现代雷达
現代雷達
현대뢰체
MODERN RADAR
2010年
1期
57-61
,共5页
机载SAR%投影失真%几何校正%动态分段%误差控制
機載SAR%投影失真%幾何校正%動態分段%誤差控製
궤재SAR%투영실진%궤하교정%동태분단%오차공제
air-borne SAR%projection calibration%geometric correction%dynamic segment%error control
随着合成孔径雷达(SAR)技术的发展和广泛应用,为了更准确反映场景信息,几何校正成为SAR图像处理过程中的重要内容.文中根据机载SAR成像机理,分析了引起机载SAR图像几何投影失真的原因,并估算出其失真量,针对传统的非线性校正方法,提出了一种快速高效的基于误差控制的动态分段线性校正算法.该算法在保证SAR图像校正质量的前提下,通过控制SAR图像校正误差,用线性处理取代了非线性逐点运算,使得校正算法的计算复杂度大大降低.文中还从理论上推导出最佳的分段校正长度计算方法,可校正过程中动态调整分段长度,保证校正质量和运算效率.最后通过仿真试验验证了该文法的有效性和实用性.
隨著閤成孔徑雷達(SAR)技術的髮展和廣汎應用,為瞭更準確反映場景信息,幾何校正成為SAR圖像處理過程中的重要內容.文中根據機載SAR成像機理,分析瞭引起機載SAR圖像幾何投影失真的原因,併估算齣其失真量,針對傳統的非線性校正方法,提齣瞭一種快速高效的基于誤差控製的動態分段線性校正算法.該算法在保證SAR圖像校正質量的前提下,通過控製SAR圖像校正誤差,用線性處理取代瞭非線性逐點運算,使得校正算法的計算複雜度大大降低.文中還從理論上推導齣最佳的分段校正長度計算方法,可校正過程中動態調整分段長度,保證校正質量和運算效率.最後通過倣真試驗驗證瞭該文法的有效性和實用性.
수착합성공경뢰체(SAR)기술적발전화엄범응용,위료경준학반영장경신식,궤하교정성위SAR도상처리과정중적중요내용.문중근거궤재SAR성상궤리,분석료인기궤재SAR도상궤하투영실진적원인,병고산출기실진량,침대전통적비선성교정방법,제출료일충쾌속고효적기우오차공제적동태분단선성교정산법.해산법재보증SAR도상교정질량적전제하,통과공제SAR도상교정오차,용선성처리취대료비선성축점운산,사득교정산법적계산복잡도대대강저.문중환종이론상추도출최가적분단교정장도계산방법,가교정과정중동태조정분단장도,보증교정질량화운산효솔.최후통과방진시험험증료해문법적유효성화실용성.
With the development and wide application of SAR technology, the geometric correction is an important content of the SAR image processing to present the true information of the scene. Based on the imaging principle of air-borne SAR, this paper analyzes the main reason which causes the geometry projection calibration distortion in air-berne SAR image, and estimates the distortion. Compared with the traditional nonlinear correction method, this paper suggests a fast and efficient geometric correction method by dynamic segraent which is based on the error control. In the scope of the SAR image correction quality and the control of the SAR image correction error, we substitute the nonlinear operation with linear processing, which results in the computation complexity of correction be reduced greatly. This paper also derives a calculation method of the best partition length, and adjusts the partition length adaptively in the process of geometric correction. It guarantees the correction quality and the operation efficiency. Finally, simulation verified the validity and practicability of the algorithm.