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Quantitative social relations based on trust routing algorithm in opportunistic social network

机译:基于机会社交网络信任路由算法的定量社会关系

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Abstract The trust model is widely used in the opportunistic social network to solve the problem of malicious nodes and information flooding. The previous method judges whether the node is a cooperative node through the identity authentication, forwarding capability, or common social attribute of the destination node. In real applications, this information does not have integrity and does not take into account the characteristics and dynamic adaptability of nodes, network structures, and the transitivity of social relationships between nodes. Therefore, it may not be effective in solving node non-cooperation problems and improving transmission success rate. To address this problem, the proposed node social features relationship evaluation algorithm (NSFRE) establishes a fuzzy similarity matrix based on various features of nodes. Each node continuously and iteratively deletes the filtered feature attributes to form a multidimensional similarity matrix according to the confidence level and determines the weights under different feature attributes. Then, the social relations of nodes are further quantified. The experimental results show that, compared with the traditional routing algorithm, NSFRE algorithm can effectively improve the transmission success rate, reduce transmission delay, ensure the safe and reliable transmission of information in the network, and require low buffer space and computing capacity.
机译:摘要信任模型广泛用于机会社交网络,以解决恶意节点和信息洪水问题。先前的方法判断节点是通过身份认证,转发能力或目的节点的公共社交属性的协作节点。在实际应用中,此信息没有完整性,并没有考虑节点,网络结构和节点之间社会关系的传递的特性和动态适应性。因此,它可能在解决节点非合作问题并提高传输成功率方面可能没有有效。为了解决这个问题,所提出的节点社交特征关系评估算法(NSFRE)基于节点的各种特征建立模糊相似性矩阵。每个节点连续且迭代地删除滤波的特征属性以根据置信水平根据置信水平形成多维相似度矩阵,并确定不同特征属性下的权重。然后,进一步量化节点的社会关系。实验结果表明,与传统路由算法相比,NSFRE算法可以有效地提高传输成功率,降低传输延迟,确保网络中的信息安全可靠地传输,并需要低缓冲空间和计算能力。

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