Rumor Transmission in Online Social Networks Under Nash Equilibrium of a Psychological Decision Game.

IF 1.6 3区 工程技术 Q3 OPERATIONS RESEARCH & MANAGEMENT SCIENCE Networks & Spatial Economics Pub Date : 2022-01-01 Epub Date: 2022-06-30 DOI:10.1007/s11067-022-09574-9
Wenjia Liu, Jian Wang, Yanfeng Ouyang
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Abstract

This paper investigates rumor transmission over online social networks, such as those via Facebook or Twitter, where users liberally generate visible content to their followers, and the attractiveness of rumors varies over time and gives rise to opposition such as counter-rumors. All users in social media platforms are modeled as nodes in one of five compartments of a directed random graph: susceptible, hesitating, infected, mitigated, and recovered (SHIMR). The system is expressed with edge-based formulation and the transition dynamics are derived as a system of ordinary differential equations. We further allow individuals to decide whether to share, or disregard, or debunk the rumor so as to balance the potential gain and loss. This decision process is formulated as a game, and the condition to achieve mixed Nash equilibrium is derived. The system dynamics under equilibrium are solved and verified based on simulation results. A series of parametric analyses are conducted to investigate the factors that affect the transmission process. Insights are drawn from these results to help social media platforms design proper control strategies that can enhance the robustness of the online community against rumors.

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心理决策博弈纳什均衡下的在线社交网络谣言传播。
本文研究的是通过在线社交网络(如 Facebook 或 Twitter)传播谣言的问题,在这些网络中,用户可以随意向其关注者发布可见内容,谣言的吸引力随时间而变化,并引发反谣言等对立现象。社交媒体平台上的所有用户都被建模为有向随机图的五个部分中的一个节点:易受影响、犹豫不决、受感染、减轻影响和恢复(SHIMR)。该系统采用基于边缘的表述方式,并以常微分方程组的形式推导出过渡动态。我们还允许个人决定是分享、无视还是揭穿谣言,以平衡潜在的收益和损失。这一决策过程被表述为博弈,并推导出实现混合纳什均衡的条件。根据模拟结果,求解并验证了平衡状态下的系统动态。还进行了一系列参数分析,以研究影响传输过程的因素。从这些结果中得出的启示有助于社交媒体平台设计适当的控制策略,从而增强网络社区抵御谣言的稳健性。
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来源期刊
Networks & Spatial Economics
Networks & Spatial Economics 社会科学-运筹学与管理科学
CiteScore
4.00
自引率
4.20%
发文量
26
审稿时长
>12 weeks
期刊介绍: Networks and Spatial Economics (NETS) is devoted to the mathematical and numerical study of economic activities facilitated by human infrastructure, broadly defined to include technologies pertinent to information, telecommunications, the Internet, transportation, energy storage and transmission, and water resources. Because the spatial organization of infrastructure most generally takes the form of networks, the journal encourages submissions that employ a network perspective. However, non-network continuum models are also recognized as an important tradition that has provided great insight into spatial economic phenomena; consequently, the journal welcomes with equal enthusiasm submissions based on continuum models. The journal welcomes the full spectrum of high quality work in networks and spatial economics including theoretical studies, case studies and algorithmic investigations, as well as manuscripts that combine these aspects. Although not devoted exclusively to theoretical studies, the journal is "theory-friendly". That is, well thought out theoretical analyses of important network and spatial economic problems will be considered without bias even if they do not include case studies or numerical examples.
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