基于agent的小型网络物理系统的NetLogo建模与仿真

J. Barbosa, P. Leitão
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引用次数: 2

摘要

网络物理系统(CPS)范式促进了逻辑控制的去中心化和分布,以及网络和物理对等体的整合。同时,自组织允许动态和自动的系统重新配置以响应条件和环境的变化。建模和仿真在这种复杂、分布式和自组织系统的设计中具有至关重要的作用,因为在部署到实际系统之前可以纠正检测和调试的错误,并且可以测试和评估不同的策略。基于代理的建模工具是一种计算框架,能够分析、实验和比较由合作代理填充的系统,支持基于代理的解决方案的快速原型化,展示自*属性。本文利用NetLogo工具对小型CPS基于agent的控制层进行建模和仿真,该控制层采用自组织原理进行控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agent-based modeling and simulation of a small scale cyber-physical system using NetLogo
The Cyber-Physical System (CPS) paradigm promotes the decentralization and distribution of the logic control as well as the integration of cyber and physical counterparts. In parallel, self-organization allows the dynamic and automatic system re-configuration responding to condition and environment changes. Modeling and simulation assume a crucial importance in the design of such complex, distributed, and self-organized systems, in the way that the detected and debugged errors may be corrected before the deployment into the real system, as well different strategies can be tested and evaluated. Agent-based modeling tools are computational frameworks able to analyze, experiment and compare systems populated by cooperative agents, supporting the fast prototyping of agent-based solutions exhibiting self-∗ properties. In this paper, the NetLogo tool was used to model and simulate the agent-based control layer of a small scale CPS, which control uses self-organization principles.
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