analyzes the motion data and determines whether the user has made a shot.
3. The step of calculating the score of each user includes: When a user's turn to take a shot is informed of a shot by the mobile device, and a shot by the user is detected from motion data detected by a motion sensor of the mobile device that informed the shot, the mobile device prompts the user to select whether or not to hole out; 2. The method for automatically calculating a score using a user's mobile terminal in a hybrid golf system according to claim 1, further comprising the step of calculating a score by adding the number of shots of the user based on the shot detection to the number of virtual golf strokes of the user when the user selects hole-out through the mobile terminal, and excluding the user from the targets of shot detection.
4. The step of calculating the score of each user includes: When a user's turn to take a shot is informed of a shot by the mobile device, and a shot by the user is detected from motion data detected by a motion sensor of the mobile device that informed the shot, the mobile device prompts the user to select whether or not to hole out; 2. The method for automatically calculating a score using a user's mobile terminal in a hybrid golf system according to claim 1, further comprising the step of adding the number of shots of the user based on the detection of the shot to the virtual number of shots of the user if the user does not select hole-out through the mobile terminal, and waiting for the next shot detection.
5. The step of detecting a shot of each user includes: a step of providing a shot guide to the mobile device of the user whose turn it is to take a shot according to a shot order based on the ball position of each user on the virtual golf course; 5. The method for automatically calculating a score using a user's mobile terminal in a hybrid golf system according to claim 1, further comprising the step of manually inputting a stroke through the mobile terminal if the shot detection fails within a preset time after the shot guidance.
6. a screen golf module provided on one side of a field where a plurality of users can play actual golf and which is provided to allow users to play golf on a virtual golf course; a simulator provided in the screen golf module, which displays a virtual golf simulation image of the virtual golf course and golf play by each of the plurality of users; a control unit that calculates the number of virtual golf strokes of each user playing golf on the virtual golf course in the screen golf module, detects the shots of each user by analyzing motion data of each user detected by a motion sensor built into a mobile device carried by each user while the field play is progressing, and calculates the score of each user by adding the number of virtual golf strokes to the number of shots of each user detected; Hybrid golf system including.
7. 7. The hybrid golf system of claim 6, wherein the field play is opened, and shot guidance is given by the mobile device of the user whose turn it is to take a shot according to the shot order based on the ball position of each user on the virtual golf course, and the motion sensor of the mobile device that gave the shot guidance detects the motion of the corresponding user, and the acquired motion data is transmitted to and analyzed by the control unit to determine whether the corresponding user has taken a shot.
8. 8. The hybrid golf system of claim 7, wherein when the control unit detects a shot by the corresponding user, the control unit allows the corresponding user to select whether to hole out through the corresponding mobile device, and if the corresponding user selects to hole out through the mobile device, the control unit calculates a score by adding the number of shots of the corresponding user based on the detection of the shot to the virtual golf number of the corresponding user, and excludes the corresponding user from the shot detection targets.
Citation Information
Patent Citations
Mobile-type golf ball position-guiding system interworked with a screen golf
KR101555840B1
Golf Guide System
KR101748233B1
In-house golf-stadium and a method of gaming golf thereat
KR1020120009933A
A golf game unit and method of using screen golf ground and field ground and razer beam irradiation
KR1020120036155A
A golf game unit and method of using screen golf ground and field ground and autometic golf ball supply unit
KR1020120036156A