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An Accurate Hardware Sum-of-Cisoids Fading Channel Simulator for Isotropic and Non-Isotropic Mobile Radio Environments

机译:适用于各向同性和非各向同性移动无线电环境的精确的硬件,类曲线衰落信道模拟器

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The rapid technological development in the field of wireless communications calls for devices capable of reproducing and simulating the behavior of the channel under realistic propagation conditions. This paper presents a hardware fading channel simulator that is able to generate stochastic processes characterized by symmetrical and asymmetrical Doppler power spectral densities (PSDs) depending on the assumption of isotropic or non-isotropic scattering. The concept of the proposed hardware simulator is based on an implementation of the sum-of-cisoids (SOC) method. The hardware simulator is capable of handling any configuration of the cisoid's amplitudes, frequencies, and phases. Each of the cisoids that constitutes the SOC model is implemented using a piecewise polynomial approximation technique. The investigation of the higher-order statistics of the generated fading processes, like the level-crossing rate (LCR) and the average duration of fades (ADF), shows that our design is able to reproduce accurately the key features of realistic channel models that are considered as candidates for the latest wireless communication standards.
机译:无线通信领域中的快速技术发展要求能够在真实的传播条件下再现和模拟信道行为的设备。本文提出了一种硬件衰落信道模拟器,它能够根据各向同性或非各向同性散射的假设,生成具有对称和非对称多普勒功率谱密度(PSD)的随机过程。所提出的硬件仿真器的概念基于顺式和(SOC)方法的实现。硬件仿真器能够处理类固醇的振幅,频率和相位的任何配置。使用分段多项式逼近技术可实现构成SOC模型的每个类固醇。对生成的衰落过程的高阶统计数据(例如,电平交叉速率(LCR)和平均衰落持续时间(ADF))的研究表明,我们的设计能够准确地再现现实信道模型的关键特征,被认为是最新无线通信标准的候选者。

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