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A closed-form expression for the received power through the usage of the Dirac-Delta functions with nonlinear argument

机译:通过使用带有非线性参数的Dirac-Delta函数来获得接收功率的封闭形式

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We present a closed-form expression for the received power through parametrized Dirac-Delta functions inside the framework of input and output integrals. This expression is derived from the `spike' property of the Dirac-Delta function which was generalized to the case where the argument might depend on a polynomial function containing an infinity number of free parameters. These nonlinear Dirac-Delta integrals can be interpreted as the convolution of a physical observable that falls to distance such as power intensity. This methodology is applied to extract values of the emitted power by a base station antenna inside a zone that contains inhomogeneous buildings and others obstacles. In order to identify the system parameters, the Monte Carlo method was used. It has served to identify up to 12 free parameters which would give information about the power intensity values with a precision of 8 ± 3 m.
机译:我们通过输入和输出积分框架内的参数化Dirac-Delta函数为接收功率提供一个封闭形式的表达式。该表达式源自Dirac-Delta函数的“ spike”属性,该属性被推广到以下情况:自变量可能取决于包含无穷多个自由参数的多项式函数。这些非线性狄拉克-德尔塔积分可以解释为物理观测值的卷积,其下降到距离,例如功率强度。该方法适用于通过包含不均匀建筑物和其他障碍物的区域内的基站天线提取发射功率的值。为了识别系统参数,使用了蒙特卡洛方法。它可以识别多达12个自由参数,这些参数将以8±3 m的精度提供有关功率强度值的信息。

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