A simulated snowboard device

By installing a weighing sensor and controller in the ski simulator's ski plate device, accurate detection and intelligent control of the trainee's weight are achieved, solving the problem of inaccurate weight data collection in existing technologies and improving the adaptability and scientific nature of simulated ski training.

CN122141219APending Publication Date: 2026-06-05JILIN UNIVERSITY +1
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Patent Information

Application Number
CN202610555872.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-24
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

Existing ski simulators cannot accurately collect trainees' weight data, resulting in an inability to adjust the operating parameters of the simulated skiing based on weight differences. This leads to a low level of intelligence and an inability to provide a personalized and scientific ski training experience.

Method used

A weighing sensor and a controller are installed in the ski simulator. The weighing sensor collects the weight data of the trainees in real time, and the controller executes corresponding ski control commands based on the weight information to adjust the running parameters and resistance of the simulated skiing.

Benefits of technology

It enables accurate and real-time detection of trainees' weight parameters, improves the intelligence and adaptability of simulated ski training, provides a personalized and scientific ski simulation experience, and enhances the pertinence and scientific nature of training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of simulation ski machine skateboard devices, belong to indoor skiing technical field, comprising: simulation ski machine main body, simulation ski machine main body has installation site;Bottom bearing plate, bottom bearing plate is set on installation site, bottom bearing plate is slidably connected with simulation ski machine main body;Simulation ski training component, part of simulation ski training component is located above bottom bearing plate, simulation ski training component includes two simulation ski training modules, two simulation ski training modules are symmetrically set about bottom bearing plate;Weighing sensor, weighing sensor is located below bottom bearing plate, weighing sensor is correspondingly arranged with bearing block connecting groove, and training plate bearing block passes through bearing block connecting groove and is connected with weighing sensor;Controller, controller is electrically connected with weighing sensor, and controller is used to obtain corresponding ski control instruction set by weighing sensor to weight.
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Description

Technical Field

[0001] This invention discloses a simulated ski machine ski device, belonging to the field of indoor skiing technology. Background Technology

[0002] Most existing conventional ski simulators only simulate skiing postures and movements through mechanical structures. The overall structure only has basic sliding support and movement guidance functions, and generally lacks a structure for detecting and collecting the trainee's body parameters. It is impossible to obtain key data such as the trainee's weight and force in real time. At the same time, it does not have an intelligent control module that matches the data collection, making it difficult to adjust the operating parameters, resistance, and movement mode of the simulated skiing according to the weight differences of different trainees. This results in poor adaptability of simulated skiing training, which cannot provide trainees with a personalized and scientific skiing simulation experience. Moreover, the overall level of intelligence is low and cannot meet the needs of precise and data-driven skiing training. Summary of the Invention

[0003] The purpose of this invention is to solve the technical problem that traditional simulated ski machine ski devices cannot accurately collect the weight data of trainees and execute corresponding ski control commands accordingly, and to propose a simulated ski machine ski device.

[0004] The problem to be solved by this invention is achieved by the following technical solution:

[0005] A simulated ski ski device, comprising:

[0006] The main body of the simulated ski machine has mounting positions;

[0007] The bottom support plate is installed at the mounting position and is slidably connected to the main body of the simulated ski machine;

[0008] The simulated ski training component is located above the base support plate. The simulated ski training component includes two simulated ski training modules, which are symmetrically arranged about the base support plate. Each of the two simulated ski training modules has a training board support block, which is slidably engaged with the support block connecting groove of the base support plate.

[0009] The weighing sensor is located below the bottom support plate. The weighing sensor is set in a corresponding slot to the support block. The training board support block passes through the support block connection slot and is connected to the weighing sensor. The weighing sensor is used to obtain the weight of the trainee on the bottom support plate.

[0010] The controller is electrically connected to the load cell and is used to execute the corresponding ski control command set after obtaining the weight from the load cell.

[0011] Furthermore, the training board support block includes multiple blocks, which are spaced apart along the length of the simulated ski training module. The support block connection slot includes multiple slots, which correspond one-to-one with the training board support block.

[0012] Furthermore, either of the two simulated ski training modules includes:

[0013] The simulated ski training board is located on the training board support block, and the training board support block and the simulated ski training board are detachably connected.

[0014] The training board support block and the simulated ski training board are connected by a linkage component.

