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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Time-Domain Solution for Transmitted Field Through Low-loss Dielectric Obstacles in a Microcellular and Indoor Scenario for UWB Signals
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Time-Domain Solution for Transmitted Field Through Low-loss Dielectric Obstacles in a Microcellular and Indoor Scenario for UWB Signals

机译:在UWB信号的微蜂窝和室内场景中通过低损耗介质障碍物传输场的时域解决方案

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摘要

An analytical time-domain (TD) solution based on an established frequency-domain (FD) transmission model is presented for transmission of ultrawideband (UWB) signals through low-loss dielectric obstacles, in a microcellular and indoor propagation environment. This paper provides an in-depth analysis of the FD transmission model and presents a computationally more efficient direct TD transmission solution. Various obstacles considered in this paper include dielectric wedge and rectangular building with homogeneous, isotropic, and low-loss dielectric characteristics. Novel TD transmission coefficients, for transmission through an interface between air and a low-loss dielectric medium, are proposed for both hard and soft polarizations. The proposed TD solution is validated against the numerical inverse fast Fourier transform of the exact FD (IFFT-FD) solution and the results are found to be in very good agreement with each other. The computational efficiency achieved through the proposed TD solution is demonstrated by comparing its computation time with that of the exact IFFT-FD solution.
机译:提出了一种基于已建立的频域(FD)传输模型的分析时域(TD)解决方案,用于在微蜂窝和室内传播环境中通过低损耗介质障碍传输超宽带(UWB)信号。本文对FD传输模型进行了深入分析,并提出了一种计算效率更高的直接TD传输解决方案。本文考虑的各种障碍包括具有均匀,各向同性和低损耗电介质特性的电介质楔形和矩形建筑物。对于硬极化和软极化,提出了用于通过空气和低损耗介电质之间的界面传输的新型TD传输系数。相对于精确FD(IFFT-FD)解决方案的数值快速傅里叶逆变换,对提出的TD解决方案进行了验证,发现结果彼此非常吻合。通过将其与精确的IFFT-FD解决方案的计算时间进行比较,可以证明通过提出的TD解决方案实现的计算效率。

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