Intelligent fitness equipment operation system

By linking smart sports equipment with a prize reward system, and utilizing mobile terminal mini-programs and IoT technology, prizes are automatically delivered, solving the problem of low efficiency in the use of smart sports equipment, stimulating children's interest in sports, and improving the fun and sustainability of sports.

CN223542383UActive Publication Date: 2025-11-14HUBEI SIBOAS SPORTS IND DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422129327.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-31
Publication Date
2025-11-14
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

The lack of integration between existing smart sports equipment and reward systems leads to low interest in sports among children, poor exercise persistence, and low efficiency in use.

Method used

Using mobile app mini-programs and IoT technology, users can win prizes by successfully completing sports challenges or reaching certain time limits. Combined with an automatic prize dispenser, the system links smart sports equipment with prize rewards and collects and records sports data.

Benefits of technology

It has sparked children's interest in intelligent sports, increased the fun and playability of sports, enhanced the sustainability of sports activities, and enriched the variety and efficiency of sports equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent fitness equipment operation system which comprises an automatic prize putting machine, an intelligent double-track rowing machine, an intelligent spinning, an intelligent flat-step exercise device, an intelligent basketball shooting machine, other fitness equipment, a data receiving, analyzing and feedback server and a mobile terminal. The mobile terminal is in network data transmission connection with the data receiving, analyzing and feedback server, and the automatic prize putting machine, the intelligent double-track rowing machine, the intelligent spinning, the intelligent flat walking exercise device, the intelligent basketball shooting machine and other fitness equipment are in network data transmission connection with the data receiving, analyzing and feedback server. The mobile terminal is in network data transmission connection with an automatic prize putting machine, an intelligent double-track rowing machine, an intelligent spinning, an intelligent flat walking exercise device, an intelligent basketball shooting machine and other fitness equipment through a data receiving, analyzing and feedback server, so that exercise and interest are promoted, and exercise and prizes are ingeniously combined; and any combination placement can be realized according to actual site requirements.
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Description

Technical Field

[0001] This utility model relates to the field of fitness equipment, and in particular to an intelligent fitness equipment operating system. Background Technology

[0002] Smart sports are gaining popularity worldwide. By scanning a QR code to access a mini-program, users can recharge and unlock smart sports equipment, successfully complete challenges, or receive corresponding children's prizes based on their exercise time. The mini-program can also track and record the user's steps, exercise duration, and calories burned. Smart sports equipment can effectively support children's exercise and stimulate their interest in sports. However, current technologies lack the ability to link smart sports equipment with prize-giving machines, resulting in low children's interest in sports, poor exercise duration, and low efficiency in using smart sports equipment. Therefore, a smart fitness equipment operation system is proposed. Utility Model Content

[0003] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the above problems.

[0004] An intelligent fitness equipment operating system includes an automatic prize dispenser, an intelligent dual-track rowing machine, an intelligent exercise bike, an intelligent walking exercise device, an intelligent basketball shooting machine, other fitness equipment, a data receiving, analysis, and feedback server, and a mobile terminal. The mobile terminal is connected to the data receiving, analysis, and feedback server via a network data transmission connection. The automatic prize dispenser, intelligent dual-track rowing machine, intelligent exercise bike, intelligent walking exercise device, intelligent basketball shooting machine, and other fitness equipment are each connected to the data receiving, analysis, and feedback server via a network data transmission connection. Furthermore, the mobile terminal communicates with the automatic prize dispenser, intelligent dual-track rowing machine, intelligent exercise bike, intelligent walking exercise device, intelligent basketball shooting machine, and other fitness equipment through the data receiving, analysis, and feedback server. The automatic prize dispenser connects to a network for data transmission with a smart bicycle, a smart walking exercise device, a smart basketball shooting machine, and other fitness equipment. The automatic prize dispenser includes several product channels and a retrieval port for easy prize collection. The product channels are arranged horizontally at equal intervals inside the automatic prize dispenser. Each product channel has an electrically installed pushing component at its end and an electrically installed dispensing sensor at its front end. The pushing components are connected to a data receiving, analysis, and feedback server for data transmission, and the dispensing sensors are electrically driven to the pushing components. The data receiving, analysis, and feedback server is also connected to the dispensing sensors for data transmission.

