Electric Bracket Calibration for Automated Projection Lamp Adjustment
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Solution Overview
Problem
Large-sized projection lamps in lighting systems are difficult to operate manually, leading to cumbersome operations and reduced safety in ensuring light quality.
Innovation Solution
A control method for a lighting system that includes a lighting device mounted on an electric bracket, where a controller acquires accessory information and determines control parameters to automatically adjust the lighting device's angle, eliminating the need for manual operation.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If manual adjustment of the projection lamp is used, then the lighting system can be operated, but the operation becomes cumbersome and safety is reduced
Solution Approach 1:
The patent replaces the manual mechanical adjustment system with an automated control system. The controller receives control instructions and automatically adjusts the projection lamp's position and parameters, eliminating the need for manual operation while improving both ease of operation and safety through automated control mechanisms.
Solution Approach 2:
The projection lamp system performs self-adjustment through automated control. The controller automatically adjusts the lamp's position, angle, and lighting parameters based on received instructions, enabling the system to service itself without manual intervention, thereby improving operational convenience and safety.
2Productivity
If manual adjustment of the projection lamp is used, then the lighting system can be operated, but control efficiency is reduced
Solution Approach 1:
The patent replaces manual mechanical adjustment with automated electronic control. The controller systematically manages the projection lamp's parameters and position through automated algorithms, significantly improving control efficiency while maintaining ease of operation through simple control interfaces.
Solution Approach 2:
The system performs preliminary calibration and parameter setting automatically before operation. The controller pre-configures optimal lighting parameters and positions based on the projection lamp's characteristics, enabling efficient operation without manual adjustment during actual use.
3Reliability
If automatic control is implemented, then control efficiency and safety are improved, but device complexity increases
Solution Approach 1:
The controller is designed as a multi-functional device that integrates multiple control functions, parameter adjustments, and safety monitoring capabilities into a single unit. This universal controller manages the projection lamp's position, lighting parameters, and safety protocols, improving reliability while minimizing the increase in overall system complexity through consolidation.
Solution Approach 2:
The patent merges the control functions, adjustment mechanisms, and safety systems into an integrated automated control unit. By combining multiple functions into a single coordinated system, the patent improves safety and control efficiency while managing device complexity through functional integration rather than separate components.
Data Source
AI summary
A control method for a lighting system, a lighting system, and a storage medium are provided. The method includes steps of receiving a control instruction for the electric bracket, acquiring accessory information of the accessory based on the control instruction, determining control parameters of the electric bracket which are configured for the lighting device, based on the accessory information, and calibrating the electric bracket based on the control parameters.


