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Measurement of the thermal-vacuum defocus of an objective lens for an imaging payload on a CubeSat

机译:测量立方体上成像有效载荷的物镜热真空散焦

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The paper presents a laboratory methodology for determining the space environmental effect on the focus of an objective lens for an earth imaging payload on a small satellite. Components used in space applications should undergo rigorous screening and testing, including thermal-vacuum (TVac) testing. These tests reduce risk and can provide critical information leading to risk mitigation strategies contributing to mission success. The global value and market for CubeSats for both commercial and scientific applications is fast growing and this has led to the demand for environmental test equipment. Existing facilities around the globe for satellite TVac testing are typically expensive and difficult to access and also oversized for nanosat applications. As a result, CSIR Optronic Sensor Systems embarked on developing a laboratory test procedure and a small scale TVac chamber based on commercial off-the-shelf (COTS) components. The specific purpose was to quantify the defocus of a COTS imaging lens under vacuum and over a specific operating temperature range. The TVac defocus is caused by variation of the refractive index of air with pressure and variation of the refractive index of glass with temperature. Temperature-related dimensional changes also contribute. The tests provided repeatable measurements leading to a TVac model for the defocus behaviour of the lens. The model allows for setting of a compensatory or "preemptive" defocus before launch.
机译:本文提出了一种实验室方法,用于确定对小型卫星地球成像有效载荷的物镜对象焦点的空间环境影响。空间应用中使用的组件应经过严格的筛选和测试,包括热真空(TVAC)测试。这些测试降低了风险,可以提供导致风险缓解策略的关键信息,这是有助于使命的成功。商业和科学应用的立方体的全球价值和市场快速增长,这导致了对环境测试设备的需求。全球卫星TVAC测试的现有设施通常是昂贵且难以访问的,也难以过度为纳米液应用。结果,CSIR Optronic传感器系统开始开发实验室测试程序和基于商业现成(COTS)组件的小型TVAC室。具体目的是在真空和特定工作温度范围内量化尖端成像镜片的散焦。 TVAC Defocus是由空气折射率的变化引起的,具有温度的玻璃折射率的压力和变化。温度相关的尺寸变化也有所贡献。测试提供了可重复测量,导致镜头的散焦行为的TVAC模型。该模型允许在发布前设置补偿性或“先发制人”散焦。

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