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Dynamic Indoor Location Determination: Mechanisms and Robustness Evaluation

机译:室内动态位置确定:机制和鲁棒性评估

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Many indoor location determination systems have been developed lately due to burgeoning demands on location based autonomous systems, however, the performance of most systems is not well understood because conditions under which reported systems were evaluated could be very different. To this date, there are still not yet many valuable evaluation studies using real measurement data sets in recent literature. In this work, we examine a set of localization mechanisms and evaluate their performance robustness under various configuration settings and dynamics using two different building environments including one regular office building and one underground floor-plan. We study both the distance-based and the database-based systems that employ only received signal strength for location determination, and propose several performance enhancement methods that would improve the robustness of common indoor systems. We introduce a simple but effective radio distortion model to capture signal perturbations under uncontrolled environments where signal values could be distorted significantly. Using the model, we also evaluate two location searching algorithms including lateration and multidimensional scaling (MDS), we observed that MDS presented stable and smaller localization errors under most experimental settings. Of systems studied in this paper, strong experimental evidence indicated that the signal-location map method, a database-based system, outperforms the distance-based systems, especially when environment is dynamic or when radio signal values are distorted intentionally.
机译:由于基于位置的自治系统的迅速增长的需求,最近已经开发了许多室内位置确定系统,但是,由于对所报告的系统进行评估的条件可能非常不同,因此大多数系统的性能尚未得到很好的理解。迄今为止,在最近的文献中,仍然没有许多使用真实测量数据集的有价值的评估研究。在这项工作中,我们检查了一套本地化机制,并使用两种不同的建筑环境(包括一栋常规办公楼和一个地下平面图)在各种配置设置和动力学下评估了它们的性能鲁棒性。我们研究了仅使用接收信号强度进行位置确定的基于距离的系统和基于数据库的系统,并提出了几种性能增强方法,这些方法将改善普通室内系统的鲁棒性。我们引入了一个简单但有效的无线电失真模型,以捕获信号值可能会严重失真的不受控制的环境下的信号扰动。使用该模型,我们还评估了包括定位和多维缩放(MDS)在内的两种位置搜索算法,我们观察到MDS在大多数实验设置下均呈现稳定且较小的定位误差。在本文研究的系统中,有力的实验证据表明,基于数据库的信号定位图方法优于基于距离的系统,尤其是在环境动态或无线电信号值故意失真的情况下。

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