陳爾學++田昕++白黎娜++趙爭++焦健
摘 要:該報告介紹了2013年度該課題在機載極化干涉SAR系統(tǒng)構建、高分辨率SAR遙感綜合實驗、高分辨率SAR遙感應用示范軟件開發(fā)等方面的研發(fā)進展。在機載極化干涉SAR系統(tǒng)構建方面,完成了X-波段干涉SAR傳感器的研制,進行了SAR系統(tǒng)的實驗室聯(lián)調測試和機載校飛試驗。先后在四川若爾蓋實驗區(qū)和大興安嶺根河實驗區(qū)開展了高分辨率SAR遙感綜合實驗,共獲取8 619.8km2,約28.5TB的機載X-波段雙天線InSAR和P-波段極化SAR數(shù)據(jù),完成了所獲取SAR數(shù)據(jù)的預處理;獲取了覆蓋大興安嶺根河實驗區(qū)的多時相Radarsat-2極化SAR和Landsat-8多光譜衛(wèi)星遙感數(shù)據(jù);組織來自項目8家課題承擔/協(xié)作單位的50多人次,參加了遙感同步、準同步調查工作,獲取了森林葉面積指數(shù)(LAI)、農田植被參數(shù)、土壤參數(shù)、氣象參數(shù)以及土地覆蓋類別等的地面實況數(shù)據(jù)。在高分辨率SAR軟件開發(fā)方面,已初步完成地形測繪、土地利用分類、植被覆蓋類型分類和森林植被垂直結構參數(shù)估測等軟件模塊原型的開發(fā),正在按統(tǒng)一的語言和標準進行完善和集成,以盡快形成界面友好的高分辨率SAR應用示范軟件,為2014年的應用示范工作開展提供軟件支撐。
關鍵詞:高分辨率SAR 機載SAR飛行實驗 極化干涉SAR系統(tǒng)構建 SAR應用處理軟件 SAR應用示范
Abstract: This report presented the annual research progress of the 863 project in 2013, in the context of construction of an airborne polarimetric interferometric SAR (PolInSAR) system, comprehensive campaign of high-resolution SAR and development of demonstration application software of high-resolution SAR, and etc.. In the aspect of airborne PolInSAR system construction, we have accomplished the construction of the X-band PolInSAR sensor, the SAR systems laboratory joint debug test, and the aircraft flight calibration experiments. We have implemented the comprehensive experiment for high-resolution SAR in the test site of Ruoergai County of Sichuan Province and successively in the test site of Genhe of Daxing'anling in Inner Mongolia. Totally, about 28.5 TB of airborne X-band double antenna InSAR and P-band polarimetric SAR data, covering 8 619.8 km2 campaign area, was acquired. The preprocessing for all the SAR data has been finished. Moreover, the multi-temporal Radarsat-2 quad-polarization SAR and Landsat-8 multi-spectral satellite data covering the Genhe experimental area was obtained. At the meanwhile, the comprehensive and real-time or nearly real-time ground investigations were organized, and from 8 institutes and universities under the framework of the project, the teams of 50 person-times were involved. The ground truth data, such as the forest leaf area index (LAI), farmland vegetation parameters, soil and meteorological parameters and land cover types were measured. For the development of high-resolution SAR application software, the prototype of software modules has been completed, including topographic mapping, land use and vegetation type classification, forest vegetation vertical structure parameter estimation, and etc. Improvements for these modules and their integration to the whole software system are ongoing using the uniform development language and standard under the frame of the projects system software in order to develop one high resolution SAR application software with user-friendly interface. As we expected, the achievements of this year will support the application and demonstration of high resolution SAR, which is our future work in the next year 2014.
Key Words: High Resolution SAR; Airborne SAR Campaign; PolInSAR System Construction; SAR Application Software; SAR Applicaiton Demostraction
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