相对于传统机载相控阵雷达单输入多输出(SIMO)体制,多输入多输出(MIMO)机载雷达中的空时自适应处理(STAP)技术可以获得杂波抑制和动目标检测性能的大幅提升。但是传统机载MIMO雷达空时自适应处理所需要的计算量和样本需求量巨大,无法满...相对于传统机载相控阵雷达单输入多输出(SIMO)体制,多输入多输出(MIMO)机载雷达中的空时自适应处理(STAP)技术可以获得杂波抑制和动目标检测性能的大幅提升。但是传统机载MIMO雷达空时自适应处理所需要的计算量和样本需求量巨大,无法满足非均匀杂波环境和实时性要求。为了解决这一问题,本文提出了一种机载MIMO雷达空时自适应杂波抑制方法(clutter suppression based on space time sampling matrix,CSBSM)。该方法利用了杂波协方差矩阵的低秩特性,基于空时采样矩阵构造杂波协方差矩阵,并通过空时滑窗处理对杂波功率进行估计,在非均匀杂波环境下CSBSM方法仅需要单个样本即可实现对杂波的有效抑制。同时,由于空时采样矩阵和独立采样点位置可离线计算,因此CSBSM方法的运算量较小,适用于极端非均匀杂波环境。计算机仿真结果验证了所提方法的有效性。展开更多
A method to investigate the effect of gas bubble on cell voltage oscillations was established. The whole aluminum electrolysis cell was treated as a resistance circuit, and the dynamic simulation of the cell equivalen...A method to investigate the effect of gas bubble on cell voltage oscillations was established. The whole aluminum electrolysis cell was treated as a resistance circuit, and the dynamic simulation of the cell equivalent circuit was modeled with Matlab/Simulink simulation software. The time-series signals of cell voltage and anode current were obtained under different bubble conditions, and analyzed by spectral and statistical analysis methods. The simulation results show that higher bubble release frequency has a significant effect on the cell voltage oscillations. When the bubble coverage of one anode block exceeds 80%, the cell voltage may exceed its normal fluctuation amplitude. The simulation also proves that the anode effect detected by computer in actual production is mainly the whole cell anode effect.展开更多
文摘相对于传统机载相控阵雷达单输入多输出(SIMO)体制,多输入多输出(MIMO)机载雷达中的空时自适应处理(STAP)技术可以获得杂波抑制和动目标检测性能的大幅提升。但是传统机载MIMO雷达空时自适应处理所需要的计算量和样本需求量巨大,无法满足非均匀杂波环境和实时性要求。为了解决这一问题,本文提出了一种机载MIMO雷达空时自适应杂波抑制方法(clutter suppression based on space time sampling matrix,CSBSM)。该方法利用了杂波协方差矩阵的低秩特性,基于空时采样矩阵构造杂波协方差矩阵,并通过空时滑窗处理对杂波功率进行估计,在非均匀杂波环境下CSBSM方法仅需要单个样本即可实现对杂波的有效抑制。同时,由于空时采样矩阵和独立采样点位置可离线计算,因此CSBSM方法的运算量较小,适用于极端非均匀杂波环境。计算机仿真结果验证了所提方法的有效性。
基金Project(2012BAE08B09)supported by the National Key Technology R&D Program of China
文摘A method to investigate the effect of gas bubble on cell voltage oscillations was established. The whole aluminum electrolysis cell was treated as a resistance circuit, and the dynamic simulation of the cell equivalent circuit was modeled with Matlab/Simulink simulation software. The time-series signals of cell voltage and anode current were obtained under different bubble conditions, and analyzed by spectral and statistical analysis methods. The simulation results show that higher bubble release frequency has a significant effect on the cell voltage oscillations. When the bubble coverage of one anode block exceeds 80%, the cell voltage may exceed its normal fluctuation amplitude. The simulation also proves that the anode effect detected by computer in actual production is mainly the whole cell anode effect.