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Map Matching in Road Crossings of Urban Canyons Based on Road Traverses and Linear Heading-Change Model

机译:基于道路遍历和线性航向变化模型的城市峡谷道路交叉口地图匹配

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The objective of this paper is to find a robust and sustainable positioning approach in Hong Kong, where the Global Positioning System (GPS) signal is frequently blocked by high buildings, traffic tunnels, etc. After evaluating several kinds of complementary positioning means, the GPS/dead-reckoning (DR)/map-matching (MM) integrated positioning technology is selected. During navigation, if the GPS signal is good enough, the GPS/DR/MM mode will be used; otherwise, the DR/MM mode will be used, and the MM algorithm will correct the DR system in a timely fashion. Generally, if the vehicle is running in a straight road, heading-related parameters in the DR system will be corrected, and if the vehicle makes a turn, both distance- and heading-related parameters will be corrected. Unfortunately, existing MM algorithms show poor performance near a road crossing or in a dense road network. To resolve this problem, based on road traverses and a linear heading-change model, an MM algorithm that considers historical information is proposed. First, a unified point-based MM calculating framework is presented, and the disadvantages of several kinds of existing MM algorithms are also given. After that, a single-line–single-direction road network model is presented, and the MM algorithm is always executed on road traverses instead of a single road so that historical information can be easily kept. By adopting the linear heading-change model, the problem of no analytical solution in the MM that considers heading information is obviated, and the MM ambiguities in road crossings can be greatly removed. Finally, an onsite MM test in Hong Kong is presented, and the test proves that the proposed MM algorithm provides long-time robust positioning performance.
机译:本文的目的是在香港找到一种可靠且可持续的定位方法,在该方法中,全球定位系统(GPS)信号经常被高层建筑物,交通隧道等阻塞。在评估了几种互补的定位方式后,GPS选择了/ dead-reckoning(DR)/ map-matching(MM)集成定位技术。在导航过程中,如果GPS信号足够好,将使用GPS / DR / MM模式;否则,将使用DR / MM模式,并且MM算法将及时纠正DR系统。通常,如果车辆在直路上行驶,则将校正DR系统中与航向相关的参数,如果车辆转弯,则将校正与距离和航向相关的参数。不幸的是,现有的MM算法在十字路口附近或密集的路网中显示出较差的性能。为了解决这个问题,基于道路穿越和线性航向变化模型,提出了一种考虑历史信息的MM算法。首先,提出了一个基于点的统一MM计算框架,并给出了几种现有MM算法的弊端。此后,提出了单线单向道路网络模型,并且始终在道路横断面上执行MM算法,而不是在一条道路上执行MM算法,因此可以轻松保存历史信息。通过采用线性航向变化模型,可以消除考虑航向信息的MM中没有解析解的问题,可以大大消除交叉口的MM模糊性。最后,在香港进行了现场MM测试,测试证明了所提出的MM算法具有长期的鲁棒性。

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