6 papers
Quantum percolation based dynamic propagation connectivity for critical-area identification in transport networks
Junxiang Xu, Chence Niu, Vinayak Dixit +2
Transport networks often lose functionality through gradual degradation in link operating conditions before topological disconnection occurs. Link-centred and binary percolation me…
Quantum percolation theory for dynamic propagation connectivity of transport networks
Junxiang Xu, Chence Niu, Divya Jayakumar Nair +1
Connectivity degradation in transport networks under structural disturbance is a central problem in network resilience research. Existing methods rely mainly on percolation theory…
Data-driven identification of critical links in transport networks using quantum annealing
Junxiang Xu, Chence Niu, Tingting Zhang +2
In urban transport systems, time-varying demand and network conditions cause the importance of infrastructure elements to evolve, requiring the identification of period-specific cr…
Quantum optimisation in cities: Limitations and prospects of urban transport systems
Junxiang Xu, Chence Niu, Divya Jayakumar Nair +1
Recently, quantum computing has gained attention in urban studies as a tool for complex transport planning problems, but its role remains unclear. This paper reviews quantum comput…
Quantum Optimisation for Transport Vulnerability Identification
Junxiang Xu, Chence Niu, Divya Jayakumar Nair +1
Transport network vulnerability analysis plays a crucial role in safeguarding urban resilience. Traditional vulnerability identification approaches have provided valuable insights,…
Quantum Computing in Transport Science: A Review
Chence Niu, Elnaz Irannezhad, Casey Myers +1
Quantum computing, leveraging the principles of quantum mechanics, has been found to significantly enhance computational capabilities in principle, in some cases beyond classical c…