Opportunistic selection is a practically appealing technique that is used in multi-node wireless systems to maximize throughput, implement proportional fairness, etc. However, selection is challenging since the information about a node's channel gains is often available only locally at each node and not centrally. We propose a novel multiple access-based distributed selection scheme that generalizes the best features of the timer scheme, which requires minimal feedback but does not always guarantee successful selection, and the fast splitting scheme, which requires more feedback but guarantees successful selection. The proposed scheme's design explicitly accounts for feedback time overheads unlike the conventional splitting scheme and guara...
An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best node, whi...
Opportunistic selection algorithms have grown in importance as next generation wireless systems stri...
We develop an optimal, distributed, and low feedback timer-based selection scheme to enable next gen...
Opportunistic selection is a practically appealing technique that is used in multi-node wireless sys...
Abstract—Opportunistic selection is a practically appealing technique that is used in multi-node wir...
Abstract—In a communication system in which K nodes communicate with a central sink node, the follow...
In a communication system in which K nodes communicate with a central sink node, the following probl...
In a communication system in which K nodes communicate with a central sink node, the following probl...
Opportunistic selection in multi-node wireless systems improves system performance by selecting the ...
Opportunistic selection in multi-node wireless systems improves system performance by selecting the ...
Opportunistic selection is a practically appealing technique that is often used in multi-node wirele...
Opportunistic selection improves the performance of a multi-node wireless system by exploiting multi...
Abstract—Opportunistic selection in multi-node wireless sys-tems improves system performance by sele...
An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best node, whi...
Abstract—An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best ...
An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best node, whi...
Opportunistic selection algorithms have grown in importance as next generation wireless systems stri...
We develop an optimal, distributed, and low feedback timer-based selection scheme to enable next gen...
Opportunistic selection is a practically appealing technique that is used in multi-node wireless sys...
Abstract—Opportunistic selection is a practically appealing technique that is used in multi-node wir...
Abstract—In a communication system in which K nodes communicate with a central sink node, the follow...
In a communication system in which K nodes communicate with a central sink node, the following probl...
In a communication system in which K nodes communicate with a central sink node, the following probl...
Opportunistic selection in multi-node wireless systems improves system performance by selecting the ...
Opportunistic selection in multi-node wireless systems improves system performance by selecting the ...
Opportunistic selection is a practically appealing technique that is often used in multi-node wirele...
Opportunistic selection improves the performance of a multi-node wireless system by exploiting multi...
Abstract—Opportunistic selection in multi-node wireless sys-tems improves system performance by sele...
An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best node, whi...
Abstract—An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best ...
An opportunistic, rate-adaptive system exploits multi-user diversity by selecting the best node, whi...
Opportunistic selection algorithms have grown in importance as next generation wireless systems stri...
We develop an optimal, distributed, and low feedback timer-based selection scheme to enable next gen...