主瓣欺骗式干扰降低了对真实目标的估计精度与跟踪准确性,对传统雷达提出了挑战。针对此问题,基于频率分集阵(frequency diverse array,FDA)-多输入多输出(multiple-input and multiple-output,MIMO)雷达,提出了一种抑制主瓣距离欺骗式...主瓣欺骗式干扰降低了对真实目标的估计精度与跟踪准确性,对传统雷达提出了挑战。针对此问题,基于频率分集阵(frequency diverse array,FDA)-多输入多输出(multiple-input and multiple-output,MIMO)雷达,提出了一种抑制主瓣距离欺骗式干扰的方法。假目标产生器通过对截获的雷达信号进行延迟转发,导致真、假目标的时延(距离)差异,由此可形成具有不同发射频率的假目标。据此,首先利用频率分集阵雷达的距离维自由度在联合发射-接收维对真、假目标进行区分,其次设计了距离-角度二维自适应匹配滤波器,所有假目标由于距离维的失配而被抑制。该方法有效地解决了主瓣距离欺骗式干扰抑制的问题,提升了雷达在复杂电磁环境的抗干扰性能。仿真实验验证了所提方法的有效性。展开更多
Adaptive antenna arrays at both the base and mobile stations can further increase system capacity and improve the quality of service of conventional orthogonal frequency division multiplexing (OFDM) systems. Convent...Adaptive antenna arrays at both the base and mobile stations can further increase system capacity and improve the quality of service of conventional orthogonal frequency division multiplexing (OFDM) systems. Conventional adaptive antenna array-based multiple-input multiple-output (MIMO)/OFDM systems use the sub-carriers characterized by the largest eigenvalue to transmit the OFDM symbols. This paper describes the performance of adaptive subchannel assignment-based MIMO/OFDM systems over multipath fading channels, The system adaptively selects the eigenvectors associated with the relatively large subchannel eigenvalues to generate the antenna array weights at the base and mobile stations and then adaptively assigns the corresponding best subchannels to transmit the OFDM symbols. Simulation results show that the proposed system can achieve better performance than the conventional adaptive antenna arraybased MIMO/OFDM system over multipath fading channels.展开更多
文摘主瓣欺骗式干扰降低了对真实目标的估计精度与跟踪准确性,对传统雷达提出了挑战。针对此问题,基于频率分集阵(frequency diverse array,FDA)-多输入多输出(multiple-input and multiple-output,MIMO)雷达,提出了一种抑制主瓣距离欺骗式干扰的方法。假目标产生器通过对截获的雷达信号进行延迟转发,导致真、假目标的时延(距离)差异,由此可形成具有不同发射频率的假目标。据此,首先利用频率分集阵雷达的距离维自由度在联合发射-接收维对真、假目标进行区分,其次设计了距离-角度二维自适应匹配滤波器,所有假目标由于距离维的失配而被抑制。该方法有效地解决了主瓣距离欺骗式干扰抑制的问题,提升了雷达在复杂电磁环境的抗干扰性能。仿真实验验证了所提方法的有效性。
基金Supported partially by the Hong Kong Telecom Institute ofInformation Technology and the Hong Kong Research GrantCouncil (No. HKUST6164/02E) and the Ministry of EducationFund of China (No. SRFDP20030003039)
文摘Adaptive antenna arrays at both the base and mobile stations can further increase system capacity and improve the quality of service of conventional orthogonal frequency division multiplexing (OFDM) systems. Conventional adaptive antenna array-based multiple-input multiple-output (MIMO)/OFDM systems use the sub-carriers characterized by the largest eigenvalue to transmit the OFDM symbols. This paper describes the performance of adaptive subchannel assignment-based MIMO/OFDM systems over multipath fading channels, The system adaptively selects the eigenvectors associated with the relatively large subchannel eigenvalues to generate the antenna array weights at the base and mobile stations and then adaptively assigns the corresponding best subchannels to transmit the OFDM symbols. Simulation results show that the proposed system can achieve better performance than the conventional adaptive antenna arraybased MIMO/OFDM system over multipath fading channels.