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A Trust Computing-based Security Routing Scheme for Cyber Physical Systems

机译:基于信任计算的网络物理系统安全路由方案

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摘要

Security is a pivotal issue for the development of Cyber Physical Systems (CPS). The trusted computing of CPS includes the complete protection mechanisms, such as hardware, firmware, and software, the combination of which is responsible for enforcing a system security policy. A Trust Detection-based Secured Routing (TDSR) scheme is proposed to establish security routes from source nodes to the data center under malicious environment to ensure network security. In the TDSR scheme, sensor nodes in the routing path send detection routing to identify relay nodes' trust. And then, data packets are routed through trustworthy nodes to sink securely. In the TDSR scheme, the detection routing is executed in those nodes that have abundant energy; thus, the network lifetime cannot be affected. Performance evaluation through simulation is carried out for success of routing ratio, compromised node detection ratio, and detection routing overhead. The experiment results show that the performance can be improved in the TDSR scheme compared to previous schemes.
机译:安全是网络物理系统(CPS)发展的关键问题。 CPS的可信计算包括完整的保护机制,例如硬件,固件和软件,其组合负责执行系统安全策略。提出了一种基于信任检测的安全路由(TDSR)方案,以在恶意环境下建立从源节点到数据中心的安全路由,以确保网络安全。在TDSR方案中,路由路径中的传感器节点发送检测路由以标识中继节点的信任。然后,数据包将通过可信赖的节点进行路由以安全地下沉。在TDSR方案中,检测路由是在能量丰富的那些节点中执行的。因此,不会影响网络寿命。通过仿真进行性能评估,以评估路由比,受损节点检测比和检测路由开销是否成功。实验结果表明,与以前的方案相比,TDSR方案可以提高性能。

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