基于互信息和MMSE估计的无线传感器网络数据采集能力

A. S. Arifin, T. Ohtsuki
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引用次数: 3

摘要

我们从容量和功率分配策略两方面研究了无线传感器网络中数据收集的特性。我们考虑了一个场景,其中许多传感器观察到一个目标被估计在融合中心(FC)使用最小均方误差(MMSE)估计。基于互信息与MMSE (I-MMSE)之间的关系,推导了相干和正交多址信道(MAC)模型的数据采集容量。在考虑功率约束的情况下,分别推导了两种模型的功率均衡分配和最优分配两种情况下的容量。我们提供了容量的上限作为基准。特别是,我们表明,当传感器数量L增长到无穷大时,数据收集容量的规模为Θ((1/2)log)。仿真结果表明,无论是相干MAC模型还是正交MAC模型,最优功率的容量都大于等功率的容量。我们还证明了相干MAC比正交MAC的容量更大,特别是当传感器数量L大且总功率P固定时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity of Data Collection in Wireless Sensor Networks Based on Mutual Information and MMSE Estimation
We investigate the properties of data collection in wireless sensor networks, in terms of both capacity and power allocation strategy. We consider a scenario in which a number of sensors observe a target being estimated at fusion center (FC) using minimum mean-square error (MMSE) estimator. Based on the relationship between mutual information and MMSE (I-MMSE), the capacity of data collection in coherent and orthogonal multiple access channel (MAC) models is derived. Considering power constraint, the capacity is derived under two scenarios: equal power allocation and optimal power allocation of both models. We provide the upper bound of capacity as a benchmark. In particular, we show that the capacity of data collection scales as Θ((1/2)log) when the number of sensors L grows to infinity. We show through simulation results that for both coherent and orthogonal MAC models, the capacity of the optimal power is larger than that of the equal power. We also show that the capacity of coherent MAC is larger than that of orthogonal MAC, particularly when the number of sensors L is large and the total power P is fixed.
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