Wearable Electronic System Autonomous Control via Triggering Data
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Solution Overview
Problem
Conventional wearable electronic devices require a mobile terminal for control, making the operation complex and inconvenient, especially for functions like recording running data, which limits their application and user experience.
Innovation Solution
An electronic system with a maintenance apparatus for positioning, a first acquisition apparatus for detecting triggering data, and a processing apparatus that determines whether the data meets a condition to control the system to perform preset functions without a mobile terminal, allowing for simplified operation and direct control via detected parameters.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a mobile terminal is used to control the wearable electronic device, then the device can perform preset functions, but the control operation becomes complex
Solution Approach 1:
The wearable electronic device is equipped with a processing apparatus that can independently execute control operations based on detection results from the acquisition apparatus. The device serves itself by making autonomous decisions about when to perform preset functions without requiring external control from a mobile terminal, thereby simplifying user operation while maintaining full functionality.
Solution Approach 2:
The control system is segmented into independent components: the acquisition apparatus detects conditions, the processing apparatus evaluates triggering conditions and makes decisions, and the execution apparatus performs functions. This segmentation allows the wearable device to operate autonomously while maintaining the ability to perform multiple preset functions.
2Ease of operation
If the wearable electronic device operates independently without a mobile terminal, then the control operation is simplified, but the device complexity increases
Solution Approach 1:
The processing apparatus serves multiple functions: it receives detection data from the acquisition apparatus, evaluates triggering conditions, makes control decisions, and manages execution of preset functions. By consolidating these diverse functions into a single multi-functional processing unit, the device achieves operational independence without proportionally increasing overall system complexity.
Solution Approach 2:
The acquisition apparatus, processing apparatus, and execution capabilities are merged into an integrated system where the processing apparatus acts as a central brain coordinating all functions. This merging reduces the need for separate control hardware and simplifies the overall system architecture while enabling autonomous operation.
Data Source
AI summary
Provided is an electronic system and a control method for the electronic system. The electronic system includes a maintenance apparatus configured to maintain a position of the electronic system relative to a user in a case that the electronic system is worn by the user; a first acquisition apparatus configured to detect triggering data; and a processing apparatus configured to determine whether the triggering data meets a first condition, and control the electronic system to perform a preset function based on a result of the determination. When using a wearable electronic device including the electronic system, a user can control the electronic system to perform a preset function only by triggering the first acquisition apparatus, thereby simplifying the control operation. And the control method can be used for driving the electronic system to perform a preset function, thereby providing convenience in use.


