智能电网通信网络中主从信任节点的放置

Yichi Zhang, Weiqing Sun, Lingfeng Wang
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引用次数: 2

摘要

智能电网的通信网络既要安全又要高效。信任节点可以部署在通信网络中,提供必要的安全保护。但是,在一个或多个信任节点停止工作的情况下,该机制应该支持自我恢复。运行时恢复必须具有时效性,以满足智能电网中各部件之间通信的时间约束。为了解决上述问题,本文提出了主-从信任节点放置算法(P-S算法)来确定主-从信任节点集。在发生故障时,辅助信任节点将立即被激活,以避免在运行时识别备用信任节点的成本。基于不同容错级别的网络,比较了原信任节点放置与P-S算法。仿真结果表明,该方法能够有效地以较低的总成本提供智能电网系统的安全性。
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Placement of primary-secondary trust nodes in smart grid communication network
The communication network of the smart grid needs to be secure as well as efficient. Trust nodes can be deployed in the communication network to provide the necessary security protection. However, the mechanism should support self-recovery in case that one or more trust nodes stop working. Moreover, the runtime recovery shall be time efficient so as to meet the time constraints in the communications between the components in the smart grid. This paper proposes the Primary-Secondary trust node placement algorithm (P-S algorithm) to identify the set of primary and secondary trust nodes to address the above issue. In case of faults, secondary trust nodes will be activated immediately to avoid the cost of identifying the alternative trust nodes during runtime. Comparisons between the original trust node placement and the proposed P-S algorithm are performed based on a network under different tolerant levels. Simulation results demonstrate that our approach is effective in providing the security of the smart grid system with the low overall cost.
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