[0005] Preferably, the intelligent walking exercise device includes a support frame, and a first foot pedal movable frame is swaying up and down on both the left and right sides of the top of the support frame. The other end of each first foot pedal movable frame is obliquely connected to a first handle. Through the movable cooperation between the first handle and the first foot pedal movable frame, the exerciser can perform up and down stepping movements on the intelligent walking exercise device. The other end of the support frame is provided with a first display, and the first display is electrically connected to a first data sensing module. The first data sensing module is located on the side of the first foot pedal movable frame, and the first data sensing module is connected to a data receiving, analysis and feedback server for data transmission.

[0006] Preferably, a foot pedal locking assembly is provided between the first handle and the first foot pedal movable frame, and the foot pedal movable frame locking assembly is located at the bottom end of the bracket, and the top end of the foot pedal movable frame locking assembly cooperates with the first foot pedal movable frame;

[0007] The first display is equipped with a speaker, which is electrically located at the bottom of the first display and is electrically connected to the first data sensing module.

[0008] Preferably, the intelligent exercise bike includes a frame, with second footrests movably mounted on both sides of the frame, and a first seat cushion horizontally mounted on the top of the frame. The first seat cushion allows the user to sit on the frame and then step on the second footrests. A second data sensing module is mounted between the second footrests and the frame, and the second data sensing module is located on the side of the second footrests. The second data sensing module is connected to a data receiving, analysis, and feedback server for data transmission.

[0009] Preferably, a first seat adjustment knob and a second seat adjustment knob are provided between the first seat cushion and the vehicle frame, and the first seat adjustment knob and the second seat adjustment knob are respectively movably disposed on the vehicle frame, and the first seat adjustment knob and the second seat adjustment knob are respectively driven connected to the first seat cushion.

[0010] Preferably, a manual brake assembly and an automatic brake assembly are provided between the frame and the second foot pedal frame, and the manual brake assembly and the automatic brake assembly are respectively locked to the second foot pedal frame. The manual brake assembly is located on one side of the frame, and the automatic brake assembly is located at the bottom of the frame.

[0011] Preferably, the intelligent basketball shooting machine includes a backboard frame, and a ball track support platform is horizontally arranged on one side of the bottom end of the backboard frame. A ball storage frame is horizontally arranged on the side of the backboard frame, and the ball storage frame and the ball track support platform are parallel to each other. A backboard is vertically arranged at the top of the backboard frame, and a basketball hoop is horizontally arranged on one side of the backboard frame, and the basketball hoop and the ball storage frame are interconnected.

[0012] Preferably, a baffle is movably installed inside the ball storage frame, and the baffle is located laterally at the bottom of the ball storage frame. The baffle swings at the bottom of the ball storage frame. A third data sensing module is electrically installed in the ball storage frame and is located on the side inside the ball storage frame. The third data sensing module is electrically connected to a third display, which is located on the side outside the ball storage frame. The third data sensing module has a data transmission connection with a data receiving, analysis, and feedback server.

[0013] Preferably, the intelligent dual-track rowing machine includes a seat track frame, and a second seat is laterally movably mounted on the top of the seat track frame. A third handle is movably mounted on both sides of the seat track frame, and a hydraulic rod is mounted between the third handle and the seat track frame. The two ends of the hydraulic rod are movably connected to the third handle and the seat track frame, respectively. Foot pedals are also mounted on the left and right sides of the seat track frame, and the foot pedals are obliquely located at the front end of the left and right sides of the seat track frame.

[0014] Preferably, a fourth data sensing module is provided between the seat cushion track frame and the second seat cushion, and the fourth data sensing module is located under the second seat cushion. The fourth data sensing module is electrically connected to a fourth display, and the fourth display is vertically located at the front end of the seat cushion track frame. The fourth data sensing module is connected to a data receiving, analysis and feedback server for data transmission.

[0015] Compared with the prior art, the beneficial effects of this utility model are: by using a mini-program and Internet of Things technology on a mobile terminal, the information of successfully completing a sports challenge or corresponding time is fed back to the dispensing mechanism of the automatic prize dispenser. By successfully completing a sports challenge or corresponding time, the user can obtain a corresponding prize. By scanning a QR code on a mobile terminal to enter the mini-program, the user can recharge and activate the smart sports equipment, and receive corresponding prizes for successfully completing a sports challenge or corresponding time. The mini-program can also statistically and systematically record the user's steps, exercise time, and calories burned, thereby stimulating children's interest and love for smart sports.

