Aerial work equipment combined with artificial intelligence
By integrating voice recognition and multi-level communication systems, aerial work platforms have solved the problem of inconvenient operation, realized intelligent voice interaction control, and improved the ease of operation and safety of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-31
AI Technical Summary
Existing aerial work equipment is inconvenient to operate and lacks intelligent control. In particular, manual operation makes it difficult to achieve safe and efficient command transmission in noisy environments.
The aerial work platform adopts artificial intelligence and transmits commands to the lower control components through voice input. It integrates voice recognition and a multi-level communication system to achieve intelligent voice interaction control. Combined with a dual confirmation mechanism of physical buttons and voice, it ensures the safety and practicality of command execution.
It realizes intelligent voice interaction control of aerial work equipment, which improves the convenience and safety of operation. In particular, it can directly control the equipment through natural language commands in noisy environments, reducing the dependence on external networks.
Smart Images

Figure CN224062393U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of high-altitude operation technology, specifically to a high-altitude operation equipment that incorporates artificial intelligence. Background Technology
[0002] Existing aerial work platforms include vehicle-mounted aerial work trucks and self-propelled aerial work platforms. For example, self-propelled aerial work platforms include scissor lifts, boom lifts, mast lifts, column lifts, spider lifts, and tracked aerial work platforms. Existing aerial work platform electronic control units are divided into upper control (on the work platform) and lower control (on the chassis). Detection devices include angle sensors, pressure sensors, limit switches, detection radar, and height sensors. Operation is manual, which is inconvenient. Utility Model Content
[0003] To address the above technical problems, this utility model provides an aerial work platform that incorporates artificial intelligence, enabling commands to be transmitted to the lower control components via voice input.
[0004] The present invention adopts the following technical solution:
[0005] A high-altitude work platform integrating artificial intelligence includes a main body and an intelligent control device mounted on the main body. The intelligent control device includes an upper control component, a lower control component, and a dialogue component and a voice playback component located on the operating handle side of the upper control component. The dialogue component includes a voice recognition module, an artificial intelligence module, a first communication module, and a confirmation module. The first communication module is communicatively connected to the upper control component, the lower control component, and the voice playback component. The confirmation module is connected between the artificial intelligence module and the first communication module. By integrating voice recognition, artificial intelligence modules, and a multi-level communication system, intelligent voice interactive control of the high-altitude work platform is achieved. Operators can directly control the equipment through natural language commands, and the confirmation module ensures the safety of command execution. At the same time, the dual communication methods improve the overall practicality.
[0006] As a preferred option, the confirmation module is either a confirmation button or a voice confirmation unit; it provides a dual confirmation mechanism of physical button and voice, which not only meets the needs of tactile operation in noisy environments, but also supports barrier-free voice confirmation, enhancing the system's fault tolerance.
[0007] Preferably, the voice recognition module has a built-in storage device that stores voice command information. This localized voice command storage allows the device to maintain basic voice control functions even when the network is offline, reducing dependence on external networks.
[0008] Preferably, the voice playback component includes a speaker and a second communication module that is communicatively connected to the first communication module.
[0009] Preferably, when the device body is a scissor lift platform, a height sensor is provided on the scissor lift platform. The height sensor is communicatively connected to the lower control component. The lower control component transmits the height information to the upper control component or the first communication module. The dialogue component receives the height data forwarded by the upper control component or the lower control component. When the height is too high, an alarm can be issued through the voice playback component.
[0010] Preferably, the lower control component includes a cloud walkie-talkie that is communicatively connected to the dialogue component, enabling cloud walkie-talkie functionality between the ground and the platform.
[0011] Preferably, the device also includes a fault module, which is communicatively connected to the dialogue component and can issue an alarm through the voice playback component when a device malfunctions.
[0012] Compared with the prior art, the present invention has the following advantages: The present invention provides an aerial work platform that combines artificial intelligence, including an upper control component, a lower control component, a dialogue component, and a voice playback component. It can transmit commands to the lower control component through voice input. By integrating voice recognition, artificial intelligence modules, and a multi-level communication system, it realizes intelligent voice interaction control of the aerial work platform. Operators can directly control the equipment through natural language commands, and the confirmation module ensures the safety of command execution. At the same time, the dual communication methods improve the overall practicality. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the intelligent control device modules.
[0014] Figure 2 This is a schematic diagram of the dialog component.
[0015] Figure 3 This is a schematic diagram of the voice playback component.
[0016] Figure 4 This is the circuit diagram for an emergency stop.
[0017] In the diagram, the components are: upper control component 1, upper control emergency stop switch 1-1, lower control component 2, lower control emergency stop switch 2-1, dialogue component 3, voice recognition module 3-1, artificial intelligence module 3-2, first communication module 3-3, confirmation module 3-4, voice playback component 4, speaker 4-1, second communication module 4-2, and fault module 5. Detailed Implementation
[0018] To facilitate understanding of the technical solution of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments.
[0019] Example 1
[0020] like Figure 1-3As shown, an aerial work platform incorporating artificial intelligence includes a main body and an intelligent control device mounted on the main body. The intelligent control device includes an upper control component 1, a lower control component 2, and a dialogue component 3 and a voice playback component 4 located on one side of the operating handle of the upper control component 1. The dialogue component 3 includes a voice recognition module 3-1, an artificial intelligence module 3-2, a first communication module 3-3, and a confirmation module 3-4. The first communication module 3-3 is communicatively connected to the upper control component 1, the lower control component 2, and the voice playback component 4. The confirmation module 3-4 is connected between the artificial intelligence module 3-2 and the first communication module 3-3. By integrating voice recognition, artificial intelligence modules, and a multi-level communication system, intelligent voice interaction control of the aerial work platform is achieved. The operator can directly control the equipment through natural language commands, and the confirmation module ensures the safety of command execution. At the same time, the dual communication methods improve the overall practicality.
