A child play ore model recognition device with integrated control system

The children's amusement mineral model recognition equipment with integrated control system uses a remote control to control a crane and a game truck to move and recognize mineral models. Combined with animation and audio explanations, it solves the problem of insufficient equipment interaction, realizes children's active participation and improves the educational effect.

CN224553898UActive Publication Date: 2026-07-24SHANGHAI YIPLAY AMUSEMENT EQUIP GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI YIPLAY AMUSEMENT EQUIP GRP CO LTD
Filing Date
2025-07-17
Publication Date
2026-07-24

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    Figure CN224553898U_ABST
Patent Text Reader

Abstract

The application relates to the field of children's amusement equipment, in particular to a children's amusement ore model identification device with an integrated control system. Children first control a first remote control console to control a crane to grab an ore model, then drive a truck through a second remote control console to complete ore model transfer, and finally place the ore model into a detection groove to trigger information identification. After the detection groove detects the ore model information, a display screen immediately plays a science popularization animation corresponding to the ore model, and a player outputs an explanation audio, solving the problems that traditional equipment is mainly passive observation and the interaction between children and equipment is insufficient, enabling children to actively participate in decision-making in the simulation mining and identification process, such as selecting a carrying path, increasing the participation of children, not only strengthening the understanding and memory of ore model knowledge, but also stimulating the exploration interest through gamification, significantly improving the transmission efficiency and interestingness of educational content, and realizing the dual goals of entertainment and learning.
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Description

Technical Field

[0001] This application relates to the field of children's amusement equipment technology, and in particular to a children's amusement mineral model recognition device with an integrated control system. Background Technology

[0002] As society places greater emphasis on cultivating children's comprehensive qualities, children's amusement facilities are gradually developing in the direction of integrating education and entertainment. As an important growth scene, children's playgrounds need to subtly convey scientific knowledge while providing a safe and entertaining experience through innovative design.

[0003] In the field of mineral model cognitive education, related technologies mainly convey mineral model information through static display or one-way video explanation. For example, children need to place the mineral model in front of the camera to trigger recognition, and then the corresponding content is displayed on the screen.

[0004] However, while it can display basic information, this technology has certain limitations: the operation mode is mainly passive observation, the depth of interaction between children and the device is insufficient, and the lack of physical operation experience can easily lead to weak participation from children. At the same time, the information presentation format is relatively simple, reducing the probability of stimulating exploration interest through multi-dimensional interaction, and there is considerable room for improvement in the educational effect. Utility Model Content

[0005] To address the aforementioned issues, this application provides a children's amusement mineral model recognition device with an integrated control system.

[0006] The present application provides a children's amusement mineral model recognition device with an integrated control system, which adopts the following technical solution: A children's amusement mineral model recognition device with an integrated control system includes a base, a play area, a control area, and a display screen. The display screen contains a player. The play area, control area, and display screen are all mounted on the base. The play area includes several mineral models, several toy trucks, and several cranes. The control area includes several detection slots, several first remote controls, and several second remote controls. The detection slots are used to detect information about the mineral models. The display screen is used to display the mineral model information. The player plays audio explanations of the mineral models. The first remote controls are used to control the movement of the cranes, and the second remote controls are used to control the movement of the toy trucks.

[0007] By adopting the above technical solution, children first use a first remote control to control a crane to lift the ore model in the play area, and then use a second remote control to move a game truck within the play area to the crane, placing the ore model on the truck. Subsequently, the second remote control guides the game truck to a position close to the detection slot, where children can remove the ore model from the truck and place it in the detection slot. Once the ore model is identified, the detection slot reads the ore model information and transmits the signal to the display screen. The display screen shows the corresponding ore model introduction animation and popular science knowledge, while a player plays accompanying explanatory audio. This solves the problems of traditional equipment being mainly passive observation and insufficient interaction between children and the equipment, allowing children to actively participate in decision-making during the simulated mining and identification process, such as choosing a transport path. This increases children's sense of participation, not only strengthening their understanding and memory of ore model knowledge, but also stimulating their interest in exploration through gamification, significantly improving the efficiency and fun of educational content delivery, and achieving the dual goals of entertainment and learning.

[0008] Preferably, both the first and second remote control consoles are equipped with remote control handles and buttons.

[0009] By adopting the above technical solution, children can use a remote control to control the movement of the game truck in all directions, as well as adjust the position of the crane to align with the ore model. The physical buttons are used to trigger the crane to grab the ore model and release the ore model into the game truck's cargo compartment. They can also control the lifting and lowering of the truck's cargo compartment.

