English

Stability of Fluid Queuing Systems with Parallel Servers and Stochastic Capacities

Optimization and Control 2018-02-19 v6 Systems and Control

Abstract

This note introduces a piecewise-deterministic queueing (PDQ) model to study the stability of traffic queues in parallel-link transportation systems facing stochastic capacity fluctuations. The saturation rate (capacity) of the PDQ model switches between a finite set of modes according to a Markov chain, and link inflows are controlled by a state-feedback policy. A PDQ system is stable only if a lower bound on the time-average link inflows does not exceed the corresponding time-average saturation rate. Furthermore, a PDQ system is stable if the following two conditions hold: the nominal mode's saturation rate is high enough that all queues vanish in this mode, and a bilinear matrix inequality (BMI) involving an underestimate of the discharge rates of the PDQ in individual modes is feasible. The stability conditions can be strengthened for two-mode PDQs. These results can be used for design of routing policies that guarantee stability of traffic queues under stochastic capacity fluctuations.

Keywords

Cite

@article{arxiv.1604.02008,
  title  = {Stability of Fluid Queuing Systems with Parallel Servers and Stochastic Capacities},
  author = {Li Jin and Saurabh Amin},
  journal= {arXiv preprint arXiv:1604.02008},
  year   = {2018}
}

Comments

20 pages, 3 figures

R2 v1 2026-06-22T13:27:26.998Z