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Ground effects for VHF/HF antennas on helicopter airframes

机译:直升机机身上VHF / HF天线的地面效应

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In this paper, the finite element method (FEM) is used to predict the space and surface wave radiation patterns of VHF/HF antennas mounted on a helicopter in the presence of a lossy ground. The equivalent sources of the radiation system are obtained by solving an FEM problem in conjunction with an absorbing boundary condition (ABC) or an impedance boundary condition (IBC). From the equivalent sources, the total radiated field is calculated using the equivalence principle and superposition; the original problem is converted into a set of properly combined Hertzian dipoles referred to as the Sommerfeld problem. Instead of evaluating the Sommerfeld integral rigorously, Norton's approximation is used to improve the overall computational efficiency. The validation of this method is accomplished in two steps: first, the FEM is compared with the finite-difference time-domain method (FDTD) in the absence of a lossy ground; second, the Hertzian dipole problem is solved in the presence of a lossy ground and the results are compared with analytic solutions. Finally, this technique is extended to analyze an antenna on a helicopter above a lossy ground
机译:在本文中,有限元方法(FEM)用于预测在有损耗地面的情况下安装在直升机上的VHF / HF天线的空间和表面波辐射方向图。辐射系统的等效源是通过结合吸收边界条件(ABC)或阻抗边界条件(IBC)解决FEM问题而获得的。从等效光源,使用等效原理和叠加计算总辐射场;原始问题被转换为一组正确组合的赫兹偶极子,称为Sommerfeld问题。诺顿逼近法不是严格地评估Sommerfeld积分,而是用来提高整体计算效率。该方法的验证分两个步骤完成:首先,在不存在有损接地的情况下,将有限元与有限差分时域方法(FDTD)进行比较;其次,赫兹偶极子问题在有损地面的存在下得到解决,并将结果与​​解析解进行比较。最后,这项技术得到了扩展,可以分析直升机在有损耗地面上方的天线

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