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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Energy-Based Representation of Multiport Circuits and Antennas Suitable for Near- and Far-Field Syntheses
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Energy-Based Representation of Multiport Circuits and Antennas Suitable for Near- and Far-Field Syntheses

机译:适用于近场和远场合成的多端口电路和天线的基于能量的表示

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An energy-based representation suitable for the electromagnetic characterization of linear multiport circuits and antenna systems, as well as for the optimization of antenna beamforming and near-field radio frequency-focusing performances, is presented. Radiation, ohmic, dielectric power loss, and reactive power storage are described in the concise matrix form, yielding respective eigenmodes and eigenfields that rigorously account for all energetic processes. Noteworthy eigenfields orthogonality properties are illustrated and employed to maximize (minimize) active power flow through, or to synthesize fields on, arbitrary surfaces. Applications of the proposed formulation include multiport antennas, microwave-sensing devices, microwave hyperthermia applicators, through-the-wall imaging, and wireless power transfer systems. The numerical results illustrate features and performance advantages of the proposed formulation as applied to multiport antennas and lead to define some basic design guidelines.
机译:提出了一种基于能量的表示形式,适用于线性多端口电路和天线系统的电磁表征,以及天线波束成形和近场射频聚焦性能的优化。以简明的矩阵形式描述了辐射,欧姆,介电功率损耗和无功功率存储,产生了严格考虑所有高能过程的本征模式和本征场。值得注意的本征场正交性被说明并用于最大化(最小化)通过任意表面的有功功率流或合成任意表面上的场。提议的配方的应用包括多端口天线,微波传感设备,微波热疗器,穿墙成像和无线功率传输系统。数值结果说明了所提出的配方应用于多端口天线的特性和性能优势,并导致定义了一些基本的设计准则。

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