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Multipurpose active pixel sensor (APS)-based microtracker

机译:基于多功能主动像素传感器(APS)的微跟踪器

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Abstract: A new, photon-sensitive, imaging array, the active pixel sensor (APS) has emerged as a competitor to the CCD imager for use in star and target trackers. The Jet Propulsion Laboratory (JPL) has undertaken a program to develop a new generation, highly integrated, APS-based, multipurpose tracker: the Programmable Intelligent Microtracker (PIM). The supporting hardware used in the PIM has been carefully selected to enhance the inherent advantages of the APS. Adequate computation power is included to perform star identification, star tracking, attitude determination, space docking, feature tracking, descent imaging for landing control, and target tracking capabilities. Its first version uses a JPL developed 256 $MUL 256-pixel APS and an advanced 32-bit RISC microcontroller. By taking advantage of the unique features of the APS/microcontroller combination, the microtracker will achieve about an order-of-magnitude reduction in mass and power consumption compared to present state-of-the-art star trackers. It will also add the advantage of programmability to enable it to perform a variety of star, other celestial body, and target tracking tasks. The PIM is already proving the usefulness of its design concept for space applications. It is demonstrating the effectiveness of taking such an integrated approach in building a new generation of high performance, general purpose, tracking instruments to be applied to a large variety of future space missions. !10
机译:摘要:一种新型的,对光子敏感的成像阵列,有源像素传感器(APS)成为了CCD成像仪的竞争者,可用于恒星和目标跟踪仪。喷气推进实验室(JPL)进行了一项计划,以开发新一代,高度集成,基于APS的多功能跟踪器:可编程智能微跟踪器(PIM)。精心选择了PIM中使用的支持硬件,以增强APS的固有优势。包括足够的计算能力来执行恒星识别,恒星跟踪,姿态确定,空间对接,特征跟踪,用于着陆控制的下降成像以及目标跟踪功能。它的第一个版本使用JPL开发的256 $ MUL 256像素APS和先进的32位RISC微控制器。通过利用APS /微控制器组合的独特功能,与目前的最新星型跟踪器相比,微跟踪器将在质量和功耗方面降低约一个数量级。它还将增加可编程性的优势,使其能够执行各种恒星,其他天体和目标跟踪任务。 PIM已经证明了其设计概念对空间应用的有用性。它证明了采用这种综合方法来构建新一代高性能,通用跟踪设备的有效性,该跟踪设备将应用于未来的各种太空任务。 !10

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