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Rate of degradation of centralized optimization solutions and its application to high performance domain formation in ad hoc networks

机译:集中式优化解决方案的降级速度及其在ad hoc网络中高性能域形成中的应用

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Future military systems such a FCS and WIN-T require a robust and flexible network that supports thousands of ad hoc nodes; therefore, we must ensure the scalability of networking protocols (e.g., routing, security and QoS). The use of hierarchy is a powerful solution to the scaling problem, since it allows networking protocols to operate on a limited number of nodes, as opposed to the entire network. We have proposed an automated solution to dynamically create and maintain such hierarchy based on a combination of global optimization algorithms (K. Manousakis et al., 2004) and local distributed maintenance protocols (R. Morera et al., October 2003). Global optimization clearly improves performance in a static network but it is unclear how effective it is in a dynamic ad hoc environment. In this paper, we analyze how the hierarchy created deteriorates from the optimal as network conditions change. We show that the fragility of the optimization depends on the particular cost function and the number of metrics that change. More important, we show, for the first time, that global optimization can remain effective for long periods with good cost functions, even in large dynamic ad hoc networks (where metrics may change rapidly due to node mobility and links making and breaking). This result shows that, with fast optimization algorithms such as modified simulated annealing (K. Manousakis et al., 2004), future military systems can use global optimization to autoconfigure domains to significantly improve performance. We also show that local maintenance protocols support the global optimization mechanisms by extending the time the hierarchy remains feasible.
机译:未来的军事系统如此FCS和WIN-T需要一个强大而灵活的网络,支持数千个ad Hoc节点;因此,我们必须确保网络协议的可扩展性(例如,路由,安全性和QoS)。层次结构的使用是对缩放问题的强大解决方案,因为它允许网络协议在有限数量的节点上运行,而不是整个网络。我们提出了一种自动化解决方案,以基于全局优化算法的组合动态创建和维护这些层次结构(K.Manousakis等,2004)和当地分布式维护协议(R. Morera等,2003年10月)。全局优化清楚地提高了静态网络中的性能,但目前尚不清楚它在动态临时环境中有效有效。在本文中,我们分析了在网络条件的变化中从最佳时所产生的层次结构恶化。我们表明优化的脆弱性取决于特定的成本函数和改变的度量数。更重要的是,我们首次展示全球优化可以长时间保持有效,即使在大型动态临时网络中,即使在大型动态临时网络中(由于节点移动性和链接,指标可能会迅速变化)。该结果表明,具有快速优化算法,如修改的模拟退火(K.Manousakis等,2004),未来的军事系统可以使用全球优化来自动配置域来显着提高性能。我们还表明,本地维护协议通过扩展层次结构仍然可行的时间来支持全局优化机制。

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