为提高通勤者使用公交出行的比例,有效缓解城市交通拥堵,对应用智能公交系统数据(Advanced Public Transportation Systems,APTS)获得公交通勤出行需求的方法进行研究.采集APTS数据,通过对公交IC卡数据和智能调度系统数据的关联获得公...为提高通勤者使用公交出行的比例,有效缓解城市交通拥堵,对应用智能公交系统数据(Advanced Public Transportation Systems,APTS)获得公交通勤出行需求的方法进行研究.采集APTS数据,通过对公交IC卡数据和智能调度系统数据的关联获得公交乘客的上车站点信息.根据早、晚高峰的出行频率判断公交通勤乘客,利用通勤出行的时间和空间特征确定居住地点和工作地点.以此基本思路,提出公交卡乘客通勤OD分布估计算法,并应用海量APTS系统数据对算法进行了试验和分析.最后,通过与基于'出行链'的方法进行比较,分析了算法的精度.本文提出的方法具有精度高、可操作性强的优点,为快速、经济地获取公交通勤OD分布提供了一种新的途径.展开更多
Having criticized the current architecture of Advanced Traveler Information Systems (ATISs), this work discusses a new base of requirements to develop a new paradigm for traffic information systems. It mainly integr...Having criticized the current architecture of Advanced Traveler Information Systems (ATISs), this work discusses a new base of requirements to develop a new paradigm for traffic information systems. It mainly integrates three dimensions within a traffic system: drivers' pattern of behavior and preferences, urban traffic desires, and capabilities of traffic information service providers. Based on the above, functional segments from several related backgrounds are brought together to structure a new architecture, called Interactive Traveler Information System (ITIS). The main interactive feature of this new architecture is a two-way communication track between drivers and the traffic information system provider-in fact, a decision on choosing a road at a particular time for an individual will be made based on the utility of both sides. This new configuration consists of driver-side smartphone application, centric traffic prediction, and decision-maker units, which will shape a new approach of decision-making processes. These all work together to satisfy the designated goal of ITIS, which is preserving the Wardrop equilibrium condition in the traffic network level. Finally, we concentrate on a comparison study, which shows a differentiation between performance of the proposed ITIS and the current ATIS model in a real situation. This has been done with simulations of analogical scenarios. The most noticeable advantage of the proposed architecture is not being limited to a saturation limit, and the positive effect of increasing system penetration in the performance of the newly introduced information system. In conclusion, new research subjects are suggested to be carried out.展开更多
A genetic algorithm (GA) and a hybrid genetic algorithm (HGA) were used for optimal scheduling of public vehicles based on their actual operational environments. The performance for three kinds of vehicular levels...A genetic algorithm (GA) and a hybrid genetic algorithm (HGA) were used for optimal scheduling of public vehicles based on their actual operational environments. The performance for three kinds of vehicular levels were compared using one-point and two-point crossover operations. The vehicle scheduling times are improved by the intelligent characteristics of the GA. The HGA, which integrates the genetic algorithm with a tabu search, further improves the convergence performance and the optimization by avoiding the premature convergence of the GA. The results show that intelligent scheduling of public vehicles based on the HGA overcomes the shortcomings of traditional scheduling methods. The vehicle operation management efficiency is improved by this essential technology for intelligent scheduling of public vehicles.展开更多
文摘为提高通勤者使用公交出行的比例,有效缓解城市交通拥堵,对应用智能公交系统数据(Advanced Public Transportation Systems,APTS)获得公交通勤出行需求的方法进行研究.采集APTS数据,通过对公交IC卡数据和智能调度系统数据的关联获得公交乘客的上车站点信息.根据早、晚高峰的出行频率判断公交通勤乘客,利用通勤出行的时间和空间特征确定居住地点和工作地点.以此基本思路,提出公交卡乘客通勤OD分布估计算法,并应用海量APTS系统数据对算法进行了试验和分析.最后,通过与基于'出行链'的方法进行比较,分析了算法的精度.本文提出的方法具有精度高、可操作性强的优点,为快速、经济地获取公交通勤OD分布提供了一种新的途径.
文摘Having criticized the current architecture of Advanced Traveler Information Systems (ATISs), this work discusses a new base of requirements to develop a new paradigm for traffic information systems. It mainly integrates three dimensions within a traffic system: drivers' pattern of behavior and preferences, urban traffic desires, and capabilities of traffic information service providers. Based on the above, functional segments from several related backgrounds are brought together to structure a new architecture, called Interactive Traveler Information System (ITIS). The main interactive feature of this new architecture is a two-way communication track between drivers and the traffic information system provider-in fact, a decision on choosing a road at a particular time for an individual will be made based on the utility of both sides. This new configuration consists of driver-side smartphone application, centric traffic prediction, and decision-maker units, which will shape a new approach of decision-making processes. These all work together to satisfy the designated goal of ITIS, which is preserving the Wardrop equilibrium condition in the traffic network level. Finally, we concentrate on a comparison study, which shows a differentiation between performance of the proposed ITIS and the current ATIS model in a real situation. This has been done with simulations of analogical scenarios. The most noticeable advantage of the proposed architecture is not being limited to a saturation limit, and the positive effect of increasing system penetration in the performance of the newly introduced information system. In conclusion, new research subjects are suggested to be carried out.
基金the National High-Tech Research and Development (863) Program of China (No. 2004AA133020)
文摘A genetic algorithm (GA) and a hybrid genetic algorithm (HGA) were used for optimal scheduling of public vehicles based on their actual operational environments. The performance for three kinds of vehicular levels were compared using one-point and two-point crossover operations. The vehicle scheduling times are improved by the intelligent characteristics of the GA. The HGA, which integrates the genetic algorithm with a tabu search, further improves the convergence performance and the optimization by avoiding the premature convergence of the GA. The results show that intelligent scheduling of public vehicles based on the HGA overcomes the shortcomings of traditional scheduling methods. The vehicle operation management efficiency is improved by this essential technology for intelligent scheduling of public vehicles.