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Benefits from cooperation in simultaneous anchor-less tracking and room mapping based on Impulse Radio - Ultra Wideband devices

机译:通过基于脉冲无线的超锚设备同时进行无锚跟踪和房间映射的合作而受益-超宽带设备

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摘要

In this article, a method is proposed to jointly estimate both the dimensions of a rectangular room and the relative locations of wireless devices communicating in this room. Relying on Low Data Rate (LDR) Impulse Radio - Ultra Wideband (IR-UWB) links, one can determine accurate estimates of the propagation delays corresponding to the direct path and the four single-bounce paths reflected on surrounding walls. Once properly ordered over each single link, these five delays enjoy explicit mathematical relationships with the transmitter/receiver nodes coordinates and the dimensions of the rectangular room. We propose herein new solutions to related underlying problems such as data association, initialization and tracking through Extended Kalman Filter (EKF) in a cooperative context including more than two mobile devices. The impact of the Time Of Arrival (TOA) estimation precision, the initial guess and the actual room dimensions is then evaluated through canonical simulation scenarios.
机译:在本文中,提出了一种方法来联合估计矩形房间的尺寸和在该房间中通信的无线设备的相对位置。依靠低数据速率(LDR)脉冲无线电-超宽带(IR-UWB)链路,可以确定与直接路径和反射在周围墙壁上的四个单反弹路径相对应的传播延迟的准确估计。一旦在每个单个链路上正确排序,这五个延迟就与发送器/接收器节点的坐标和矩形房间的尺寸有着明确的数学关系。我们在本文中提出了针对相关基础问题的新解决方案,例如在包括两个以上移动设备的合作环境中通过扩展卡尔曼滤波器(EKF)进行数据关联,初始化和跟踪。然后,通过规范的模拟方案评估到达时间(TOA)估算精度,初始猜测和实际房间尺寸的影响。

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