论文标题

技术报告:分析建模和改进干扰耦合式式切片

Technical Report : Analytical Modeling and Improvement of Interference-Coupled RAN Slicing

论文作者

Hashemian, Seyed Ali, Ashtiani, Farid

论文摘要

新兴的5G技术需要支持共同基础架构上同时运行不兼容的服务类型。网络切片是一种解决方案,将网络切片与每种服务类型相对应。确保一个切片中的用户活动不会影响其他切片,即切片间隔离是切片的关键要求。由于由于干扰和渠道条件,无线链路质量是不可预测和可变的,因此在无线电访问网络(RAN)中隔离很麻烦。在此技术报告中,我们考虑了多细胞切片,其中细胞之间的耦合干扰会导致切片的动态行为。我们提出了一个基于理论的排队模型,以分析干扰耦合的多细胞进行切片。为此,我们将场景映射到适当的状态依赖的排队网络上,并提出迭代算法以获得大约获得网络稳态概率分布,并得出平均延迟和吞吐量。为了量化切片的隔离,我们定义了一些新的关键性能指标(KPI)。最后,我们提出和分析了一种干涉感知通道分配策略,该策略避免了尽可能多地使用重叠的频道。数值结果证明了我们所提出的模型的准确性以及与随机分配策略相比,干扰策略在改善基于隔离的KPI方面的功效。

The emerging 5G technology needs to support simultaneously running incompatible service types on a common infrastructure. Network slicing is a solution that corresponds a slice of the network to each service type. Ensuring that user activity in one slice does not affect other slices, i.e., inter-slice isolation, is a key requirement of slicing. Since due to interference and channel conditions, wireless link quality is unpredictable and variable, providing isolation in radio access network (RAN) is cumbersome. In this technical report, we consider multi-cell RAN slicing where the coupled interference between cells results in dynamic behavior for slices. We propose a queueing theoretic-based model to analyze interference-coupled multi-cell RAN slicing. To this end, we map our scenario on a suitable state-dependent queueing network and propose an iterative algorithm to obtain approximately the network steady-state probability distribution and derive average delay and throughput. To quantify isolation in slices, we define some new key performance indicators (KPIs). Finally, we propose and analyze an interference-aware channel allocation policy that avoids use of overlapped frequency channels for as much as possible. Numerical results demonstrate the accuracy of our proposed model and the efficacy of the interference-aware policy in improving isolation-based KPIs compared to random allocation policy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源