Radio Frequency Host Dynamic Power Control from Object Feedback
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Solution Overview
Problem
In radio frequency operations, the use of constant parameters can lead to safety issues and unsatisfactory results due to changing physical characteristics of the object, posing risks to the object and operation device.
Innovation Solution
A data adjustment method that dynamically adjusts radio frequency output power based on real-time detection of physical characteristics, such as temperature and impedance, and updates preset ranges to ensure safety and effectiveness.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If constant parameters are used to carry out radio frequency operation, then the operation device is simple and easy to operate, but safety problems occur and physical characteristics of the object change leading to damage risks
Solution Approach 1:
The patent implements dynamic adjustment of radio frequency output power based on real-time detection of physical characteristics (temperature, impedance). The system transitions from constant parameters to dynamic parameters that automatically adapt to changing object conditions, resolving the contradiction between safety and complexity through automated control
Solution Approach 2:
The patent establishes a feedback loop where physical characteristics are continuously detected and fed back to the control system. The control system adjusts output power based on this feedback, ensuring safety while maintaining operational simplicity through automated closed-loop control
2Reliability
If real-time detection and adjustment of physical characteristics is implemented, then safety and effectiveness of radio frequency operation are improved, but device complexity and control difficulty increase
Solution Approach 1:
The system performs self-adjustment based on real-time detection without requiring external intervention. The control system automatically modifies output power according to detected physical characteristics, achieving high reliability while minimizing operational complexity through self-regulating mechanisms
Solution Approach 2:
The patent dynamically changes operational parameters (output power) based on detected physical characteristics. This parameter adaptation allows the system to maintain safety and effectiveness across varying conditions without requiring complex manual control systems
3Measurement precision
If preset range for physical characteristic data is updated dynamically, then accuracy of subsequent operations is improved, but measurement and detection difficulty increases
Solution Approach 1:
The system continuously detects physical characteristics and updates preset ranges throughout the operation process. This continuous monitoring and adjustment ensures high measurement precision for subsequent operations while managing detection difficulty through ongoing automated processes
Data Source
AI summary
Disclosed are a data adjustment method in a radio frequency operation and a radio frequency host. The data adjustment method includes acquiring set power data corresponding to the radio frequency operation, setting an output power of a radio frequency signal according to the set power data, and outputting the radio frequency signal to an object of the radio frequency operation; detecting physical characteristic data of the object in real time, and determining whether the physical characteristic data exceeds a preset range; adjusting the radio frequency output power when the physical characteristic data exceeds the preset range; and adjusting the preset range according to the physical characteristic data detected in real time in a preset period of time before a present moment when the physical characteristic data does not exceed the preset range. As a result, the safety and success rate of the radio frequency operation is improved.