[0010] Preferably, each of the game trucks and the cranes is equipped with a sensor.

[0011] By adopting the above technical solution, the sensor can ensure that the remote control commands of the first and second remote control stations are transmitted to the game truck and crane in real time, reducing the signal delay and interference of the control.

[0012] Preferably, the base is equipped with a main unit, which is electrically connected to the first remote control, the second remote control, the detection slot, and the display screen.

[0013] By adopting the above technical solution, the host can receive and process operation commands from the first and second remote controllers in real time, and synchronously transmit the commands to the game truck and crane for execution. At the same time, the detection slot identifies the ore model information and transmits the ore model information to the host for processing. The host synchronously transmits the information to the display screen, and the host controls the display screen to present the corresponding ore model introduction animation and popular science knowledge in a visual form. The display screen also plays the accompanying explanatory audio through a player.

[0014] Preferably, an access panel is provided on the back of the base, and the access panel is provided with an access door, the access door being hinged to the edge of the access panel.

[0015] By adopting the above technical solution, technicians can open the inspection door and directly access the main unit, circuit boards, and connecting cables through the inspection port to quickly complete cleaning, parts replacement, or debugging operations.

[0016] Preferably, the edges of the back of the base are sharp angles, while the edges of the front of the base are rounded.

[0017] By adopting the above technical solution, the sharp edges of the back of the base can fit tightly against the wall, saving space while enhancing the stability of the equipment. The rounded corners of the front edge eliminate sharp edges, reducing the risk of scratches and bumps to children in case of accidental collisions, making it especially suitable for public places with many children.

[0018] Preferably, the host has a built-in control system, which includes a control module, a first detection module, a second detection module, a multimedia module, a wireless transmission module, and a wireless receiving module. The first detection module, the second detection module, the multimedia module, the wireless transmission module, and the wireless receiving module are all connected to the control module.

[0019] By adopting the above technical solution, the first detection module detects the control commands of the first and second remote controllers in real time and transmits the control commands to the control module. The control module parses and generates movement commands for the game truck and crane. The movement commands parsed by the control module are sent to the game truck and crane in real time through the wireless transmission module. After receiving the commands, the wireless receiving module drives the game truck and crane to perform corresponding actions. At the same time, the second detection module detects the ore model information and transmits the data to the control module for processing. Meanwhile, the control module controls the multimedia module to display the ore model information.

[0020] Preferably, the control module and the wireless transmission module are both installed in the host, the first detection module is installed in the first remote control and the second remote control, the second detection module is installed in the detection slot, the wireless receiving module is installed in the sensor, the multimedia module includes a display unit and an audio unit, the display unit is installed in the display screen, the audio unit is installed in the player, and a chip is disposed inside the ore model.

[0021] By adopting the above technical solution, the first detection module is installed on the first and second remote controllers. The first and second remote controllers control the remote control handles and buttons to generate control commands and transmit them to the host. The host analyzes and generates movement commands for the game truck and crane through the control module. The host sends the movement commands to the wireless receiving module through the wireless transmitting module. The wireless receiving module is installed on the sensing element. The game truck and crane perform corresponding actions through the sensing element. The second detection module is installed in the detection slot. The second detection module senses the chip and reads the chip inside the ore model to obtain the ore model information, which is then synchronously transmitted to the host. Since the display unit is installed on the display screen and the audio unit is installed on the player, the host controls the display screen and player to display the corresponding ore model introduction animation and popular science knowledge. At the same time, the player plays the accompanying explanatory audio.

[0022] In summary, this application includes at least one of the following beneficial technical effects: 1. Children control a crane via a first remote control to grab ore models in the play area, and use a second remote control to guide a game truck to transport the ore models. Once the ore models are delivered to the detection slot, the detection slot can identify the ore model information and transmit the data to the display screen in real time, presenting the ore model's educational content in an animated form. At the same time, the player outputs narration audio, upgrading the traditional passive observation mode to an immersive interactive experience. This allows children to actively participate in decision-making during the simulated mining and identification process, such as choosing the transport path, increasing their sense of participation. This not only strengthens their understanding and memory of ore model knowledge but also stimulates their interest in exploration through gamification, significantly improving the efficiency and fun of delivering educational content and achieving the dual goals of entertainment and learning. 2. Both the first and second remote control consoles are equipped with remote control handles for controlling the movement of the game truck and adjusting the position of the crane. Physical buttons trigger the crane to grab and release ore models and the game truck's cargo box to lift and lower, enabling children to accurately control the equipment to complete the tasks of moving and identifying ore models, significantly improving the ease of operation and interactive fun. 3. The operation commands of the first and second remote controllers are transmitted to the host in real time. The host synchronously sends them to the game truck and crane for execution. After the detection tank identifies the information of the ore model, it sends the data back to the host for processing. The host synchronously transmits the data to the display screen to dynamically display the ore model's educational content in the form of animation, and links the player to output the accompanying audio explanation. Attached Figure Description

[0023] Figure 1 This is a structural schematic diagram of an embodiment of this application.

