具有专用配送区和一般路边停车的随机系统的性能评价

Abhishek, B. Legros, J. Fransoo
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引用次数: 6

摘要

随着零售分散化和电子商务的发展,城市的货运量不断增加,停车正成为交通运输中越来越重要的一部分。事实上,城市中许多货运车辆停放的时间比行驶的时间要长。此外,部分公共停车位与乘用车,特别是汽车共享。到达过程、停车和交付过程在本质上都是随机的。为了建立一个分析框架,我们提出了一个城市停车系统的排队模型,该系统由送货舱和一般的路边停车位组成。货运车辆既可以停在专用泊位上,也可以停在一般的路边泊位上,而客运车辆只能使用一般的路边泊位。我们的模型使我们能够对作为有限长度的路边的一部分的送货区停车延伸的行为产生简洁的见解。我们能够找到相关性能度量的显式表达式,并正式证明了一些单调性结果。我们进一步进行了一系列的数值实验,以显示更复杂的性质,不能显示解析。该模型帮助我们了解了将稀缺的城市路边空间分配给专用的卸货区,而牺牲了一般的路边停车位的影响。特别是,我们表明,分配更多的空间,以专门的交货仓也可以使乘用车更好。
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Performance Evaluation of Stochastic Systems with Dedicated Delivery Bays and General On-Street Parking
As freight deliveries in cities increase due to retail fragmentation and e-commerce, parking is becoming a more and more relevant part of transportation. In fact, many freight vehicles in cities spend more time parked than they are moving. Moreover, part of the public parking space is shared with passenger vehicles, especially cars. Both arrival processes and parking and delivery processes are stochastic in nature. In order to develop a framework for analysis, we propose a queueing model for an urban parking system consisting of delivery bays and general on-street parking spaces. Freight vehicles may park both in the dedicated bays and in general on-street parking, whereas passenger vehicles only make use of general on-street parking. Our model allows us to create parsimonious insights into the behavior of a delivery bay parking stretch as part of a limited length of curbside. We are able to find explicit expressions for the relevant performance measures, and formally prove a number of monotonicity results. We further conduct a series of numerical experiments to show more intricate properties that cannot be shown analytically. The model helps us shed light onto the effects of allocating scarce urban curb space to dedicated unloading bays at the expense of general on-street parking. In particular, we show that allocating more space to dedicated delivery bays can also make passenger cars better off.
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