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Probability density function for waves propagating in a straight rough wall tunnel

机译:在平直的粗糙壁隧道中传播的波的概率密度函数

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The radio channel places fundamental limitations on the performance of wireless communication systems in tunnels and caves. The field propagating in caves or tunnels is a complex-valued Gaussian random process, by the central limit theorem. We assume that the phase probability density function is uniformly distributed over a range of extent 2/spl pi/. Under this assumption, the phase and amplitude of the field joint probability density function are independent and uncorrelated. We show that the probability density function for the amplitude of a random field propagating in a straight rough wall tunnel or cave is Rician. This tells us that there is a dominant signal component, such as a line-of-sight propagation path. In such a situation, random components arriving at different angles are superimposed on a stationary signal. At the output of an envelope detector, this has the effect of adding a DC component to the random multipath signal (Gibson, J.D., "The Mobile Communications Handbook", CRC Press, 1996). Since both expected value and standard deviation depend only on radial position, the probability density function for the amplitude of a random field propagating in a straight rough wall tunnel or cave is a radially dependent function.
机译:无线电信道对隧道和洞穴中无线通信系统的性能进行了基本限制。通过中央限制定理,在洞穴或隧道中传播的领域是一个复估值的高斯随机过程。我们假设相位概率密度函数均匀地分布在一系列范围内2 / SPL PI /。在这种假设下,场关节概率密度函数的相位和幅度是独立和不相关的。我们表明,在直粗糙的墙隧道或洞穴中传播的随机场幅度的概率密度函数是瑞典。这告诉我们,有一个主导的信号分量,例如视图线传播路径。在这种情况下,到达不同角度的随机分量叠加在静止信号上。在包络检测器的输出端,这具有将DC分量添加到随机多径信号(Gibson,J.D.,“移动通信手册”,CRC Medion,1996)的效果。由于预期值和标准偏差都仅取决于径向位置,因此在直粗墙隧道或洞穴中传播的随机场的幅度的概率密度函数是径向相关的功能。

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