Feng Siyuan, Liu Chunmei, Shen Chen, Choi Hyeong-Ah, Rouil Richard A
Department of Computer Science, The George Washington University, Washington, DC 20052, USA.
Wireless Networks Division, National Institute of Standards and Technology, Gaithersburg, MD 80305, USA.
IEEE Access. 2020;8. doi: 10.1109/access.2020.3000251.
The LTE (Long-Term Evolution) eMBMS (evolved Multimedia Broadcast Multicast Service) technology employed in MBSFNs (Multicast Broadcast Single Frequency Networks) has been shown to be capable of considerably increasing the capacity of serving public safety users under group communication scenarios. However, due to its own limitations, a more fine-tuned scheduling approach is needed in order to fully utilize the strengths of eMBMS multicast. In this work, we first identify and analyze several overlooked challenges for scheduling multicast traffic in MBSFNs. Then we develop an effective and efficient dynamic scheduling algorithm for eMBMS multicast in time and frequency varying channel. The proposed algorithm leverages the advantages of both multicast and unicast schemes via user grouping; and through extensive simulations, is shown to be capable of significantly enhancing the mission critical performances under both best effort and guaranteed bit rate delivery models. We also show the resiliency of our proposed algorithm by applying it onto various network and user deployment scenarios. Our consistent results further prove that LTE eMBMS in MBSFN is a key solution in overcoming limitations in near future public safety networks.
多播广播单频网络(MBSFN)中采用的长期演进(LTE)演进多媒体广播多播服务(eMBMS)技术已被证明能够在群组通信场景下大幅提高为公共安全用户服务的容量。然而,由于其自身的局限性,需要一种更精细的调度方法来充分利用eMBMS多播的优势。在这项工作中,我们首先识别并分析了在MBSFN中调度多播流量时几个被忽视的挑战。然后,我们针对时变和频变信道中的eMBMS多播开发了一种高效的动态调度算法。所提出的算法通过用户分组利用了多播和单播方案的优势;并且通过广泛的仿真表明,在尽力而为和保证比特率传输模型下,该算法都能够显著提高关键任务性能。我们还通过将所提出的算法应用于各种网络和用户部署场景来展示其弹性。我们一致的结果进一步证明,MBSFN中的LTE eMBMS是克服近期公共安全网络局限性的关键解决方案。