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Preventing Congestion by Selective Admission Control in LTE-Based Public Safety Network

机译:通过在基于LTE的公共安全网络中的选择性准入控制来防止拥塞

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LTE-based Public Safety Network (PSN) is a wireless communication network which can provide efficient and reliable communication in disasters or emergencies for disaster relief and public protection. Therefore, ensuring that network congestion will not happen in PSN during an emergency is becoming increasingly important. LTE-based PSN is easy to be congested because part of spectrum resources is compressed to guarantee priority requirements of public safety users. In this paper, we develop a new method namely Selective Admission Control (SAC) mechanism to manage the radio bearers access to the commercial radio for Public Safety (PS) in LTE-based PSN. In the case of emergency, we select the traffic bearer with minimum estimated load increment accessing to the LTE-based PSN. The channel quality of new bearers should be taken into account, which means that in congestion, users who arrive earlier with poor channel quality will be rejected to reserve sufficient resources for users who arrive later with good channel quality. The simulation results show that the SAC mechanism can improve throughput by 36% and lower the rejection rate by 73% at most than reference method based on non-selective access control model, as a result effectively avoiding the network congestion and improving the utilization of spectrum resources for public safety communication.
机译:基于LTE的公共安全网络(PSN)是一种无线通信网络,可以提供灾难或灾难救灾和公共保护的紧急情况的高效可靠的沟通。因此,在紧急情况下,确保网络拥塞不会发生在PSN中变得越来越重要。基于LTE的PSN易于拥塞,因为部分频谱资源被压缩,以保证公共安全用户的优先要求。在本文中,我们开发了一种新方法,即选择性准入控制(SAC)机制,以管理无线电承载访问LTE基PSN中的公共安全(PS)的商业无线电。在紧急情况下,我们选择具有最小估计负载增量的流量承载,访问基于LTE的PSN。应考虑到新承载的渠道质量,这意味着在拥堵中,在渠道质量较差的拥堵中,将被拒绝到达,以便为以后达到良好的通道质量到达的用户提供足够的资源。仿真结果表明,基于非选择性访问控制模型,SAC机构可以将产量提高36%并将抑制率降低73%,结果有效地避免了网络拥塞和提高了频谱利用率的结果公共安全通信的资源。

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