用户移动偏置的无线多跳基础设施网络可持续性性能评估

R. Teng, Huan-Bang Li, R. Miura
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摘要

无线多跳基础设施(Wireless Multi-hop infrastructure, wmi)使移动用户能够通过无线多跳连接访问Internet。与传统的网络基础设施相比,WMIs具有成本低、网络部署灵活等优点。WMI的应用包括智慧城市、应急响应和物联网。在紧急情况下,WMI网络可能存在能量限制。此外,用户移动性可以被限制在有限的区域内。本文研究了具有能量约束和有限用户移动范围的WMI网络的网络可持续性性能。WMI的可持续性取决于网络能量、连通性以及用户分布。网络任务在基础设施节点间的集体共享严重影响网络的可持续性。然而,目前很少有研究涉及节点能量和网络连通性同时降低时网络的可持续性性能。本文特别研究了在用户移动范围有偏差的WMIs中,能量和连接消耗的减少所产生的影响。在分组级仿真的基础上进行了性能评估。评价结果显示了WMI网络能量和连通性的时空特征。通过对各种路由度量的研究,评估结果表明,能量感知度量导致分组转发的集体共享,在用户移动范围之外的BSs上提高了16- 30%。结果还表明,有限的用户移动范围会导致网络寿命的降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of the Network Sustainability in Wireless Multi-hop Infrastructures with Biased User Mobility
Wireless Multi-hop Infrastructures (WMIs) enable mobile users to access the Internet through wireless multi-hop connections. Compared with conventional network infrastructures, WMIs have the low cost and flexible network deployment. The applications of WMI include smart cities, emergency responses and Internet of things. In emergency situations, WMI networks may have energy constraint. Furthermore, user mobility may be restricted to a limited area. In this paper, we study the network sustainability performance in WMI networks that have energy constraint and limited scope of user mobility. The sustainability of the WMI depends on network energy, connectivity, as well as user distributions. The collective sharing of network tasks among infrastructure nodes highly affects the network sustainability. However, few studies to date addressed the sustainability performance of network with the decreasing of both node energy and network connectivity. This paper specially examines the impact of decreasing energy and connectivity depletion in WMIs that have biased scope of user mobility. Performance evaluation is conducted based on packetlevel simulations. The evaluation show spatio-temporal features of energy-and-connectivity in WMI networks. With the investigation of various routing metrics, evaluation results show that energyaware metric leads to the collective sharing of packet forwarding with 16-30 percent improvement at the BSs out of the user mobility scope. The results also show that limited scope of user mobility leads to a decrease of network lifetime.
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