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The RIMO Gateway Selection Approach for Mesh Networks: Towards a Global Internet Access for All

机译:网状网络的RIMO网关选择方法:面向所有人的全球Internet访问

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Community wireless mesh networks have emerged as cooperative initiatives to provide Internet Access in areas where traditional ISP costs are not affordable for the population. It is common in wireless mesh networks sharing several capacity limited Internet gateways to provide Internet access. As routing does not handle capacity planning, end-users have to select gateways in such a way that the overall capacity of all gateways could be used effectively. An efficient gateway selection should minimize the processing logic and measurements over the mesh network. Selecting a high performance gateway can also ensure that the overall network load is balanced. This paper presents RIMO, a standalone best-effort algorithm for client nodes to select their preferred gateway without interacting with other client nodes. RIMO-based selection matches the gateway performance of the reference brute-force and omniscient algorithms for 60% of the test duration while reducing the gateway performance measurement cost from a factor of n to 2. With a reduced overhead and high efficiency, the RIMO algorithm automates the aggregation of multiple Internet gateways in wireless mesh networks, which results in robust last mile Internet connectivity to people in vulnerable situation.
机译:社区无线网状网络已成为一种合作计划,旨在在人们无法负担传统ISP费用的地区提供Internet接入。在共享多个容量受限的Internet网关以提供Internet访问的无线网状网络中,这很常见。由于路由无法处理容量规划,因此最终用户必须选择网关,这样才能有效利用所有网关的整体容量。高效的网关选择应最小化网状网络上的处理逻辑和测量。选择高性能网关还可以确保平衡整个网络负载。本文介绍了RIMO,这是一种独立的尽力而为算法,可让客户端节点选择其首选网关而无需与其他客户端节点进行交互。基于RIMO的选择将60%的测试持续时间与参考蛮力算法和全知算法的网关性能相匹配,同时将网关性能的测量成本从n降低到2。RIMO算法具有降低的开销和高效率自动实现无线网状网络中多个Internet网关的聚合,从而为处于脆弱状态的人们提供强大的最后一英里Internet连接。

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