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Distributed Detection Over Gaussian Multiple Access Channels With Constant Modulus Signaling

机译:高斯多路访问信道上具有恒定模量信号的分布式检测

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A distributed detection scheme where the sensors transmit with constant modulus signals over a Gaussian multiple access channel is considered. The deflection coefficient of the proposed scheme is shown to depend on the characteristic function of the sensing noise and the error exponent for the system is derived using large deviation theory. Optimization of the deflection coefficient and error exponent are considered with respect to a transmission phase parameter for a variety of sensing noise distributions including impulsive ones. The proposed scheme is also favorably compared with existing amplify-and-forward and detect-and-forward schemes. The effect of fading is shown to be detrimental to the detection performance through a reduction in the deflection coefficient depending on the fading statistics. Simulations corroborate that the deflection coefficient and error exponent can be effectively used to optimize the error probability for a wide variety of sensing noise distributions.
机译:考虑了一种分布式检测方案,其中传感器在高斯多路访问信道上以恒定模数信号进行传输。结果表明,所提出方案的偏转系数取决于感测噪声的特征函数,并使用大偏差理论推导了系统的误差指数。对于各种感测噪声分布(包括脉冲分布),考虑相对于传输相位参数来优化偏转系数和误差指数。与现有的放大转发和检测转发方案相比,所提出的方案也是有利的。通过减少取决于衰落统计量的偏转系数,表明衰落的影响对检测性能有害。仿真证实了偏转系数和误差指数可以有效地用于优化各种传感噪声分布的误差概率。

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