[0024] Figure 2 This is a schematic diagram of the internal structure of an embodiment of this application.

[0025] Figure 3This is a structural block diagram of an embodiment of this application.

[0026] Explanation of reference numerals in the attached diagram: 1. Base; 11. Edge; 12. Rounded corner; 13. Inspection port; 14. Inspection door; 15. Protective shell; 2. Play area; 21. Mineral model; 22. Play truck; 23. Crane; 3. Control area; 31. First remote control; 32. Second remote control; 33. Detection slot; 34. Remote control handle; 35. Button; 4. Display screen; 5. Main unit; 6. Sensor. Detailed Implementation

[0027] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.

[0028] This application discloses a children's playground mineral model recognition device with an integrated control system. (Refer to...) Figure 1 A children's amusement mineral model recognition device with an integrated control system includes a base 1, a play area 2, a control area 3, and a display screen 4. The play area 2, the control area 3, and the display screen 4 are all installed on the base 1. The base 1 has a hollow structure inside, and a main unit 5 is installed inside the base 1.

[0029] Specifically, the base 1 has an irregular shape, and the back edge of the base 1 is a sharp edge 11. The sharp edge 11 can fit tightly against the wall, saving space while enhancing the stability of the device. The side of the base 1 away from the wall is rounded 12. The rounded corner 12 treatment eliminates sharp edges, reducing the risk of scratches and bumps when children accidentally collide. It is especially suitable for public places with many children, effectively reducing the risk of children colliding.

[0030] Reference Figure 2 Furthermore, an inspection port 13 is provided on the back of the base 1, and an inspection door 14 is provided on the inspection port 13. The inspection door 14 is hinged to the edge of the inspection port 13 to cover the inspection door 14. Technicians can open the inspection door 14 and directly access the main unit 5, circuit board and connecting cables and other internal components through the inspection port 13 to quickly complete cleaning, parts replacement or debugging operations.

[0031] Correspondingly, the game area 2 includes ore models 21, game trucks 22 and cranes 23. In this embodiment, one game truck 22 and one crane 23 are placed in the game area 2, while several ore models 21 are placed evenly in the game area 2. The external shape of the ore models 21 is an irregular structure, and all of them have been rounded 12.

[0032] Meanwhile, the control area 3 includes several detection slots 33, several first remote control stations 31, and several second remote control stations 32. In this embodiment, three detection slots 33 are provided. The detection slots 33 are used to detect the information of the ore model 21. One first remote control station 31 and one second remote control station 32 are provided. The first remote control station 31 is used to control the crane 23, and the second remote control station 32 is used to control the game truck 22. The first remote control station 31 and the second remote control station 32 are located between two adjacent detection slots 33. The detection slots 33 are horizontally arranged with the first remote control station 31 and the second remote control station 32.

[0033] Furthermore, a player (not shown in the figure) is installed inside the display screen 4, and a protective shell 15 is provided on the base 1. The display screen 4 is fixed inside the protective shell 15, and the protective shell 15 is vertically fixed on the base 1. The protective shell 15 is also rounded at the corners 12. The display screen 4 is used to display information about the ore model 21, and the player explains the information about the ore model 21.

[0034] This means that children can use the first remote control 31 to control the crane 23 to lift the ore model 21 in the play area 2, and use the second remote control 32 to control the game truck 22 to move in the play area 2 to below the crane 23, so that the ore model 21 is placed on the truck. Then, the second remote control 32 guides the game truck 22 to move to a position close to the detection slot 33, whereby the children can take the ore model 21 off the truck and place it in the detection slot 33.

