可扩展环形无线网状网络中的功率公平

Jane-Hwa Huang, Li-Chun Wang, Chung-Ju Chang
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引用次数: 4

摘要

无线网状网络(WMN)是支持无处不在的宽带业务的基本低功耗解决方案。然而,网状网络面临着功率不公平和吞吐量瓶颈问题。相对于远离网关的用户,靠近网关的用户需要中继更多的流量,消耗更多的功率。本文提出了一种可扩展的基于环的WMN,通过调整环的宽度来保证用户间的功率公平。在基于环网的WMN基础上,建议进行频率规划,克服网关附近内环用户的吞吐量瓶颈问题,从而提高系统的可扩展性,以容纳更多的用户,并促进覆盖范围的扩展。我们还研究了基于环的WMN在功率公平性、容量和覆盖方面的总体权衡。建立了基于载波感知多址(CSMA) MAC协议的环形WMN在不饱和情况下的吞吐量和功耗分析模型。然后,在功率公平性约束下,构造了以单元容量和覆盖最大化为目标的混合整数非线性优化问题。应用这种优化方法,我们得到了基于环的WMN的最优环数和相关环宽度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Fairness in a Scalable Ring-Based Wireless Mesh Network
The wireless mesh network (WMN) is an essential low-power solution to support ubiquitous broadband services. However, mesh networks face the power unfairness and throughput bottleneck issues. Compared to the users far away from the gateway, the users near the gateway need to relay more traffic and consume more power. This paper proposes a scalable ring-based WMN that can ensure power fairness among users by adjusting the ring widths. On top of the ring-based WMN, frequency planning is suggested to overcome the throughput bottleneck issue for the inner-ring users near the gateway, thereby making the system more scalable to accommodate more users and facilitating coverage extension. We also investigate the overall tradeoffs of the ring-based WMN in terms of power fairness, capacity, and coverage. An analytical model is developed to evaluate the throughput and power consumption of the ring- based WMN using carrier sense multiple access (CSMA) MAC protocol in the unsaturated situation. Then, a mixed-integer nonlinear optimization problem aiming to maximize cell capacity and coverage subject to the constraint of power fairness is formulated. Applying this optimization approach, we obtain the optimal number of rings and the associated ring widths of the ring-based WMN.
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