Modeling of Collision Avoidance Protocols in Single-Channel Multihop Wireless Networks
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Summary
This paper presents the first analytical model to derive the saturation throughput of collision avoidance protocols in multi-hop ad hoc networks with nodes randomly placed according to a two-dimensional Poisson distribution and shows that the sender-initiated collision-avoidance scheme achieves much higher throughput than the ideal carrier sense multiple access scheme with a separate channel for acknowledgments.
- Type
- article
- Published
- 2004-09-01
- Cited by
- 47
- References
- 22
- OpenAlex
- https://openalex.org/W2003111999
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:896214
Keywords
Computer science, Multiple Access with Collision Avoidance for Wireless, Computer network, Collision avoidance, Carrier sense multiple access with collision avoidance
References
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- Performance study of access control in wireless LANs – IEEE 802.11 DFWMAC and ETSI RES 10 Hiperlan
- Receiver-Initiated Collision Avoidance in Wireless Networks
- Performance evaluation and enhancement of the CSMA/CA MAC protocol for 802.11 wireless LANs
- On the performance of ad hoc networks with beamforming antennas
- IEEE 802.11 protocol: design and performance evaluation of an adaptive backoff mechanism
- Solutions to hidden terminal problems in wireless networks
- Performance Analysis of CSMA and BTMA Protocols in Multihop Networks (I), Single Shannel Case
- Performance of asynchronous data transfer methods of IEEE 802.11 MAC protocol
- Investigation of the IEEE 802.11 medium access control (MAC) sublayer functions
- Dynamic tuning of the IEEE 802.11 protocol to achieve a theoretical throughput limit
- Throughput and fairness properties of asynchronous data transfer methods in the IEEE 802.11 MAC protocol
- Optimal Transmission Ranges for Randomly Distributed Packet Radio Terminals
- A MAC protocol for mobile ad hoc networks using directional antennas
- GloMoSim: a library for parallel simulation of large-scale wireless networks
- Medium access control protocols using directional antennas in ad hoc networks
- Performance analysis of the IEEE 802.11 distributed coordination function
- GloMoSim
- On the performance of ad hoc networks with beamforming antennas
- Lan medium access control (mac) and physical layer (phy) specifications
Cited by
- Modelling and performance analysis of mobile ad hoc networks
- The influence of broadcast traffic on IEEE 802.11 DCF networks
- Medium access control in ad hoc networks with omni-directional and directional antennas
- Modelling the IEEE 802.11 protocol in wireless multi-hop networks
- Optimization of the interoperability and dynamic spectrum management in mobile communications systems beyond 3G
- Modeling path capacity in multi-hop IEEE 802.11 networks for QoS services
- CAM-MAC: A Cooperative Asynchronous Multi-Channel MAC Protocol for Ad Hoc Networks
- Performance Modeling and Analysis of the IEEE 802.11 Distribution Coordination Function in Presence of Hidden Stations
- Throughput Analysis of IEEE 802.11 in Multi-Hop Ad Hoc Networks
- MIMO link design strategy for wireless data center applications
- Analysis and Throughput Performance of IEEE 802.11 DCF in Multi-hop Wireless Networks
- Model for polling in noisy multihop systems with application to PLC and AMR
- Throughput Analysis of Receiver Initiated Collision Avoidance in Multi hop Wireless Networks
- A Cross-Layer Multi-Hop Simulator for IEEE 802.11e
- Structural Unfairness in 802.11-basedWireless Mesh Networks
- IEEE 802.11 Saturation Throughput Analysis in the Presence of Hidden Terminals
- Analysis of Non-Saturation and Saturation Performance of IEEE 802.11 DCF in the Presence of Hidden Stations
- Modeling Path Capacity in Multi-hop IEEE 802.11 Networks for QoS Services
- Throughput and Delay Analysis of IEEE 802.11 DCF in the Presence of Hidden Nodes for Multi-hop Wireless Networks
- IEEE 802.11 MAC protocol enhanced by busy tones
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