[0016] Meanwhile, the use of such intelligent automated equipment not only enriches the variety of sports equipment and vending machines, but also features compact structure, novel appearance, small footprint, and easy mobility. Children can win prizes during sports activities, greatly enhancing the fun and playability of sports. It can be widely used in communities, schools, sports fields, shopping malls, parks and other places.

[0017] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the operating system of an intelligent fitness device;

[0020] Figure 2 A schematic diagram of the intelligent walking motion device;

[0021] Figure 3 Another structural schematic diagram of the intelligent walking motion device;

[0022] Figure 4 This is a structural diagram of an intelligent exercise bike;

[0023] Figure 5 This is another structural diagram of the intelligent exercise bike;

[0024] Figure 6 This is a structural diagram of an intelligent basketball shooting machine;

[0025] Figure 7 This is another structural diagram of the intelligent basketball shooting machine;

[0026] Figure 8 This is a schematic diagram of the structure of an intelligent dual-track rowing machine;

[0027] Figure 9 Another structural schematic diagram of the intelligent dual-track rowing machine;

[0028] Figure 10 This is a schematic diagram of an automatic prize dispenser.

[0029] Figure 11 This is another structural diagram of an automatic prize dispenser.

[0030] The diagram shows: 1. Automatic prize dispenser; 2. Intelligent dual-track rowing machine; 3. Intelligent exercise bike; 4. Intelligent walking exercise device; 5. Intelligent basketball shooting machine; 6. Other fitness equipment; 7. Data receiving, analysis, and feedback server; 8. Mobile terminal; 9. Support frame; 10. First handlebar; 11. First display; 12. First foot pedal frame; 13. Horn; 14. First data sensing module; 15. Foot pedal frame locking assembly; 16. Frame; 17. First seat cushion; 18. First seat adjustment knob; 19. Second seat adjustment knob; 20. Second foot pedal... 21. Second handlebar, 22. Second display, 23. Automatic braking assembly, 24. Manual braking assembly, 25. Second data sensing module, 26. Backboard rack, 27. Lower ball track support platform, 28. Ball storage basket, 29. Backboard, 30. Basketball hoop, 31. Baffle, 32. Third display, 33. Third data sensing module, 34. Seat track frame, 35. Fourth data sensing module, 36. Third handlebar, 37. Second seat, 38. Fourth display, 39. Foot pedal, 40. Hydraulic rod, 41. Pick-up port, 42. Cargo channel. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] Please see Figure 1-11In this embodiment of the present invention, an intelligent fitness equipment operating system includes an automatic prize dispenser 1, an intelligent dual-track rowing machine 2, an intelligent exercise bike 3, an intelligent walking exercise device 4, an intelligent basketball shooting machine 5, other fitness equipment 6, a data receiving, analysis, and feedback server 7, and a mobile terminal 8. The mobile terminal 8 is connected to the data receiving, analysis, and feedback server 7 via a network data transmission connection. The automatic prize dispenser 1, intelligent dual-track rowing machine 2, intelligent exercise bike 3, intelligent walking exercise device 4, intelligent basketball shooting machine 5, and other fitness equipment 6 are each connected to the data receiving, analysis, and feedback server 7 via a network data transmission connection. The mobile terminal 8 is connected to the data receiving, analysis, and feedback server 7 via the data receiving, analysis, and feedback server 7. The system establishes a network data transmission connection with the automatic prize dispenser 1, intelligent dual-track rowing machine 2, intelligent exercise bike 3, intelligent walking exercise device 4, intelligent basketball shooting machine 5, and other fitness equipment 6. Then, through the data receiving, analysis, and feedback server 7, it receives and analyzes the exercise data generated by each of the intelligent dual-track rowing machine 2, intelligent exercise bike 3, intelligent walking exercise device 4, intelligent basketball shooting machine 5, and other fitness equipment 6, and transmits the corresponding data feedback to the mobile terminal 8. The mobile terminal 8 then selects the corresponding prize based on the data, and transmits this data back to the automatic prize dispenser 1 via the data receiving, analysis, and feedback server 7. Finally, the automatic prize dispenser 1 dispenses the corresponding prize. Rewards are dispensed from within the machine for easy retrieval by users. The automatic prize dispenser 1, intelligent dual-track rowing machine 2, intelligent exercise bike 3, intelligent walking exercise device 4, intelligent basketball shooting machine 5, and other fitness equipment 6 can be arranged and configured according to the available space. The automatic prize dispenser 1 includes several channels 42 and retrieval openings 41 for easy prize retrieval. The channels 42 are arranged horizontally at equal intervals within the machine. Each channel 42 has an electrically driven pusher (not shown in the figure) at its end and a dispensing sensor (not shown in the figure) at its front end. The pushing component is connected to the data receiving, analysis and feedback server 7 for data transmission, and the dispensing sensor is connected to the pushing component for electrical drive. The data receiving, analysis and feedback server 7 is also connected to the dispensing sensor for data transmission. The data receiving, analysis and feedback server 7 receives feedback on the corresponding prizes on several channels 42, thereby driving the pushing component to push the corresponding prizes from the channels 42 to the retrieval port 41. The dispensing sensor detects the prizes at the exit of the channels and controls the pushing component to stop, preventing the pushing component from continuously returning goods. The information on the dropped prizes is fed back to the mobile terminal 8 for subsequent retrieval by the participants.

