首页> 外文会议>Asian conference on remote sensing;ACRS 2008 >EVALUATION ON THE POTENTIAL OF L-BAND ALOS PALSAR IMAGERIES FOR DEM GENERATION AND LAND SUBSIDENCE DETECTION USING INSAR/DINSAR TECHNIQUES
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EVALUATION ON THE POTENTIAL OF L-BAND ALOS PALSAR IMAGERIES FOR DEM GENERATION AND LAND SUBSIDENCE DETECTION USING INSAR/DINSAR TECHNIQUES

机译:利用InSAR / DINSAR技术评估L波段ALOS PALSAR图像用于DEM生成和地面沉降检测的潜力

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Multitemporal synthetic aperture radar (SAR) imageries have been utilized by interferometric SAR technique for DEM generation and by differential interferometric SAR (DInSAR) technique for sub-centimeter accuracy measurement of surface movements such as land subsidence and seismic-induced motions. However, due to decorrelation problem, the use of InSAR/DInSAR in tropical areas has always been problematic and their applications have been mostly limited to arid, non-vegetated or highly-urbanized areas where coherence between multitemporal imageries could be maintained. This research investigates the potential of L-Band ALOS PALSAR imageries for DEM generation and land subsidence in Thailand. A part of Chiangmai in the north of Thailand and Bangkok capital city were selected as two test sites. Chiangmai comprises an urban area surrounded by forest and rugged mountains, but Bangkok is extremely flat with elevation ranges from 0.5 to 1.5 meters above mean sea level (MSL). The PALSAR images for two areas were acquired on 11 June 2007 and 27 July 2007 for Chiangmai, and 25 November 2007 and 11 April 2008 for Bangkok in Fine Beam Dual Mode (FBD). It was found that, for DEM generation, an interferometry can be produced for the whole area even with 46-day interval between the image pair. A result from previous monostatic systems using shorter wavelength like C-band ERS1/2 could only achieve by special tandem mission. Further, a 2-pass DInSAR technique using 90-m resolution SRTM DEM to remove topographic phase has been applied on SAR image pair from Chiangmai and Bangkok. The final result for Chiangmai shows only small wobbles interpreted as phase differences occurred from different atmospheric conditions between the two SAR image acquisitions, and the time interval is too short to allow for the detection of any motion signal because of the low-subsidence area. In contrast, we found that the final result for Bangkok proved that DlnSAR can be an alternative means to obtain measurements of the surface displacement for less time consuming. Nevertheless, it is obvious that PALSAR L-Band images are much less prone to decorrelation problem and have great potential to advance geodetic applications of InSAR/DlnSAR in this tropical part of the world.
机译:多时相合成孔径雷达(SAR)图像已通过干涉SAR技术用于DEM生成,并已通过差分干涉SAR(DInSAR)技术用于亚厘米级精度的地面运动(如地面沉降和地震诱发的运动)的测量。但是,由于解相关问题,在热带地区使用InSAR / DInSAR一直存在问题,它们的应用主要限于可以保持多时相影像之间连贯性的干旱,非植被或高度城市化地区。这项研究调查了L波段ALOS PALSAR图像在泰国生成DEM和地面沉降的潜力。泰国北部清迈的一部分和曼谷首都被选为两个测试地点。清迈(Chiangmai)的市区被森林和崎mountains的山脉所环绕,但曼谷极为平坦,海拔范围比平均海平面(MSL)高0.5至1.5米。两个区域的PALSAR图像分别于2007年6月11日和2007年7月27日在清迈,以及2007年11月25日和2008年4月11日在曼谷以细光束双模式(FBD)采集。已发现,对于DEM生成,即使在图像对之间有46天的间隔,也可以对整个区域进行干涉测量。以前使用诸如C波段ERS1 / 2的较短波长的单基地系统只能通过特殊的串联任务来实现。此外,已经对来自清迈和曼谷的SAR图像对应用了使用90米分辨率SRTM DEM去除地形相位的2遍DInSAR技术。 Chiangmai的最终结果显示只有很小的摆动,这被解释为两个SAR图像采集之间在不同的大气条件下发生了相位差,并且由于下陷面积小,时间间隔太短而无法检测到任何运动信号。相比之下,我们发现,曼谷的最终结果证明DlnSAR可以作为一种替代方法来获取表面位移的测量值,而耗时更少。尽管如此,很明显,PALSAR L波段图像不太容易出现去相关问题,并且在世界热带地区推广InSAR / DlnSAR的大地测量应用具有很大的潜力。

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