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Fast Simulation of Vehicular Antennas for V2X Communication Using the Sparse Equivalent Source Model

机译:使用稀疏等效源模型的V2X通信的车载天线快速仿真

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摘要

Electrical modeling of vehicular antennas is required for design of modern vehicle-to-everything communication networks. However, full-wave modeling and the existing equivalent source methods still ask for long computation time. To address this issue, a fast simulation method is proposed in this paper: a sparse equivalent source model is developed based on Huygens' principle where a vehicular antenna is made equivalent to magnetic current placed on a finite conducting plate. The image theory and the uniform theory of diffraction are then applied, a modified Green's function is derived, and the sparse equivalent source model is constructed to replace the original vehicular antenna. Because of its simple geometry and material, in comparisons with the existing methods, the proposed model uses significantly less expenditures for simulation of vehicular antennas while has better accuracy due to the consideration of the finite conducting plate. Simulations are performed to demonstrate the effectiveness and advantages of the proposed method, and a real-world experiment is designed and conducted to demonstrate the superiority of the proposed method with real measurement data. It is shown that the proposed method can save simulation time by four times, with less than 1-dB error compared to measurement.
机译:车辆天线的电气建模是现代车辆到所有通信网络的设计所必需的。但是,全波建模和现有的等效源方法仍然需要较长的计算时间。为了解决这个问题,本文提出了一种快速仿真方法:基于惠更斯原理开发了一种稀疏等效源模型,其中使车载天线等效于置于有限导电板上的磁电流。然后应用图像理论和均匀衍射理论,推导了改进的格林函数,并构造了稀疏等效源模型来代替原始的车载天线。由于其简单的几何形状和材料,与现有方法相比,该模型使用的天线天线仿真花费少得多,而由于考虑了有限的导电板,因此具有更高的精度。仿真实验证明了该方法的有效性和优势,并设计并进行了实际实验,以证明该方法在实际测量数据中的优越性。结果表明,该方法可节省四倍的仿真时间,与测量相比,误差小于1dB。

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