电子与信息学报
電子與信息學報
전자여신식학보
JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY
2015年
4期
946-952
,共7页
刘燕%谭维贤%林赟%洪文
劉燕%譚維賢%林赟%洪文
류연%담유현%림빈%홍문
圆迹SAR%建筑物轮廓%信息提取%二次反射
圓跡SAR%建築物輪廓%信息提取%二次反射
원적SAR%건축물륜곽%신식제취%이차반사
Circular SAR%Outlines of building%Information extraction%Double bounce scattering
利用圆迹SAR 对目标的全方位观测的特点,该文提出一种基于圆迹 SAR 数据的建筑物轮廓信息提取以及所处地面的高度估计的方法。首先,通过雷达立体测量的方法粗估计出目标建筑物所处地面的海拔高度。然后,以该高度为基准上下一定范围内划分多个成像平面层,在各个成像平面上对建筑物进行圆迹SAR成像。最后,在圆迹SAR图像中选择建筑物二次反射亮线构成封闭线框的一副图像,从该幅图像中提取建筑物在水平面的轮廓信息,同时将该图像对应的成像平面高度确定为目标建筑物所在地面的高度。P波段机载圆迹SAR实测数据验证了该方法的有效性。
利用圓跡SAR 對目標的全方位觀測的特點,該文提齣一種基于圓跡 SAR 數據的建築物輪廓信息提取以及所處地麵的高度估計的方法。首先,通過雷達立體測量的方法粗估計齣目標建築物所處地麵的海拔高度。然後,以該高度為基準上下一定範圍內劃分多箇成像平麵層,在各箇成像平麵上對建築物進行圓跡SAR成像。最後,在圓跡SAR圖像中選擇建築物二次反射亮線構成封閉線框的一副圖像,從該幅圖像中提取建築物在水平麵的輪廓信息,同時將該圖像對應的成像平麵高度確定為目標建築物所在地麵的高度。P波段機載圓跡SAR實測數據驗證瞭該方法的有效性。
이용원적SAR 대목표적전방위관측적특점,해문제출일충기우원적 SAR 수거적건축물륜곽신식제취이급소처지면적고도고계적방법。수선,통과뢰체입체측량적방법조고계출목표건축물소처지면적해발고도。연후,이해고도위기준상하일정범위내화분다개성상평면층,재각개성상평면상대건축물진행원적SAR성상。최후,재원적SAR도상중선택건축물이차반사량선구성봉폐선광적일부도상,종해폭도상중제취건축물재수평면적륜곽신식,동시장해도상대응적성상평면고도학정위목표건축물소재지면적고도。P파단궤재원적SAR실측수거험증료해방법적유효성。
Take the advantage of all-directional observation of circular SAR, an approach of the outlines extraction of building footprints from the circular SAR data is presented, while the approach can also be used for estimating the ground altitude around the building. The proposed approach is as follows: firstly, the rough altitude of the ground around the building is estimated by radargrammetric Digital Elevation Model (DEM) extraction, secondly, image planes are set in certain range where the estimated altitude is in the middle, and circular SAR image of the building is obtained on each image plane. Finally, one image is selected where a closed polygon frame is formed by the double bounce scattering bright lines from the building, and the outlines of building footprints are extracted from the image, while the altitude corresponding to the imaging plane is defined as the altitude of the ground around the target building. The proposed method is validated by the circular SAR data processing by the experimental SAR airborne system at P bands.