摘要
该文设计并实现了一个基于FPGA的机载高分辨聚束式SAR实时成像系统。该系统基于经典极坐标算法,在2维波束域完成运动误差估计及补偿,获得了良好聚焦的图像。文中详细阐述了将算法映射到FPGA实现的设计过程,给出了硬件系统平台的构成,并对系统资源、运算速度和成像结果进行了分析。在对实测机载聚束式SAR数据进行实时处理的实验中,FPGA工作在100 MHz时,该系统11 s内可完成16384×32768点8位数据的成像处理。良好的实时成像结果验证了该系统的有效性和可靠性。
This paper designs and realizes a real-time image processor for SAR based on Field Programmable Gate Arrays(FPGA).The system is suitable for high resolution airborne spotlight mode SAR.The scheme applies the Polar Format Algorithm(PFA) first.Then the motion error phase is estimated and compensated in azimuth wavenumber domain.In this paper,the design approaches and the hardware system architecture are given and the resource usage,processing speed and image result are analyzed in detail.The real-time experiment results show that the system can process 1024 MB SAR raw data within 11 s,when the FPGA processing units work at 100 MHz.The good experimental image also proves the validity and reliability of the proposed system.
出处
《电子与信息学报》
EI
CSCD
北大核心
2011年第5期1248-1252,共5页
Journal of Electronics & Information Technology
基金
国家自然科学基金委员会和中国民用航空局联合资助项目(61001210)资助课题
关键词
聚束式合成孔径雷达
极坐标算法
运动补偿
实时成像
可编程逻辑门阵列
Spotlight SAR
Polar Format Algorithm(PFA)
Motion compensation
Real-time imaging
Field Programmable Gate Array(FPGA)