most citedGeometric analysis of Oscillations in the Frzilator model

5 citations · 12 across the 6 of their papers we have counts for

collaborators

6 papers

math.DS20195 cited

Geometric analysis of Oscillations in the Frzilator model

Hadi Taghvafard, Hildeberto Jardon-Kojakhmetov, Peter Szmolyan +1

A biochemical oscillator model, describing developmental stage of myxobacteria, is analyzed mathematically. Observations from numerical simulations show that in a certain range of…

cs.GT20191 cited

Time-varying constrained proximal type dynamics in multi-agent network games

Carlo Cenedese, Giuseppe Belgioioso, Sergio Grammatico +1

In this paper, we study multi-agent network games subject to affine time-varying coupling constraints and a time-varying communication network. We focus on the class of games adopt…

eess.SY20191 cited

Partial Exponential Stability Analysis of Slow-fast Systems via Periodic Averaging

Yuzhen Qin, Yu Kawano, Brian D. O. Anderson +1

This paper presents some new criteria for partial exponential stability of a slow-fast nonlinear system with a fast scalar variable using periodic averaging methods. Unlike classic…

math.DS20192 cited

Global Convergence for Replicator Dynamics of Repeated Snowdrift Games

Pouria Ramazi, Ming Cao

To understand the emergence and sustainment of cooperative behavior in interacting collectives, we perform global convergence analysis for replicator dynamics of a large, well-mixe…

math.OC20193 cited

Asynchronous and time-varying proximal type dynamics multi-agent network games

Carlo Cenedese, Giuseppe Belgioioso, Yu Kawano +2

In this paper, we study proximal type dynamics in the context of noncooperative multi-agent network games. These dynamics arise in different applications, since they describe distr…

math.OC2010

Control of one-dimensional guided formations using coarse information

Claudio De Persis, Hui Liu, Ming Cao

Motivated by applications in intelligent highway systems, the paper studies the problem of guiding mobile agents in a one-dimensional formation to their desired relative positions.…