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DHT-based localized service discovery in wireless mesh networks

机译:基于DHT的无线网状网络本地化服务发现

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Wireless mesh networks (WMNs) provide high-bandwidth wireless network access to mobile clients in extensible, robust multi-hop networks. WMNs support distributed service provision and data storage, catering to the advanced capabilities of current mobile devices. Services and data discovery using undirected broadcast or multicast messages, as in traditional discovery protocols, significantly harms network performance due to interference and collisions. In contrast, distributed hash tables (DHTs) offer consistent mapping of service and data identifiers to the providing devices and therefore allow a directed unicast discovery and access. However, traditional DHTs place identifiers at arbitrary distant devices in the network, resulting in frequent use of long multi-hop routing paths. Such multi-hop transmissions suffer from performance loss at each hop and also degrade the overall network performance. We propose DLSD, a DHT-based localized index structure that establishes a hierarchy of locally bounded address spaces ranging from a few nearby devices to the whole network. Iterating through this hierarchy bottom-up allows devices to find the most local provider of the requested item, thereby minimizing multi-hop transmissions while ensuring global reachability. Through this reduction of routing hops, we maintain high transmission performance and minimize interference in the network. We evaluate the feasibility of our approach and show that it significantly reduces routing overhead and outperforms traditional service discovery and DHT approaches.
机译:无线网状网络(WMNS)为可扩展,强大的多跳网络提供高带宽无线网络访问到移动客户端。 WMN支持分布式服务提供和数据存储,迎合当前移动设备的高级功能。使用无向广播或多播消息的服务和数据发现,如传统的发现协议中,由于干扰和冲突而显着危害网络性能。相反,分布式哈希表(DHT)向提供设备提供一致的服务和数据标识符映射,因此允许指向单播发现和访问。但是,传统的DHTS在网络中的任意遥远设备处的标识符,导致频繁使用长的多跳路径路径。这种多跳传输在每台跳时遭受性能损失,并且还降低了整体网络性能。我们提出了DLSD,基于DHT的局部索引结构,该结构建立了从少数附近设备到整个网络的局部有限地址空间的层次结构。通过此层次结构迭代允许设备找到所请求项目的最本地提供程序,从而在确保全局可达性的同时最小化多跳传输。通过这种路由跳率,我们保持高传输性能并最大限度地减少网络中的干扰。我们评估我们方法的可行性,并表明它显着降低了路由开销,优于传统的服务发现和DHT方法。

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