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Optimal control with the dynamic change of the structure of the road network

机译:随路网结构动态变化的最优控制

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摘要

Optimization of traffic on a large public road network is a complex task. Reversible direction lane theory is an interesting and special method within this subject. This can completely support the fluctuation or alteration of main congested directions existing in the traffic dynamics (time of day, seasonal, etc.) on the existing road surfaces. In such case, certain subsystems of the main network cease to exist, and subsystems working with new connections take their place. This type of routing therefore changes the structure of the system ‘in an optimal direction’, but many practical and safety questions arise. The authors have examined the modelling of a Reversible Lane System (RLS) created based on a simple part of a road network, which is segmented into elements. Functions of each network element and contacts between them cease operating in the course of such change while new contacts and new function elements are activated instead. The article presents the mathematical modelling of the problem. It points out the fundamental questions of the structure change and exemplifies the above using a simple example. The authors studied a general mathematical model describing the RLS. They examined the availability of the optimal control in a sample network depending on the traffic density, using a new principle, which responds to the dynamic change of the structure of the network graph. It can be shown, that the results from the model are in harmony with the real traffic values based on measurements made in road traffic systems working with RLS.
机译:优化大型公共道路网络上的交通是一项复杂的任务。可逆方向车道理论是该主题中一种有趣且特殊的方法。这可以完全支持现有路面上交通动态(一天中的时间,季节性等)中存在的主要拥挤方向的波动或变化。在这种情况下,主网络的某些子系统将不复存在,而使用新连接的子系统将取代它们。因此,这种类型的路由“在最佳方向”改变了系统的结构,但是出现了许多实际和安全性问题。作者已经研究了基于道路网的简单部分创建的可逆行车系统(RLS)的建模,该路网被细分为多个元素。每个网络元素的功能以及它们之间的联系都在这种更改过程中停止工作,而新的联系和新的功能元素被激活。本文介绍了该问题的数学模型。它指出了结构更改的基本问题,并通过一个简单的示例对上述示例进行了举例说明。作者研究了描述RLS的通用数学模型。他们使用一种新原理,根据流量密度检查了示例网络中最佳控制的可用性,该新原理响应了网络图结构的动态变化。可以证明,基于在与RLS一起使用的道路交通系统中进行的测量,该模型的结果与实际交通值相符。

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