[0015] Furthermore, the linkage components include:

[0016] The upper linkage rod is connected to the simulated ski training board;

[0017] The lower linkage rod has one end hinged to one end of the upper linkage rod, and the other end hinged to the training board support block.

[0018] Furthermore, the upper linkage rod has an outer linkage rod mating groove, the lower linkage rod has an inner linkage rod mating joint, the linkage rod mating joint has an inner linkage rod mating groove, and the linkage rod mating post has an outer linkage rod mating groove and an inner linkage rod mating groove in sequence, so that the linkage rod mating post is rotatably connected to the upper linkage rod and the lower linkage rod respectively.

[0019] Furthermore, the lower linkage rod has a side bearing column connection hole, and the training plate bearing block has a side bearing column mounting groove. The side bearing column passes through the side bearing column connection hole and the side bearing column mounting groove in sequence, so that the side bearing column is rotatably connected to the lower linkage rod and the training plate bearing block respectively.

[0020] Furthermore, the upper linkage has a side bearing column docking groove, and when the training board bearing block abuts against the simulated ski training board, the side bearing column docking groove cooperates with the side bearing column.

[0021] Furthermore, the linkage component also includes: a main support column, a lower linkage rod having a main support column docking groove, one end of the main support column being connected to the training board support block, and when the training board support block abuts against the simulated ski training board, the main support column docking groove engaging with the main support column.

[0022] The beneficial effects of this invention are as follows:

[0023] This application, by installing a weighing sensor under the bottom support plate and connecting the training board support block to the weighing sensor through the support block connecting groove, along with a controller electrically connected to the weighing sensor, can accurately and in real time collect the weight data of trainees during simulated skiing. This effectively realizes the automated detection of trainees' weight parameters. At the same time, the controller can automatically execute the corresponding skiing control command set based on the collected weight information, intelligently adapting the simulated skiing operation mode, resistance intensity, and other parameters according to the weight of different trainees. This significantly improves the intelligence and training adaptability of the simulated ski machine, making simulated skiing training more targeted and scientific. In addition, the overall structural layout is reasonable, and the weighing sensor and various components work stably, ensuring the accuracy of weight detection and the reliability of device operation, thus optimizing the user experience and training effect of simulated skiing training. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall assembly structure of a simulated ski skateboard device according to the present invention.

[0025] Figure 2 This is a schematic diagram of the structure of a simulated ski ski device according to the present invention.

[0026] Figure 3 This is a partial structural diagram of a simulated ski skateboard device according to the present invention.

[0027] Figure 4 This is a diagram showing the installation status of a weighing sensor for a simulated ski skateboard device according to the present invention.

[0028] Figure 5 This is a diagram showing the extended state of the lower linkage rod of a simulated ski skateboard device according to the present invention.

[0029] Figure 6 This is a schematic diagram of the bottom support plate structure of a simulated ski skateboard device according to the present invention.

[0030] The components include: 1. Bottom support plate; 2. Simulated ski training board; 3. Simulated ski machine body; 7. Support block connecting groove; 8. Training board support block; 9. Weighing sensor; 11. Upper linkage rod; 12. Outer linkage rod docking groove; 13. Side support column docking groove; 14. Side support column; 15. Lower linkage rod; 16. Side support column connecting hole; 17. Linkage rod docking column; 18. Inner linkage rod connector; 20. Main support column mounting groove; 21. Main support column; 22. Side support column mounting groove; 27. Main support column docking groove. Detailed Implementation

[0031] The following is based on the appendix Figure 1-6 The present invention will be further described as follows:

[0032] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] In the description of this invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0034] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0035] like Figures 1-6 As shown, the first embodiment of the present invention provides a simulated ski machine ski device based on the prior art, including: a simulated ski machine body 3, the simulated ski machine body 3 having a mounting position; a bottom support plate 1, the bottom support plate 1 being disposed on the mounting position and slidably connected to the simulated ski machine body 3; a simulated ski training component, a portion of which is located above the bottom support plate 1, the simulated ski training component including two simulated ski training modules, the two simulated ski training modules being symmetrically arranged about the bottom support plate 1, each of the two simulated ski training modules having a training board support block 8, the training board support block 8 being slidably engaged with the support block connecting groove 7 of the bottom support plate 1; a weighing sensor 9, located below the bottom support plate 1, the weighing sensor 9 being correspondingly arranged with the support block connecting groove 7, the training board support block 8 passing through the support block connecting groove 7 and connected to the weighing sensor 9, the weighing sensor 9 being used to obtain the weight of the trainee on the bottom support plate 1; and a controller, the controller being electrically connected to the weighing sensor 9, the controller being used to execute the corresponding ski control command set based on the weight obtained by the weighing sensor 9.

