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Estimation in Phase-Shift and Forward Wireless Sensor Networks

机译:相移和前向无线传感器网络的估计

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We consider a network of single-antenna sensors that observe an unknown deterministic parameter. Each sensor applies a phase shift to the observation and the sensors simultaneously transmit the result to a multi-antenna fusion center (FC). Based on its knowledge of the wireless channel to the sensors, the FC calculates values for the phase factors that minimize the variance of the parameter estimate, and feeds this information back to the sensors. The use of a phase-shift-only transmission scheme provides a simplified analog implementation at the sensor, and also leads to a simpler algorithm design and performance analysis. We propose two algorithms for this problem, a numerical solution based on a relaxed semidefinite programming problem, and a closed-form solution based on the analytic constant modulus algorithm. Both approaches are shown to provide performance close to the theoretical bound. We derive asymptotic performance analyses for cases involving large numbers of sensors or large numbers of FC antennas, and we also study the impact of phase errors at the sensor transmitters. Finally, we consider the sensor selection problem, in which only a subset of the sensors is chosen to send their observations to the FC.
机译:我们考虑一个观察未知确定性参数的单天线传感器网络。每个传感器对观测值施加相移,并且传感器同时将结果传输到多天线融合中心(FC)。基于对传感器无线通道的了解,FC计算相位参数的值,以最大程度地减少参数估计的方差,并将此信息反馈给传感器。仅相移传输方案的使用在传感器处提供了简化的模拟实现,并且还导致了更简单的算法设计和性能分析。针对该问题,我们提出了两种算法:基于松弛半定规划问题的数值解和基于解析恒模算法的闭式解。两种方法都显示出接近理论极限的性能。对于涉及大量传感器或大量FC天线的情况,我们得出了渐近性能分析,并且我们还研究了传感器发射器上相位误差的影响。最后,我们考虑传感器选择问题,在该问题中,仅选择一部分传感器将其观测结果发送到FC。

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