Symmetry and Time-Delay-Driven Dynamics of Rumor Dissemination
The dissemination of rumors can lead to significant economic damage and pose a grave threat to social harmony and the stability of people’s livelihoods. Consequently, curbing the dissemination of rumors is of paramount importance. The model in the text assumes that the population is homogeneous in t...
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Published in | Symmetry (Basel) Vol. 17; no. 5; p. 788 |
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Abstract | The dissemination of rumors can lead to significant economic damage and pose a grave threat to social harmony and the stability of people’s livelihoods. Consequently, curbing the dissemination of rumors is of paramount importance. The model in the text assumes that the population is homogeneous in terms of transmission behavior. This homogeneity is essentially a manifestation of translational symmetry. This paper undertakes a thorough examination of the impact of time delay on the dissemination of rumors within social networking services. We have developed a model for rumor dissemination, establishing the positivity and boundedness of its solutions, and identified the existence of an equilibrium point. The study further involved determining the critical threshold of the proposed model, accompanied by a comprehensive examination of its Hopf bifurcation characteristics. In the expression of the threshold R0, the parameters appear in a symmetric form, reflecting the balance between dissemination and suppression mechanisms. Furthermore, detailed investigations were carried out to assess both the localized and global stability properties of the system’s equilibrium states. In stability analysis, the symmetry in the distribution of characteristic equation roots determines the system’s dynamic behavior. Through numerical simulations, we analyzed the potential impacts and theoretically examined the factors influencing rumor dissemination, thereby validating our theoretical analysis. An optimal control strategy was formulated, and three control variables were incorporated to describe the strategy. The optimization framework incorporates a specifically designed cost function that simultaneously accounts for infection reduction and resource allocation efficiency in control strategy implementation. The optimal control strategy proposed in the study involves a comparison between symmetric and asymmetric interventions. Symmetric control measures may prove inefficient, whereas asymmetric control demonstrates higher efficacy—highlighting a trade-off in symmetry considerations for optimization problems. |
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AbstractList | The dissemination of rumors can lead to significant economic damage and pose a grave threat to social harmony and the stability of people’s livelihoods. Consequently, curbing the dissemination of rumors is of paramount importance. The model in the text assumes that the population is homogeneous in terms of transmission behavior. This homogeneity is essentially a manifestation of translational symmetry. This paper undertakes a thorough examination of the impact of time delay on the dissemination of rumors within social networking services. We have developed a model for rumor dissemination, establishing the positivity and boundedness of its solutions, and identified the existence of an equilibrium point. The study further involved determining the critical threshold of the proposed model, accompanied by a comprehensive examination of its Hopf bifurcation characteristics. In the expression of the threshold R[sub.0], the parameters appear in a symmetric form, reflecting the balance between dissemination and suppression mechanisms. Furthermore, detailed investigations were carried out to assess both the localized and global stability properties of the system’s equilibrium states. In stability analysis, the symmetry in the distribution of characteristic equation roots determines the system’s dynamic behavior. Through numerical simulations, we analyzed the potential impacts and theoretically examined the factors influencing rumor dissemination, thereby validating our theoretical analysis. An optimal control strategy was formulated, and three control variables were incorporated to describe the strategy. The optimization framework incorporates a specifically designed cost function that simultaneously accounts for infection reduction and resource allocation efficiency in control strategy implementation. The optimal control strategy proposed in the study involves a comparison between symmetric and asymmetric interventions. Symmetric control measures may prove inefficient, whereas asymmetric control demonstrates higher efficacy—highlighting a trade-off in symmetry considerations for optimization problems. The dissemination of rumors can lead to significant economic damage and pose a grave threat to social harmony and the stability of people’s livelihoods. Consequently, curbing the dissemination of rumors is of paramount importance. The model in the text assumes that the population is homogeneous in terms of transmission behavior. This homogeneity is essentially a manifestation of translational symmetry. This paper undertakes a thorough examination of the impact of time delay on the dissemination of rumors within social networking services. We have developed a model for rumor dissemination, establishing the positivity and boundedness of its solutions, and identified the existence of an equilibrium point. The study further involved determining the critical threshold of the proposed model, accompanied by a comprehensive examination of its Hopf bifurcation characteristics. In the expression of the threshold R0, the parameters appear in a symmetric form, reflecting the balance between dissemination and suppression mechanisms. Furthermore, detailed investigations were carried out to assess both the localized and global stability properties of the system’s equilibrium states. In stability analysis, the symmetry in the distribution of characteristic equation roots determines the system’s dynamic behavior. Through numerical simulations, we analyzed the potential impacts and theoretically examined the factors influencing rumor dissemination, thereby validating our theoretical analysis. An optimal control strategy was formulated, and three control variables were incorporated to describe the strategy. The optimization framework incorporates a specifically designed cost function that simultaneously accounts for infection reduction and resource allocation efficiency in control strategy implementation. The optimal control strategy proposed in the study involves a comparison between symmetric and asymmetric interventions. Symmetric control measures may prove inefficient, whereas asymmetric control demonstrates higher efficacy—highlighting a trade-off in symmetry considerations for optimization problems. |
Audience | Academic |
Author | Ma, Zhuanting Masron, Tajul Ariffin Yang, Lufeng Li, Cunlin |
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Cites_doi | 10.1007/s12591-019-00486-8 10.1016/j.pubrev.2013.07.008 10.1016/j.chaos.2019.05.027 10.1016/j.apm.2019.01.037 10.1016/j.gr.2022.03.015 10.1016/j.physa.2011.03.010 10.1016/j.wsif.2016.12.006 10.1016/j.jeurceramsoc.2022.11.033 10.1016/j.polgeo.2022.102708 10.1080/00029890.2004.11920108 10.3934/mbe.2023261 10.1016/j.physa.2019.121743 10.1007/978-81-322-3640-5_4 10.1155/2019/7241021 10.1007/s12591-018-0424-8 10.1016/j.physa.2017.09.077 10.1088/0253-6102/68/6/803 10.1201/9781420011418 10.1016/j.physa.2018.04.015 10.1016/j.physa.2013.09.058 10.1016/j.tibtech.2023.09.009 10.1155/2015/269561 10.1016/j.electstud.2021.102366 10.3390/e25050805 10.1016/j.matcom.2023.05.024 10.1007/s11071-021-06651-5 10.1016/j.physa.2019.01.013 10.1016/j.physa.2015.05.113 10.1088/1751-8121/aad030 |
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RelatedPersons | Clinton, Hillary Rodham |
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SubjectTerms | Analysis Asymmetry Clinton, Hillary Rodham Communication Cost function Eigenvalues Eigenvectors Election results Equilibrium False information Gossip Homogeneity Hopf bifurcation Information literacy Optimal control Optimization Politics Presidential elections Propagation Public opinion Resource allocation Scandals Simulation Social networks Stability analysis Symmetry Time lag |
Title | Symmetry and Time-Delay-Driven Dynamics of Rumor Dissemination |
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