Impacts of Metering-Based Dynamic Priority Schemes

Raphaël Lamotte, A. Palma, N. Geroliminis
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引用次数: 4

Abstract

Several works published over the last two decades have shown for a stylized set-up with homogeneous users that metering-based priority (MBP) schemes may generate Pareto improving departure time adjustments similar to those induced by congestion pricing, but without any financial transaction. We investigate whether MBP (i) still generates significant savings and (ii) remains Pareto-improving, with various sources of heterogeneity (in schedule flexibility, desired arrival time, and capacity usage). We consider two types of schemes: one where the priority status is allocated randomly (R-MBP) and another (HOV-MBP), which only prioritizes users with small capacity usage (e.g., carpoolers). We find that the relative total cost savings of R-MBP decrease with heterogeneity in flexibility, but may increase with heterogeneity in desired arrival time. It fails however to be Pareto-improving, as nonprioritized users are almost systematically worse-off. HOV-MBP circumvents this issue by generating an ordering effect and a modal shift, which both contribute to a better distribution of benefits among users. Under favorable circumstances, they may even restore a Pareto improvement. Overall, MBP appears as a realistic way to alleviate congestion, scoring well both in terms of efficiency and social acceptability.
基于计量的动态优先方案的影响
在过去二十年中发表的一些研究表明,对于具有同质用户的风格化设置,基于计量的优先级(MBP)方案可能会产生帕累托改进的出发时间调整,类似于拥堵收费引起的调整,但没有任何金融交易。我们调查了MBP (i)是否仍然产生显著的节约,以及(ii)是否仍然具有帕累托改进,具有各种异质性来源(调度灵活性,期望到达时间和容量使用)。我们考虑了两种类型的方案:一种是随机分配优先级状态(R-MBP),另一种是HOV-MBP,它只优先考虑容量使用小的用户(例如,拼车者)。我们发现,R-MBP的相对总成本节约随灵活性的异质性而降低,但随期望到达时间的异质性而增加。然而,这并不是帕累托改进,因为非优先级用户的情况几乎是系统性的恶化。HOV-MBP通过产生排序效应和模式转换来规避这个问题,这两者都有助于在用户之间更好地分配利益。在有利的情况下,他们甚至可以恢复帕累托改善。总的来说,MBP似乎是一种缓解拥堵的现实方法,在效率和社会接受度方面都取得了不错的成绩。
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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