Robot Operating System for Scenario-Based Interaction Control
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Solution Overview
Problem
Existing robots are limited by a subordinate interaction model, leading to monotonous scenarios and content in user interactions, causing users to quickly lose interest due to lack of complexity and individualization in communication.
Innovation Solution
A robot operating system that includes a processor to control movement and operations within designated interaction scenarios, facilitated by a mobile terminal and control device, allowing users to select and manage interaction scenarios, enabling more diverse and complex interactions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If the robot follows a subordinate interaction model with fixed commands, then the control structure is simple and easy to implement, but the interaction scenario and content become monotonous, causing users to quickly lose interest
Solution Approach 1:
The patent segments the interaction system into multiple independent components: a mobile terminal for scenario selection, a control device for command generation, and a robot for execution. This segmentation allows each component to have specialized functions, increasing overall interaction diversity while keeping individual component complexity manageable.
Solution Approach 2:
The patent introduces a control device as an intermediary between the mobile terminal and the robot. This intermediary translates user selections into specific control commands, enabling complex interaction scenarios without requiring direct complex communication between all components, thus managing system complexity.
2Adaptability or versatility
If the robot performs only basic voice interaction, then the device complexity is low, but the interactive content is limited and users quickly lose interest
Solution Approach 1:
The mobile terminal serves multiple functions: it displays interaction scenarios, receives user selections, generates control commands, and communicates with both the control device and robot. This multi-functionality increases interactive content complexity while avoiding the need for separate specialized devices for each function.
Solution Approach 2:
The patent adds a new dimension to robot interaction by introducing scenario-based classification. Instead of only basic voice commands, the system organizes interactions into categorized scenarios (e.g., daily assistance, entertainment, education), expanding the complexity and variety of interactive content available.
3Adaptability or versatility
If the robot lacks individualized development capability, then the system is simple to operate, but the interaction experience is monotonous and users lose interest quickly
Solution Approach 1:
The system performs preliminary action by pre-defining multiple interaction scenarios in the mobile terminal before actual robot interaction. Users can browse and select from these pre-configured scenarios, which reduces the operational complexity during interaction while enabling individualized and diverse interaction experiences.
Data Source
AI summary
A robot and an operating system, a control device, a control method and a storage medium thereof, wherein the robot includes a processor configured to execute the following operation commands: controlling the robot to move to a designated position corresponding to an interaction scenario, wherein the interaction scenario is a scenario in which the robot interacts with a user; controlling the robot to perform an operation corresponding to an operation of the user in the interaction scenario, thereby realizing the robot can perform a complex interaction with the user based on the colorful interaction scenario and solving the technical problem of the prior art that the interaction scenario and the interactive content between the user and the robot are excessively monotonous.

