Modeling, Analysis and Optimization of Multicast Device-to-Device Transmission
arXiv:1309.1518 · doi:10.1109/TWC.2014.2320522
Abstract
Multicast device-to-device (D2D) transmission is important for applications like local file transfer in commercial networks and is also a required feature in public safety networks. In this paper we propose a tractable baseline multicast D2D model, and use it to analyze important multicast metrics like the coverage probability, mean number of covered receivers and throughput. In addition, we examine how the multicast performance would be affected by certain factors like mobility and network assistance. Take the mean number of covered receivers as an example. We find that simple repetitive transmissions help but the gain quickly diminishes as the repetition time increases. Meanwhile, mobility and network assistance (i.e. allowing the network to relay the multicast signals) can help cover more receivers. We also explore how to optimize multicasting, e.g. by choosing the optimal multicast rate and the optimal number of retransmission times.
14 pages; 8 figures; submitted to IEEE Transactions on Wireless Communications
References in corpus (1)
Cited by in corpus (6)
- Spectrum Sharing for Device-to-Device Communication in Cellular Networks
- Modeling and Performance Analysis of Clustered Device-to-Device Networks
- Fundamentals of Cluster-Centric Content Placement in Cache-Enabled Device-to-Device Networks
- Optimal Resource Allocation in Multicast Device-to-Device Communications Underlaying LTE Networks
- Exploiting Device-to-Device Communications to Enhance Spatial Reuse for Popular Content Downloading in Directional mmWave Small Cells
- Performance Analysis of Asynchronous Multicarrier Wireless Networks