2009 |
14 | EE | Nem Stefanovic,
Lacra Pavel:
An analysis of stability with time-delay of link level power control in optical networks.
Automatica 45(1): 149-154 (2009) |
2008 |
13 | EE | Quanyan Zhu,
Lacra Pavel:
Service Differentiation via Power Management in WDM Optical Networks.
ICC 2008: 5344-5348 |
12 | EE | Quanyan Zhu,
Lacra Pavel:
Theory of Linear Games with Constraints and Its Application to Power Control of Optical Networks.
INFOCOM 2008: 1984-1992 |
11 | EE | Yan Pan,
Lacra Pavel:
A Nash game approach for OSNR optimization with capacity constraint in optical links.
IEEE Transactions on Communications 56(11): 1919-1928 (2008) |
10 | EE | Quanyan Zhu,
Lacra Pavel:
End-to-end DWDM optical link power-control via a Stackelberg revenue-maximizing model.
Int. Journal of Network Management 18(6): 505-520 (2008) |
2007 |
9 | EE | Yan Pan,
Lacra Pavel:
OSNR optimization with link capacity constraints in WDM networks: A cross layer game approach.
BROADNETS 2007: 909-914 |
8 | EE | Scott B. Kuntze,
Lacra Pavel,
J. Stewart Aitchison:
Novel gain control in a multichannel semiconductor optical amplifier with equivalent circuit using nonlinear state-space methods.
BROADNETS 2007: 915-918 |
7 | EE | Quanyan Zhu,
Lacra Pavel:
Solving constrained OSNR Nash game in WDM optical networks with a fictitious player.
BROADNETS 2007: 922-927 |
6 | EE | Yan Pan,
Lacra Pavel:
Iterative Algorithms for Nash Equilibrium of an Extended OSNR Game.
ICN 2007: 83 |
5 | EE | Yan Pan,
Lacra Pavel:
Global Convergence of An Iterative Gradient Algorithm for The Nash Equilibrium in An Extended OSNR Game.
INFOCOM 2007: 206-212 |
4 | EE | Quanyan Zhu,
Lacra Pavel:
End-to-end link power control in optical networks using Nash bargaining solution.
VALUETOOLS 2007: 10 |
3 | EE | Lacra Pavel:
An extension of duality to a game-theoretic framework.
Automatica 43(2): 226-237 (2007) |
2006 |
2 | EE | Lacra Pavel:
Hierarchical Iterative Algorithm for a Coupled Constrained OSNR Nash Game.
GLOBECOM 2006 |
2004 |
1 | EE | Lacra Pavel:
Dynamics and stability in optical communication networks: a system theory framework.
Automatica 40(8): 1361-1370 (2004) |