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Finite integration technique for modelling of WBAN communication links in complex environments

机译:用于复杂环境中WBAN通信链路建模的有限集成技术

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摘要

Recently, finite integration technique (FIT) is shown to be promising method for modelling channel characteristics of wireless body area network (WBAN) on-off body communication links. One of the main advantages of FIT-based channel modelling is that channel characteristics for a specific environment can be obtained simply by drawing the environment on the software and selecting proper parameters for simulations. FIT-simulators face the same problem as the other corresponding simulators: large memory and computational capacity is required in complex environments. However, these requirements can be reduced significantly especially by using FIT with a careful planning of meshing for the simulation model and by proper selection for the critical parameters. The first aim of this paper is to depict and visualize how FIT-simulations should be conducted in complex scenarios taken into account the meshing, accuracy of simulation results, complexity, and simulation time. Further, this paper shows how density of meshing influences remarkably on the simulated channel characteristics in time domain, whereas in frequency domain sparser mesh is sufficient to obtain realistic results. Finally, the aim is to verify that FIT is valid in complex environments by comparing the Ultra Wideband (UWB) channel characteristics obtained by FIT-simulations and channel measurements.
机译:最近,有限集成技术(FIT)被证明是一种有前途的方法,可用于对无线人体局域网(WBAN)开关机体通信链路的信道特性进行建模。基于FIT的通道建模的主要优点之一是,可以通过在软件上绘制环境并选择适当的仿真参数来简单地获得特定环境的信道特性。 FIT模拟器面临着与其他相应的模拟器相同的问题:在复杂的环境中需要大容量的内存和计算能力。但是,这些要求可以显着降低,特别是通过使用FIT并仔细规划仿真模型的网格并正确选择关键参数。本文的首要目的是描绘和可视化在考虑了网格划分,仿真结果的准确性,复杂性和仿真时间的复杂情况下应如何进行FIT仿真。此外,本文显示了网格密度如何在时域中显着影响模拟的信道特性,而在频域中,稀疏网格足以获得逼真的结果。最后,目的是通过比较通过FIT仿真和信道测量获得的超宽带(UWB)信道特性,来验证FIT在复杂环境中是否有效。

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