Passive Indoor-Localization using Echoes of Ultrasound Signals

F. Hoeflinger, Addythia Saphala, D. Schott, L. Reindl, C. Schindelhauer
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引用次数: 8

Abstract

In this paper, we present our novel indoor-localization system. The system uses only short inaudible acoustic signals to locate acoustically passive objects in a room. Moving objects can be detected as well as resting objects. The localization device consists of a transmitter (speaker) and a multi-channel receiver with up to eight receivers (microphones). The total time-of-flight path from the speaker to the microphones is the round-trip-time of the signal from the speaker to the reflecting object and back to the microphones. Therefore, a localization algorithm is used to translate the timing into object coordinates. By using a simple approach of direct intersection, the 3D-coordinates of the reflecting surface of the target can be derived. In an experiment, we demonstrate the functionality of this approach.
利用超声信号回波进行被动室内定位
本文提出了一种新型的室内定位系统。该系统仅使用短的听不见的声学信号来定位房间内的无声物体。移动的物体和静止的物体都可以被检测到。定位装置由一个发射器(扬声器)和一个多通道接收器组成,最多有八个接收器(麦克风)。从扬声器到麦克风的总飞行时间路径是信号从扬声器到反射物体再返回麦克风的往返时间。因此,使用定位算法将时间转换为目标坐标。采用一种简单的直接交点法,可以得到目标反射面的三维坐标。在一个实验中,我们演示了这种方法的功能。
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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