A novel modified four path method (FPM) is presented for calculating coupling field of super-low altitude aircraft target. Based on the hybrid method PO + MEC (Physical Optics and Method of Equivalent Currents), the a...A novel modified four path method (FPM) is presented for calculating coupling field of super-low altitude aircraft target. Based on the hybrid method PO + MEC (Physical Optics and Method of Equivalent Currents), the antenna radiation pattern is introduced to consider the multipath interference from side lobe of seeker. The modified FPM is used to calculate the coupling field from super-low altitude aircraft target above different terrestrial environments. The curves of scattering coefficient are analyzed. The influences of height of target, root mean square (RMS), and incident angle on coupling field characteristics are discussed. The simulation results can be used for reference in detection for super-low altitude target and optimization for radar system.展开更多
针对大型分块反射面天线面板调整次数多、效率低的问题,提出了一种从天线远场方向图反推出面板调整量进而快速调整的方法。应用物理光学(physical optics,PO)法建立了表面节点位移与远区电场的线性关系,将面板调整向量与远区辐射场强用...针对大型分块反射面天线面板调整次数多、效率低的问题,提出了一种从天线远场方向图反推出面板调整量进而快速调整的方法。应用物理光学(physical optics,PO)法建立了表面节点位移与远区电场的线性关系,将面板调整向量与远区辐射场强用线性方程组联系起来。利用奇异值分解(singular value decomposition,SVD)法求解线性方程组得调整向量,从而实现由方向图反推调整量的目的。对某工程案例进行了分析计算,给出了相应的数据与曲线,证明了所提方法的有效性,为大型天线反射面板的精确调整提供了指导。展开更多
文摘A novel modified four path method (FPM) is presented for calculating coupling field of super-low altitude aircraft target. Based on the hybrid method PO + MEC (Physical Optics and Method of Equivalent Currents), the antenna radiation pattern is introduced to consider the multipath interference from side lobe of seeker. The modified FPM is used to calculate the coupling field from super-low altitude aircraft target above different terrestrial environments. The curves of scattering coefficient are analyzed. The influences of height of target, root mean square (RMS), and incident angle on coupling field characteristics are discussed. The simulation results can be used for reference in detection for super-low altitude target and optimization for radar system.
文摘针对大型分块反射面天线面板调整次数多、效率低的问题,提出了一种从天线远场方向图反推出面板调整量进而快速调整的方法。应用物理光学(physical optics,PO)法建立了表面节点位移与远区电场的线性关系,将面板调整向量与远区辐射场强用线性方程组联系起来。利用奇异值分解(singular value decomposition,SVD)法求解线性方程组得调整向量,从而实现由方向图反推调整量的目的。对某工程案例进行了分析计算,给出了相应的数据与曲线,证明了所提方法的有效性,为大型天线反射面板的精确调整提供了指导。