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Non-Line-of-Sight Time-Difference-of-Arrival Localization with Explicit Inclusion of Geometry Information in a Simple Diffraction Scenario

机译:在简单的衍射场景中明确包含几何信息的非瞄准时间 - 到达差异定位

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Time-difference-of-arrival (TDOA) localization is a technique for finding the position of a wave emitting object, e.g., a car horn. Many algorithms have been proposed for TDOA localization under line-of-sight (LOS) conditions. In the non-line-of-sight (NLOS) case the performance of these algorithms usually deteriorates. There are techniques to reduce the error introduced by the NLOS condition, which, however, do not directly take into account information on the geometry of the surroundings. In this paper a NLOS TDOA localization approach for a simple diffraction scenario is described, which includes information on the surroundings into the equation system. An experiment with three different loudspeaker positions was conducted to validate the proposed method. The localization error was less than 6.2 % of the distance from the source to the closest microphone position. Simulations show that the proposed method attains the Cramer-Rao-Lower-Bound for low enough TDOA noise levels.
机译:到达时间差(TDOA)定位是一种用于找到波发射物体的位置,例如汽车喇叭。已经提出了许多算法在视线(LOS)条件下的TDOA定位。在非视线(NLOS)案例中,这些算法的性能通常恶化。有技术可以减少NLOS条件引入的错误,但是,不直接考虑周围环境的几何形状的信息。本文描述了一种用于简单衍射场景的NLOS TDOA定位方法,其包括关于周围环境的信息进入等式系统。进行了具有三种不同扬声器位置的实验以验证所提出的方法。本地化误差小于源距离到最近麦克风位置的距离的6.2%。模拟表明,该方法达到了足够低的TDOA噪声水平的克拉梅-RAO较低。

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