Developing a two-stage procedure for Estimating Origin-Destination matrix based on routes and traffic volumes

A. Mahmoudabadi, M. Mahmoudabadi
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Abstract

Estimating Origin-Destination matrix, named O-D matrix or ODM, is an important issue in transportation planning. Due to need to survey movements on the network, estimating ODM is usually considered as a high-cost measure in transportation planning. In this research work, a two-stage procedure, including solving routing problem and minimizing the difference between observed and estimated traffic volumes on the network, has been developed to estimate the O-D matrix elements. At the first stage, routing problem is solved to determine paths while in the second stage an absolute error function has been defined to determine the number of trips from each origin to destination pairs. The procedure has been applied in an illustrative example and results show that the proposed procedure can be utilized for estimating OD matrix elements with a good accuracy.
发展基于路线和交通量的始发-目的地矩阵估算的两阶段程序
估算起点-终点矩阵,即O-D矩阵或ODM,是交通规划中的一个重要问题。由于需要对网络上的运动进行调查,估计ODM通常被认为是运输规划中的一项高成本措施。在本研究中,提出了求解路由问题和最小化网络上观测流量与估计流量之差的两阶段方法来估计O-D矩阵元素。在第一阶段,解决路由问题,确定路径;在第二阶段,定义绝对误差函数,确定从每个起点到目的地对的行程数。结果表明,该方法可用于估算外径矩阵元素,且具有较好的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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