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Asymptotic Blind-Spot Analysis of Localization Networks Under Correlated Blocking Using a Poisson Line Process

机译:相关阻塞下泊松线过程的定位网络渐近盲点分析

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In a localization network, the line-of-sight between anchors (transceivers) and targets may be blocked due to the presence of obstacles in the environment. Due to the non-zero size of the obstacles, the blocking is typically correlated across both anchor and target locations, with the extent of correlation increasing with obstacle size. If a target does not have line-of-sight to a minimum number of anchors, then its position cannot be estimated unambiguously and is, therefore, said to be in a blind-spot. However, the analysis of the blind-spot probability of a given target is challenging due to the inherent randomness in the obstacle locations and sizes. In this letter, we develop a new framework to analyze the worst-case impact of correlated blocking on the blind-spot probability of a typical target; in particular, we model the obstacles by a Poisson line process and the anchor locations by a Poisson point process. For this setup, we define the notion of the asymptotic blind-spot probability of the typical target and derive a closed-form expression for it as a function of the area distribution of a typical Poisson-Voronoi cell. As an upper bound for the more realistic case when obstacles have finite dimensions, the asymptotic blind-spot probability is useful as a design tool to ensure that the blind-spot probability of a typical target does not exceed a desired threshold, .
机译:在本地化网络中,由于环境中存在障碍物,锚点(收发器)和目标之间的视线可能会被阻塞。由于障碍物的大小不为零,因此通常会在锚点和目标位置之间关联阻塞,并且相关程度会随障碍物大小而增加。如果目标在最小锚点视线范围内,则不能明确估计其位置,因此被称为盲区。但是,由于障碍物位置和大小的固有随机性,对给定目标的盲点概率进行分析具有挑战性。在这封信中,我们开发了一个新的框架来分析相关阻塞对典型目标的盲点概率的最坏情况影响;特别是,我们通过泊松线过程对障碍物进行建模,并通过泊松点过程对锚点位置进行建模。对于此设置,我们定义典型目标的渐近盲点概率概念,并根据典型Poisson-Voronoi单元的面积分布来推导其封闭形式的表达式。作为障碍物尺寸有限时更现实情况的上限,渐近盲点概率可用作设计工具,以确保典型目标的盲点概率不超过所需阈值。

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