该文通过空域匹配滤波器,将阵元空间中的均匀圆阵转化为波束空间中的均匀线阵,并将时空匹配滤波器的输出转换到频域,利用 DOA Matrix方法解决了非周期扩频系统中均匀圆阵条件下多径信号的角度和时延的联合估计问题及常规空域处理方法中...该文通过空域匹配滤波器,将阵元空间中的均匀圆阵转化为波束空间中的均匀线阵,并将时空匹配滤波器的输出转换到频域,利用 DOA Matrix方法解决了非周期扩频系统中均匀圆阵条件下多径信号的角度和时延的联合估计问题及常规空域处理方法中多径数不能大于阵元数的问题。理论分析和仿真实验结果表明,该方法是一种无偏估计,且其估计精度远远高于滑动相关方法。展开更多
In order to meet the requirements for zero value stability of direct sequence spread spectrum(DSSS) signal processing in high dynamic scenario,digital automatic gain control(AGC) is employed to regulate power.However,...In order to meet the requirements for zero value stability of direct sequence spread spectrum(DSSS) signal processing in high dynamic scenario,digital automatic gain control(AGC) is employed to regulate power.However,conventional AGC causes degradation in the synchronization performance of DSSS receiver.Based on the theoretical analysis of the influence of digital AGC on DSSS signal synchronization,this paper proposes a new AGC algorithm,which is applicable to multi-channel digital DSSS signal receiver.By making power adjustment cycle and synchronization cycle coherent with each other adaptively,the influence of digital AGC on subsequent synchronization processing has been eliminated.Theoretical analysis,simulation results and experimental data verify the validity of the proposed algorithm.By virtue of the proposed algorithm,the influence of digital AGC on DSSS signal synchronization is eliminated.This algorithm applies to an aerospace engineering project successfully.展开更多
文摘该文通过空域匹配滤波器,将阵元空间中的均匀圆阵转化为波束空间中的均匀线阵,并将时空匹配滤波器的输出转换到频域,利用 DOA Matrix方法解决了非周期扩频系统中均匀圆阵条件下多径信号的角度和时延的联合估计问题及常规空域处理方法中多径数不能大于阵元数的问题。理论分析和仿真实验结果表明,该方法是一种无偏估计,且其估计精度远远高于滑动相关方法。
基金support of the National High Technology Research and Development Program of China(863)(Grant No.2013AA1548)
文摘In order to meet the requirements for zero value stability of direct sequence spread spectrum(DSSS) signal processing in high dynamic scenario,digital automatic gain control(AGC) is employed to regulate power.However,conventional AGC causes degradation in the synchronization performance of DSSS receiver.Based on the theoretical analysis of the influence of digital AGC on DSSS signal synchronization,this paper proposes a new AGC algorithm,which is applicable to multi-channel digital DSSS signal receiver.By making power adjustment cycle and synchronization cycle coherent with each other adaptively,the influence of digital AGC on subsequent synchronization processing has been eliminated.Theoretical analysis,simulation results and experimental data verify the validity of the proposed algorithm.By virtue of the proposed algorithm,the influence of digital AGC on DSSS signal synchronization is eliminated.This algorithm applies to an aerospace engineering project successfully.