讨论了在车载雷达对目标自动识别的要求下,阵列信号的谱估计问题,将修正MU-SIC(MMUSIC,Modified Multiple signal classification)算法推广到时-空二维谱估计中,解决了相干信号的频率-方位超分辨估计问题,仿真结果表明了这种方法在系统...讨论了在车载雷达对目标自动识别的要求下,阵列信号的谱估计问题,将修正MU-SIC(MMUSIC,Modified Multiple signal classification)算法推广到时-空二维谱估计中,解决了相干信号的频率-方位超分辨估计问题,仿真结果表明了这种方法在系统实现中的可行性和有效性。展开更多
This paper addresses the issue of the direction of arrival (DOA) estimation under the compressive sampling (CS) framework. A novel approach, modified multiple signal classification (MMUSIC) based on the CS array...This paper addresses the issue of the direction of arrival (DOA) estimation under the compressive sampling (CS) framework. A novel approach, modified multiple signal classification (MMUSIC) based on the CS array (CSA-MMUSIC), is proposed to resolve the DOA estimation of correlated signals and two closely adjacent signals. By using two random CS matrices, a large size array is compressed into a small size array, which effectively reduces the number of the front end circuit. The theoretical analysis demonstrates that the proposed approach has the advantages of low computational complexity and hardware structure compared to other MMUSIC approaches. Simulation results show that CSAMMUSIC can possess similar angular resolution as MMUSIC.展开更多
文摘讨论了在车载雷达对目标自动识别的要求下,阵列信号的谱估计问题,将修正MU-SIC(MMUSIC,Modified Multiple signal classification)算法推广到时-空二维谱估计中,解决了相干信号的频率-方位超分辨估计问题,仿真结果表明了这种方法在系统实现中的可行性和有效性。
基金supported by the National Natural Science Foundation of China(6117119761371045+2 种基金61201307)the Shandong Provincial Natural Science Foundation(ZR2011FM005)the Shandong Provincial Promotive Research Fund for Excellent Young and Middle-aged Scientists(BS2010DX001)
文摘This paper addresses the issue of the direction of arrival (DOA) estimation under the compressive sampling (CS) framework. A novel approach, modified multiple signal classification (MMUSIC) based on the CS array (CSA-MMUSIC), is proposed to resolve the DOA estimation of correlated signals and two closely adjacent signals. By using two random CS matrices, a large size array is compressed into a small size array, which effectively reduces the number of the front end circuit. The theoretical analysis demonstrates that the proposed approach has the advantages of low computational complexity and hardware structure compared to other MMUSIC approaches. Simulation results show that CSAMMUSIC can possess similar angular resolution as MMUSIC.