Energy Treatment Apparatus Power Management Controller
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Solution Overview
Problem
Existing energy treatment apparatuses face challenges in efficiently managing and optimizing the use of electric power sources, particularly in ensuring that the sum of driving electric powers for different energy modes remains within the maximum source electric power capacity, which can lead to reduced battery size and weight but compromises treatment performance.
Innovation Solution
The apparatus includes a controller that detects and manages the first and second driving electric powers to ensure they remain within the maximum source electric power limits, prioritizing either high-frequency electric power or ultrasonic vibration based on the energy mode, thereby optimizing energy distribution and maintaining treatment performance.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Weight of moving object
If the battery size is reduced to decrease weight and size, then the portability is improved, but the maximum source electric power capacity is reduced which compromises treatment performance
Solution Approach 1:
The patent implements dynamic control of driving electric power based on real-time battery state detection. The controller adjusts the driving electric power supplied to the energy generator according to the detected battery state, allowing the system to operate within the reduced power capacity of a lighter battery while maintaining optimal treatment performance through adaptive power management.
Solution Approach 2:
The patent changes the operating parameters of the energy generator by controlling the driving electric power level based on battery state. By dynamically adjusting the power parameter according to the detected battery state, the system optimizes the balance between available power capacity and treatment requirements, enabling effective operation with a smaller battery.
2Quantity of substance
If the sum of first driving electric power and second driving electric power is controlled to remain within maximum source electric power limits, then the battery size can be reduced, but the treatment performance may be compromised
Solution Approach 1:
The patent employs feedback control by detecting the battery state in real-time and using this information to control the driving electric power. The controller continuously monitors the battery state and adjusts the power supply accordingly, ensuring that the sum of driving electric powers remains within the maximum capacity limits while maintaining consistent and reliable treatment performance through adaptive power management.
Solution Approach 2:
The system performs preliminary detection of the battery state before controlling the driving electric power. By detecting the battery state in advance and using this information to pre-adjust the power supply, the system ensures that the power consumption remains within limits while maintaining treatment performance consistency, avoiding power constraints during critical treatment moments.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This solution allows for effective and efficient use of energy, reducing battery size and weight while ensuring consistent treatment performance by prioritizing energy distribution within the defined power limits, thus enhancing operational efficiency and usability.
Implementation Method 1
an ultrasonic vibration generated in an ultrasonic transducer including piezoelectric elements
Data Source
AI summary
In an energy treatment apparatus, maximum source electric power of source electric power output from an electric power source is defined, first energy is generated by supplying first driving electric power to a first energy generator due to the source electric power, and second energy is generated by supplying second driving electric power to a second energy generator due to the source electric power. A controller keep the sum of the first driving electric power and the second driving electric power that are supplied per unit time less than or equal to the maximum source electric power of the electric power source continuously with time.


