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首页> 外文期刊>CEAS Space Journal >FAINTSTAR: an intelligent single-chip sensor head for star trackers—prototype results
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FAINTSTAR: an intelligent single-chip sensor head for star trackers—prototype results

机译:淡淡的明星:明星跟踪器的智能单芯片传感器头 - 原型结果

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Since 2003 the European Space Agency’s roadmap for star tracker CMOS APS (active pixel) image sensors has included developments to integrate significant logic functionality with the pixel array, aiming at an imaging system-on-chip. FaintStar (FS) will be the first commercially available product resulting from these activities. FaintStar is being developed by ams Sensors Belgium (formerly CMOSIS) in two phases. Phase 1 served to specify, design, manufacture, and characterise a prototype chip, informally named FaintStar1 (FS1), the subject of this paper. FaintStar is a one megapixel image sensor with 10?μm pixels and rolling shutter. All interactions with the user are over a single 80?Mb/s SpaceWire link. FaintStar offers various readout modes (full frame, windowed, windowed with dual rolling shutter, etc.). The chip has ‘pixels-to-centroids’ processing, including transfer curve linearisation, bad pixel replacement, background image estimation and suppression, spike filtering, bright object extraction, and photometric barycentre calculation. The algorithms used are generic, i.e., non-reliant on third-party IP, yet highly user-configurable. Data-compressed or raw image output is also supported. The device has been developed for star trackers mainly, although applications such as high-accuracy sun sensing, and navigation, rendezvous, or rover cameras are also served. The prototype chip exceeds its expectations. This article starts with an overview of the FS1 design and reports on the Phase 1 characterisation results, including electro-optical performance, proton displacement damage, total dose, and single event radiation effects. Started end of 2017, the project’s Phase 2 entails minor design refinements, creating FaintStar2 (FS2), its manufacturing, and then a formal evaluation campaign. After this, the sensor will be offered as a commercial off-the-shelf product.
机译:自2003年以来,欧洲航天局的星际跟踪器CMOS APS(有源像素)图像传感器的路线图已包括开发,以将显着的逻辑功能与像素阵列集成,针对片上成像系统。淡淡的(FS)将是由这些活动产生的第一个商用产品。在两个阶段,AMS传感器比利时(以前的Cmosis)开发了迷毒石。第1阶段用于指定,设计,制造和表征原型芯片,非正式地命名为DigeStar1(FS1),本文的主题。淡淡的摩托车是一个百万像素图像传感器,具有10?μm像素和滚动快门。与用户的所有交互都超过单个80?MB / S太空链路。 DigeStar提供各种读数模式(全框架,窗帘,带双滚动快门等)。该芯片具有“像素 - 质心”处理,包括转移曲线线性,置换不良像素替换,背景图像估计和抑制,尖峰滤波,亮对象提取和光度反应率计算。使用的算法是通用的,即,非依赖于第三方IP,但高度用户可配置。还支持数据压缩或原始图像输出。该器件已经为星形跟踪器开发,虽然也提供了如高精度的阳光传感和导航,配合或Rover摄像机等应用。原型芯片超出其期望。本文首先概述了FS1设计和关于相位1表征结果的报告,包括电光性能,质子位移损伤,总剂量和单一事件辐射效应。 2017年底截至2017年底,该项目的第2阶段需要较小的设计细化,创建淡黄色乐队2(FS2),其制造,然后是正式的评估活动。此后,传感器将作为商业现成产品提供。

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