|
Preface Leon A. Petrosyan, Nikolay A. Zenkevich
|
5–6 |
|
The $\Pi$-strategy when players move under repulsive forces Abdulla A. Azamov, Bahrom T. Samatov, Ulmasjon B. Soyibboev
|
7–17 |
|
Cooperative differential fishery game with pairwise interactions Yang He, Leon Petrosyan
|
18–24 |
|
Clique based centrality measure in hypergraphs Ruolin Huang, Anna Tur
|
25–37 |
|
Differential games of R&D competition with switching dynamics Xiyue Huang
|
38–50 |
|
Simulating opinion dynamics in scale-free networks with strategic influence Yulia Kareeva
|
51–58 |
|
Impact of urban travel rates on epidemic spread and basic reproduction number Ma Ke, Elena Gubar
|
59–73 |
|
Game theoretic model of venture capital investment Suriya Sh. Kumacheva
|
74–85 |
|
Survey on $SEIRD$ epidemic models with different focuses Xiuxiu Liu, Elena Gubar
|
86–104 |
|
Two-period optimal control for opinion dynamics Yanshan Liu, Vladimir V. Mazalov, Hongwei Gao
|
105–116 |
|
Agent games and agency games Mikhail M. Lutsenko
|
117–124 |
|
Vector-borne malaria epidemic model with vaccination Serigne M. Ndiaye, Elena M. Parilina
|
125–146 |
|
Edge ranking in a transport graph of Petrozavodsk basing on equilibrium flows Natalia Nikitina, Evgeny Ivashko
|
147–154 |
|
About the instability of cooperative communication structures in differential network games Leon A. Petrosyan, Yaroslavna B. Pankratova, Kong Qi
|
155–163 |
|
E-games: a very short introduction Michael A. Popov
|
164–172 |
|
Challenges of IoT integration in supply chain management: a game-theoretic perspective on motivating and hindering factors Ekaterina Senicheva, Andrey Zyatchin
|
173–208 |
|
On generalized solutions for two Hamilton–Jacobi equations with state constraints Lyubov G. Shagalova
|
209–218 |
|
A differential investment game with unknown utility switching moment Peichen Ye
|
219–230 |
|
Managing interconnected production in a dynamic network a fair gain-sharing collaborative solution David W.K. Yeung, Leon A. Petrosyan, Yingxuan Zhang
|
231–242 |
|
Epidemic processes in networks: a comprehensive study of SIR model and network topologies Li Yike, Elena Gubar
|
243–257 |