Working Machine Structure Display With Real-Time Motion Simulation
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Existing human-computer interfaces for working machines display static working condition diagrams, failing to intuitively show changes in working conditions, thereby increasing the burden of information acquisition for users.
Innovation Solution
A dynamic simulation display method and system that acquires real-time working condition data, including angle data from sensors on the operating arm, updates the displayed structure dynamically, and highlights critical data to provide an intuitive understanding of the machine's state.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If static working condition diagrams are used for display, then device complexity is reduced, but information intuitiveness deteriorates
Solution Approach 1:
The patent applies the Dynamics principle by transforming the static display into a dynamic simulation display that updates in real-time based on working condition data. The display system dynamically adjusts the working machine structure visualization according to sensor data, making the system adaptable and intuitive without significantly increasing complexity.
Solution Approach 2:
The patent uses the Copying principle by creating a virtual simulation model that replicates the actual working machine structure. This digital copy updates based on real sensor data, providing intuitive visualization without requiring complex physical modifications to the actual machine.
2Loss of information
If dynamic simulation display is implemented, then information intuitiveness is improved, but device complexity increases
Solution Approach 1:
The patent applies the Universality principle by designing a display system that serves multiple functions: it visualizes the working machine structure, displays working condition data, and provides simulation capabilities all through a single integrated interface, reducing overall system complexity despite enhanced functionality.
Solution Approach 2:
The patent uses the Intermediary principle by introducing a simulation model as an intermediary between the actual machine and the display interface. This mediator translates complex sensor data into intuitive visual representations, simplifying the information processing required for the display system.
3Device complexity
If working condition data is displayed without dynamic updates, then device complexity is minimized, but user burden increases
Solution Approach 1:
The patent applies the Self-service principle by implementing automatic real-time updates of the simulation display based on incoming sensor data. The system serves itself by continuously refreshing the visualization without requiring user intervention, reducing the information acquisition burden while maintaining manageable complexity.
4Ease of operation
If real-time dynamic updates are implemented, then ease of operation is improved, but device complexity increases
Solution Approach 1:
The patent applies the Continuity principle by implementing continuous real-time updates of the simulation display. The system maintains constant synchronization between the actual machine state and the visual representation, providing uninterrupted useful information to users without requiring complex periodic refresh mechanisms.
Data Source
Figure 1
Figure 2
Figure 3~4
AI summary
Disclosed are a dynamic simulation display method, device and system for a working machine structure. The method firstly acquires working condition data such as angle data of a lower arm (22) of a working machine in real time, and then dynamically updates the currently displayed working machine structure according to the working condition data obtained, which enables users to grasp a working condition change, a working state, a relative position and other information of the working machine according to the updated displayed working machine structure intuitively. A burden of information acquisition on the users may be reduced, and using experience of the working machine on the users may be improved.