标题: | 次世代无线网状网路最佳化设计 Optimizing Next-generation ?Multi-hop Wireless Mesh Networks |
作者: | 范刚纶 Kang-Lun Fan 林亭佑 Ting-Yu Lin 电信工程研究所 |
关键字: | 资源分配;无线网状网路;无线随意网路;频道分配;绕径;线性规划;resource planning;wireless mesh network;wireless ad hoc network;channel assignment;routing;linear programming |
公开日期: | 2008 |
摘要: | 早期在无线网状网路这方面的研究工作大多数都是假设每一个节点都只有单一的介面。在此份论文中,我们视下一代的无线网状网路为每个节点都有着多重的无线电介面,每个介面都有能力支援多重模式并且执行一种,支援多重通道并使用其中一个,而且有能力支援多重的调变技术,我们把这种网路叫做 M^4(多重无线电,多重模式,多通道,多重速率)无线网状网路。举例来说,使用现成的零组件,人们可以轻易的建构一个有着多重无线电介面(支援IEEE 802.11 a/b/g)网状网路的节点,我们的目标就是去处理在这样一个环境中的资源分配规划以及封包传送的问题。 我们提出的方法是建立在以网路流量原则以及无线电通道 存取/干扰 模型为前提的线性规划技术基础上,当给定一个网路拓朴,运输量的需求,以及闸道的容量,我们展示了如何去分派网路介面卡数目以及他们所使用的通道以便可以充分的使用整个频宽。这些结果可以让无线网路的提供者在硬体层面的限制下可以利用以上的方法来分配计画他们的网路以达到最大的收益效率。这份论文最值得一提的就是,这是在无线网状网路领域中第一份去处理资源计画的工作。我们的一些数据上的结果显示了在不影响网路层公平性下的网路总和流量有着大量显着的改进。与其他假设固定无线电介面数量的多重无线电系统在模拟上的比较也进一步证实了网路规划的重要性。 Most earlier works in the area of wireless mesh network assume a single interface being equipped in each node. In this thesis, we consider the next-generation wireless mesh networks in which each node may be equipped with multiple radio interfaces, each capable of running in one of several modes(IEEE 802.11 b/g 2.4GHz or 802.11a 5GHz mode), one of several channels,and each capable of supporting multiple modulations. We call such a network an M^4 (multi-radio, multi-mode, multi-channel, multi-rate) wireless mesh network. For example, from off-the-shelf components, one can easily construct a mesh node with multiple IEEE 802.11a/b/g radio interfaces. Our goal is to address the resource planning and packet forwarding issues in such an environment. The proposed methodology is based on linear programming with network flow principles and radio channel access/ interference models. Given a network topology, traffic requirements, and gateway capacities, we show how to allocate network interface cards and their channels to fully utilize channel bandwidths. The results can be utilized by a wireless Internet service provider to plan their networks under a hardware constraint so as tomaximize their profits. To the best of our knowledge, this is the first work addressing resource planning in a wireless mesh network. Our numerical results show significant improvement in terms of aggregate network throughput with moderate network-layer fairness. The importance of network planning is further corroborated by the simulative comparisons with other multi-radio systems assuming a known and fixed number of interfaces at each mesh router. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009513549 http://hdl.handle.net/11536/38392 |
显示于类别: | Thesis |
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