Robust time-of-arrival self calibration with missing data and outliers

Kenneth Batstone, M. Oskarsson, Kalle Åström
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引用次数: 14

Abstract

The problem of estimating receiver-sender node positions from measured receiver-sender distances is a key issue in different applications such as microphone array calibration, radio antenna array calibration, mapping and positioning using ultra-wideband and mapping and positioning using round-trip-time measurements between mobile phones and Wi-Fi-units. Thanks to recent research in this area we have an increased understanding of the geometry of this problem. In this paper, we study the problem of missing information and the presence of outliers in the data. We propose a novel hypothesis and test framework that efficiently finds initial estimates of the unknown parameters and combine such methods with optimization techniques to obtain accurate and robust systems. The proposed systems are evaluated against current state-of-the-art methods on a large set of benchmark tests. This is evaluated further on Wi-Fi round-trip time and ultra-wideband measurements to give a realistic example of self calibration for indoor localization.
具有缺失数据和异常值的鲁棒到达时间自校准
从测量的接收端-发送端距离估计接收端-发送端节点位置的问题是不同应用中的关键问题,例如麦克风阵列校准、无线电天线阵列校准、使用超宽带进行测绘和定位以及使用移动电话和wi - fi单元之间的往返时间测量进行测绘和定位。由于最近在这一领域的研究,我们对这个问题的几何学有了更多的了解。在本文中,我们研究了数据中信息缺失和异常值存在的问题。我们提出了一个新的假设和测试框架,有效地找到未知参数的初始估计,并将这些方法与优化技术相结合,以获得准确和鲁棒的系统。在大量基准测试中,根据当前最先进的方法对拟议的系统进行了评估。在Wi-Fi往返时间和超宽带测量上进一步评估了这一点,以给出一个室内定位自校准的现实例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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