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Development of an automated fiber optic winding machine for gyroscope production

机译:开发用于陀螺仪生产的自动光纤绕线机

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Fiber optic gyroscopes (FOGs) present an increasingly attractive solid-state alternative to the traditional spinning-mass gyro- scopes. FOGs additionally present a potential cost benefit over ring laser gyroscopes (RLGs), as they require no inherently expensive mirrors or other mechanical components. However, the potential cost benefit has yet to be realized. At the heart of a FOG is a sensing coil comprised of several hundred meters of several kilometers of optical fiber, wound in one of several special patterns designed to improve gyroscopic performance. Winding a fiber optic sensing coil traditionally is performed on a semi-automated machine with the constant involvement of an operator. It is a complex process that can take as much as a week to complete. This paper describes the development of a fully automated fiber optic winding machine capable of accurately winding several different coil patterns, incorporates active tension control during winding, and includes a vision-based, automated error detection and correction system for improved reliability. The resulting machine can reduce winding times by as much as an order of magnitude.
机译:光纤陀螺仪(FOG)提供了一种替代传统旋转质量陀螺仪的越来越有吸引力的固态替代品。 FOG还比环形激光陀螺仪(RLG)具有潜在的成本优势,因为它们不需要本质上昂贵的镜子或其他机械组件。但是,潜在的成本收益尚未实现。 FOG的核心是一个感应线圈,该线圈由数百米,几千米的光纤组成,并以几种特殊图案之一缠绕,这些图案旨在提高陀螺仪的性能。传统上,在操作员不断参与的情况下,缠绕光纤传感线圈是在半自动机器上进行的。这是一个复杂的过程,可能需要长达一周的时间才能完成。本文介绍了一种全自动光纤绕线机的开发,该机能够精确地绕线几种不同的线圈图案,并在绕线过程中采用主动张力控制,并包括基于视觉的自动错误检测和纠正系统,以提高可靠性。最终的机器可以减少缠绕时间多达一个数量级。

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