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Mission-critical user priority-based cooperative resource allocation schemes for multi-layer next-generation public safety networks

机译:基于关键任务的用户优先的基于用户优先的多层下一代公共安全网络的合作资源分配方案

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The Republic of Korea became the first country in the world to have next-generation long term evolution (LTE) public safety networks, and South Korea's evolution in critical communications has taken the lead as well. However, the same 700 MHz frequency band is allocated to the LTE-based public safety (PS-LTE) network, the LTE-based high-speed railway (LTE-R) network, and the LTE-maritime (LTE-M) network, and hence, extensive interest and practical research into co-channel interference management schemes are immediately required. This paper focuses on multi-layer next-generation public safety networks and employs efficient mission-critical user priority-based resource allocation schemes to resolve major challenges, such as co-channel interference, mission-critical user requirements, quality of service (QoS) prioritization, etc. We utilize coordinated scheduling (CS), coordinated multipoint (CoMP), and intercell interference cancellation (ICIC) under the radio access network (RAN)-sharing environment to analyze the overlapping next-generation PS-LTE, LTE-R, and LTE-M networks. CS CoMP is implemented between the three LTE public safety networks to boost cell-edge-user performance by muting the neighboring interfering base stations. This accomplishes a tremendous enhancement in system throughput for coexisting next-generation public safety networks. By employing ICIC with CS CoMP under the RAN-sharing environment, the best interference and outage performance can be attained for coexisting PS-LTE, LTE-R, and LTE-M networks. (C) 2019 Elsevier B.V. All rights reserved.
机译:大韩民国成为世界上第一个拥有下一代长期演变(LTE)的公共安全网络,韩国在关键通信中的演变也取得了领先优势。然而,相同的700 MHz频带被分配给LTE的公共安全(PS-LTE)网络,基于LTE的高速铁路(LTE-R)网络以及LTE-MARITIME(LTE-M)网络因此,需要进行广泛的兴趣和实际研究,进入同信道干扰管理方案。本文重点介绍了多层下一代公共安全网络,采用高效的关键任务用户优先的资源分配方案来解决主要挑战,例如共同渠道干扰,关键任务用户要求,服务质量(QoS)优先级等。我们利用CONORONENCINATING调度(CS),协调的多点(COMP)和INTERCELL干扰消除(ICIC)在无线电接入网络(RAN) - 深度环境下进行分析重叠的下一代PS-LTE,LTE-R ,和LTE-M网络。 CS COMP在三个LTE公共安全网络之间实现,通过静音相邻干扰基站来提高单元边缘用户性能。这实现了系统吞吐量的巨大增强,以共存下一代公共安全网络。通过在ran共享环境下使用CS Comp的ICIC,可以获得适用于PS-LTE,LTE-R和LTE-M网络的最佳干扰和中断性能。 (c)2019 Elsevier B.v.保留所有权利。

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