International audienceIn this work, we derive a distributed power control algorithm for energy-efficient uplink transmissions in interference- limited cellular networks, equipped with either multiple or shared relays. The proposed solution is derived by modeling the mobile terminals as utility-driven rational agents that engage in a noncooperative game, under minimum-rate constraints. The theoretical analysis of the game equilibrium is used to compare the performance of the two different cellular architectures. Extensive simulations show that the shared relay concept outperforms the distributed one in terms of energy efficiency in most network configurations
We consider an interference-limited wireless network, where multiple source-destination pairs compet...
We consider the problem of power control for two independent relay-assisted wireless systems that op...
Simultaneously information and power transfer in mobile relay networks have recently emerged, where ...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
In this work, we derive a distributed power control algo- rithm for energy-efficient uplink transmis...
In this work, we derive a distributed power control algo-rithm for energy-efficient uplink transmiss...
In this work, we derive a distributed power control algo- rithm for energy-efficient uplink transmis...
International audienceThis work aims at developing a distributed power control algorithm for energy ...
Device-to-device (D2D) communication underlaying cellular networks is seen as a promising technology...
Abstract—Power optimization techniques are becoming in-creasingly important in wireless system desig...
Information and power transfer in mobile relay networks have recently emerged simultaneously, where ...
Information and power transfer in mobile relay networks have recently emerged simultaneously, where ...
This paper presents a distributed mechanism for improving the overall energy efficiency of a wireles...
We consider an interference-limited wireless network, where multiple source-destination pairs compet...
We consider the problem of power control for two independent relay-assisted wireless systems that op...
Simultaneously information and power transfer in mobile relay networks have recently emerged, where ...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
International audienceIn this work, we derive a distributed power control algorithm for energy-effic...
In this work, we derive a distributed power control algo- rithm for energy-efficient uplink transmis...
In this work, we derive a distributed power control algo-rithm for energy-efficient uplink transmiss...
In this work, we derive a distributed power control algo- rithm for energy-efficient uplink transmis...
International audienceThis work aims at developing a distributed power control algorithm for energy ...
Device-to-device (D2D) communication underlaying cellular networks is seen as a promising technology...
Abstract—Power optimization techniques are becoming in-creasingly important in wireless system desig...
Information and power transfer in mobile relay networks have recently emerged simultaneously, where ...
Information and power transfer in mobile relay networks have recently emerged simultaneously, where ...
This paper presents a distributed mechanism for improving the overall energy efficiency of a wireles...
We consider an interference-limited wireless network, where multiple source-destination pairs compet...
We consider the problem of power control for two independent relay-assisted wireless systems that op...
Simultaneously information and power transfer in mobile relay networks have recently emerged, where ...