Simulation evaluations of cooperative relative positioning around intersections

N. Kawanishi, R. Furukawa, Suhua Tang, Akio Hasegawa, R. Miura, Y. Takeuchi
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Abstract

Position information plays an important role in support system for safe driving, where inter-vehicle distance is used to prevent collision accidents from happening. In urban areas, however, multipath propagation of GPS signals degrades the accuracy of absolute positions and the deduced relative position. On the other hand, simply removing reflected signals might lead to a shortage of satellites in fixing positions. In our previous work, we suggested cooperative relative positioning to improve the accuracy of relative positions of adjacent vehicles so as to prevent collision accidents from happening. In this paper, we focus on intersections, which are risky areas for vehicles where accidents occur with a higher probability than other areas, then investigate whether our scheme can help to improve the accuracy of relative positions at intersections. More specifically, we evaluate multipath errors due to reflection/diffraction and analyze their correlation between receivers around intersections. We find that (i) Our system helps to improve the accuracy of relative positions of vehicles running on the same road, (ii) The spatial correlation of positioning signals decreases as vehicles get nearer to intersections. As a result of the initial step to focus on intersections, only relying on our scheme is insufficient and other measures become necessary as well in order to get accurate relative positions.
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交叉口周围协同相对定位的仿真评价
位置信息在安全驾驶支持系统中起着重要的作用,车辆之间的距离是防止碰撞事故发生的重要依据。然而,在城市地区,GPS信号的多径传播会降低绝对位置和推导出的相对位置的精度。另一方面,简单地去除反射信号可能会导致定位卫星的短缺。在我们之前的工作中,我们提出了合作相对定位,以提高相邻车辆相对位置的精度,从而防止碰撞事故的发生。本文以交叉口为研究对象,探讨该方案是否有助于提高交叉口相对位置的准确性。交叉口是车辆发生事故的危险区域,发生事故的概率高于其他区域。更具体地说,我们评估了由于反射/衍射引起的多径误差,并分析了它们在交叉路口周围接收器之间的相关性。我们发现:(i)我们的系统有助于提高在同一道路上行驶的车辆的相对位置的准确性,(ii)定位信号的空间相关性随着车辆靠近十字路口而降低。由于最初的步骤是聚焦于交叉口,因此仅依靠我们的方案是不够的,为了获得准确的相对位置,还需要采取其他措施。
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