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A ray-tracing approach for indoor/outdoor propagation throughwindow structures

机译:通过窗口结构进行室内/室外传播的光线跟踪方法

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A ray-tracing approach for indoor/outdoor propagation through windows is proposed. Using both the finite-difference time-domain (FDTD) method and a ray-tracing algorithm, several cases of indoor/outdoor propagation through windows were investigated. It is shown that wave transmission through windows cannot generally be accounted for through a single transmission coefficient parameter. Instead, a full diffraction pattern needs to be accounted for and multiple-ray representation is therefore required. It is also shown that a single window model may be used to calculate transmission through set of windows in a typical building structure as a building block. Results from the implementation of a multiple-ray representation and FDTD simulations showed good agreement. Results were validated for both normal and oblique incident cases. The developed ray-tracing approach, therefore, facilitates the use of the developed window model in available ray-tracing algorithms often used for propagation characterization of urban environments. Simulation results were further validated by conducting measurements on scaled models at 30 GHz. The experimental results agreed well with the simulation data, thus validating the accuracy of the developed ray-tracing model for transmission through windows
机译:提出了一种通过窗户进行室内/室外传播的光线追踪方法。使用时域有限差分(FDTD)方法和光线跟踪算法,研究了室内/室外透过窗户传播的几种情况。结果表明,通常不能通过单个传输系数参数来解释通过窗口的波传输。相反,需要考虑完整的衍射图,因此需要多射线表示。还显示了单个窗口模型可以用于计算通过典型建筑结构中的一组窗口作为构建块的透射率。实施多射线表示和FDTD模拟的结果显示出良好的一致性。正常和倾斜事件的结果均得到验证。因此,开发的光线跟踪方法有助于在可用的光线跟踪算法中使用开发的窗口模型,这些算法通常用于城市环境的传播特性描述。通过在30 GHz的比例模型上进行测量,进一步验证了仿真结果。实验结果与仿真数据吻合得很好,从而验证了所开发的光线跟踪模型通过窗口传输的准确性。

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