[0036] In this embodiment, the structure of the simulated ski machine ski device is reasonably laid out. The bottom support plate 1 and the main body 3 of the simulated ski machine slide smoothly together. The two symmetrically arranged simulated ski training modules operate stably. The training board support block 8 and the support block connecting groove 7 of the bottom support plate 1 slide reliably together. The weighing sensor 9 can accurately collect the weight of the trainee. With the controller, it can execute the corresponding ski control command set according to the detected weight, realize intelligent adaptive control, and improve the accuracy and adaptability of simulated ski training.

[0037] Furthermore, the training board support block 8 includes multiple blocks, which are spaced apart along the length of the simulated ski training module. The support block connecting groove 7 includes multiple blocks, which are set one-to-one with the training board support block 8, resulting in more uniform force distribution and more stable operation. The weighing sensor 9 can accurately collect the weight of the trainee, and together with the controller, it can execute the corresponding ski control command set according to the detected weight, realizing intelligent adaptive control and improving the stability, accuracy and adaptability of simulated ski training.

[0038] Specifically, any one of the two simulated ski training modules includes: a simulated ski training board 2, which is located on the training board support block 8 and is detachably connected to the training board support block 8; and a linkage component, which connects the training board support block 8 and the simulated ski training board 2. The connection is firm and the transmission is stable, which can ensure the smooth transmission of simulated skiing movements and improve the reliability and operational flexibility of use.

[0039] In this embodiment, the linkage component includes: an upper linkage rod 11, which is connected to the simulated ski training board 2; and a lower linkage rod 15, one end of which is hinged to one end of the upper linkage rod 11, and the other end of which is hinged to the training board support block 8. The structure is simple and the hinged connection is flexible, which can ensure stable and reliable motion transmission and enable the simulated ski training board 2 to smoothly complete the swinging motion, thereby improving the smoothness and stability of the device operation.

[0040] Furthermore, the upper linkage rod 11 has an outer linkage rod mating groove 12, and the lower linkage rod 15 has an inner linkage rod mating joint 18. The linkage rod mating joint 18 has an inner linkage rod mating groove, and the linkage rod mating post 17 sequentially connects the outer linkage rod mating groove 12 and the inner linkage rod mating groove, so that the linkage rod mating post 17 is rotatably connected to the upper linkage rod 11 and the lower linkage rod 15 respectively. The structure is compact and the fit is precise, the rotation is flexible and without jamming, and the linkage process is effectively guaranteed to be stable and reliable.

[0041] Specifically, the lower linkage rod 15 has a side bearing column connection hole 16, and the training plate bearing block 8 has a side bearing column mounting groove 22. The side bearing column 14 passes through the side bearing column connection hole 16 and the side bearing column mounting groove 22 in sequence, so that the side bearing column 14 is rotatably connected to the lower linkage rod 15 and the training plate bearing block 8 respectively, realizing the rotatable connection between the lower linkage rod 15 and the training plate bearing block 8. The assembly is simple, the fit is precise, the rotation is smooth and the connection is stable, which improves the overall operational stability of the device.

[0042] In this embodiment, the upper linkage rod 11 has a side bearing column docking groove 13. When the training board bearing block 8 abuts against the simulated ski training board 2, the side bearing column docking groove 13 and the side bearing column 14 cooperate, which is compact and reliable in positioning, and effectively improves the cooperation accuracy and movement stability between components.

[0043] Furthermore, the linkage component also includes: a main support column 21, and a lower linkage rod 15 having a main support column docking groove 27. One end of the main support column 21 is connected to the training board support block 8. When the training board support block 8 abuts against the simulated ski training board 2, the main support column docking groove 27 cooperates with the main support column 21 to provide stable support and accurate positioning, further enhancing the overall structural strength and motion reliability.

