This article explains an optimization-based approach for counting and localizing stars within a small cluster, based on photon counts in a focal plane array. The array need not be arranged in any particular way, and relatively small numbers of photons are required in order to ensure convergence. The stars can be located close to one another, as the location and brightness errors were found to be low when the separation was larger than $0.2$ Rayleigh radii. To ensure generality of our approach, it was constructed as a special case of a general theory built upon topological signal processing using the mathematics of sheaves.
翻译:本篇文章解释了基于焦平面阵列中光子计数的小型星群内星体计算和定位优化法。 阵列不必以任何特定方式排列,为确保汇合需要光子数量相对较少。 恒星的位置可以相近, 因为分离时的位置和亮度差错较低, 当分离大于0. 2 美元时, 发现位置和亮度差错较低。 为确保我们的方法具有普遍性, 它被构建为一种特殊案例, 其依据是利用层的数学进行地形学信号处理的一般理论。