[0021] Confirmation modules 3-4 serve as either confirmation buttons or voice confirmation units, providing a dual confirmation mechanism of physical buttons and voice. This satisfies the tactile operation needs in noisy environments while also supporting accessible voice confirmation, enhancing the system's fault tolerance. For example, if confirmation module 3-4 is a confirmation button, pressing the confirmation button is required before inputting a voice command. Furthermore, pressing and holding the confirmation button disconnects the circuit, stopping the entire device for safety; or the lower control component 2 receives a confirmation button signal and stops operating.
[0022] like Figure 4 As shown, in one embodiment, the upper control component 1 includes an upper emergency stop switch 1-1, and the lower control component 2 includes a lower emergency stop switch 2-1. The upper emergency stop switch 1-1, the lower emergency stop switch 2-1, and the confirmation module 3-4 are connected in series. Pressing any one of the three buttons will cause the entire machine to stop operating.
[0023] In one implementation, the confirmation module 3-4 is a confirmation button and a voice confirmation unit, which are connected in parallel. During use, it can be unlocked manually by pressing the button or by voice.
[0024] Among them, the artificial intelligence module 3-2 connects to, but is not limited to, artificial intelligence models such as Deepseek, and can use the above models locally and on the network (the dialogue component can switch between local and network via voice or button).
[0025] When in use, the operator sends voice commands such as up, down, left turn, right turn, forward, backward, stop, etc. through the dialogue component 3. The recognition module 3-1 of the dialogue component 3 recognizes the command and sends it to the artificial intelligence module 3-2 for recognition. The command is then sent to the upper controller 1 through the first communication module 3-3, and the upper controller 1 sends it to the lower controller 2 for execution. Alternatively, the first communication module 3-3 can directly send the command recognized by the artificial intelligence module 3-2 to the lower controller 2 for execution.
[0026] The voice recognition module 3-1 has a built-in storage device that stores voice command information. This localized voice command storage enables the device to maintain basic voice control functions even when the network is offline, reducing dependence on external networks.
[0027] In addition, if the recognition module 3-1 inputs a command to play music, the artificial intelligence module 3-2 can recognize the command and play the music through the voice playback component 4.
[0028] The original aerial work platform remote data interaction was achieved through devices such as T-BOX. This application eliminates the need for T-BOX devices by using dialogue component 3, thus saving costs.
[0029] Preferably, the voice playback component 4 includes a speaker 4-1 and a second communication module 4-2 that is communicatively connected to the first communication module 3-3.
[0030] Preferably, when the device body is a scissor lift platform, a height sensor is provided on the scissor lift platform. The height sensor is communicatively connected to the lower control component 2. The lower control component 2 transmits the height information to the upper control component 1 or the first communication module 3-3. The dialogue component receives the height data forwarded by the upper control component 1 or the lower control component 2. When the height is too high, a voice alarm can be issued through the voice playback component 4, while traditional alarms only have flashing warnings on the scissor lift platform.
[0031] Preferably, the lower control component 2 includes a cloud walkie-talkie that is communicatively connected to the dialogue component 3, enabling cloud walkie-talkie functionality between the ground and the platform.
[0032] Preferably, the device also includes a fault module 5, which is communicatively connected to the dialogue component 3. The fault module 5 is a fault detection module in the prior art, which can detect the corresponding fault and issue an alarm through the voice playback component 4 when the device malfunctions.
[0033] The above are merely preferred embodiments of this utility model. The scope of protection of this utility model is defined by the scope of the claims. Any improvements and modifications made by those skilled in the art without departing from the spirit and scope of this utility model should also be considered as protection within the scope of this utility model.
Claims
1. An aerial work equipment incorporating artificial intelligence, characterized by, The device comprises a device body and a smart control device arranged on the device body, the smart control device comprising an upper control assembly (1), a lower control assembly (2), a dialogue assembly (3) and a voice playing assembly (4) located on one side of the operating handle of the upper control assembly (1); the dialogue assembly (3) comprises a voice recognition module (3-1), an artificial intelligence module (3-2), a first communication module (3-3) and a confirmation module (3-4), the first communication module (3-3) being in communication connection with the upper control assembly (1), the lower control assembly (2) and the voice playing assembly (4), and the confirmation module (3-4) being connected between the artificial intelligence module (3-2) and the first communication module (3-3).
2. The work at height equipment incorporating artificial intelligence according to claim 1, characterized in that, The confirmation module (3-4) is a confirmation button or a voice confirmation unit.
3. The work-at-heights equipment incorporating artificial intelligence of claim 1, wherein, The voice recognition module (3-1) is internally provided with a storage, and the storage stores voice instruction information.
4. The work-at-heights equipment incorporating artificial intelligence of claim 1, wherein, The voice playing assembly (4) comprises a loudspeaker (4-1) and a second communication module (4-2) in communication connection with the first communication module (3-3).
5. The work-at-heights equipment incorporating artificial intelligence of claim 1, wherein, When the device body is a scissor-type platform, the scissor-type platform is provided with a height sensor, the height sensor being in communication connection with the lower control assembly (2), and the lower control assembly (2) transmitting height information to the upper control assembly (1) or the first communication module (3-3).
6. The work-at-heights equipment incorporating artificial intelligence of claim 1, wherein, The lower control assembly (2) comprises a cloud intercom in communication connection with the dialogue assembly (3).
7. The work-at-heights equipment incorporating artificial intelligence of claim 1, wherein, Further comprising a fault module (5) in communication connection with the dialogue assembly (3).