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Emergency Communications Based on Throughput-Aware D2D Multicasting in 5G Public Safety Networks

机译:5G公共安全网络中基于吞吐量感知D2D组播的应急通信

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摘要

Emergency communications need to meet the developing demand of equipment and the complex scenarios of network in public safety networks (PSNs). Heterogeneous Cloud Radio Access Network (H-CRAN), an important technology of the 5th generation wireless systems (5G), plays an important role in PSN. H-CRAN has the features of resource sharing and centralized allocation which can make up for resource shortage in emergency communications. Therefore, an emergency communications strategy based on Device-to-device (D2D) multicast is proposed to make PSN more flexible and rapid. Nearby users can communicate directly without a base station through D2D. This strategy may guarantee high speed data transmission and stable continuous real-time communications. It is divided into three steps. Firstly, according to the distance between users, the alternative cluster head is divided. Secondly, two kinds of cluster head user selection schemes are developed. One is based on terminal power and the other is based on the number of extended users. Last but not least, the Hungarian Algorithm based on throughput-aware is used to channel multiplexing. The numerical results show that the proposed scheme can effectively extend the coverage of PSN and optimize the utilization of resources.
机译:紧急通信需要满足设备的发展需求以及公共安全网络(PSN)中复杂的网络场景。第五代无线系统(5G)的一项重要技术即异构云无线电接入网络(H-CRAN)在PSN中扮演着重要角色。 H-CRAN具有资源共享和集中分配的特点,可以弥补应急通信中的资源不足。因此,提出了一种基于设备到设备(D2D)组播的紧急通信策略,以使PSN更加灵活,快速。附近的用户无需基站即可通过D2D直接通信。该策略可以保证高速数据传输和稳定的连续实时通信。它分为三个步骤。首先,根据用户之间的距离,划分备用簇头。其次,开发了两种簇头用户选择方案。一种基于终端功率,另一种基于扩展用户的数量。最后但并非最不重要的一点是,基于吞吐量感知的匈牙利算法用于信道复用。数值结果表明,该方案可以有效扩展PSN的覆盖范围,优化资源利用。

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