首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Automatic Spectral Rule-Based Preliminary Classification of Radiometrically Calibrated SPOT-4/-5/IRS, AVHRR/MSG, AATSR, IKONOS/QuickBird/OrbView/GeoEye, and DMC/SPOT-1/-2 Imagery—Part II: Classification Accuracy Assessment
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Automatic Spectral Rule-Based Preliminary Classification of Radiometrically Calibrated SPOT-4/-5/IRS, AVHRR/MSG, AATSR, IKONOS/QuickBird/OrbView/GeoEye, and DMC/SPOT-1/-2 Imagery—Part II: Classification Accuracy Assessment

机译:辐射校准的SPOT-4 / -5 / IRS,AVHRR / MSG,AATSR,IKONOS / QuickBird / OrbView / GeoEye和DMC / SPOT-1 / -2影像的基于光谱规则的自动初步分类-第二部分:分类准确性评估

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In Part I of this paper, an operational fully automated Landsat-like image spectral rule-based decision-tree classifier (LSRC), suitable for mapping radiometrically calibrated seven-band Landsat-4/-5 Thematic Mapper (TM) and Landsat-7 Enhanced TM+ (ETM+) spaceborne images [eventually synthesized from the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) and the Moderate Resolution Imaging Spectroradiometer (MODIS) imaging sensor] into a discrete and finite set of spectral categories, has been downscaled to properly deal with spaceborne multispectral imaging sensors whose spectral resolution overlaps with, but is inferior to Landsat's, namely: 1) Satellite Pour l'Observation de la Terre (SPOT)-4/-5, Indian Remote Sensing Satellite (IRS)-1C/-1D/-P6 Linear Imaging Self-Scanner (LISS)-III, and IRS-P6 Advanced Wide Field Sensor (AWiFS); 2) National Oceanic and Atmospheric Administration (NOAA) Advanced Very High Resolution Radiometer (AVHRR) and Meteosat Second Generation (MSG); 3) Environmental Satellite (ENVISAT) Advanced Along-Track Scanning Radiometer (AATSR); 4) GeoEye-1, IKONOS-2, QuickBird-2, OrbView-3, TopSat, KOrean MultiPurpose SATellite (KOMPSAT)-2, FORMOsa SATellite (FORMOSAT)-2, Advanced Land Observing Satellite (ALOS) Advanced Visible and Near Infrared Radiometer type 2 (AVNIR-2), RapidEye, WorldView-2, PLEIADES-1/-2, and SPOT-6/-7; and 5) Disaster Monitoring Constellation (DMC), IRS-P6 LISS-IV, and SPOT-1/-2. LSRC, together with its five downscaled versions, identified, respectively, as the four-band SPOT-like SRC (SSRC), the four-band AVHRR-like SRC (AVSRC), the five-band AATSR-like SRC (AASRC), the four-band IKONOS-like SRC (ISRC), and the three-band DMC-like SRC (DSRC), form the so-called integrated SRC system of systems. In this paper, first, the classification accuracy and robustness to changes in the input data set of SSRC, AVSRC, AASRC, ISRC, and DSRC are assessed, both qualitatively and quantitatively, in comparison with LSRC-n's. Next, ongoing and future SRC applications are presented and discussed. They encompass: 1) the implementation of operational two-stage stratified hierarchical Remote Sensing (RS) image understanding systems discussed in Part I of this paper; 2) the integration of near real-time satellite mapping services with Internet map servers; and 3) the development of a new approach to semantic querying of large-scale multisensor image databases. These experimental results and application examples prove that the integrated SRC system of systems is operational, namely, it is effective, near real-time, automatic, and robust to changes in the input data set. Therefore, SRC appears eligible for use in operational satellite-based measurement systems such as those envisaged by the ongoing international Global Earth Observation System of Systems (GEOSS) Programme and the Global Monitoring for Environment and Security (GMES) system project.
机译:在本文的第一部分中,一个可操作的全自动Landsat类基于图像光谱规则的决策树分类器(LSRC),适用于映射经辐射校准的七波段Landsat-4 / -5 Thematic Mapper(TM)和Landsat-7增强型TM +(ETM +)星载图像[最终由高级星载热发射和反射辐射仪(ASTER)和中分辨率成像分光辐射仪(MODIS)成像传感器合成)成离散且有限的一组光谱类别,已缩小以适当处理具有光谱分辨率与Landsat重叠但不如Landsat的星载多光谱成像传感器:1)印度地面观测卫星(SPOT)-4 / -5,印度遥感卫星(IRS)-1C / -1D / -P6线性成像自扫描仪(LISS)-III和IRS-P6高级宽视场传感器(AWiFS); 2)国家海洋和大气管理局(NOAA)先进的超高分辨率辐射计(AVHRR)和气象卫星第二代(MSG); 3)环境卫星(ENVISAT)先进的沿轨扫描辐射计(AATSR); 4)GeoEye-1,IKONOS-2,QuickBird-2,OrbView-3,TopSat,韩国多用途卫星(KOMPSAT)-2,FORMOSa卫星(FORMOSAT)-2,先进的陆地观测卫星(ALOS)先进的可见和近红外辐射计类型2(AVNIR-2),RapidEye,WorldView-2,PLEIADES-1 / -2和SPOT-6 / -7;和5)灾难监测星座(DMC),IRS-P6 LISS-IV和SPOT-1 / -2。 LSRC及其五个缩小版本分别标识为四频段类SPOT SRC(SSRC),四频段类AVHRR类SRC(AVSRC),五频段AATSR类SRC(AASRC),四频带的类似IKONOS的SRC(ISRC)和三频带的类似DMC的SRC(DSRC)形成了所谓的集成SRC系统。在本文中,首先,与LSRC-n相比,从定性和定量方面评估了SSRC,AVSRC,AASRC,ISRC和DSRC输入数据集的分类准确性和鲁棒性。接下来,将介绍和讨论正在进行的和将来的SRC应用程序。它们包括:1)本文第一部分中讨论的可操作的两阶段分层分层遥感(RS)图像理解系统的实现; 2)将近实时卫星地图服务与Internet地图服务器集成; 3)开发了一种新的大规模多传感器图像数据库语义查询方法。这些实验结果和应用实例证明,系统集成的SRC系统是可操作的,即它是有效的,接近实时的,自动的,并且对输入数据集的更改具有鲁棒性。因此,SRC似乎有资格在可运行的基于卫星的测量系统中使用,例如正在进行的国际“全球地球观测系统系统”(GEOSS)计划和“环境与安全全球监测”(GMES)系统项目所设想的那些。

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