Mitigating macro-cell outage in LTE-Advanced deployments

R. Sivaraj, Ioannis Broustis, N. K. Shankaranarayanan, V. Aggarwal, P. Mohapatra
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引用次数: 3

Abstract

LTE network service reliability is highly dependent on the wireless coverage that is provided by cell towers (eNB). Therefore, the network operator's response to outage scenarios needs to be fast and efficient, in order to minimize any degradation in the Quality of Service (QoS). In this paper, we propose an outage mitigation framework for LTE-Advanced (LTE-A) wireless networks. Our framework exploits the inherent design features of LTE-A; it performs a dual optimization of the transmission power and beamforming weight parameters at each neighbor cell sector of the outage eNBs, while taking into account both the channel characteristics and residual eNB resources, after serving its current traffic load. Assuming statistical Channel State Information about the users at the eNBs, we show that this problem is theoretically NP-hard; thus we relax it as a convex optimization problem and solve for the optimal points using an iterative algorithm. Contrary to previously-proposed power control studies, our framework is specifically designed to alleviate the effects of sudden LTE-A eNB outages, where a large number of mobile users need to be efficiently offloaded to nearby towers. We present the detailed analytical design of our framework, and we assess its efficacy via extensive NS-3 simulations on an LTE-A topology. Our simulations demonstrate that our framework provides adequate coverage and QoS across all examined outage scenarios.
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减少LTE-Advanced部署中的宏蜂窝中断
LTE网络服务的可靠性高度依赖于蜂窝塔(eNB)提供的无线覆盖。因此,网络运营商对中断场景的响应需要快速有效,以尽量减少服务质量(QoS)的下降。在本文中,我们提出了一个LTE-Advanced (LTE-A)无线网络的中断缓解框架。我们的框架利用了LTE-A固有的设计特点;它在服务于当前流量负载后,对中断eNB的每个相邻小区扇区的传输功率和波束形成权重参数进行双重优化,同时考虑信道特性和剩余eNB资源。假设关于enb用户的统计信道状态信息,我们表明这个问题在理论上是np困难的;因此,我们将其松弛为一个凸优化问题,并使用迭代算法求解最优点。与之前提出的功率控制研究相反,我们的框架专门设计用于减轻LTE-A eNB突然中断的影响,在这种情况下,大量移动用户需要有效地转移到附近的塔上。我们介绍了我们框架的详细分析设计,并通过在LTE-A拓扑上进行广泛的NS-3模拟来评估其有效性。我们的模拟表明,我们的框架在所有检查的停机场景中提供了足够的覆盖和QoS。
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