[0035] To further explain, once the ore model 21 is identified, the detection slot 33 reads the information of the ore model 21, while the display screen 4 shows the corresponding ore model 21 introduction animation and popular science knowledge. At the same time, the accompanying audio explanation is played through the player. This solves the problems of traditional equipment being mainly passive observation and insufficient interaction between children and the equipment. It enables children to actively participate in decision-making during the simulated mining and identification process, such as choosing the transportation path, which increases children's sense of participation. It not only strengthens their understanding and memory of the ore model 21 knowledge, but also stimulates their interest in exploration through gamification, significantly improving the efficiency and fun of the delivery of educational content, and achieving the dual goals of entertainment and learning.

[0036] Specifically, both the first remote control 31 and the second remote control 32 are equipped with remote control handles 34 and buttons 35, and there are two of each. At the same time, both the game truck 22 and the crane 23 are equipped with sensors 6, which are installed on the game truck 22 and the crane 23.

[0037] The child can rotate the remote control handle 34 to control the movement of the game truck 22 in all directions, as well as adjust the position of the crane 23 to align with the ore model 21. The physical button 35 is used to trigger the crane 23 to grab the ore model 21 and release the ore model 21 to the truck bed of the game truck 22. It can also control the lifting and lowering of the truck bed. The sensor 6 ensures that the control commands of the first remote control 31, the second remote control 32, and the button 35 are transmitted to the game truck 22 and the crane 23 in real time, reducing signal delay and interference.

[0038] Meanwhile, an inspection port 13 is provided on the back of the base 1. The inspection port 13 is equipped with an inspection door 14. The inspection door 14 is hinged to the edge of the inspection port 13. Technicians can open the inspection door 14 and directly access the main unit 5, circuit board and connecting cables and other internal components through the inspection port 13 to quickly complete cleaning, parts replacement or debugging operations.

[0039] Reference Figure 3 In addition, the host 5 has a built-in control system, which includes a control module, a first detection module, a second detection module, a multimedia module, a wireless transmission module, and a wireless receiving module. The first detection module, the second detection module, the multimedia module, the wireless transmission module, and the wireless receiving module are all connected to the control module.

[0040] Furthermore, the control module and the wireless transmission module are both mounted on the host 5, the first detection module is mounted on the first remote control 31 and the second remote control 32, the second detection module is mounted on the detection slot 33, the wireless receiving module is mounted on the sensor 6, the multimedia module includes a display unit and an audio unit, the display unit is mounted on the display screen 4, the audio unit is mounted on the player, and a chip (not shown in the figure) is set inside the ore model 21.

[0041] Specifically, the control module is set as a central processing unit, responsible for the overall coordination and instruction processing of the first detection module, the second detection module, the multimedia module, the wireless transmission module, and the wireless receiving module. The first detection module is set as a sensor to detect the motion signals of the remote control handle 34 and the button 35. The second detection module is also set as a sensor. The ore model 21 is placed in the detection slot 33. The sensor senses the chip in the ore model 21 to identify the corresponding ore model 21 information. The LCD display screen 4 serves as the display unit, and the audio chip serves as the audio unit. The LCD display screen 4 displays the corresponding ore model 21 introduction animation and popular science knowledge. At the same time, the audio chip plays the accompanying explanatory audio. The wireless transmission module is set as a Bluetooth module, realizing the transmission of movement signals from the host 5 to the game truck 22 and the crane 23. The wireless receiving module is set as a radio frequency receiver, realizing the reception of signals from the host 5 by the sensing element 6.

[0042] It should be noted that the audio chip has a pre-set audio explanation for the mineral model 21. The audio is usually stored in digital format in the external memory built into the audio chip. The content includes the corresponding audio explanation for the mineral model 21 and background music. The sensor senses the chip inside the mineral model 21, detects the information of the mineral model 21, and transmits the data to the control module for processing. The control module sends a trigger signal to the audio chip, and the audio chip plays the corresponding audio after receiving the signal.

[0043] Meanwhile, the hardware of the LCD display 4 includes a display panel, a driving circuit, a main control chip, and a storage medium. The animation introducing the ore model 21 and popular science knowledge are pre-stored in the storage medium. When the information of the ore model 21 is detected, the data is transmitted to the control module for processing. The control module queries the mapping table to determine the video path to be played. The main control chip then drives the circuit to transmit the video signal to the display panel to play the corresponding animation introducing the ore model 21 and popular science knowledge.

