Abstract — We consider a dynamical formulation of network flows, whereby the network is modeled as a switched system of ordinary differential equations derived from mass conservation laws on directed graphs with a single origin-destination pair and a constant inflow at the origin. The rate of change of the density on each link of the network equals the difference between the inflow and the outflow on that link. The inflow to a link is determined by the total flow arriving to the tail node of that link and the routing policy at that tail node. The outflow from a link is modeled to depend on the current density on that link through a flow function. Every link is assumed to have finite capacity for density and the flow function is modeled to b...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...
We investigate the effect of a specific edge weighting scheme ~(kikj)β on d...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...
Strong resilience properties of dynamical flow networks are analyzed for distributed routing policie...
Abstract in Undetermined Robustness of distributed routing policies is studied for dynamical network...
Robustness of distributed routing policies is studied for dynamical flow networks, with respect to a...
Robustness of distributed routing policies is studied for dynamical flow networks, with respect to a...
Robustness of routing policies for networks is a central problem which is gaining increased attentio...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
Dynamical flow networks with heterogeneous routing are analyzed in terms of stability and resilience...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
In this paper, we are concerned with the resilience of locally routed network flows with finite link...
Resilience has become a key aspect in the design of contemporary infrastructure networks. This comes...
As infrastructural systems become ever more complex and interconnected, they may also become ever mo...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...
We investigate the effect of a specific edge weighting scheme ~(kikj)β on d...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...
Strong resilience properties of dynamical flow networks are analyzed for distributed routing policie...
Abstract in Undetermined Robustness of distributed routing policies is studied for dynamical network...
Robustness of distributed routing policies is studied for dynamical flow networks, with respect to a...
Robustness of distributed routing policies is studied for dynamical flow networks, with respect to a...
Robustness of routing policies for networks is a central problem which is gaining increased attentio...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
Dynamical flow networks with heterogeneous routing are analyzed in terms of stability and resilience...
We propose a dynamical model for cascading failures in single-commodity network flows. In the propos...
In this paper, we are concerned with the resilience of locally routed network flows with finite link...
Resilience has become a key aspect in the design of contemporary infrastructure networks. This comes...
As infrastructural systems become ever more complex and interconnected, they may also become ever mo...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...
We investigate the effect of a specific edge weighting scheme ~(kikj)β on d...
textIn this dissertation we study flow-based dynamic routing schemes. We propose routing schemes to...