Joint scheduling and association for α-fairness Network Utility Maximization in cellular networks
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- Type
- article
- Published
- 2013-11-25
- Cited by
- 5
- References
- 16
- OpenAlex
- https://openalex.org/W2057526413
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10224590
Keywords
Fairness measure, Maximum throughput scheduling, Computer science, Max-min fairness, Scheduling (production processes)
References
- A Quantitative Measure Of Fairness And Discrimination For Resource Allocation In Shared Computer Systems
- Soft frequency reuse in large networks with irregular cell pattern: How much gain to expect?
- Control of the trade-off between resource efficiency and user fairness in wireless networks using utility-based adaptive resource allocation
- An Analytical Framework for Heterogeneous Partial Feedback Design in Heterogeneous Multicell OFDMA Networks
- Fair Scheduling in Cellular Systems in the Presence of Noncooperative Mobiles
- Fair end-to-end window-based congestion control
- Dynamic association for load balancing and interference avoidance in multi-cell networks
- Cooperative Resource Allocation for Guaranteeing Intercell Fairness in Femtocell Networks
- Throughput Maximizing Multiuser Scheduling with Adjustable Fairness
- An Axiomatic Theory of Fairness in Network Resource Allocation
- On the Asymptotic Optimality of the Gradient Scheduling Algorithm for Multiuser Throughput Allocation
- Data throughput of CDMA-HDR a high efficiency-high data rate personal communication wireless system
- QoS-Aware Load Balancing in 3GPP Long Term Evolution Multi-Cell Networks
- Asymptotic Analysis of Proportionally Fair Scheduling in Rayleigh Fading
- Convex Optimization
Cited by
- Energy-Efficient User Association Strategy for Hyperdense Heterogeneous Networking in the Fifth Generation Systems
- Resource allocation in heterogeneous networks with eICIC
- Joint user association and resource allocation for eICIC with QoS provisioning in HetNets
- Load-Balancing Scheme With Small-Cell Cooperation for Clustered Heterogeneous Cellular Networks
- α-Fairness-Maximizing User Association in Energy-Constrained Small Cell Networks
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