[0044] This explains that the first detection module is installed in the first remote control 31 and the second remote control 32. The first remote control 31 and the second remote control 32 control the remote control handle 34 and the button 35 to generate control commands and transmit the control commands to the host 5. The host 5 parses and generates movement commands for the game truck 22 and the crane 23 through the control module. The host 5 sends the movement commands to the wireless receiving module through the wireless transmitting module. The wireless receiving module is installed in the sensor 6. The game truck 22 and the crane 23 perform corresponding actions through the sensor 6. The second detection module is installed in the detection slot 33. Through the second detection module sensing the chip, it reads the chip inside the ore model 21 to obtain the information of the ore model 21 and transmits it synchronously to the host 5. Since the display unit is installed in the display screen 4 and the audio unit is installed in the player, the host 5 controls the display screen 4 and the player to display the corresponding ore model 21 introduction animation and popular science knowledge. At the same time, the player plays the accompanying explanatory audio.

[0045] The implementation principle of the children's amusement mineral model recognition device with integrated control system in this application embodiment is as follows: Children can control the crane to grab ore models and adjust their position using the remote control handles and buttons on the first and second remote control consoles. They can also operate the game truck to move under the crane to receive the ore models and control the truck bed to rise and fall. The remote control commands are collected in real time by the first detection module and transmitted to the host computer.

[0046] After receiving the remote control signal, the control module inside the host analyzes and generates the corresponding operation command. The command is then sent to the sensors on the game truck and crane via the wireless transmission module. After receiving the signal, the wireless receiving module in the sensor drives the game truck and crane to complete the action. After the crane lifts the ore model, it moves the game truck to the bottom of the crane. The crane then puts the ore model into the truck's cargo compartment. The child controls the truck to move it to the vicinity of the detection slot.

[0047] When a child places a ore model from inside the game truck into the detection slot, the second detection module reads the chip information inside the ore model, identifies the ore model information, and transmits the data to the host control module.

[0048] Based on the data, the control module determines the animation to be played and controls the display screen to display the ore model introduction animation and popular science knowledge. The control module simultaneously sends a signal to the player, and the player plays the corresponding ore model explanation content.

[0049] In addition, technicians can open the maintenance port through the maintenance door on the back of the base to directly access the main unit, circuit boards and cables to complete cleaning, parts replacement or system debugging, and ensure stable operation of the equipment.

[0050] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A children's amusement mineral model recognition device with an integrated control system, characterized in that, The system includes a base (1), a game area (2), a control area (3), and a display screen (4). A player is installed inside the display screen (4). The game area (2), control area (3), and display screen (4) are all mounted on the base (1). The game area (2) includes several ore models (21), several game trucks (22), and several cranes (23). The control area (3) includes several detection slots (33), several first remote controllers (31), and several second remote controllers (32). The detection slots (33) are used to detect information about the ore models (21). The display screen (4) is used to display information about the ore models (21), and the player plays music from the ore models (21). The audio explanation states that the first remote control (31) is used to control the movement of the crane (23), and the second remote control (32) is used to control the movement of the game truck (22). The base (1) is equipped with a host (5), which is electrically connected to the first remote control (31), the second remote control (32), the detection slot (33), and the display screen (4). The host (5) has a built-in control system, which includes a control module, a first detection module, a second detection module, a multimedia module, a wireless transmission module, and a wireless receiving module. The first detection module, the second detection module, the multimedia module, the wireless transmission module, and the wireless receiving module are all connected to the control module.

2. The children's amusement mineral model recognition device with integrated control system according to claim 1, characterized in that, Both the first remote control (31) and the second remote control (32) are equipped with a remote control handle (34) and a button (35).

3. The children's amusement mineral model recognition device with integrated control system according to claim 1, characterized in that, Several of the game trucks (22) and several of the cranes (23) are equipped with sensors (6).

4. A children's amusement mineral model recognition device with an integrated control system according to claim 1, characterized in that, The base (1) has an inspection port (13) on its back, and the inspection port (13) has an inspection door (14) which is hinged to the edge of the inspection port (13).

5. A children's amusement mineral model recognition device with an integrated control system according to claim 1, characterized in that, The back edge of the base (1) is a sharp edge (11), and the front edge of the base (1) is rounded (12).

6. A children's amusement mineral model recognition device with an integrated control system according to claim 1, characterized in that, The control module and the wireless transmission module are both installed in the host (5). The first detection module is installed in the first remote control (31) and the second remote control (32). The second detection module is installed in the detection slot (33). The multimedia module includes a display unit and an audio unit. The display unit is installed in the display screen (4), and the audio unit is installed in the player.

7. A children's amusement mineral model recognition device with an integrated control system according to claim 3, characterized in that, The wireless receiving module is mounted on the sensing element (6).

8. A children's amusement mineral model recognition device with an integrated control system according to claim 1, characterized in that, The ore model (21) has a chip inside.