基于多技术融合的自动开关门系统创新设计与性能研究——以隐藏式驱动、物理–视觉双重防夹为核心
Innovative Design and Performance Research of Automatic Door System Based on Multi-Technology Fusion—Hidden Drive and Physical-Visual Dual Anti-Pinch as Core
摘要: 针对传统自动门在美观性、安全性与智能化方面的不足,本文提出一种基于多技术融合的新型自动开关门系统。系统采用隐藏式驱动结构,结合电机物理防夹与深度学习视觉防夹,构建了物理信号优先的分层融合防夹算法。仿真实验表明,该系统在复杂光照环境下的防夹准确率、响应速度与鲁棒性均优于传统单一防夹方案。本文重点阐述了融合防夹算法的设计原理、决策机制与性能验证,为智能自动门的安全控制提供了新的技术路径。
Abstract: Aiming at the deficiencies of traditional automatic doors in aesthetics, safety and intelligence, a new automatic door system based on multi-technology fusion is proposed in this paper. The system adopts hidden drive structure, combines motor physical anti-pinch and deep learning visual anti-pinch, and constructs a hierarchical fusion anti-pinch algorithm with priority of physical signals. Simulation experiments show that the anti-pinch accuracy, response speed and robustness of the system under complex illumination environment are superior to those of traditional single anti-pinch schemes. This paper focuses on the design principle, decision-making mechanism and performance verification of the fusion anti-pinch algorithm, and provides a new technical path for the safety control of intelligent automatic doors.
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