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Bit-error probability for optimum combining of binary signals in the presence of interference and noise

机译:在存在干扰和噪声的情况下最佳组合二进制信号的误码率

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We derive an exact bit-error probability (BEP) expression for coherent detection of binary signals with optimum combining in wireless systems in the presence of multiple cochannel interferers and thermal noise. A flat Rayleigh fading environment with space diversity, uncorrelated equal-power interferers, and additive white Gaussian noise is considered. The approach is to use the chain rule of conditional expectation together with the joint probability density function (pdf) of the eigenvalues of the interference correlation matrix. This joint pdf is related to the Vandermonde determinant. Let NA denote the number of antennas and NI the number of interferers. We consider both the cases of an overloaded system, in which NI≥NA, and an underloaded system, in which NI
机译:我们得出了一种精确的误码率(BEP)表达式,用于在多个同信道干扰源和热噪声存在的情况下,在无线系统中以最佳组合对二进制信号进行相干检测。考虑具有空间分集,不相关的等功率干扰源和加性高斯白噪声的平坦瑞利衰落环境。该方法是将条件期望的链规则与干扰相关矩阵特征值的联合概率密度函数(pdf)一起使用。该联合pdf与Vandermonde行列式有关。令NA表示天线数,NI表示干扰物数。我们同时考虑了NI≥NA的过载系统和NI

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