Abstract:
Vehicular transportation design and control are critical topics of research. In two-dimensional topological systems, edge states exist at the boundary and support transpo...Show MoreMetadata
Abstract:
Vehicular transportation design and control are critical topics of research. In two-dimensional topological systems, edge states exist at the boundary and support transport along the system edges. In this study, we demonstrate the directional flow of vehicular traffic in a hexagonal street network with a two-dimensional topological structure. We model the network structure by the topology of vertices and edges, and vehicular transport as a symmetric random walk between the vertices. We show that the proposed structure provides a macroscopically unidirectional traffic flow to a group of vehicles. Furthermore, we note that such unidirectional properties deteriorate because of the decay of the topological edge mode. To overcome the disappearance of traffic unidirectionarity, we propose a strategy for controlling the entry–exit timing of vehicles in a street network and confirm its effectiveness through simulations. The proposed vehicle management strategy sustainably allows unidirectional traffic in street networks. Our work thus provides a critical building block for designing and controlling transportation networks.
Published in: IEEE Open Journal of Intelligent Transportation Systems ( Volume: 5)
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- IEEE Keywords
- Index Terms
- Topological Structure ,
- Traffic Flow ,
- Two-dimensional Structure ,
- Flow Direction ,
- Random Walk ,
- Road Network ,
- Transportation Network ,
- Unidirectional Flow ,
- System Topology ,
- Edge Modes ,
- Hexagonal Network ,
- Band Gap ,
- Proof Of Concept ,
- Decay Rate ,
- Flow Field ,
- Equal Probability ,
- Thermal Diffusivity ,
- Eigenfunctions ,
- Topological States ,
- Traffic Control ,
- Diffusion Directions ,
- Vehicle Dynamics ,
- Patterns Of Particles ,
- Hamiltonian System ,
- Brownian Particle ,
- Dipole Mode
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Topological Structure ,
- Traffic Flow ,
- Two-dimensional Structure ,
- Flow Direction ,
- Random Walk ,
- Road Network ,
- Transportation Network ,
- Unidirectional Flow ,
- System Topology ,
- Edge Modes ,
- Hexagonal Network ,
- Band Gap ,
- Proof Of Concept ,
- Decay Rate ,
- Flow Field ,
- Equal Probability ,
- Thermal Diffusivity ,
- Eigenfunctions ,
- Topological States ,
- Traffic Control ,
- Diffusion Directions ,
- Vehicle Dynamics ,
- Patterns Of Particles ,
- Hamiltonian System ,
- Brownian Particle ,
- Dipole Mode
- Author Keywords