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Development of a guiding system and visual feedback real-time controller for the high-speed self-align optical cable winding

机译:开发用于高速自对准光缆绕线的导向系统和视觉反馈实时控制器

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摘要

Recently, the demand for the optical cable has been rapidly growing because of the increasing number of internet users and the high speed internet data transmission required. But the present optical cable winding systems have some serious problems such as pile-up and collapse of cables usually near the flange of the bobbin in the process of cables winding. To reduce the pile-up collapse in cable winding systems, a new guiding system is developed for a high-speed self-align cable winding. First, mathematical models for the winding process and bobbin shape fault compensation were proposed, the winding mechanism was analyzed and synchronization logics for the motions of winding, traversing, and the guiding were created. A prototype cable winding systems was manufactured to validate the new guiding system and the suggested logic. Experiment results showed that the winding system with the developed guiding system outperformed the system without the guiding system in reducing pile-up and collapse in high-speed winding.
机译:近来,由于互联网用户数量的增加和所需的高速互联网数据传输,对光缆的需求已迅速增长。但是当前的光缆缠绕系统存在一些严重的问题,例如在光缆缠绕过程中通常在绕线架的凸缘附近的光缆堆积和塌陷。为了减少电缆绕组系统中的堆积塌陷,开发了一种用于高速自对准电缆绕组的新导向系统。首先,提出了绕线过程和骨架形状故障补偿的数学模型,分析了绕线机理,并建立了绕线,横动和导向运动的同步逻辑。制造了原型电缆绕组系统,以验证新的导向系统和建议的逻辑。实验结果表明,采用改进的导向系统的绕组系统在减少高速绕组中的堆积和塌陷方面优于没有导向系统的系统。

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