首页> 外文会议>International Workshop on Complex Networks and Their Applications >Effect of Interaction Mechanisms on Facebook Dynamics Using a Common Knowledge Model
【24h】

Effect of Interaction Mechanisms on Facebook Dynamics Using a Common Knowledge Model

机译:常识模型对Facebook动态的交互机制的影响

获取原文

摘要

Web-based interactions allow agents to coordinate and to take actions (change state) jointly, i.e., to participate in collective action such as a protest, facilitating spread of contagion to large groups within networked populations. In game theoretic contexts, coordination requires that agents share common knowledge about each other. Common knowledge emerges within a group when each member knows the states and the types (preferences) of the other members, and critically, each member knows that everyone else has this information. Hence, these models of common knowledge and coordination on communication networks are fundamentally different from influence-based unilateral contagion models, such as those devised by Granovetter and Centola. Common knowledge arises in many settings in practice, yet there are few operational models that can be used to compute contagion dynamics. Moreover, these models utilize different mechanisms for driving contagion. We evaluate the three mechanisms of a common knowledge model that can represent web-based communication among groups of people on Facebook. We evaluate these mechanisms on five social (media) networks with wide-ranging properties. We demonstrate that different mechanisms can produce widely varying behaviors in terms of the extent of contagion spreading and the speed of contagion transmission.
机译:基于网络的互动允许代理人协调并共同采取行动(更改状态)即,参加集体行动,例如抗议,促进网络人群内大型群体的传播。在游戏理论背景下,协调要求代理商彼此分享普通知识。当每个成员都知道其他成员的状态和批判性的类型(偏好)时,每个成员都知道其他人都知道其他人都知道其他人都有这个信息。因此,这些普通知识和协调在通信网络上的模型与基于影响的单侧传染性模型的基本不同,例如由甘蓝和Centola设计的那些。在实践中许多设置中出现常见知识,但很少有操作模型可用于计算传染性动态。此外,这些模型利用不同机制来驱动传染。我们评估了一个共同知识模型的三种机制,可以代表Facebook上的人群之间基于网络的沟通。我们在具有宽范围属性的五个社会(媒体)网络上评估这些机制。我们展示了不同机制可以根据传染扩展的程度和传染传输速度产生广泛变化的行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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