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Distributed utility-based power control: Objectives and algorithms
Sławomir Stańczak
, Marcin Wiczanowski
,
Holger Boche
Heinrich Hertz Institute
Technische Universität Berlin
Research output
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Article
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peer-review
47
Scopus citations
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Keyphrases
Control Algorithm
100%
Power Control
100%
Medium Access Control Layer
100%
Control Objectives
100%
Utility-based
100%
Gradient Projection
66%
Transmitter
66%
Problem-based
33%
Problem Formulation
33%
Estimation Error
33%
Link Rate
33%
Network Topology
33%
Control Problem
33%
Received Signal Power
33%
Utility Function
33%
Stochastic Approximation
33%
Global Convergence
33%
Algorithmic Solution
33%
Power Control Algorithm
33%
Convexity Properties
33%
Adjoint Network
33%
Distributed Wireless Networks
33%
Elastic Traffic
33%
One-hop
33%
Implementing Powers
33%
Flowing Medium
33%
Convex Problem
33%
Global Coordination
33%
Neighbor Node
33%
Wireless Mesh Networks
33%
Layer Flow
33%
Geometric Convergence
33%
Computer Science
Control Algorithm
100%
Control Objective
100%
Media Access Control
100%
Network Topology
33%
Stochastic Approximation
33%
Global Convergence
33%
Elastic Traffic
33%
Wireless Mesh Network
33%
Problem Formulation
33%
Utility Function
33%
Sufficient Condition
33%
Estimation Error
33%
Convergence Rate
33%
Received Signal Power
33%
Neighboring Node
33%
Wireless Network
33%