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A state-space model for flat fading channels with a novel method of rational function filter design

机译:平坦衰落信道的状态空间模型与有理函数滤波器设计的新方法

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摘要

Clarke??s model [1] and Jakes?? spectrum [2] have been traditionally accepted in wireless channel modeling. In comparison with measured spectra, Jakes?? spectrum has limitations - it is unbounded and does not incorporate the effect of temporal phase fluctuations. Previous work [5] extended Clarke??s model to yield a theoretical power spectrum that is consistent with measured data. The modified spectrum, which includes the effects of phase fluctuations explicitly, is more appropriate as a theoretical basis for channel spectrum analysis and simulations. We develop here a state-space model that represents a wireless channel with these modified spectral characteristics. This is achieved by developing the relationship between a continuoustime state-space model and the theory of the rational transfer function. A novel method for the design of a rational transfer function of a linear system is proposed. The system input is a Gaussian white noise process, which generates a wireless channel with a desired arbitrary power spectrum. We represent the rational transfer function via the Observable Canonical Form (OCF) to obtain the continuous-time state-space model. A discrete-time version of the state-space model is then provided to represent and simulate a discrete-time flat fading wireless channel.
机译:克拉克的模型[1]和杰克斯?频谱[2]在无线信道建模中已被传统接受。与实测光谱相比,Jakes ??频谱有局限性-它是无界的,并且没有包含时间相位波动的影响。先前的工作[5]扩展了Clarke模型,以产生与测量数据一致的理论功率谱。修改后的频谱(明确包含相位波动的影响)更适合作为信道频谱分析和仿真的理论基础。我们在这里开发一个状态空间模型,该模型表示具有这些已修改频谱特征的无线信道。这是通过发展连续时间状态空间模型与有理传递函数理论之间的关系来实现的。提出了一种设计线性系统有理传递函数的新方法。系统输入是高斯白噪声过程,该过程会生成具有所需任意功率谱的无线信道。我们通过可观测规范形式(OCF)表示有理传递函数,以获得连续时间状态空间模型。然后提供状态空间模型的离散时间版本,以表示和模拟离散时间平坦衰落无线信道。

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