Motion-Sensing Lighting Unit Color Control for Dynamic Effects
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Solution Overview
Problem
Current lighting products have fixed lighting effect levels, limiting the ability to dynamically adjust lighting effects to meet user needs.
Innovation Solution
A lighting-effect control method that determines the state of a lighting device using detection sensors, calculates a target color area based on detection data, and adjusts the color values of individual lighting units accordingly to enrich the lighting experience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If fixed lighting effect levels are used, then the device structure is simple and easy to control, but the lighting effect variety is limited and cannot meet user needs
Solution Approach 1:
The patent applies dynamics by transitioning from fixed lighting effect levels to dynamic, real-time lighting control. The controller dynamically adjusts lighting effects based on motion detection data, allowing the lighting system to adapt continuously to user movements rather than being constrained to predetermined fixed levels.
Solution Approach 2:
The patent changes the control parameter from discrete fixed levels to continuous dynamic parameters. By using motion detection data (such as acceleration values from sensors) to dynamically determine lighting effect parameters like color temperature and brightness, the system achieves greater lighting effect variety while maintaining relatively simple hardware through software-based parameter adjustment.
2Adaptability or versatility
If dynamic lighting adjustment is implemented, then lighting effect variety increases, but the control system becomes more complex
Solution Approach 1:
The lighting system performs self-service by automatically adjusting lighting effects based on motion detection data without requiring manual user input. The controller autonomously processes sensor data and adjusts lighting parameters in real-time, reducing the need for complex user interfaces and manual control mechanisms.
Solution Approach 2:
The system implements feedback control by continuously monitoring motion detection data and using this information to adjust lighting effects in real-time. The detection sensor provides feedback about user presence and movement, which the controller uses to dynamically modify lighting parameters, creating a responsive closed-loop control system.
Data Source
AI summary
This disclosure discloses a lighting-effect control method, apparatus, lighting device, electronic device, and storage medium. The lighting-effect control method is applied to a controller. The controller is connected to a plurality of lighting units and a detection sensor respectively. The method includes: determining a state of the lighting device; when the state of the lighting device is a motion state, determining a target color area according to detection data of the detection sensor; determining a target color value corresponding to each lighting unit according to the target color area; and controlling each lighting unit to display a corresponding target color value, thereby dynamically adjusting the target color value displayed by each lighting unit according to changes in the state of the lighting device and the detection data, and enriching lighting-effect control methods.


