Electroluminescent Relief Print Scanner Current Adjustment
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Solution Overview
Problem
Users of electro-luminescent-based body-part relief print scanning devices often experience uncomfortable electrical sensations due to the electrical current used in the scanning process, which can be perceived as shock.
Innovation Solution
A system that adjusts the electrical current configuration based on initial image characteristics, using a current determination component to identify and adjust the current characteristics such as voltage and frequency to mitigate perceived electrical sensations while maintaining image quality.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If electrical current is used in electro-luminescent-based relief print scanning, then image capture is enabled, but users experience uncomfortable electrical sensations
Solution Approach 1:
The system dynamically adjusts electrical current parameters (voltage, frequency, duration) based on real-time feedback from image quality analysis and user sensation monitoring. By continuously optimizing these parameters, the system maintains sufficient current for reliable image capture while reducing current levels that cause uncomfortable electrical sensations, thus resolving the contradiction between image quality and user comfort.
Solution Approach 2:
The system incorporates feedback mechanisms that monitor both image quality characteristics and user electrical sensation responses. This feedback loop enables the control system to automatically adjust electrical current parameters, reducing harmful sensations while maintaining adequate image capture capability. The feedback from image analysis guides the optimization of current characteristics to achieve the desired balance.
2Ease of operation
If electrical current characteristics are adjusted to reduce shock sensation, then user comfort is improved, but image quality may deteriorate
Solution Approach 1:
The system employs dynamic adjustment of electrical current characteristics rather than static fixed values. Current parameters such as voltage, frequency, and pulse duration are continuously optimized based on real-time feedback from image quality assessment and user sensation monitoring. This dynamic approach allows the system to adapt current characteristics to maintain both user comfort and image quality across different scanning conditions.
Solution Approach 2:
The system implements multiple parameter changes including variations in voltage levels, frequency, pulse width, and current configuration based on feedback analysis. By adjusting these parameters dynamically, the system can reduce electrical sensations perceived by users while maintaining sufficient current for high-quality image capture, thus resolving the contradiction between comfort and image quality.
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
The system effectively reduces the discomfort experienced by users during scanning while ensuring the capture of high-quality relief print images by dynamically adjusting the electrical current characteristics.
Implementation Method 1
A body-part relief print image device may use an electrode-based, electro-luminescence component that can utilize an electrical connection between a relief object and the electro-luminescence component
Data Source
AI summary
One or more techniques, devices and/or systems are disclosed for mitigating a perceived electrical sensation for a relief print scanning device. A current determination component can be used to identify an electrical current configuration that provides a mitigated electrical sensation to the user, for use with an electroluminescent-based relief print scanning device. The electrical current configuration can be identified using one or more image characteristics of a relief print image, which is captured by the devices using the current configuration. A current adjusting component, can be operably coupled with the current determination component, and may be used to adjust the current configuration, where the adjustment can be based on current adjustment data that is provided by the current determination component, based on the image characteristics.


