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首页> 外文期刊>Journal of Applied Remote Sensing >Progressive band selection for satellite hyperspectral data compression and transmission
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Progressive band selection for satellite hyperspectral data compression and transmission

机译:卫星高光谱数据压缩和传输的渐进频带选择

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Efficient data transmission is an important part of satellite communication, particularly when large data volumes need to be downlinked to the Earth. One general approach to dealing with this dilemma is data compression, either lossless or lossy. For hyperspectral data, compression is specifically crucial due to its high inter-band spectral correlation, resulting from the use of hundreds of high spectral resolution bands for data collection. This paper develops a new approach, called progressive band selection (PBS), to achieve both data compression and data transmission, in the sense that data can be compressed and transmitted progressively. First, PBS prioritizes each spectral band by assigning a priority score based on its information content measured by a certain criterion. Then, bands are selected progressively according to the priority scores assigned to each spectral band. Consequently, data can be compressed and transmitted in a progressive fashion to meet the application's requirements; this task cannot be accomplished by most data compression techniques. Most importantly, PBS can be implemented in two opposite manners. One is forward progressive band selection (FPBS), which starts with a low number of bands and gradually improves data quality by including more bands progressively, based on their priority scores, until data quality is satisfactory. The other is backward progressive band selection (BPBS), which begins with a high number of spectral bands and progressively removes them in accordance with their priority scores, until data quality falls below a given tolerance level. In order to determine the lower and upper bounds on the number of bands used for FPBS and BPBS, we use a recently developed concept called virtual dimensionality (VD). We demonstrate the utility of PBS in compression and transmission for satellite communication with an experiment in land use and cover classification, which uses a dataset collected by the Hyperion instrument aboard NASA's EO-1 satellite.
机译:高效的数据传输是卫星通信的重要组成部分,尤其是在需要将大数据量下行传输到地球时。解决这一难题的一种通用方法是无损或有损数据压缩。对于高光谱数据,由于其高频带间频谱相关性(由于使用数百个高光谱分辨率频带进行数据收集)而导致压缩特别重要。本文开发了一种称为渐进频带选择(PBS)的新方法,可以实现数据压缩和数据传输,即可以逐步压缩和传输数据。首先,PBS通过根据某个标准所测量的信息内容分配优先级分数来对每个光谱带进行优先级排序。然后,根据分配给每个频谱带的优先级分数逐步选择带。因此,可以以渐进方式压缩和传输数据,以满足应用程序的需求;大多数数据压缩技术无法完成此任务。最重要的是,PBS可以两种相反的方式实现。一种是前向渐进频带选择(FPBS),它从低数目的频带开始,并根据其优先级分数逐渐增加包括更多的频带,从而逐渐改善数据质量,直到数据质量令人满意为止。另一个是后向渐进带选择(BPBS),它从大量的光谱带开始,并根据其优先级分数逐渐删除它们,直到数据质量降至给定的容限水平以下。为了确定用于FPBS和BPBS的条带数量的上限和下限,我们使用了最近开发的称为虚拟维数(VD)的概念。我们利用土地利用和覆盖分类的实验演示了PBS在卫星通信的压缩和传输中的实用性,该实验使用了NASA EO-1卫星上Hyperion仪器收集的数据集。

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