室内超宽带信道中光线跟踪/时域有限差分混合模型的验证

M. Porebska, T. Kayser, W. Wiesbeck
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引用次数: 23

摘要

为了开发和优化基于超宽带(UWB)的定位和成像算法,需要确定性信道模型,以提供给定室内场景下真实的信道脉冲响应。由于所考虑的频段为3.1至10.6 GHz,因此大多数室内场景中的物体尺寸与低频波长相比较小。为了模拟这种情况下的波传播特性,现有的射线追踪模型与时域有限差分法(FDTD)相结合。利用时域有限差分法计算小物体的散射特性,并将其作为单个散射点纳入射线跟踪模拟。将模拟结果与复杂实验室场景的测量结果进行了比较。对比结果表明,在复杂的室内场景下,射线追踪/时域有限差分联合模型能够以较小的延迟时间提供更高的传播路径精度。然而,模拟质量的整体改善是有限的,与考虑光线追踪模拟中漫射散射的潜在改善相比几乎可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Verification of a Hybrid Ray-Tracing/FDTD Model for Indoor Ultra-Wideband Channels
For development and optimization of ultra-wideband (UWB) based localization and imaging algorithms deterministic channel models are needed, which provide realistic channel impulse responses for given indoor scenarios. As the considered frequency band is 3.1 to 10.6 GHz the dimensions of objects in most indoor scenarios are small compared to the wavelength at lower frequencies. To simulate wave propagation properties in such scenarios an existing ray-tracing model has been combined with the finite difference time domain method (FDTD). The scattering properties of small objects are computed using FDTD and incorporated in a ray-tracing simulation as single scattering points. The simulation results are compared to measurements in a complex laboratory scenario. This comparison shows that the combined ray-tracing/FDTD model provides in complex indoor scenarios higher precision for propagation paths with small delay time. However the overall improvement of the simulation quality is limited and in comparison to the potential improvement by considering the diffuse scattering in the ray-tracing simulation almost negligible.
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