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The Framework for Designing Autonomous Cyber-Physical Multi-agent Systems for Adaptive Resource Management

机译:用于设计自动网络 - 物理多智能体系的自动资源管理的框架

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The paper contributes to design of autonomous cyber-physical multi-agent systems for adaptive resource management providing increase of efficiency of business operating in uncertain and dynamic environment. Evolution of multi-agent systems from purely decision-making support and simulation tool to cyber-physical system including Digital Twins and fully autonomous systems is analyzed. The main paper contribution is the proposed conceptual framework for designing autonomous cyber-physical multi-agent systems for adaptive resource management. It is shown in the paper that, in cyber-physical multi-agent systems for adaptive resource management, the ontology-customized multi-agent engine and ontology-based model of enterprise are forming ontology-driven "Digital Twin" of the enterprise providing opportunity to combine operational scheduling of resources with ongoing real-time simulations and evolutional re-design of configuration of enterprise resources. The functionality and architecture of the autonomous cyber-physical multi-agent systems for adaptive resource management are developed to support for the full cycle of autonomous decision making on resource management. Time metrics for measuring event-based response time and level of adaptability of autonomous cyber-physical multi-agent systems for adaptive resource management are proposed. Results of developments can be applied for smart transport and smart manufacturing, smart agriculture, smart logistics, smart supply chains, etc.
机译:本文有助于设计自适应资源管理提供在不确定的动态环境,企业经营的效率提高自主网络物理多代理系统。从纯粹的决策支持和仿真工具,网络物理系统,包括数字双胞胎和充分自治系统多代理系统的演变进行了分析。主要论文的贡献是自主设计的网络物理多代理系统的自适应资源管理提出的概念框架。这显示在纸张,在自适应资源管理网络物理多代理系统,企业本体定制的多代理引擎和基于本体模型的企业提供了机会,形成本体驱动“数字双”资源的操作调度与正在进行的实时模拟和企业资源的配置的进化重新设计相结合。自适应资源管理的自治网络物理多代理系统的功能和体系结构的开发,以支持自主决策资源管理的整个周期。测量基于事件的响应时间和自适应资源管理的自治网络物理多代理系统的适应性水平时间指标提出了建议。的发展的结果可应用于智能运输和智能制造,智能农业,智能物流,智能供应链等

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