[0033] The intelligent walking exercise device 4 includes a support 9, and a first foot pedal movable frame 12 is swaying up and down at both the left and right sides of the top of the support 9. The other end of the first foot pedal movable frame 12 is obliquely connected to a first handle 10. Through the movable cooperation between the first handle 10 and the first foot pedal movable frame 12, the exerciser can perform up and down stepping movements on the intelligent walking exercise device 4. The other end of the support 9 is provided with a first display 11, and the first display 11 is electrically connected to a first data sensing module 14. The first data sensing module 14 is located on the side of the first foot pedal movable frame 12, and the first data sensing module 14 is connected to a data receiving, analysis and feedback server 7 for data transmission. The first data sensing module 14 transmits the relevant motion data of the up and down movement of the first foot pedal movable frame 12 to the data receiving, analysis and feedback server 7 and displays it on the first display 11. Thus, the relevant motion data of the intelligent walking exercise device 4 is fed back to the automatic prize dispenser 1, and prizes are dispensed according to the corresponding motion data.

[0034] A foot pedal movable frame locking assembly 15 is provided between the first handle 10 and the first foot pedal movable frame 12. The foot pedal movable frame locking assembly 15 is located at the bottom end of the bracket 9, and the top end of the foot pedal movable frame locking assembly 15 cooperates with the first foot pedal movable frame 12. Thus, the first foot pedal movable frame 12 can be locked when it is not in motion to prevent accidental activation.

[0035] The first display 11 is provided with a speaker 13, which is electrically located at the bottom of the first display 11. The speaker 13 is electrically connected to the first data sensing module 14, so that the motion data displayed on the first display screen 11 can be broadcast through the speaker 13.

[0036] The intelligent exercise bike 3 includes a frame 16, with second footrests 20 movably mounted on both sides of the frame 16. A first seat 17 is horizontally mounted on the top of the frame 16, allowing the user to sit on the frame 16 and pedal the second footrests 20 to perform cycling exercises. A second data sensing module 25 is located between the second footrests 20 and the frame 16, situated on the side of the second footrests 20. The second data sensing module 25 is connected to a data receiving, analysis, and feedback server 7. Data transmission is established between the two, and the relevant motion data of the second pedal frame 20 moving up and down is transmitted to the data receiving, analysis and feedback server 7 through the second data sensing module 25. The second data sensing module 25 is electrically connected to the second display 22, which is vertically located on the other side of the top of the frame 16. The motion data of the second pedal frame 20 is displayed through the second display 22, so that the exerciser's exercise on the smart exercise bike 3 generates relevant motion data transmission feedback to the automatic prize dispenser 1 and prizes are dispensed according to the corresponding motion data.

[0037] A first seat adjustment knob 18 and a second seat adjustment knob 19 are provided between the first seat cushion 17 and the frame 16. The first seat adjustment knob 18 and the second seat adjustment knob 19 are respectively movably mounted on the frame 16. The first seat adjustment knob 18 and the second seat adjustment knob 19 are respectively driven to the first seat cushion 17. Thus, the first seat cushion 17 is driven to move back and forth on the frame 16 by the first seat adjustment knob 18 and to move up and down on the frame 16 by the second seat adjustment knob 19.

[0038] A manual brake assembly 24 and an automatic brake assembly 23 are also provided between the frame 16 and the second foot pedal frame 20. The manual brake assembly 24 and the automatic brake assembly 23 are locked together with the second foot pedal frame 20. The manual brake assembly 24 is located on one side of the frame 16 and the automatic brake assembly 23 is located at the bottom of the frame 16. Thus, the second foot pedal frame 20 can be manually or automatically braked by the manual brake assembly 24 and the automatic brake assembly 23.

