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THE USE OF INTEGRATED FOCAL PLANE ARRAY TECHNOLOGIES IN LASER MICRO-SATELLITE NETWORKS

机译:集成的局域平面阵列技术在激光微卫星网络中的使用

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Clustering micro satellites in cooperative fly formation constellations leads to high-performance space systems. The only way to achieve high-speed communication between the satellites is by a laser beam with a narrow divergence angle. In order to make the communication successful three types of focal plane detector arrays are required in the communication terminal: acquisition, tracking and communication detector arrays. The acquisition detector array is used to acquire the neighbor satellite using a wide field-of-view telescope. The tracking detector provides fast, real time and accurate direction location of the neighbor satellite. Based on the information from the acquisition and tracking detectors the receiver and transmitter maintain line of sight. The development of large, fast and very sensitive focal plane detector arrays makes it possible to implement the acquisition, tracking and communication with only one focal plane detector array. By doing so it is possible to reduce dramatically the size, weight, and cost of the optics and electronics which leads to lightweight communication terminals. As a result, the satellites are smaller and lighter, which reduces the space mission cost and increases the booster efficiency. In this paper we will present an overview of the concept of integrated focal plane arrays for laser satellite communication. We also present simulation results based on real system parameters and compare different implementation options.
机译:将微型卫星聚集在协作飞行编队群中可形成高性能的空间系统。在卫星之间实现高速通信的唯一方法是使用发散角窄的激光束。为了使通信成功,在通信终端中需要三种类型的焦平面检测器阵列:获取,跟踪和通信检测器阵列。采集检测器阵列用于使用宽视场望远镜采集相邻卫星。跟踪检测器提供相邻卫星的快速,实时和准确的方向定位。根据来自采集和跟踪检测器的信息,接收器和发送器保持视线。大型,快速且非常灵敏的焦平面检测器阵列的发展使得仅使用一个焦平面检测器阵列即可实现采集,跟踪和通信。通过这样做,可以显着减小光学和电子设备的尺寸,重量和成本,这导致了轻巧的通信终端。结果,卫星更小,更轻,这降低了太空任务成本并提高了助推器效率。在本文中,我们将概述用于激光卫星通信的集成焦平面阵列的概念。我们还根据实际系统参数显示了仿真结果,并比较了不同的实现方案。

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