RF Operation Control for Temperature and Impedance Protection
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Solution Overview
Problem
Existing methods for adjusting physical characteristic parameters of radio frequency operation objects are inaccurate, leading to potential damage and malfunctions, reducing the success rate and safety of radio frequency operations.
Innovation Solution
Implementing a method that automatically adjusts first and second physical characteristic data, such as temperature and impedance, within preset ranges using a dual-protection mode, prioritizing temperature adjustments over impedance to ensure both parameters are within safe limits.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If physical characteristic parameters are empirically adjusted by operator, then ease of operation is improved, but measurement precision and reliability deteriorate
Solution Approach 1:
The patent replaces the manual empirical adjustment method with an automated control system that uses detection modules to monitor physical characteristic parameters and automatically adjusts them according to preset ranges. This substitution of manual operation with automated detection and control systems resolves the contradiction by eliminating human subjectivity while maintaining operational simplicity.
Solution Approach 2:
The patent implements a feedback mechanism where detection modules continuously monitor physical characteristic parameters and feed this information back to the control system, which then automatically adjusts parameters to maintain them within preset ranges. This closed-loop feedback system ensures both high precision and ease of operation.
2Device complexity
If physical characteristic parameters are not controlled in time, then device complexity is reduced, but reliability and safety deteriorate
Solution Approach 1:
The patent establishes preset numerical ranges for physical characteristic parameters before the radio frequency operation begins. These predetermined safety thresholds enable the system to proactively prevent parameter deviations that could lead to equipment damage or safety incidents, rather than reacting after problems occur.
Solution Approach 2:
The real-time detection and feedback mechanism continuously monitors physical characteristic parameters and automatically triggers adjustments when parameters approach or exceed preset ranges. This automated feedback loop ensures reliable and safe operation without requiring complex manual monitoring systems.
3Reliability
If automatic adjustment of physical characteristic parameters is implemented, then reliability is improved, but device complexity increases
Solution Approach 1:
The patent employs a control system that integrates multiple functions including parameter detection, data processing, range comparison, and automatic adjustment within a unified automated control apparatus. This multi-functional design improves reliability while avoiding the need for separate complex systems for each function.
Solution Approach 2:
The system performs self-adjustment by automatically detecting parameter deviations and correcting them without external intervention. The automated control system serves itself by using its own detection capabilities to trigger corrective actions, eliminating the need for complex external monitoring and manual adjustment mechanisms.
Data Source
AI summary
A method for protecting a radio frequency operation object from data abnormality, a radio frequency host and a storage medium are provided. The method for protecting a radio frequency operation object from data abnormality includes: determining a data protection mode of the radio frequency operation object, which includes a uni-protection mode and a dual-protection mode; when the data protection mode is the dual-protection mode, detecting, in real time, first and second physical characteristic data of the radio-frequency operation object corresponding to the dual-protection mode; and when the values of the first and second physical characteristic data are beyond their respective preset numerical ranges, adjusting the values of the first and second physical characteristic data respectively according to priorities of protection against the first and second physical characteristic data, to make the values of the first and second physical characteristic data be both within their respective numerical ranges.


