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Securing Internet Coordinate Embedding Systems

机译:保护Internet坐标嵌入系统

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This paper addresses the issue of the security of Internet Coordinate Systems, by proposing a general method for malicious behavior detection during coordinate computations. We first show that the dynamics of a node, in a coordinate system without abnormal or malicious behavior, can be modeled by a Linear State Space model and tracked by a Kalman filter. Then we show that the obtained model can be generalized in the sense that the parameters of a filter calibrated at a node can be used effectively to model and predict the dynamic behavior at another node, as long as the two nodes are not too far apart in the network. This leads to the proposal of a Surveyor infrastructure: Surveyor nodes are trusted, honest nodes that use each other exclusively to position themselves in the coordinate, space, and are therefore immune to malicious behavior in the system. During their own coordinate embedding, other nodes can then use the filter parameters of a nearby Surveyor as a representation of normal, clean system behavior to detect and filter out abnormal or malicious activity. A combination of simulations and Planet-Lab experiments are used to demonstrate the validity, generality, and effectiveness of the proposed approach for two representative coordinate embedding systems, namely Vivaldi and NPS.
机译:通过提出一种在坐标计算过程中检测恶意行为的通用方法,本文解决了Internet坐标系统的安全性问题。我们首先表明,在没有异常或恶意行为的坐标系统中,节点的动力学可以通过线性状态空间模型进行建模,并通过卡尔曼滤波器进行跟踪。然后,我们证明所获得的模型可以在某种意义上得到推广,只要在两个节点之间相隔不远,就可以有效地使用在一个节点处校准的滤波器的参数来建模和预测另一个节点的动态行为。网络。这导致提出了Surveyor基础结构的建议:Surveyor节点是受信任的诚实节点,它们彼此互斥地将自己定位在坐标,空间中,因此不受系统中恶意行为的影响。然后,在其自己的坐标嵌入期间,其他节点可以使用附近的Surveyor的过滤器参数来表示正常,干净的系统行为,以检测和过滤出异常或恶意活动。仿真和Planet-Lab实验的组合被用来证明所提出的方法对于两个代表性的坐标嵌入系统即Vivaldi和NPS的有效性,通用性和有效性。

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