无源角反射器和有源定标器是SAR辐射定标的常用人造参考点目标,随着大量新体制、新模式高分辨率SAR系统的涌现,大距离带宽和宽方位波束都对传统观念中参考目标雷达截面积(RCS)近似恒定的假设提出挑战。该文借助FEKO电磁仿真软件获取目标...无源角反射器和有源定标器是SAR辐射定标的常用人造参考点目标,随着大量新体制、新模式高分辨率SAR系统的涌现,大距离带宽和宽方位波束都对传统观念中参考目标雷达截面积(RCS)近似恒定的假设提出挑战。该文借助FEKO电磁仿真软件获取目标RCS随频带和方位角的变化关系,结合高分辨率SAR点目标仿真,通过点目标能量提取,定量地分析参考目标RCS的频带或方位角相关性对辐射定标的影响。仿真结果表明在Ku波段相对带宽超过10%或方位波束宽度超过20°时,上述因素带来的影响超过0.2 d B,必须在实际数据处理中加以校正。展开更多
Based on the characteristics of line structured light sensor, a speedy method for the calibration was established. With the coplanar reference target, the spacial pose between camera and optical plane can be calibrate...Based on the characteristics of line structured light sensor, a speedy method for the calibration was established. With the coplanar reference target, the spacial pose between camera and optical plane can be calibrated by using of the camera’s projective center and the light’s information in the camera’s image surface. Without striction to the movement of the coplanar reference target and assistant adjustment equipment, this calibration method can be implemented. This method has been used and decreased the cost of calibration equipment, simplified the calibration procedure, improved calibration efficiency. Using experiment, the sensor can attain relative accuracy about 0.5%, which indicates the rationality and effectivity of this method.展开更多
文摘无源角反射器和有源定标器是SAR辐射定标的常用人造参考点目标,随着大量新体制、新模式高分辨率SAR系统的涌现,大距离带宽和宽方位波束都对传统观念中参考目标雷达截面积(RCS)近似恒定的假设提出挑战。该文借助FEKO电磁仿真软件获取目标RCS随频带和方位角的变化关系,结合高分辨率SAR点目标仿真,通过点目标能量提取,定量地分析参考目标RCS的频带或方位角相关性对辐射定标的影响。仿真结果表明在Ku波段相对带宽超过10%或方位波束宽度超过20°时,上述因素带来的影响超过0.2 d B,必须在实际数据处理中加以校正。
文摘Based on the characteristics of line structured light sensor, a speedy method for the calibration was established. With the coplanar reference target, the spacial pose between camera and optical plane can be calibrated by using of the camera’s projective center and the light’s information in the camera’s image surface. Without striction to the movement of the coplanar reference target and assistant adjustment equipment, this calibration method can be implemented. This method has been used and decreased the cost of calibration equipment, simplified the calibration procedure, improved calibration efficiency. Using experiment, the sensor can attain relative accuracy about 0.5%, which indicates the rationality and effectivity of this method.