[0044] The second embodiment of the present invention provides a control method for a simulated ski board device based on the first embodiment, comprising:

[0045] This control method is based on the structural design of the ski simulator's ski board device. It fully utilizes the cooperative relationships of components such as the bottom support plate 1, the simulated ski training board 2, the simulated ski machine body 3, the training board support block 8, the support block connecting groove 7, the weighing sensor 9, the upper linkage rod 11, the lower linkage rod 15, the side support column 14, the main support column 21, and the controller to achieve intelligent control, precise motion transmission, and stable operation of the simulated ski training. The specific steps are as follows:

[0046] Step S1: Trainee Fitting and Weight Acquisition. The trainee steps onto the two simulated ski training boards 2 above the bottom support plate 1, ensuring full contact between the simulated ski training boards 2 and the training board support block 8. At this time, the side support column docking slot 13 of the upper linkage rod 11 precisely matches the side support column 14, and the main support column docking slot 27 of the lower linkage rod 15 tightly fits the main support column 21, forming a stable support and linkage structure. Multiple weighing sensors 9 are respectively set corresponding to the support block connecting slot 7. The training board support block 8 passes through the support block connecting slot 7 and connects to the weighing sensors 9. The trainee's weight is transmitted to the weighing sensors 9 through the simulated ski training board 2 and the training board support block 8. The weighing sensors 9 collect weight data in real time and convert it into an electrical signal, which is continuously transmitted to the controller. The controller filters and calibrates the received weight data, eliminates interference signals, obtains the accurate actual weight value of the trainee, and records this weight data as the core basis for subsequent control command execution.

[0047] Step S2, Control Command Matching and Execution. Based on the collected weight data of the trainee, the controller calls a preset set of control commands. This set of commands presets ski simulation parameters corresponding to different weight ranges, including the operating speed of the simulated ski machine body 3, the simulated snow track resistance, the swing damping of the simulated ski training board 2, and the transmission sensitivity of the linkage components. When the trainee's weight is within the preset range, the controller automatically matches the corresponding control parameters and sends control commands to the simulated ski machine body 3 and the linkage components. This controls the simulated ski machine body 3 to start and operate at the appropriate speed. Simultaneously, it adjusts the transmission resistance of the linkage components, making the rotation of the upper linkage rod 11 and lower linkage rod 15 via the linkage rod connecting column 17, and the rotation of the lower linkage rod 15 and the training board support block 8 via the side support column 14, more closely match the trainee's weight requirements. This ensures smooth swinging and moderate force of the simulated ski training board 2, achieving a personalized simulated skiing experience.

[0048] Step S3: Real-time monitoring and dynamic adjustment. During simulated ski training, the controller continuously receives weight data transmitted by the weighing sensor 9, and monitors the trainee's weight changes and center of gravity shift in real time. When fluctuations in weight data or center of gravity shift are detected, the controller immediately analyzes the data change trend and dynamically adjusts the control commands. For example, when the trainee's center of gravity shifts to one side of the simulated ski training board 2, the weight value detected by the weighing sensor 9 on the corresponding side increases. The controller adjusts the damping coefficient of the linkage component on that side to enhance the support stability of the simulated ski training board 2 on that side. At the same time, it fine-tunes the operating parameters of the simulated ski machine body 3 to prevent the trainee from becoming unbalanced due to the shift in center of gravity. Simultaneously, the controller monitors the operating status of the linkage components in real time, including the rotational flexibility of the upper linkage rod 11 and the lower linkage rod 15, the fit between the side support column 14 and the side support column connection hole 16, the side support column mounting groove 22, and the fit between the main support column 21 and the main support column docking groove 27. If problems such as rotational jamming or loose fit occur, the controller adjusts the operating parameters of the relevant components in a timely manner to ensure stable operation of the device.

[0049] Step S4: Training Ends and Device Reset. After the trainee finishes training and leaves the simulated ski training board 2, the weight value detected by the weighing sensor 9 drops below the preset threshold. Upon receiving this signal, the controller automatically issues a stop command, controlling the main body 3 of the simulated ski machine to stop operating. The linkage components reset to their initial state, with the upper linkage rod 11 and lower linkage rod 15 returning to their initial angles. The side support column docking slot 13 and the side support column 14, and the main support column docking slot 27 and the main support column 21 maintain their mating state. The training board support block 8 and the support block connecting slot 7 return to their initial positions. Simultaneously, the controller records relevant data for this training session, including training duration, weight changes, and control parameter adjustment records. Subsequently, the device enters standby mode, waiting for the next training session to start. If no trainee uses the device for an extended period, the controller automatically enters a low-power mode to reduce energy consumption and extend the device's lifespan.

