空时自适应处理(Space-Time Adaptive Processing,STAP)技术可以实现对机载雷达杂波的有效抑制,显著提高机载雷达对运动目标的检测性能。但在实际工程应用过程中,STAP技术不可避免地会受到各种空时误差的影响,导致其性能严重下降。本文...空时自适应处理(Space-Time Adaptive Processing,STAP)技术可以实现对机载雷达杂波的有效抑制,显著提高机载雷达对运动目标的检测性能。但在实际工程应用过程中,STAP技术不可避免地会受到各种空时误差的影响,导致其性能严重下降。本文首先给出了各种空时误差的数学模型,然后从目标导向矢量失配和杂波自由度增加两方面系统分析了误差影响STAP性能的内在机理,并以信杂噪比(Signal to Clutter plus Noise Ratio,SCNR)损失为指标分析了不同误差对STAP性能的影响,最后通过仿真实验对相关分析进行了验证。本文工作量化了不同误差对STAP性能的影响程度,可为机载脉冲多普勒雷达空时误差补偿提供重要的理论支撑。展开更多
A chip-level space-time equalization receiver scheme is proposed for multiple-input multiple-output high-speed downlink packet access (MIMO HSDPA) systems to jointly combat the co-channel interference and the inter-co...A chip-level space-time equalization receiver scheme is proposed for multiple-input multiple-output high-speed downlink packet access (MIMO HSDPA) systems to jointly combat the co-channel interference and the inter-code interference. A fractional sample equalizer is also derived to further improve the performance of the receiver. Performance analysis and the calculation of the output signal to interference ratio (SINR) at each receiver antenna are presented to help direct the design of equalization weight in a more optimal manner. System simulations demonstrate the significant performance gain over conventional Rake receiver and high potential of MIMO HSDPA for high-data-rate packet transmission.展开更多
The space-time spreading (SIS), superimposed training sequences and space-time coding (STC) are adopted to obtain a closed-form of average error probability upper bound and maximum likelihood esti- mation expressi...The space-time spreading (SIS), superimposed training sequences and space-time coding (STC) are adopted to obtain a closed-form of average error probability upper bound and maximum likelihood esti- mation expression for multiple input and multiple output (MIMO) correlated frequency-selective channel in the presence of interference (colored interference). Moreover, the correlation at both ends of the wire- less link that can be incorporated equivalently into correlation at the transmit end is derived. Finally, the mean square error (MSE) of the maximum likelihood estimate is also derived.展开更多
文摘空时自适应处理(Space-Time Adaptive Processing,STAP)技术可以实现对机载雷达杂波的有效抑制,显著提高机载雷达对运动目标的检测性能。但在实际工程应用过程中,STAP技术不可避免地会受到各种空时误差的影响,导致其性能严重下降。本文首先给出了各种空时误差的数学模型,然后从目标导向矢量失配和杂波自由度增加两方面系统分析了误差影响STAP性能的内在机理,并以信杂噪比(Signal to Clutter plus Noise Ratio,SCNR)损失为指标分析了不同误差对STAP性能的影响,最后通过仿真实验对相关分析进行了验证。本文工作量化了不同误差对STAP性能的影响程度,可为机载脉冲多普勒雷达空时误差补偿提供重要的理论支撑。
文摘A chip-level space-time equalization receiver scheme is proposed for multiple-input multiple-output high-speed downlink packet access (MIMO HSDPA) systems to jointly combat the co-channel interference and the inter-code interference. A fractional sample equalizer is also derived to further improve the performance of the receiver. Performance analysis and the calculation of the output signal to interference ratio (SINR) at each receiver antenna are presented to help direct the design of equalization weight in a more optimal manner. System simulations demonstrate the significant performance gain over conventional Rake receiver and high potential of MIMO HSDPA for high-data-rate packet transmission.
基金the National High Technology Research and Development Program of China(2002AA123032)
文摘The space-time spreading (SIS), superimposed training sequences and space-time coding (STC) are adopted to obtain a closed-form of average error probability upper bound and maximum likelihood esti- mation expression for multiple input and multiple output (MIMO) correlated frequency-selective channel in the presence of interference (colored interference). Moreover, the correlation at both ends of the wire- less link that can be incorporated equivalently into correlation at the transmit end is derived. Finally, the mean square error (MSE) of the maximum likelihood estimate is also derived.