In the underwater waveguide,the conventional adaptive subspace detector(ASD),derived by using the generalized likelihood ratio test(GLRT)theory,suffers from a significant degradation in detection performance when the ...In the underwater waveguide,the conventional adaptive subspace detector(ASD),derived by using the generalized likelihood ratio test(GLRT)theory,suffers from a significant degradation in detection performance when the samplings of training data are deficient.This paper proposes a dimension-reduced approach to alleviate this problem.The dimension reduction includes two steps:firstly,the full array is divided into several subarrays;secondly,the test data and the training data at each subarray are transformed into the modal domain from the hydrophone domain.Then the modal-domain test data and training data at each subarray are processed to formulate the subarray statistic by using the GLRT theory.The final test statistic of the dimension-reduced ASD(DR-ASD)is obtained by summing all the subarray statistics.After the dimension reduction,the unknown parameters can be estimated more accurately so the DR-ASD achieves a better detection performance than the ASD.In order to achieve the optimal detection performance,the processing gain of the DR-ASD is deduced to choose a proper number of subarrays.Simulation experiments verify the improved detection performance of the DR-ASD compared with the ASD.展开更多
该文研究了机载多输入多输出(Multiple-Input Multiple-Output,MIMO)雷达杂波抑制的收发联合降维空时自适应处理(Space Time Adaptive Processing,STAP)算法统一理论框架。首先,基于机载MIMO雷达发射波形分集的特性,构建了机载MIMO雷达...该文研究了机载多输入多输出(Multiple-Input Multiple-Output,MIMO)雷达杂波抑制的收发联合降维空时自适应处理(Space Time Adaptive Processing,STAP)算法统一理论框架。首先,基于机载MIMO雷达发射波形分集的特性,构建了机载MIMO雷达降维联合自适应STAP处理的统一理论框架结构。在此基础上,建立了3种降维STAP处理结构。最后,针对上述3种降维结构,给出了相应的3类适用于MIMO体制的降维STAP处理算法。仿真实验表明:机载MIMO雷达联合降维自适应算法具有较好的杂波抑制性能和较强的抗干扰能力。展开更多
基金the National Natural Science Foundation of China (Grant No. 11534009, 11974285) to provide fund for conducting this research
文摘In the underwater waveguide,the conventional adaptive subspace detector(ASD),derived by using the generalized likelihood ratio test(GLRT)theory,suffers from a significant degradation in detection performance when the samplings of training data are deficient.This paper proposes a dimension-reduced approach to alleviate this problem.The dimension reduction includes two steps:firstly,the full array is divided into several subarrays;secondly,the test data and the training data at each subarray are transformed into the modal domain from the hydrophone domain.Then the modal-domain test data and training data at each subarray are processed to formulate the subarray statistic by using the GLRT theory.The final test statistic of the dimension-reduced ASD(DR-ASD)is obtained by summing all the subarray statistics.After the dimension reduction,the unknown parameters can be estimated more accurately so the DR-ASD achieves a better detection performance than the ASD.In order to achieve the optimal detection performance,the processing gain of the DR-ASD is deduced to choose a proper number of subarrays.Simulation experiments verify the improved detection performance of the DR-ASD compared with the ASD.
文摘分析了AEW雷达系统中实际存在的阵元幅相误差对二维空时自适应处理(2D STAP)性能的影响。提出了一种更加稳健的三维空时自适应处理(3D STAP)技术,补偿因存在阵元幅相误差而导致各列子阵俯仰方向图的不一致性。为了降低计算量,还提出了一种三维先时后空自适应处理(3D T SAP)的准最优技术。对仿真数据和某实测数据的处理结果证明三维处理具有优良的性能和很强的误差容错能力。
文摘该文研究了机载多输入多输出(Multiple-Input Multiple-Output,MIMO)雷达杂波抑制的收发联合降维空时自适应处理(Space Time Adaptive Processing,STAP)算法统一理论框架。首先,基于机载MIMO雷达发射波形分集的特性,构建了机载MIMO雷达降维联合自适应STAP处理的统一理论框架结构。在此基础上,建立了3种降维STAP处理结构。最后,针对上述3种降维结构,给出了相应的3类适用于MIMO体制的降维STAP处理算法。仿真实验表明:机载MIMO雷达联合降维自适应算法具有较好的杂波抑制性能和较强的抗干扰能力。