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RHESSI Imager and Aspect Systems

机译:Rhesie Imager和Aspect Systems

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RHESSI uses nine Rotating Modulation Collimators (RMCs) for imaging, each consisting of a pair of grids mounted on the rotating spacecraft. The angular resolutions range from 2.3 arcsec to 3arcmin. The relative twist between the two grids of each pair is the most critical parameter. It must be less than 20 arcsec for the finest grid. After precision alignment, it is monitored by the Twist Monitoring System (TMS) to a few arcsec. The Sun-pointing must be known better than 0.4 arcsec for the image reconstruction. This is achieved by the Solar Aspect System (SAS), which consists of a set of three Sun sensors. Each sensor is focusing the filtered Sunlight onto a linear CCD. The onboard Aspect Data Processor (ADP) selects the 6 limb positions, which over-define the pointing offset of the Sun center with respect to the imaging axis of the imager. The Roll Angle System (RAS) continuously measures the roll angle of RHESSI within arcmin accuracy. The RAS is a continuously operating CCD star scanner. The time of the passage of a star image over the CCD is recorded and defines the roll angle, comparing its pixel position and amplitude with a star map.
机译:Rhesei使用九个旋转调制准直器(RMC)进行成像,每个都由一对安装在旋转航天器上的网格组成。角度分辨率范围从2.3弧度到3arcmin。每对的两个网格之间的相对扭曲是最关键的参数。它必须小于最优质网格的arcsec。在精度对齐之后,它由扭曲监测系统(TMS)监视到几个arcSec。对于图像重建,必须优于0.4个弧形的阳光指示。这是由太阳宽方面系统(SAS)实现的,该系统由一组三种太阳传感器组成。每个传感器将过滤的阳光聚焦到线性CCD上。板载方面数据处理器(ADP)选择6个肢体位置,该位置过度定义了相对于成像器的成像轴的太阳中心的指向偏移。滚动角度系统(RAS)连续测量Rhessi内的弧形精度内的卷角。 RAS是一款连续运行的CCD星扫描仪。记录在CCD上通过CCD通过的时间,并定义滚动角度,将其像素位置和幅度与星形图进行比较。

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