[0039] The intelligent basketball shooting machine 5 includes a backboard frame 26, and a ball track support platform 27 is horizontally arranged on one side of the bottom end of the backboard frame 26. A ball storage frame 28 is horizontally arranged on the side of the backboard frame 26, and the ball storage frame 28 and the ball track support platform 27 are parallel to each other. The ball can be passed through the ball track support platform 27. A backboard 29 is vertically arranged at the top of the backboard frame 26, and a basket 30 is horizontally arranged on one side of the backboard 29. The basket 30 and the ball storage frame 28 are interconnected. The basketballs shot into the basket will fall into the ball storage frame 28 and be stored in the specified number of basketballs. Then, the ball storage frame 28 will throw the basketballs onto the ball track support platform 27 so that the basketballs can be cyclically shot later.

[0040] A baffle 31 is movably installed inside the ball storage frame 28, and the baffle 31 is horizontally located at the bottom of the ball storage frame 28. The baffle 31 swings at the bottom of the ball storage frame 28. The ball storage frame 28 is electrically equipped with a third data sensing module 33, which is located on the side inside the ball storage frame 28. The third data sensing module 33 is electrically connected to a third display 32, which is located on the side outside the ball storage frame 28. The third data sensing module 33 is connected to the data receiving, analysis and feedback server 7 for data transmission. The third data sensing module 33 transmits the data of the number of basketballs thrown into the basket 30 and falling into the ball storage frame 28 to the data receiving, analysis and feedback server 7 and displays it on the third display 32. This feeds back the shooting data of the intelligent basketball shooting machine 5 to the automatic prize dispenser 1 and dispenses prizes based on the corresponding sports data.

[0041] The intelligent dual-track rowing machine 2 includes a seat track frame 34, and a second seat 37 is laterally movably mounted on the top of the seat track frame 34. Third handles 36 are movably mounted on both sides of the seat track frame 34, and a hydraulic rod 40 is installed between the third handles 36 and the seat track frame 34. The two ends of the hydraulic rod 40 are movably connected to the third handles 36 and the seat track frame 34, respectively. Through the cooperation between the hydraulic rod 40 and the third handles 36, when the user sits on the second seat 37, the user's legs extend and retract, pushing the second seat 37 to move on the seat track frame 34. Foot pedals 39 are also provided on the left and right sides of the seat track frame 34, and the foot pedals 39 are obliquely located at the front end of the left and right sides of the seat track frame 34, thus providing foot support when the user sits on the seat track frame 34.

[0042] A fourth data sensing module 35 is provided between the seat track frame 34 and the second seat 37, and the fourth data sensing module 35 is located under the second seat 37. The fourth data sensing module 35 is electrically connected to a fourth display 38, and the fourth display 38 is vertically located at the front end of the seat track frame 34. The fourth data sensing module 35 is connected to the data receiving, analysis and feedback server 7 for data transmission. The fourth data sensing module 35 transmits the motion data of the second seat 37 to the data receiving, analysis and feedback server 7 and displays it on the fourth display 38. This allows the motion data of the intelligent dual-track rowing machine 2 to be fed back to the automatic prize dispenser 1, and prizes are dispensed according to the corresponding motion data.

[0043] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention.

Claims

1. An intelligent fitness equipment operating system, characterized in that, The system includes an automatic prize dispenser, an intelligent dual-track rowing machine, an intelligent exercise bike, an intelligent walking exercise device, an intelligent basketball shooting machine, fitness equipment, a data receiving, analysis, and feedback server, and a mobile terminal. The mobile terminal establishes a network data transmission connection with the data receiving, analysis, and feedback server. Furthermore, the automatic prize dispenser, intelligent dual-track rowing machine, intelligent exercise bike, intelligent walking exercise device, intelligent basketball shooting machine, and other fitness equipment are each connected to the data receiving, analysis, and feedback server via a network connection. The exercise device, intelligent basketball shooting machine, and other fitness equipment are connected via network data transmission. The automatic prize dispenser includes several channels and a retrieval port for easy prize retrieval. The channels are arranged horizontally at equal intervals inside the automatic prize dispenser. Each channel has an electrically installed pushing component at its end and an electrically installed dispensing sensor at its front end. The pushing component is connected to a data receiving, analysis, and feedback server for data transmission. The dispensing sensor is electrically driven to the pushing component, and the data receiving, analysis, and feedback server is connected to the dispensing sensor for data transmission.

