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Bilevel Programming Model of Urban Public Transport Network under Fairness Constraints

机译:公共交通网络下公共交通网络的双脚纤维规划模型

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摘要

In this paper, the bilevel programming model of the public transport network considering factors such as the per capita occupancy area and travel cost of different groups was established, to alleviate the urban transportation equity and optimize the urban public transport network under fairness constraints. The upper layer minimized the travel cost deprivation coefficient and the road area Gini coefficient as the objective function, to solve the optimization scheme of public transport network considering fairness constraints; the lower layer was a stochastic equilibrium traffic assignment model of multimode and multiuser, used to describe the complex selection behavior of different groups for different traffic modes in the bus optimization scheme given by the upper layer. The model in addition utilised the noninferior sorting genetic algorithm II to validate the model via a simple network. The results showed that (1) the travel cost deprivation coefficient of the three groups declined from 33.42 to 26.51, with a decrease of 20.68%; the Gini coefficient of the road area declined from 0.248 to 0.030, with a decrease of 87.76%; it could be seen that the transportation equity feeling of low-income groups and objective resource allocation improved significantly; (2) before the optimization of public transport network, the sharing rate of cars, buses, and bicycles was 42%, 47%, and 11%, respectively; after the optimization, the sharing rate of each mode was 7%, 82%, and 11%, respectively. Some of the high and middle income users who owned the car were transferred to the public transportation. It could be seen that the overall travel time of the optimized public transport network reduced, enhancing the attraction of the public transport network to various travel groups. The model improves the fairness of the urban public transport system effectively while ensuring the travel demand of the residents. It provides theoretical basis and model foundation for the optimization of public transit network, and it is a new attempt to improve the fairness of the traffic planning scheme.
机译:在本文中,公共交通网络的双层规划模型考虑因素,如人均占有面积和不同群体的出行成本的成立,为缓解城市交通公平和公正下的约束优化城市公共交通网络。上层最小化的移动成本剥夺系数和道路区域基尼系数作为目标函数,解决了公共交通网络考虑公平性约束的优化方案;下层是多模和多用户的随机均衡交通分配模型,用于描述在由上层中给出的总线优化方案不同的业务模式的不同组的复杂的选择行为。除了该模型中使用的非劣排序遗传算法II通过一个简单的网络来验证模型。结果表明,(1)的三组的旅行费用剥夺系数从33.42降至26.51,具有20.68%的减少;道路区域的基尼系数从0.248降至0.030,具有87.76%的减少;可以看出的是低收入群体,客观的资源分配的公平运输感觉显著提高; (2)的公共交通网络的优化之前,汽车,公共汽车,和自行车的共享率分别为42%,47%,11%,;优化后,每个模式的共享率分别为7%,82%和11%。有些谁拥有的车高和中等收入的用户转移到公共交通。可以看出,优化公共交通网络的整体行程时间缩短,提高了公共交通网络的吸引力,各种旅游团体。该模型有效地改善城市公共交通系统的公平性,同时确保居民的出行需求。它提供了公共交通网络的优化理论基础和模型的基础上,它是提高交通规划方案的公平性的一种新尝试。

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