Wei Haitao, Zhang Shusheng, He Xiaohui
School of Earth Science and Technology, Zhengzhou University, No. 75 Daxue North Road, Erqi District, Zhengzhou 450052, China.
Sensors (Basel). 2020 Dec 30;21(1):203. doi: 10.3390/s21010203.
Accurate and fast path calculation is essential for applications such as vehicle navigation systems and transportation network routing. Although many shortest path algorithms for restricted search areas have been developed in the past ten years to speed up the efficiency of path query, the performance including the practicability still needs to be improved. To settle this problem, this paper proposes a new method of calculating statistical parameters based on a unidirectional road network model that is more in line with the real world and a path planning algorithm for dynamically restricted search areas that constructs virtual boundaries at a lower confidence level. We conducted a detailed experiment on the proposed algorithm with the real road network in Zhengzhou. As the experiment shows, compared with the existing algorithms, the proposed algorithm improves the search performance significantly in the condition of optimal path under the premise of ensuring the optimal path solution.
准确快速的路径计算对于车辆导航系统和交通网络路由等应用至关重要。尽管在过去十年中已经开发了许多用于受限搜索区域的最短路径算法来提高路径查询效率,但包括实用性在内的性能仍有待提高。为了解决这个问题,本文提出了一种基于更符合现实世界的单向道路网络模型计算统计参数的新方法,以及一种用于动态受限搜索区域的路径规划算法,该算法以较低的置信水平构建虚拟边界。我们使用郑州的真实道路网络对所提出的算法进行了详细实验。实验表明,与现有算法相比,该算法在确保最优路径解的前提下,在最优路径条件下显著提高了搜索性能。