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Energy-Efficient Two-Layer Cooperative Defense Scheme to Secure Sensor-Clouds

机译:高效的两层协作防御方案可保护传感器云

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摘要

Sensor-cloud computing is envisioned as a promising technology that can integrate various services by extending the computational capabilities of physical sensor nodes. It is prone to attack because of special characteristics of physical sensor nodes and virtual sensor-service nodes. Considering the intrusion detection threshold, false alarm probability of the intrusion detection system (IDS), and three different attacked scenarios, we devise a physical IDS (PIDS)-to-gateway and virtual IDS (VIDS)-to-gateway detection model for Sensor-Cloud. We formulate a two-layer gateway-assisted detection and defense decision problem involving multiple IDSs using an evolutionary game in order to optimize the intrusion detection strategy for lowering energy consumption and reducing alarm messages. We derive an evolutionary stable strategy and prove that the proposed mechanism achieves Nash equilibrium, such that each IDS completes cooperatively defense tasks. We propose a game-theoretic approach to achieve an energy-efficient cooperative defense scheme for sensor-cloud computing environments. The simulation results demonstrate that the proposed mechanism achieves energy-efficient defense and increases security of data in the Sensor-Cloud.
机译:传感器云计算被认为是一种有前途的技术,可以通过扩展物理传感器节点的计算能力来集成各种服务。由于物理传感器节点和虚拟传感器服务节点的特殊特性,容易受到攻击。考虑到入侵检测阈值,入侵检测系统(IDS)的误报概率以及三种不同的受攻击场景,我们设计了传感器的物理IDS(PIDS)-网关和虚拟IDS(VIDS)-网关检测模型-云。为了优化入侵检测策略以降低能耗并减少警报消息,我们使用演化博弈制定了涉及多个IDS的两层网关辅助检测和防御决策问题。我们推导了一种演化稳定策略,并证明了所提出的机制达到了纳什均衡,从而使每个IDS都能完成协同防御任务。我们提出了一种博弈论的方法来实现传感器云计算环境的节能合作防御方案。仿真结果表明,所提出的机制可以实现节能防御并提高传感器云中数据的安全性。

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