Enhancing Contention Resolution ALOHA using Combining Techniques
arXiv:1602.07636 · doi:10.1109/TCOMM.2017.2759264
Abstract
Recently, random access protocols have acquired a new wave of interest, not only from the satellite communication community, but also from researchers active in fields like Internet of Things and machine-to-machine. Asynchronous (slot- and frame-wise) ALOHA-like random access protocols, are very attractive for such applications, enabling low complexity transmitters and avoiding time synchronization requirements. Evolutions of ALOHA employ time diversity through proactive replication of packets, but the time diversity is not fully exploited at the receiver. Combining techniques, as selection combining and maximal-ratio combining, are beneficial and are adopted in the enhanced contention resolution ALOHA (ECRA) scheme, presented here. A tight approximation of the packet loss rate for asynchronous random access, including ECRA, well suited for the low channel load region is derived. Finally, ECRA is evaluated in terms of spectral efficiency, throughput and packet loss rate in comparison with recent protocols, showing that it is able to largely outperform both slotted synchronous and asynchronous schemes.
13 pages, 7 figures, accepted for publication in IEEE Transactions on Communications. Old title: Exploiting Combination Techniques in Random Access MAC Protocols: Enhanced Contention Resolution ALOHA
References in corpus (5)
- Coded Slotted ALOHA: A Graph-Based Method for Uncoordinated Multiple Access
- Error Floor Analysis of Coded Slotted ALOHA over Packet Erasure Channels
- Enhanced Contention Resolution Aloha - ECRA
- Sliding window-based Contention Resolution Diversity Slotted ALOHA
- Detection and Combining Techniques for Asynchronous Random Access with Time Diversity
Cited by in corpus (6)
- From 5G to 6G: Has the Time for Modern Random Access Come?
- On the Impact of Channel Estimation on the Design and Analysis of IRSA based Systems
- Detection and Combining Techniques for Asynchronous Random Access with Time Diversity
- Irregular Repetition Slotted Aloha with Multipacket Detection: A Density Evolution Analysis
- Rate Selection and Power Adaptation using Maximal Ratio Combining for the Random Access Gaussian Channel
- Low-latency Networking: Where Latency Lurks and How to Tame It