Electronic Device Control Right Transfer via Distance Detection
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Solution Overview
Problem
Existing electronic devices with communication capabilities face challenges in seamlessly transferring control rights between devices, especially when users are separated by distance or engaging in activities that prevent direct interaction, such as exercise or swimming, leading to disruptions in wearable device functionality.
Innovation Solution
A method and apparatus that allow electronic devices to detect events based on distance changes and transfer control rights between connected devices, enabling seamless handover of control rights and maintaining service continuity through the transmission of control right information, connection information, and service content details.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If control right transfer is implemented between electronic devices, then service continuity is maintained during device separation, but device complexity and communication protocol requirements increase
Solution Approach 1:
The system performs preliminary actions by establishing connection relationships and preparing control right transfer protocols before device separation occurs. The electronic devices pre-negotiate and store necessary connection information, enabling seamless control transfer when separation is detected, thus maintaining service continuity without requiring complex real-time decision-making during the actual separation event.
Solution Approach 2:
The patent introduces an intermediary mechanism in the form of predefined connection information and control protocols that mediate the control right transfer process. This intermediary layer simplifies the direct device-to-device control transfer by providing structured communication frameworks and connection data, reducing the overall system complexity while ensuring reliable service continuity.
2Ease of operation
If automatic control right transfer is enabled based on distance detection, then user interaction requirements are reduced, but detection precision and automation extent increase
Solution Approach 1:
The system implements self-service by enabling electronic devices to automatically detect distance changes and initiate control right transfer without user intervention. The devices autonomously monitor their spatial relationship, detect separation events, and execute control transfer based on predefined protocols, thereby simplifying user interaction while achieving practical automation levels.
Solution Approach 2:
The patent incorporates feedback mechanisms where devices continuously monitor distance information and use this feedback to trigger control right transfer automatically. The distance detection system provides real-time feedback about device proximity, enabling the automation system to make informed decisions about when control transfer should occur, balancing automation extent with operational simplicity.
Data Source
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AI summary
A communication method in a first electronic device is provided. The method includes connecting to a second electronic device, transmitting first information for a third electronic device to the second electronic device, and controlling the third electronic device using the first information, wherein the first information includes control right information for the third electronic device.