Optimal ALOHA-Like Random Access With Heterogeneous QoS Guarantees for Multi-Packet Reception Aided Visible Light Communications
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- Type
- article
- Published
- 2016-09-08
- Cited by
- 28
- References
- 40
- Access
- Open access
- OpenAlex
- https://openalex.org/W2415025707
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:711161
Keywords
Random access, Visible light communication, Telecommunications link, Optimization problem, Quality of service
References
- A MPR optimization algorithm for FSO communication system with star topology
- Visible light communications for 5G wireless networking systems: from fixed to mobile communications
- Network Architecture of a High-Speed Visible Light Communication Local Area Network
- A and V
- Statistical quality of service provisioning in multi-user centralised networks
- Resource Allocation Under Delay-Guarantee Constraints for Heterogeneous Visible-Light and RF Femtocell
- Multi-round contention in wireless LANs with multipacket reception
- LAST: A Framework to Localize, Access, Schedule, and Transmit in Indoor VLC Systems
- A novel numerical optimization algorithm inspired from weed colonization
- Demonstration of bi-directional LED visible light communication using TDD traffic with mitigation of reflection interference.
- A Survey of Recent Developments in Home M2M Networks
- Resource Allocation for Delay-Sensitive Traffic Over LTE-Advanced Relay Networks
- Carrier Sense Multiple Access Communications on Multipacket Reception Channels: Theory and Applications to IEEE 802.11 Wireless Networks
- A novel memetic algorithm based on invasive weed optimization and differential evolution for constrained optimization
- Energy-Efficient Uplink Resource Allocation in LTE Networks With M2M/H2H Co-Existence Under Statistical QoS Guarantees
- Visible Light Communication, Networking, and Sensing: A Survey, Potential and Challenges
- Zigzag decoding: combating hidden terminals in wireless networks
- Performance Study on a CSMA/CA-Based MAC Protocol for Multi-User MIMO Wireless LANs
- Comprehensive performance analysis of IEEE 802.15.7 CSMA/CA mechanism for saturated traffic
- Effective capacity: a wireless link model for support of quality of service
Cited by
- A Method for Cross-Layer Analysis of Transmit Buffer Delays in Message Index Domain
- Martingales-Based Energy-Efficient D-ALOHA Algorithms for MTC Networks With Delay-Insensitive/URLLC Terminals Co-Existence
- Analysis of effective capacity for visible light communication systems with mobility support
- Full-Duplex RTS/CTS Aided CSMA/CA Mechanism for Visible Light Communication Network with Hidden Nodes under Saturated Traffic
- THE USE OF TUNED FRONT END OPTICAL RECEIVER AND PULSE POSITION MODULATION
- Hybrid Access Algorithm for eMBB Terminals with Heterogeneous QoS in MPR Aided VLC System
- Imperceptible Visible Light Communications Based on Just Imperceptible Difference
- Receiver-side Cooperation Scheme with Interference Reduction for Wireless Sensor Networks
- Martingales-Based ALOHA-Type Grant-Free Access Algorithms for Multi-Channel Networks With mMTC/URLLC Terminals Co-Existence
- Adaptive Multi-Receiver Coded Slotted ALOHA for Indoor Optical Wireless Communications
- A Random Compensation Scheme for 5G Slicing Under Statistical Delay-QoS Constraints
- Relay-aided Slotted Aloha for Optical Wireless Communications
- Spectrum-efficient D2D-based puncturing algorithm for eMBB and URLLC coexisting networks
- Performance Analysis of Age of Information in Ultra-Dense Internet of Things (IoT) Systems with Noisy Channels
- MSAM: Modular Statistical Analytical Model for MAC and Queuing Latency of VLC Networks under ICS Conditions
- Reliability Analysis of Slotted Aloha with Capture for an OWC-based IoT system
- Achieving Energy-Efficient Uplink URLLC With MIMO-Aided Grant-Free Access
- Resource matching algorithm under delay QoS constraint for uplink visible light communication based on supermartingale theory
- Slotted Aloha with Capture for OWC-based IoT: Design and Analysis in Finite Block-Length Regime
- Massive Machine-Type Communications via Hybrid OWC/RF Networks
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