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An Efficient Technique for Locating Multiple Narrow-Band Ultrasound Targets in Chorus Mode

机译:在合唱模式下定位多个窄带超声目标的有效技术

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摘要

A basic problem in time of arrival (TOA)-based locating systems using narrow-band ultrasound (NBU) is how to improve the location update rate for tracking multiple targets. It is challenging because each ongoing ultrasound (US) signal occupies the channel for a rather long time because the slow propagation speed in air and it is hard to encode information in the narrow-band US. In this paper, we investigate to allow multiple NBU targets to transmit signals concurrently and to determine their locations by signal processing, which is called locating in . The key observation is the signal interference characteristics of the concurrently chorusing targets. Based on it, the necessary and sufficient conditions for the receivers to determine the TOAs from multiple concurrently transmitting targets are investigated. However, because NBU cannot encode the target's ID, the detected TOAs are lacking labels of the target ID, causing ambiguities in location estimation. We exploited both and methods to narrow down the possible IDs of the TOAs and proposed to disambiguate the motion trajectories of targets based on the targets' motion pattern consistency. A prototype of chorus-mode NBU locating system was developed. Extensive evaluations of both simulations and prototype experiments showed the effectiveness of the proposed theories and algorithms. In the testbed experiment, chorus locating provided 300% refreshing rate improvements compared with exclusive locating method, while the accuracy is still kept.
机译:使用窄带超声(NBU)的基于到达时间(TOA)的定位系统的基本问题是如何提高跟踪多个目标的位置更新率。之所以具有挑战性,是因为每个进行中的超声(US)信号在通道中占据的时间都相当长,这是因为空气中的传播速度较慢,并且很难在窄带US中编码信息。在本文中,我们研究了允许多个NBU目标同时传输信号并通过信号处理来确定它们的位置,这称为定位。关键观察是同时合唱目标的信号干扰特性。基于此,研究了接收机从多个同时发送目标中确定TOA的充要条件。但是,由于NBU无法对目标ID进行编码,因此检测到的TOA缺少目标ID的标签,从而导致位置估计中的歧义。我们利用这两种方法来缩小TOA的可能ID,并建议根据目标的运动模式一致性来消除目标的运动轨迹。开发了合唱模式NBU定位系统的原型。对仿真和原型实验的广泛评估表明了所提出的理论和算法的有效性。在试验台实验中,与专用定位方法相比,合唱定位提供了300%的刷新率,同时仍保持了准确性。

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