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The design of aerial camera Focusing Mechanism

机译:航空相机调焦机构的设计

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In order to ensure the imaging resolution of aerial camera and compensating defocusing caused by the changing of atmospheric temperature, pressure, oblique photographing distance and other environmental factor, and to meeting the overall design requirements of the camera for the lower mass and smaller size , the linear focusing mechanism is designed. Through the target surface support, the target surface component is connected with focusing driving mechanism. Make use of precision ball screws, focusing mechanism transforms the input rotary motion of motor into linear motion of the focal plane assembly. Then combined with the form of linear guide restraint movement, the magnetic encoder is adopted to detect the response of displacement. And the closed loop control is adopted to realize accurate focusing. This paper illustrated the design scheme for a focusing mechanism and analyzed its error sources. It has the advantages of light friction and simple transmission chain and reducing the transmission error effectively. And this paper also analyses the target surface by finite element analysis and lightweight design. Proving that the precision of focusing mechanism can achieve higher than 3um, and the focusing range is ±2mm.
机译:为了确保航空摄像机的成像分辨率并补偿由于大气温度,压力,倾斜的拍摄距离和其他环境因素的变化而造成的散焦,并满足摄像机对于较小质量和较小尺寸的总体设计要求,设计了线性聚焦机构。通过目标表面支撑,目标表面部件与聚焦驱动机构连接。利用精密的滚珠丝杠,聚焦机构将电动机的输入旋转运动转换为焦平面组件的线性运动。然后结合直线导轨约束运动的形式,采用磁编码器检测位移的响应。并采用闭环控制实现精确对焦。本文阐述了一种聚焦机构的设计方案,并分析了其误差源。具有摩擦小,传动链简单,有效减少传动误差的优点。并且本文还通过有限元分析和轻量化设计来分析目标表面。证明调焦机构的精度可以达到3um以上,调焦范围为±2mm。

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