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High-Precision Pedestrian Positioning by Using Radio Signals from Vehicles and Roadside Units

机译:利用来自车辆和路边单元的无线电信号进行高精度的行人定位

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Pedestrian-to-vehicle communications plays an important role in preventing pedestrians from traffic accidents by informing pedestrian position to drivers of nearby vehicles. Global Navigation Satellite System (GNSS), the de facto positioning method, does not work well in urban canyons due to obstruction of roadside skyscrapers. To address this issue, we previously proposed a base method, leveraging vehicles, besides GNSS satellites, as anchors for computing pedestrian position, in which received signal strength of the line-of-sight (LOS) component of radio signals from vehicles is used to compute pedestrian-vehicle distance. The base method greatly reduces position error when there are a sufficient number of vehicles. However, its performance degrades much when few vehicles are available. To solve this problem, in this paper, we extend the base method from two aspects: (i) add roadside units (RSUs) as anchors, and (ii) estimate the direction of arrival of signals from vehicles and RSUs for positioning by applying the MUSIC algorithm. We evaluate the extended method by 3D ray tracing simulation. Extensive results confirm the effectiveness of the extended method. In a scenario where the number of vehicles is limited, the position error in the base method, 1.94 m, is reduced to 0.28 m in the extended method.
机译:行人与车辆之间的通信在通知行人位置给附近车辆的驾驶员方面,在防止行人发生交通事故中起着重要作用。实际上,全球定位卫星系统(GNSS)的定位方法由于路边摩天大楼的阻塞而无法在城市峡谷中正常工作。为了解决这个问题,我们先前提出了一种基本方法,除了GNSS卫星以外,还利用车辆作为计算行人位置的锚点,其中使用了来自车辆无线电信号的视线(LOS)分量的接收信号强度来计算行人位置。计算行人与车辆之间的距离。当有足够数量的车辆时,基本方法可以大大减少位置误差。但是,当可用车辆很少时,其性能会大大降低。为了解决这个问题,在本文中,我们从两个方面扩展了基本方法:(i)添加路边单元(RSU)作为锚点;(ii)通过应用MUSIC算法。我们通过3D射线跟踪仿真评估扩展方法。广泛的结果证实了扩展方法的有效性。在限制车辆数量的情况下,基本方法中的位置误差为1.94 m,而扩展方法中的位置误差减小为0.28 m。

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