电子与信息学报
電子與信息學報
전자여신식학보
JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY
2013年
1期
15-23
,共9页
钱李昌*%许稼%孙文峰%彭应宁
錢李昌*%許稼%孫文峰%彭應寧
전리창*%허가%손문봉%팽응저
宽带数字阵列雷达%目标检测%宽带时空Radon-Fourier变换%长时间相参积累
寬帶數字陣列雷達%目標檢測%寬帶時空Radon-Fourier變換%長時間相參積纍
관대수자진렬뢰체%목표검측%관대시공Radon-Fourier변환%장시간상삼적루
Wideband Digital Array Radar (DAR)%Target detection%Wideband Time-Space Radon-Fourier Transform (WTS-RFT)%Long-time coherent integration
宽带数字阵列雷达(DAR)中跨距离单元走动(ARU)、匹配滤波器失配以及孔径渡越问题降低了高速微弱目标的检测性能.为此,该文给出一种宽带时空 Radon-Fourier 变换(WST-RFT)相参积累方法.该方法基于 DAR 3维回波模型给出了宽带匹配滤波器系统响应函数,并通过联合搜索目标3维参数空间,同时解决ARU、匹配滤波器失配和孔径渡越问题.给出了基于WST-RFT检测器的最优性证明.针对WST-RFT 3维参数空间遍历搜索运算量大的问题,该文进一步给出了基于Chirp-Z变换(CZT)的WST-RFT快速算法.最后,数值实验结果验证了该文所提方法的有效性.
寬帶數字陣列雷達(DAR)中跨距離單元走動(ARU)、匹配濾波器失配以及孔徑渡越問題降低瞭高速微弱目標的檢測性能.為此,該文給齣一種寬帶時空 Radon-Fourier 變換(WST-RFT)相參積纍方法.該方法基于 DAR 3維迴波模型給齣瞭寬帶匹配濾波器繫統響應函數,併通過聯閤搜索目標3維參數空間,同時解決ARU、匹配濾波器失配和孔徑渡越問題.給齣瞭基于WST-RFT檢測器的最優性證明.針對WST-RFT 3維參數空間遍歷搜索運算量大的問題,該文進一步給齣瞭基于Chirp-Z變換(CZT)的WST-RFT快速算法.最後,數值實驗結果驗證瞭該文所提方法的有效性.
관대수자진렬뢰체(DAR)중과거리단원주동(ARU)、필배려파기실배이급공경도월문제강저료고속미약목표적검측성능.위차,해문급출일충관대시공 Radon-Fourier 변환(WST-RFT)상삼적루방법.해방법기우 DAR 3유회파모형급출료관대필배려파기계통향응함수,병통과연합수색목표3유삼수공간,동시해결ARU、필배려파기실배화공경도월문제.급출료기우WST-RFT검측기적최우성증명.침대WST-RFT 3유삼수공간편력수색운산량대적문제,해문진일보급출료기우Chirp-Z변환(CZT)적WST-RFT쾌속산법.최후,수치실험결과험증료해문소제방법적유효성.
The Across Range Unit (ARU) effect, mismatch issue in the matched filter and the aperture fill phenomenon can badly deteriorate the performance of high-speed weak target detection in wideband Digital Array Radar (DAR). To address these issues, a novel long-time coherent integration method, namely, Wideband Space- Time Radon Fourier Transform (WST-RFT) is proposed. Based on the 3D echo model of DAR, the system response function of wideband matched filter is given, and by jointly searching the 3D parameter space, the ARU effect, mismatch problem of the matched filter and the aperture fill phenomenon can be simultaneously addressed. Then, the optimality of the WST-RFT based detector is demonstrated. Furthermore, to solve high computation cost problem caused by ergodic search in the WST-RFT, a fast implementation based on Chirp-Z Transform (CZT) is given. Finally, numerical experiments demonstrate the effectiveness of the proposed method.