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A decentralised self-healing approach for network topology maintenance

机译:一种用于网络拓扑维护的分散的自我修复方法

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In many distributed systems, from cloud to sensor networks, different configurations impact system performance, while strongly depending on the network topology. Hence, topological changes may entail costly reconfiguration and optimisation processes. This paper proposes a multi-agent solution for recovering networks from node failures. To preserve the network topology, the proposed approach relies on local information about the network's structure, which is collected and disseminated at runtime. The paper studies two strategies for distributing topological data: one based on mobile agents (our proposal) and the other based on Trickle (a reference gossiping protocol from the literature). These two strategies were adapted for our self-healing approach-to collect topological information for recovering the network; and were evaluated in terms of resource overheads. Experimental results show that both variants can recover the network topology, up to a certain node failure rate, which depends on the network topology. At the same time, mobile agents collect less information, focusing on local dissemination, which suffices for network recovery. This entails less bandwidth overheads than when Trickle is used. Still, mobile agents utilise more memory and exchange more messages, during data-collection, than Trickle does. These results validate the viability of the proposed self-healing solution, offering two variant implementations with diverse performance characteristics, which may suit different application domains.
机译:在许多分布式系统中,从云到传感器网络,不同的配置影响系统性能,同时强烈取决于网络拓扑。因此,拓扑变化可能需要昂贵的重新配置和优化过程。本文提出了一种用于从节点故障恢复网络的多种Agent解决方案。为了保持网络拓扑,所提出的方法依赖于网络结构的本地信息,该结构在运行时收集和传播。本文研究了分配拓扑数据的两种策略:基于移动代理人(我们的提案)和基于涓流的另一个策略(来自文献的参考八卦协议)。这两种策略适用于我们的自我修复方法 - 收集恢复网络的拓扑信息;并在资源开销方面进行评估。实验结果表明,两种变体都可以恢复网络拓扑,达到某种节点故障率,这取决于网络拓扑。与此同时,移动代理收集较少的信息,专注于当地传播,这足以进行网络恢复。这需要较少的带宽开销,而不是使用涓流量。仍然,移动代理在数据集中使用更多内存并交换更多消息,而不是涓流。这些结果验证了所提出的自修复解决方案的可行性,提供两个具有不同性能特性的变体实现,这可能适合不同的应用域。

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