Distributed Sub-Repeaters for Long-Range Automated Light Control
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Solution Overview
Problem
Light emitting devices face limitations in transmission distance and require operator control, making them difficult to utilize in varied spaces and situations, leading to inefficiencies and resource waste.
Innovation Solution
An automatic control signal transmission system using a plurality of sub repeaters that transmit predetermined control signals to light emitting devices within a preset distance, eliminating the need for direct operator control and supporting constant event production formats.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Length of stationary object
If a single repeater system is used to control light emitting devices, then the system structure is simple, but the transmission distance is limited and spatial flexibility is reduced
Solution Approach 1:
The system is divided into a main repeater and multiple sub-repeaters that work together in a distributed architecture. Each sub-repeater handles local control zones, allowing the system to cover larger areas while maintaining manageable complexity through modular design
2Extent of automation
If operator control is used to manage light emitting devices, then control precision is high, but human resource requirements increase and operation becomes more complex
Solution Approach 1:
The sub-repeaters are designed to automatically receive control signals from the main repeater and independently manage their respective zones without requiring manual intervention. The system self-configures and self-manages, eliminating the need for operators to directly control each device while maintaining operational simplicity through centralized command
3Adaptability or versatility
If multiple sub repeaters are deployed to expand coverage, then spatial flexibility and transmission distance improve, but system complexity increases
Solution Approach 1:
Each sub-repeater is designed as a universal module that can be deployed in various locations and configurations. The standardized interface and protocol allow sub-repeaters to function identically regardless of position, enabling flexible spatial deployment without increasing configuration complexity since each unit operates independently under centralized coordination
Data Source
AI summary
A method for automatically transmitting a control signal based on a plurality of sub repeaters according to an embodiment of the present disclosure is a method for automatically transmitting a control signal based on a plurality of sub repeaters to provide a theme production service in an automatic transmission program executed by at least one processor of a main repeater and includes linking to a plurality of sub repeaters having a plurality of prestored libraries and a terminal, transmitting command data to at least one of the plurality of linked sub repeaters, and performing control so that the sub repeater receiving the command data automatically transmits a control signal for activating the library included in the command data, and the command data includes at least one of a sub repeater serial number, a library serial number, and setting information.


