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An Improved Simulation of HF Channel with Gaussian Random Time Delays and Doppler Shifts

机译:具有高斯随机时间延迟和多普勒班次的HF通道的改进模拟

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An improved high frequency (HF) channel model with random time-delays and random frequency shifts is proposed, on the basis of Watterson model. A software HF channel simulator is implemented using the proposed model. The frequency domain method is used to design the low-pass linear filter that generates the complex baseband tap-gain function with Gaussian spectrum density, representing the Doppler spread of HF channel. The time-delays and Doppler frequency shifts are both modeled as random variables with Gaussian distributed function. Simulation results prove the validity of the proposed HF channel simulator and provide some new insight into the time-varying properties of the HF channel. The proposed model can be used into the simulation of adaptive HF communication system and is much helpful to the design of hardware-based simulator.
机译:基于Watterson模型,提出了一种具有随机时间延迟和随机频移的改进的高频(HF)信道模型。使用所提出的模型实现软件HF信道模拟器。频域方法用于设计具有高斯频谱密度的复杂基带抽头增益功能的低通线性滤波器,表示HF通道的多普勒扩散。时滞和多普勒频率偏移都是用高斯分布式功能的随机变量建模。仿真结果证明了提出的HF信道模拟器的有效性,并提供了一些新的洞察HF通道的时变特性。所提出的模型可用于模拟自适应HF通信系统,并且对基于硬件的模拟器的设计有很大乐观。

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