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Indoor localization with audible sound - Towards practical implementation

机译:可听见声音的室内定位-实际应用

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This paper presents an innovative evaluation and comparison of several methods and techniques necessary to implement an indoor localization system based on audible sound. Experiments were conducted in a room with conditions very close to possible practical application demonstrating that time delay estimation using generalized cross-correlation phase transform provides the best estimate to the distance to fixed anchors, and highlight the benefits of a new localization method entitled circle shrinking based on an optimization methodology. Of the three optimization methods tested, Gauss-Newton proves to be the most adequate, and among the three medium access methods evaluated, code division multiple access acoustic transmission provided the best results. A localization system combining these components and using only off-the-shelf hardware reached an average accuracy of 1.3 cm in the central area of the test room with an excitation signal-to-noise ratio as low as 7.2 dB, an almost unperceivable noise like audio signal. These results represent an advance of the state-of-the-art in indoor localization systems, pointing towards the possibility of widespread practical implementation with everyday use components. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种创新的评估方法,并比较了实现基于可听声音的室内定位系统所需的几种方法和技术。实验是在一个非常接近实际应用条件的房间内进行的,这表明使用广义互相关相位变换进行时延估计可提供对固定锚点距离的最佳估计,并强调了一种新的定位方法(基于圆收缩)的优势。在优化方法上。在所测试的三种优化方法中,高斯-牛顿被证明是最合适的,在所评估的三种介质访问方法中,码分多址声学传输提供了最佳结果。结合了这些组件并仅使用现成的硬件的定位系统在测试室的中心区域的平均精度达到1.3厘米,激发信噪比低至7.2 dB,这几乎是无法感知的噪声,例如音频信号。这些结果代表了室内定位系统的最新发展,指出了日常使用组件广泛实施的可能性。 (C)2015 Elsevier B.V.保留所有权利。

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