Multi-Assembly Illumination Apparatus for Object Recognition
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Solution Overview
Problem
Current illumination technologies lack the ability to efficiently adjust light parameters such as color temperature and intensity to optimize object recognition, requiring an apparatus that can dynamically control these aspects for improved accuracy and efficiency.
Innovation Solution
An illumination apparatus comprising multiple light emitting assemblies with adjustable color temperatures and intensities, along with a control system that adjusts these parameters through input signals and a controller to generate specific light effects, including chromatic lights for status indication.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple light emitting assemblies with different color temperatures are used, then the adjustability of color temperature and light intensity is improved, but the device complexity increases
Solution Approach 1:
The illumination apparatus is divided into multiple independent light emitting assemblies, each capable of generating light with different color temperatures and intensities. This segmentation allows each module to be independently controlled and adjusted, providing versatile light parameter adjustment while maintaining modular simplicity that mitigates overall system complexity.
2Measurement precision
If light parameters are made adjustable for object recognition optimization, then recognition efficiency and accuracy are improved, but the control system complexity increases
Solution Approach 1:
The control system dynamically adjusts light parameters including color temperature and intensity based on recognition requirements. The controller modifies electrical signals in real-time to optimize illumination conditions for different recognition scenarios, enabling adaptive optimization of recognition accuracy without requiring a permanently complex control architecture.
3Adaptability or versatility
If multiple light emitting assemblies are used with adjustable intensities, then the illumination coverage and flexibility are improved, but the energy consumption increases
Solution Approach 1:
Each light emitting assembly can be independently controlled to provide locally optimized illumination with specific color temperature and intensity settings. This allows different regions or aspects of the illumination task to receive appropriately tailored light characteristics, improving overall illumination flexibility while avoiding the energy waste of uniformly illuminating all areas at maximum intensity.
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
Enables precise adjustment of light parameters to enhance recognition efficiency and accuracy, while also providing a method to indicate current status through customizable light effects, improving both functionality and user feedback.
Implementation Method 1
a first light emitting assembly configured to generate a first radiated light having a first color temperature and a first light intensity
Implementation Method 2
a second light emitting assembly configured to generate a second radiated light having a second color temperature and a second light intensity
Data Source
AI summary
The present disclosure relates to an illumination apparatus, an illumination system and an illumination control method. The illumination apparatus comprises: a first light emitting assembly configured to generate a first radiated light having a first color temperature and a first light intensity, wherein the first light intensity is adjustable; a second light emitting assembly configured to generate a second radiated light having a second color temperature and a second light intensity, wherein the second light intensity is adjustable and the second color temperature is lower than the first color temperature; and a third light emitting assembly configured to generate a third radiated light having a preset color and a third light intensity, wherein the preset color and the third light intensity are adjustable; wherein a color temperature of a radiated light generated by the illumination apparatus is configured to be adjusted by adjusting at least one of the first light intensity and the second light intensity.

