Fixed Repeater Signal Control for Scenario-Based Light Emission
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Solution Overview
Problem
Light emitting devices face limitations in transmission distance and require manual operator control, making them difficult to utilize in varying spaces and leading to resource wastage and reduced audience experience.
Innovation Solution
An automatic control signal transmission system using fixed repeaters that transmit signals to light emitting devices based on predetermined settings, allowing for scenario-based control without direct human intervention.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If manual operator control is used for light emitting devices, then control precision is improved, but device complexity and resource requirements increase
Solution Approach 1:
The light emitting device autonomously receives control signals from the terminal device and executes them without requiring manual operator intervention. The device self-manages the control process by receiving scenario data, interpreting control instructions, and automatically adjusting its light emission behavior according to the received signals.
Solution Approach 2:
The patent replaces the mechanical/manual control system with an automated electronic control system. Instead of requiring physical operator intervention, the system uses wireless communication (Bluetooth, Wi-Fi) to transmit control signals from the terminal device to the light emitting device, substituting human operation with automated digital signaling.
2Adaptability or versatility
If transmission distance is extended for light emitting devices, then adaptability is improved, but signal reliability deteriorates
Solution Approach 1:
The patent introduces a terminal device as an intermediary between the user and the light emitting device. This intermediary handles signal processing, scenario management, and control instruction generation, allowing reliable communication over extended distances by using the terminal device's processing capabilities to maintain signal integrity.
Solution Approach 2:
The system performs preliminary actions by pre-defining scenarios and control signal patterns in the terminal device before actual operation. These pre-configured scenarios contain all necessary control instructions, allowing the system to execute complex light emission patterns without real-time manual intervention, thus maintaining reliability over distance.
3Measurement precision
If operator intervention is required for event production, then control precision is improved, but productivity decreases
Solution Approach 1:
The light emitting device and terminal device work together in a self-service manner where the terminal device automatically generates and transmits control signals based on pre-configured scenarios. The system autonomously manages the entire control process from scenario selection to light emission execution, eliminating the need for continuous operator intervention while maintaining production precision.
Solution Approach 2:
All control scenarios and production parameters are configured in advance in the terminal device. When an event is executed, the system simply retrieves and implements the pre-configured scenarios, dramatically improving productivity while maintaining the precision of the original design intent through automated execution.
Data Source
AI summary
This method enables theme production services in an automatic transmission program, executed by at least one processor of a terminal, by automatically sending control signals via fixed repeaters. It involves creating a scenario-based on a library setting interface-containing at least one library, linking a repeater configured with pre-set data exchange information, and transmitting the scenario to this repeater. Through the repeater, a control signal that includes command data activates a specified library in the scenario, ensuring its execution. One or more repeaters are installed in each section of a multi-section space, enabling targeted theme-based actions throughout. This approach streamlines the process of transmitting commands and executing different functionalities automatically in distinct areas, delivering a coordinated theme production experience.


