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Attack-Resilient Pulse-Coupled Synchronization

机译:攻击弹性脉冲耦合同步

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摘要

Synchronization of pulse-coupled oscillators is gaining increased popularity in sensor networks and wireless communications due to its simplicity, implicit scalability, and high energy efficiency. However, most existing results are obtained in the absence of malicious attacks. This paper addresses pulse-coupled synchronization resilient to malicious attacks. Not only is the condition for stealthy attacks obtained, but we also prove analytically that pulse-coupled synchronization can be guaranteed despite the presence of a stealthy attacker, even when legitimate oscillators have different initial phases. This is in distinct difference from most of the existing attack-resilient synchronization algorithms (including the seminal paper from Lamport and Melliar-Smith) that require a priori (almost) synchronization among legitimate nodes. Numerical simulations confirm the theoretical results.
机译:由于其简单性,隐式可扩展性和高能量效率,脉冲耦合振荡器的同步在传感器网络和无线通信中增加了普及。但是,大多数现有结果都是在没有恶意攻击的情况下获得的。本文解决了脉冲耦合的同步弹性对恶意攻击。不仅是所获得的隐形攻击的条件,但我们也证明了尽管存在隐身的攻击者,但是即使在合法振荡器具有不同的初始阶段,也可以保证脉冲耦合同步。这与大多数现有的攻击 - 弹性同步算法(包括来自Lamport和Melliar-Smith)的大多数现有攻击 - 弹性同步算法(包括Hearimate节点之间的HareI(几乎)同步。数值模拟确认了理论结果。

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