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A UTD Based Asymptotic Solution for the Surface Magnetic Field on a Source Excited Circular Cylinder With an Impedance Boundary Condition

机译:基于UTD的带有阻抗边界条件的源激发圆柱上表面磁场的渐近解。

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An asymptotic solution based on the uniform geometrical theory of diffraction (UTD) is proposed for the canonical problem of surface field excitation on a circular cylinder with an impedance boundary condition (IBC). The radius of the cylinder and the length of the geodesic path between source and field points, both of which are located on the surface of the cylinder, are assumed to be large compared to a wavelength. Unlike the UTD based solution pertaining to a perfect electrically conducting (PEC) circular cylinder, some higher order terms and derivatives of Fock type integrals are found to be significantly important and included in the proposed solution. The solution is of practical interest in the prediction of electromagnetic compatibility (EMC) and electromagnetic interference (EMI) between conformal slot antennas on a PEC cylindrical structure with a thin material coating on which boundary conditions can be approximated by an IBC. The cylindrical structure could locally model a portion of the fuselage of an aircraft or a spacecraft, or a missile. Validity and accuracy of the numerical results obtained by this solution are demonstrated in comparison with those of an exact eigenfunction solution.
机译:针对具有阻抗边界条件(IBC)的圆柱表面场激励的典型问题,提出了基于均匀衍射几何理论(UTD)的渐近解。圆柱体的半径以及源点和场点之间的测地路径的长度(均位于圆柱体的表面上)与波长相比被假定为较大。与涉及完美导电(PEC)圆柱体的基于UTD的解决方案不同,发现Fock型积分的一些高阶项和导数非常重要,并包含在建议的解决方案中。该解决方案在预测具有薄材料涂层的PEC圆柱结构上的保形缝隙天线之间的电磁兼容性(EMC)和电磁干扰(EMI)方面具有实际意义,其边界条件可以通过IBC近似。圆柱形结构可以局部地模拟飞机,航天器或导弹的机身的一部分。通过与精确特征函数解的比较证明了通过该解获得的数值结果的有效性和准确性。

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