The edge method is used to measure the source spot-size. In this paper, the measuring principle and applying range are discussed. It is shown that the method can directly be used to measure the spot-size of either lig...The edge method is used to measure the source spot-size. In this paper, the measuring principle and applying range are discussed. It is shown that the method can directly be used to measure the spot-size of either light source, or low-energy x-ray source, or x-ray source with an energy higher than 250 keV.展开更多
调制传输函数MTF(Modulation Transfer Function)是评价光学传感器性能的一个重要的指标。本文对MTF在轨评估技术中的刃边法算法进行深入研究,通过分析对比当前主流算法在刃边法关键环节上的处理方法,对算法进行了优化,然后利用仿真方...调制传输函数MTF(Modulation Transfer Function)是评价光学传感器性能的一个重要的指标。本文对MTF在轨评估技术中的刃边法算法进行深入研究,通过分析对比当前主流算法在刃边法关键环节上的处理方法,对算法进行了优化,然后利用仿真方法对优化算法进行了精度分析,并与国际标准组织提供的MTF评估算法(ISO 12233)进行了比较。精度分析结果表明:在相同仿真条件下,该算法的计算精度优于ISO12233评估算法,适用于高分辨率光学载荷的MTF在轨评估。展开更多
文摘The edge method is used to measure the source spot-size. In this paper, the measuring principle and applying range are discussed. It is shown that the method can directly be used to measure the spot-size of either light source, or low-energy x-ray source, or x-ray source with an energy higher than 250 keV.
文摘调制传输函数MTF(Modulation Transfer Function)是评价光学传感器性能的一个重要的指标。本文对MTF在轨评估技术中的刃边法算法进行深入研究,通过分析对比当前主流算法在刃边法关键环节上的处理方法,对算法进行了优化,然后利用仿真方法对优化算法进行了精度分析,并与国际标准组织提供的MTF评估算法(ISO 12233)进行了比较。精度分析结果表明:在相同仿真条件下,该算法的计算精度优于ISO12233评估算法,适用于高分辨率光学载荷的MTF在轨评估。