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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >A Bidirectional Ray-Tracing Method for Antenna Coupling Evaluation Based on the Reciprocity Theorem
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A Bidirectional Ray-Tracing Method for Antenna Coupling Evaluation Based on the Reciprocity Theorem

机译:基于互易定理的双向射线追踪天线耦合评估方法

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摘要

A novel bidirectional ray-tracing method for solving antenna coupling problems is presented where the transfer function between the transmit and receive antennas is obtained by evaluating surface interaction integrals according to the reciprocity theorem. In order to eliminate the limitations of the reception spheres in the traditional unidirectional shooting and bouncing rays (SBR) method, both the transmitter and receiver are used for ray launching. The resulting rays are captured on an interaction surface, which is much more flexible in terms of size and shape than a reception sphere. The transfer function between two antennas is obtained by evaluating the reciprocity integral on this interaction surface by a specifically designed numerical integration procedure. It is shown that the new method has two advantages compared to the traditional unidirectional ray tracing. First, flexible interaction surfaces help to retain the accuracy in large geometries where the traditional unidirectional SBR fails due to reception spheres being limited in size and being missed by the rays. Second, explicit computation of single and multiple diffraction effects by the uniform theory of diffraction can be avoided and replaced by a physical optics like integration over the reciprocity interaction surface. Numerical results demonstrate the capabilities and advantages of the new approach.
机译:提出了一种解决天线耦合问题的新型双向射线追踪方法,该方法通过根据互易定理评估表面相互作用积分来获得发射天线与接收天线之间的传递函数。为了消除传统单向射击和弹跳射线(SBR)方法中接收球的限制,发射器和接收器均用于射线发射。产生的射线被捕获在相互作用表面上,该相互作用表面在大小和形状方面比接收球要灵活得多。通过专门设计的数值积分程序,通过评估此相互作用表面上的互易性积分,可以获得两个天线之间的传递函数。结果表明,与传统的单向光线跟踪相比,该新方法具有两个优点。首先,灵活的相互作用表面有助于在大几何形状中保持精度,在传统的单向SBR由于接收球尺寸受限且被射线错过而无法使用的情况下,大几何形状仍可保持精度。其次,可以避免通过统一的衍射理论对单次和多次衍射效应进行显式计算,而可以通过诸如互易相互作用表面上的积分之类的物理光学代替。数值结果证明了该新方法的功能和优势。

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