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Easily-Deployable Acoustic Local Positioning System Based on Auto-Calibrated Wireless Beacons

机译:基于自动校准无线信标的易于部署的声学局部定位系统

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摘要

Self-calibrated Acoustic Local Positioning Systems (ALPS) generally require a high consumption of hardware and software resources to obtain the user’s position at an acceptable update rate. To address this limitation, this work proposes a self-calibrated ALPS based on a software/hardware co-design approach. This working architecture allows for efficient communications, signal processing tasks, and the running of the positioning algorithm on low-cost devices. This fact also enables the real-time system operation. The proposed system is composed of a minimum of four RF-synchronized active acoustic beacons, which emit spread-spectrum modulated signals to position an unlimited number of receiver nodes. Each receiver node estimates the beacons’ position by means of an auto-calibration process and then computes its own position by means of a 3D multilateration algorithm. A set of experimental tests has been carried out where the feasibility of the proposed system is demonstrated. In these experiments, accuracies below 0.1 m are obtained in the determination of the receptor node position with respect to the set of previously-calibrated beacons.
机译:自校准声本地定位系统(ALPS)一般需要的硬件和软件资源高消耗来获得在可接受的更新速率用户的位置。为了解决这个限制,这项工作提出了一种基于软件/硬件协同设计方法的自校准ALPS。本工作架构允许高效的通信,信号处理任务,并且在低成本设备的定位算法的运行。这一事实也使得实时系统操作。所提出的系统是由至少四个RF同步的有源声学信标,其发射扩频调制信号以定位接收器节点的数量不受限制的。每个接收机节点的一个自动校准过程的装置估计的信标的位置,然后通过一个三维多边算法的装置计算其自身的位置。一组实验测试中已经进行了所提出的系统的可行性表明其中。在这些实验中,在受体节点位置的确定相对于该组先前校准的信标获得的下面0.1米精度。

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