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Fast Algorithms for Matching CCD Images to a Stellar Catalogue

机译:将CCD图像匹配到恒星目录的快速算法

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摘要

Two new algorithms are described for matching two dimensional coordinate lists of point sources that are significantly faster than previous methods. By matching rarely occurring triangles (or more complex shapes) in the two lists, and by ordering searches by decreasing probability of success, it is demonstrated that very few candidates need be considered to find a successful match. Moreover, by immediately testing the suitability of a potential match using an efficient mechanism, the need to process the entire candidate set is avoided, yielding considerable performance improvements. Triangles are described by a cosine metric that reduces the density of triangle space, permitting efficient searches. An alternative shape characterization method that reduces computational overhead in the construction phase is discussed. The algorithms are tested on a set of 10 063 wide-field survey images, with fields-of-view up to 4.8° × 3.6°, successfully matching 100% of the images in a mean elapsed time of 6 ms (2.4 GHz Athlon CPU). The elapsed time of the searching phase is shown to vary by less than 1ms for list sizes between 10 and 200 points, demonstrating that fast, robust searches may be completed in nearly constant time, independent of list size.
机译:描述了两种新的算法来匹配点源的二维坐标列表,这比以前的方法要快得多。通过匹配两个列表中很少出现的三角形(或更复杂的形状),并通过降低成功概率来对搜索进行排序,证明了寻找成功匹配所需的候选人很少。此外,通过使用高效机制立即测试潜在匹配的适用性,避免了处理整个候选集的需要,从而显着提高了性能。用余弦度量描述三角形,该余弦度量降低了三角形空间的密度,从而可以进行有效的搜索。讨论了在构造阶段减少计算开销的另一种形状表征方法。该算法在一组10063个宽视野调查图像上进行了测试,视野范围最大为4.8°×3.6°,在6 ms的平均经过时间(2.4 GHz Athlon CPU)中成功匹配了100%的图像)。对于10到200点之间的列表大小,搜索阶段的经过时间显示变化小于1ms,这表明快速,可靠的搜索可以在几乎恒定的时间内完成,而与列表大小无关。

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