多头星敏感器视频处理器的设计

Sudha Bendapudi, G. K. Kashyap, M. G. Lithin, M. Subhajit, B. Krishnamprasad, T. H. Shashikala
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引用次数: 4

摘要

星敏感器,又称星跟踪器,是一种用于航天器的高精度三轴姿态传感器。它利用区域成像探测器(一般为1k × 1k像素电荷耦合器件)捕获的天空图像对恒星进行处理,生成姿态信息。它对轴向的精度比对交叉轴的精度差。这可以通过使用两个交错视场(fov)的传感器头和三个传感器头来改进,以避免在任何头部遮挡期间中断。所有的传感器头都有相同的处理操作。因此,处理单元(PU)变得普遍起来。这样可以最大限度地减少系统电子,功耗和每个CH的散热,从而更有效地冷却CCD并提高传感器性能。由此产生的多个摄像机头(CHs)由共同的PU远程操作。因此,为CH设计了一个可编程视频处理器(VP),作为PU的高效数据采集协处理器。VP并行工作,释放PU用于从多个CHs获取的数据进行姿态计算。VP获取CCD图像并对其进行预处理,以减少数据大小,加快PU处理速度。它是基于全帧星搜索或感兴趣区域(ROI)读出的不同操作模式可编程的,从而提供灵活性,同时保持CCD要求的实施刚性。VP与PU的通信通过低功耗高速SpaceWire链路配置。VP是在低功耗FPGA中实现的。所有的指令和数据存储都在芯片上。
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Design of video processor for multi-head star sensor
Star Sensor, also known as star-tracker, is a high-accuracy 3-axis attitude sensor used onboard spacecrafts. It processes stars from a sky image captured using an area imaging detector (generally 1k × 1k pixels Charge Coupled Device) to generate attitude information. Its accuracy about the boresight is poorer than about the cross-axes. This is improved by using two sensor heads with staggered Fields-Of-View (FOVs) and three to avoid break during occultation of any head. All the sensor heads have identical processing operations. So, the Processing Unit (PU) is made common. This minimizes the system electronics, power consumption and also thermal dissipation on each CH, allowing more efficient cooling of CCD and improving sensor performance. The resulting multiple Camera Heads (CHs) are operated remotely by the common PU. Thus, a programmable Video Processor (VP) is designed for the CH as an efficient data acquisition co-processor to the PU. The VP works in parallel freeing PU for attitude computation from the data acquired from multiple CHs. VP acquires CCD images and pre-processes them to reduce data size, speeding up PU processing. It is programmable for different modes of operation based on full-frame star-search or Region-of-Interest (ROI) readout, thereby providing flexibility, while maintaining rigidity in implementation as required by CCD. Communication of the VP with the PU is configured via low-power high-speed SpaceWire link. The VP is implemented in a low-power FPGA. All instruction and data storage is on-chip.
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