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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Evaluation of Efficient Closed-Form Green’s Function in a Cylindrically Stratified Medium
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Evaluation of Efficient Closed-Form Green’s Function in a Cylindrically Stratified Medium

机译:圆柱分层介质中有效闭式格林函数的估计

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An efficient technique is proposed for the removal of the spatial singularity for a z-directed current source in a cylindrically layered structure by decomposing the spectral domain Green’s function into the particular and homogeneous parts. The particular part with the singularity is converted into the spatial domain using Sommerfeld’s identity, while the DCIM with general pencil of function technique is applied on the spectral domain homogeneous part. The use of the ratio form of the reflection/transmission matrices, the Debye approximation, and the subsequent envelope extraction for the treatment of the spatial domain singularity is thus avoided. In addition, a very significant reduction in the number of modes required for convergence is also achieved. The technique is applied for evaluating the input impedance of several antennas in the cylindrical multilayer structure together with a coupling configuration for the excitation of the multilayer structure.
机译:提出了一种有效的技术,该方法通过将频谱域格林函数分解为特定且均匀的部分来消除圆柱形分层结构中z向电流源的空间奇点。使用Sommerfeld的身份将具有奇异性的特定部分转换为空间域,而将具有通用功能铅笔技术的DCIM应用于光谱域的同质部分。因此避免了使用反射/透射矩阵的比率形式,德拜近似和随后的包络提取来处理空间域奇点。另外,还实现了收敛所需的模式数量的非常显着的减少。该技术用于评估圆柱形多层结构中几个天线的输入阻抗以及用于激励多层结构的耦合配置。

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