[0050] The electrical components mentioned in this article can all be connected to an external main controller and 220V AC mains power via a transformer. The main controller can be a conventional known device such as a computer that plays a control role. The conventional known device such as a computer that plays a control role can receive various data signals detected by this device in real time. The electrical components provided by this invention are only used according to the structural characteristics of the product in this technical solution. The product will be adjusted and modified after purchase to better match and conform to the technical solution of this invention. It is an optimal application of this technical solution. The product model can be replaced and modified according to the required technical parameters. It is well known to those skilled in the art. Therefore, those skilled in the art can clearly obtain the corresponding usage effect through the technical solution provided by this invention.

[0051] The control method of this invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the art. Furthermore, since this invention is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail here.

[0052] In addition, during the use of this embodiment, the operator should perform regular maintenance, cleaning and upkeep, and replace each component regularly according to its service life to ensure that the device is always kept in the best working condition.

[0053] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A device simulating a ski ski, characterized in that, include: The main body (3) of the simulated ski machine has a mounting position; A bottom support plate (1) is provided on the mounting position and is slidably connected to the main body (3) of the simulated ski machine; A simulated ski training component, part of which is located above the base support plate (1), the simulated ski training component includes two simulated ski training modules, the two simulated ski training modules are symmetrically arranged about the base support plate (1), and any one of the two simulated ski training modules has a training board support block (8), the training board support block (8) is slidably engaged with the support block connecting groove (7) of the base support plate (1); Weighing sensor (9) is located below the bottom support plate (1). The weighing sensor (9) is correspondingly set with the support block connecting groove (7). The training plate support block (8) passes through the support block connecting groove (7) and is connected to the weighing sensor (9). The weighing sensor (9) is used to obtain the weight of the trainee on the bottom support plate (1). The controller is electrically connected to the weighing sensor (9) and is used to obtain the weight through the weighing sensor (9) to execute the corresponding ski control command set.

2. The simulated ski machine ski device according to claim 1, characterized in that, The training board support block (8) includes multiple blocks, which are spaced apart along the length of the simulated ski training module. The support block connecting groove (7) includes multiple grooves, which are one-to-one with the training board support block (8).

3. The simulated ski machine ski device according to claim 1 or 2, characterized in that, Either of the two simulated ski training modules includes: A simulated ski training board (2) is located on the training board support block (8), and the training board support block (8) is detachably connected to the simulated ski training board (2). The training board support block (8) and the simulated ski training board (2) are connected by the linkage component.

4. The simulated ski machine ski device according to claim 3, characterized in that, The linkage component includes: Upper linkage rod (11), which is connected to the simulated ski training board (2); The lower linkage rod (15) is hinged at one end to the upper linkage rod (11), and the other end of the lower linkage rod (15) is hinged to the training plate support block (8).

5. The simulated ski machine ski device according to claim 4, characterized in that, The upper linkage rod (11) has an outer linkage rod docking groove (12), the lower linkage rod (15) has an inner linkage rod connector (18), the linkage rod connector (18) has an inner linkage rod docking groove, and the linkage rod docking post (17) is connected to the outer linkage rod docking groove (12) and the inner linkage rod docking groove in sequence, so that the linkage rod docking post (17) is rotatably connected to the upper linkage rod (11) and the lower linkage rod (15) respectively.

6. The simulated ski machine ski device according to claim 5, characterized in that, The lower linkage rod (15) has a side bearing column connection hole (16), and the training plate bearing block (8) has a side bearing column mounting groove (22). The side bearing column (14) passes through the side bearing column connection hole (16) and the side bearing column mounting groove (22) in sequence, so that the side bearing column (14) is rotatably connected to the lower linkage rod (15) and the training plate bearing block (8) respectively.

7. The simulated ski machine ski device according to claim 6, characterized in that, The upper linkage rod (11) has a side bearing column docking groove (13). When the training board bearing block (8) abuts against the simulated ski training board (2), the side bearing column docking groove (13) cooperates with the side bearing column (14).

8. The simulated ski machine ski device according to claim 5, characterized in that, The linkage component further includes: a main support column (21), the lower linkage rod (15) has a main support column docking groove (27), one end of the main support column (21) is connected to the training board support block (8), and when the training board support block (8) abuts against the simulated ski training board (2), the main support column docking groove (27) cooperates with the main support column (21).