Capacity optimization for ultra-reliable low-latency communication in 5G — The SON perspective

Elke Roth-Mandutz, Abubaker-Matovu Waswa, A. Mitschele-Thiel
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引用次数: 6

Abstract

Towards 5G, the challenge to achieve high reliability and low latency asks for new directions in systems so far strongly focusing on high data rates. Schemes to achieve high reliability for low latency demanding services are link diversity to ensure reliability and resource reservation to avoid scheduling delays. However, these schemes place high demands on the scarce radio resources. In this paper we propose a self-optimized approach on the network management level to minimize the capacity impact for ultra-reliable low latency communication (URLLC) services. The idea of the new URLLC Self-Organized Network (SON) is to provide optimized sets of parameters derived from the respective service requirements and the current conditions in the network. We discuss Network Management (NM) parameters regarding their impact on URLLC and present a structure, which allows a fast selection of the appropriate parameter set. One focus is on device-to-device (D2D) communication, which has a high potential to meet both, the reliability and latency requirements. An initial study on radio resource reuse indicates a promising gain in network capacity, while D2D reuses the same resources as the cellular users in the network.
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5G超可靠低延迟通信的容量优化——SON视角
对于5G,实现高可靠性和低延迟的挑战要求迄今为止强烈关注高数据速率的系统有新的方向。对于低时延要求的业务,实现高可靠性的方案包括保证可靠性的链路分集方案和避免调度延迟的资源预留方案。然而,这些方案对稀缺的无线电资源提出了很高的要求。在本文中,我们提出了一种网络管理层面的自优化方法,以最大限度地减少对超可靠低延迟通信(URLLC)服务的容量影响。新的URLLC自组织网络(SON)的思想是根据各自的业务需求和网络中的当前条件提供优化的参数集。我们讨论了网络管理(NM)参数对URLLC的影响,并给出了一个结构,该结构允许快速选择适当的参数集。其中一个重点是设备到设备(D2D)通信,它很有可能同时满足可靠性和延迟需求。对无线资源复用的初步研究表明,在D2D复用网络中与蜂窝用户复用相同的资源时,有希望获得网络容量。
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