2. The intelligent fitness equipment operating system according to claim 1, characterized in that, The intelligent walking exercise device includes a support frame, with first foot pedal movable frames swinging up and down on both the left and right sides of the top of the support frame. The other end of each first foot pedal movable frame is obliquely connected to a first handle. Through the movable cooperation between the first handle and the first foot pedal movable frame, the exerciser can perform up and down stepping movements on the intelligent walking exercise device. The other end of the support frame is equipped with a first display, and the first display is electrically connected to a first data sensing module. The first data sensing module is located on the side of the first foot pedal movable frame and is connected to a data receiving, analysis and feedback server for data transmission.

3. The intelligent fitness equipment operating system according to claim 2, characterized in that, A foot pedal locking assembly is provided between the first handle and the first foot pedal movable frame, and the foot pedal movable frame locking assembly is located at the bottom end of the bracket, and the top end of the foot pedal movable frame locking assembly cooperates with the first foot pedal movable frame; The first display is equipped with a speaker, which is electrically located at the bottom of the first display and is electrically connected to the first data sensing module.

4. The intelligent fitness equipment operating system according to claim 1, characterized in that, The intelligent exercise bike includes a frame, with second footrests movably mounted on both sides of the frame, and a first seat cushion horizontally mounted on the top of the frame. The first seat cushion allows the user to sit on the frame and then pedal the second footrests. A second data sensing module is installed between the second footrests and the frame, and the second data sensing module is located on the side of the second footrests. The second data sensing module is connected to a data receiving, analysis, and feedback server for data transmission.

5. The intelligent fitness equipment operating system according to claim 4, characterized in that, A first seat adjustment knob and a second seat adjustment knob are provided between the first seat cushion and the vehicle frame. The first seat adjustment knob and the second seat adjustment knob are respectively movably mounted on the vehicle frame, and the first seat adjustment knob and the second seat adjustment knob are respectively driven to the first seat cushion.

6. The intelligent fitness equipment operating system according to claim 4, characterized in that, A manual brake assembly and an automatic brake assembly are also provided between the frame and the second foot pedal frame, and the manual brake assembly and the automatic brake assembly are respectively locked to the second foot pedal frame. The manual brake assembly is located on one side of the frame, and the automatic brake assembly is located at the bottom of the frame.

7. The intelligent fitness equipment operating system according to claim 1, characterized in that, The intelligent basketball shooting machine includes a backboard frame, and a ball track support platform is horizontally arranged on one side of the bottom end of the backboard frame. A ball storage frame is horizontally arranged on the side of the backboard frame, and the ball storage frame and the ball track support platform are parallel to each other. A backboard is vertically arranged at the top of the backboard frame, and a basketball hoop is horizontally arranged on one side of the backboard frame, and the basketball hoop and the ball storage frame are interconnected.

8. The intelligent fitness equipment operating system according to claim 7, characterized in that, A baffle plate is movably installed inside the ball storage frame, and the baffle plate is located horizontally at the bottom of the ball storage frame. The baffle plate swings at the bottom of the ball storage frame. A third data sensing module is electrically installed in the ball storage frame and is located on the side inside the ball storage frame. The third data sensing module is electrically connected to a third display and is located on the side outside the ball storage frame. The third data sensing module has a data transmission connection with a data receiving, analysis and feedback server.

9. The intelligent fitness equipment operating system according to claim 1, characterized in that, The intelligent dual-track rowing machine includes a seat track frame, and a second seat is laterally movable at the top of the seat track frame. A third handle is movably installed on both sides of the seat track frame, and a hydraulic rod is installed between the third handle and the seat track frame. The two ends of the hydraulic rod are movably connected to the third handle and the seat track frame, respectively. Foot pedals are also installed on the left and right sides of the seat track frame, and the foot pedals are all located obliquely at the front end of the left and right sides of the seat track frame.

10. The intelligent fitness equipment operating system according to claim 9, characterized in that, A fourth data sensing module is provided between the seat cushion track frame and the second seat cushion, and the fourth data sensing module is located under the second seat cushion. The fourth data sensing module is electrically connected to a fourth display, and the fourth display is vertically located at the front end of the seat cushion track frame. The fourth data sensing module is connected to a data receiving, analysis and feedback server for data transmission.