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Integration of small world networks with multi-agent systems for simulating epidemic spatiotemporal transmission

机译:小世界网络与多主体系统的集成用于模拟流行的时空传播

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摘要

This study proposes an integrated model based on small world network (SWN) and multi-agent system (MAS) for simulating epidemic spatiotemporal transmission. In this model, MAS represents the process of spatiotemporal interactions among individuals, and SWN describes the social relation network among agents. The model is composed of agent attribute definitions, agent movement rules, neighborhoods, construction of social relation network among agents and state transition rules. The construction of social relation network and agent state transition rules is essential for implementing the proposed model. The decay effects of infection “memory”, distance and social relation between agents are introduced into the model, which are unavailable in traditional models. The proposed model is used to simulate the transmission process of flu in Guangzhou City based on the swarm software platform. The integration model has better performance than the traditional SEIR model and the pure MAS based epidemic model. This model has been applied to the simulation of the transmission of epidemics in real geographical environment. The simulation can provide useful information for the understanding, prediction and control of the transmission of epidemics.
机译:这项研究提出了一个基于小世​​界网络(SWN)和多主体系统(MAS)的集成模型,用于模拟流行病的时空传播。在此模型中,MAS表示个体之间的时空交互过程,而SWN描述了代理之间的社会关系网络。该模型由座席属性定义,座席移动规则,邻域,座席之间的社会关系网络和状态转换规则组成。社会关系网络和代理人状态转换规则的构建对于实现该模型至关重要。模型中引入了感染“记忆”,媒介之间的距离和社会关系的衰减效应,而传统模型无法获得这种衰减效应。该模型基于群软件平台,用于模拟广州市流感的传播过程。集成模型比传统的SEIR模型和基于纯MAS的流行模型具有更好的性能。该模型已应用于模拟实际地理环境中流行病的传播。模拟可以为了解,预测和控制流行病的传播提供有用的信息。

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