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Bounds on distance estimation via diffusive molecular communication

机译:通过扩散分子通讯进行距离估计的界限

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This paper studies distance estimation for diffusive molecular communication. The strength of the channel impulse response generally decreases with distance, so it is measured to estimate the distance. The Cramer-Rao lower bound on the variance of the distance estimation error is derived. The lower bound is derived for a physically unbounded environment with molecule degradation and steady uniform flow. The maximum likelihood distance estimator is derived and its accuracy is shown via simulation to perform very close to the Cramer-Rao lower bound. An existing protocol is shown to be equivalent to the maximum likelihood distance estimator if only one observation is made. Simulation results also show the accuracy of existing protocols with respect to the Cramer-Rao lower bound.
机译:本文研究了扩散分子通讯的距离估计。信道脉冲响应的强度通常随距离而降低,因此可以测量该距离以估计距离。推导了距离估计误差方差的Cramer-Rao下界。下限是针对分子降解和稳定均匀流动的物理上不受限制的环境而得出的。得出最大似然距离估计量,并通过仿真显示其准确性,使其非常接近Cramer-Rao下限。如果仅进行一次观察,则现有协议显示为等效于最大似然距离估计器。仿真结果还显示了有关Cramer-Rao下限的现有协议的准确性。

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