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Optimal Propagation of Security Patches in Mobile Wireless Networks

机译:移动无线网络中安全补丁的最佳传播

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Reliable security measures against outbreaks of malware is imperative to enable large scale proliferation of wireless technologies. Immunization and healing of the nodes through dissemination of security patches can counter the spread of a malware upon an epidemic outbreak. The distribution of patches however burdens the bandwidth which is scarce in wireless networks. The trade-offs between security risks and resource consumption can be attained by activating at any given time only fractions of dispatchers and dynamically selecting their packet transmission rates. We formulate the above trade-offs as an optimal control problem that seek to minimize the aggregate network costs that depend on security risks and resource consumed by the countermeasures. Using Pontryagin's maximum principle, we prove that the dynamic control strategies have simple structures. When the resource consumption cost is concave, optimal strategy is to use maximum resources for distribution of patches until a threshold time, upon which, the patching should halt. When the resource consumption cost is convex, the above transition is strict but continuous.
机译:必须采取可靠的安全措施以防止恶意软件的爆发,以实现无线技术的大规模扩散。通过传播安全补丁来对节点进行免疫和修复,可以抵御流行病爆发时恶意软件的传播。但是,补丁的分发会增加无线网络中稀缺的带宽。通过在任何给定时间仅激活一部分调度程序并动态选择其数据包传输速率,就可以在安全风险和资源消耗之间进行权衡。我们将上述折衷公式化为最佳控制问题,以最小化依赖于安全风险和对策消耗的资源的总网络成本。利用庞特里亚金的最大原理,我们证明了动态控制策略具有简单的结构。当资源消耗成本降低时,最佳策略是使用最大的资源来分发补丁,直到达到阈值时间为止,然后补丁停止。当资源消耗成本呈凸形时,上述过渡是严格但连续的。

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