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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >A New Universal Approach to Time-Domain Modeling and Simulation of UWB Channel Containing Convex Obstacles Using Vector Fitting Algorithm
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A New Universal Approach to Time-Domain Modeling and Simulation of UWB Channel Containing Convex Obstacles Using Vector Fitting Algorithm

机译:矢量拟合算法的UWB包含凸障碍物时域建模与仿真的通用方法

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The paper presents a new approach to time-domain modeling of ultra-wideband (UWB) channels with multiple convex obstacles. Rational approximation exploiting the vector fitting algorithm (VF) is used for deriving the closed-form impulse response of a multiple diffraction ray creeping on a cascade of convex obstacles. The VF algorithm is performed with respect to new generalized variables proportional to frequency but also taking into account geometrical parameters of the obstacles. The limits of the approximation domain for the VF algorithm reflect the range of UWB channel parameters that can be met in practical UWB channel scenarios. The results of VF approximation have the form of a finite series of partial fractions in the frequency domain, which then is easily transformed to the time domain. Obtained in this way, impulse response is a sum of exponential functions. As a consequence, in simulations of electromagnetic (EM) wave propagation, we can implement very fast and effective convolution algorithms with any input signal or perform simulations implementing SPICE-like programs.
机译:本文提出了一种具有多个凸障碍物的超宽带(UWB)信道的时域建模新方法。利用矢量拟合算法(VF)进行的有理逼近被用于推导在梯度障碍物级联上爬行的多重衍射射线的闭合形式脉冲响应。 VF算法是针对与频率成比例的新广义变量执行的,但也要考虑到障碍物的几何参数。 VF算法的近似域限制反映了实际UWB信道方案中可以满足的UWB信道参数范围。 VF逼近的结果在频域中具有有限部分分数序列的形式,然后可以容易地转换为时域。以这种方式获得的脉冲响应是指数函数的总和。因此,在电磁波传播仿真中,我们可以对任何输入信号实施非常快速有效的卷积算法,或者执行类似SPICE程序的模拟。

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