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Universal Distributed Estimation Over Multiple Access Channels With Constant Modulus Signaling

机译:具有恒定模信号的多路访问信道上的通用分布式估计

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A distributed estimation scheme where the sensors transmit with constant modulus signals over a multiple access channel is considered. The proposed estimator is shown to be strongly consistent for any sensing noise distribution in the i.i.d. case both for a per-sensor power constraint, and a total power constraint. When the distributions of the sensing noise are not identical, a bound on their variances is shown to establish strong consistency. The estimator is shown to be asymptotically normal with a variance ( $AsV$) that depends on the characteristic function of the sensing noise. Optimization of the $AsV$ is considered with respect to a transmission phase parameter for a variety of noise distributions exhibiting differing levels of impulsive behavior. The robustness of the estimator in the sense of degrading gracefully when the sensing noise deviates from the Gaussian distribution to impulsive sensing noise distributions such as those with positive excess kurtosis, or those that do not have finite moments is shown. The proposed estimator is favorably compared with the amplify and forward scheme under an impulsive noise scenario. The effect of fading and phase error at the sensors are shown to not affect the consistency of the estimator, but to degrade the asymptotic variance by terms that depend on the fading and phase error distributions. Simulations corroborate our analytical results.
机译:考虑一种分布式估计方案,其中传感器以恒定模数信号在多路访问信道上进行传输。对于i.i.d中的任何感测噪声分布,建议的估计值都显示出非常强的一致性。对于每个传感器的功率约束和总功率约束而言都是如此。当感测噪声的分布不相同时,将显示它们的方差界限以建立强一致性。估算器显示为渐近正态,其方差($ AsV $)取决于感测噪声的特征函数。对于表现出不同水平的脉冲行为的各种噪声分布,针对传输相位参数考虑$ AsV $的优化。显示了当感测噪声从高斯分布偏离到脉冲感测噪声分布(例如具有正过量峰度或不具有有限矩的分布)时,估计器的鲁棒性。拟议的估计器与脉冲噪声情况下的放大和正向方案相比具有优势。传感器上的衰落和相位误差的影响显示为不会影响估计器的一致性,而是通过取决于衰落和相位误差分布的项来降低渐近方差。模拟证实了我们的分析结果。

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