首页> 外文期刊>Expert systems with applications >Multi-dimensional trust for context-aware services computing
【24h】

Multi-dimensional trust for context-aware services computing

机译:背景信息化服务计算的多维信任

获取原文
获取原文并翻译 | 示例
           

摘要

The paper addresses the problem of trust management of cloud, fog and IoT services in dynamically changing environments. The continuous dynamic environment is one of the challenges that trustworthy services management in the cloud, fog and IoT settings faces. Services in such an environmental context have difficulty securing an acceptable quality of service (QoS). This article proposes a trust management framework that establishes service trust by considering the direct trust from the truster (subjective trust), aggregating referrals about the service in a collusion-resistant manner (objective trust), and bootstrapping new services. We introduce a subjective trust model based on the formalism of dependency networks to dynamically predict the provided QoS in response to context environment changes. The proposed approach leverages the dependency relations that exist among the QoS metrics and environmental context variables. The novelty at the subjective trust level lies in considering the dynamic cyclic dependency relations that enhances the prediction accuracy. However, subjective trust based on direct interactions could be insufficient to make the trust estimate credible. Hence, on top of the subjective layer, we propose an objective trust management model resilient to collusion attacks by leveraging the power of mass collaboration among referees. Finally, we propose a bootstrapping mechanism that is resilient to the white-washing attacks by observing the behaviours of newcomer services with no trust resources using the concept of social adoption to estimate their initial trust values. Experiments conducted on reallife and synthetic datasets demonstrate the effectiveness of our approach compared with state-of-the-art approaches. We used the statistical log score to assess the model's prediction accuracy and employed the estimation error of the objective trust as indicated by referees relative to the one calculated by the multi-round simulation. The ROC (Receiver Operating Characteristic) curves are finally used to measure the accuracy of the classifier used in the proposed trust bootstrapping mechanism in providing accurate initial trust values. The main findings of the paper are around the new trust model of cloud, fog and IoT services considering their dynamically changing environments. The first finding is that the prediction of the provided QoS shows better results when it is dynamic and responds to context environment changes by leveraging the dynamic dependency network linking the QoS metrics and context variables of the environment. The second finding is that the objective trust performs better when it is resilient to collusion attacks by leveraging the power of mass collaboration among referees. The third finding is that the bootstrapping mechanism that observes the behaviours of new comer services with no trust resources using the concept of social adoption to estimate their initial trust values excels by being resilient to white watching attacks.
机译:本文解决了动态变化环境中云,雾和物联网服务的信任管理问题。连续动态环境是云,雾和物联网设置面临的责任符合服务管理的挑战之一。在这种环境环境中的服务难以确保可接受的服务质量(QoS)。本文提出了一种信任管理框架,通过考虑来自Truster(主观信托)的直接信任,以抗侵占方式(客观信任)和引导新服务,通过考虑直接信任来建立服务信托。我们基于依赖网络的形式主义介绍一个主观信任模型,以响应上下文环境的变化而动态预测所提供的QoS。该方法利用QoS度量和环境上下文变量中存在的依赖关系。主观信任级别的新颖性在于考虑到增强预测精度的动态循环依赖关系。然而,基于直接互动的主观信任可能不足以使信任估计可信。因此,在主观层的顶部,我们提出了一种客观信任管理模型,通过利用裁判中的批量合作的力量来解决侵犯攻击。最后,我们提出了一种引导机制,通过使用社会采用概念来观察Newcomer服务的行为来估计其初始信任价值的新人服务的行为,对白洗攻击有所适应。在Reallife和Synthetic Datasets上进行的实验证明了与最先进的方法相比我们的方法的有效性。我们使用统计日志分数来评估模型的预测准确性,并采用目标信任的估计误差,如裁判相对于由多圆形模拟计算的一个所指示的。最终使用ROC(接收器操作特性)曲线来测量所提出的信任自动启动机制中使用的分类器的准确性,以提供准确的初始信任值。本文的主要发现是考虑其动态变化的环境的云,雾和物联网服务的新信任模型。第一发现是,通过利用链接QoS度量的动态依赖网络和环境的上下文变量,通过利用动态依赖网络以及环境的上下文变量来响应上下文环境的变化,所提供的QoS的预测显示了更好的结果。第二个发现是,当通过利用裁判中的批量合作的力量来弹性攻击时,目标信任更好地表现更好。第三个发现是,使用社会采用概念观察新的梳理服务的行为,没有信任资源,通过适应白色观看攻击来估计其初始信任价值的概念。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号