首页> 外文期刊>Systems, Man and Cybernetics, Part A: Systems and Humans, IEEE Transactions on >System-of-Systems Modeling and Simulation of a Ship Environment With Wireless and Intelligent Maintenance Technologies
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System-of-Systems Modeling and Simulation of a Ship Environment With Wireless and Intelligent Maintenance Technologies

机译:使用无线和智能维护技术的船舶环境的系统级建模和仿真

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Modeling and simulation environments are needed to support decision making in Navy Warfighters, which are emergent systems that pose a challenge to operations management. Ships consist of complex interconnected systems such as the infrastructure, crew, and workflow. A system-of-systems approach using agent-based modeling is applied here to develop workflow simulations involving a ship's crew conducting routine maintenance, watch duty, and reporting functions. Simple models are used to describe basic behavioral traits and intelligence in crew members; machinery including sensors for intelligent maintenance; equipment consuming power; mobile and stationary communication network access points; models for data transfer over the network; crew mobility models; power distribution and trimming models for the electrical system; and a fire model to simulate emergency scenarios. The simulation results demonstrate an increase in machine availability due to the implementation of intelligent maintenance systems. The effects of wireless-network usage on crew resource utilization and overall ship capability in normal operational scenarios are also demonstrated. A simple rescheduling algorithm is used to improve crew utilization and estimate manning requirements. The effects of emergency scenarios such as fires in different locations are also studied. Sensitivity analysis is presented to verify the developed model, and a note on validation is given.
机译:需要建模和仿真环境来支持海军战士的决策,这是对作战管理构成挑战的新兴系统。船舶由复杂的互连系统组成,例如基础架构,船员和工作流程。在这里,采用了基于代理的建模的系统间方法,用于开发工作流模拟,涉及船员进行例行维护,值班和报告功能。简单的模型用于描述机组人员的基本行为特征和智力;机械,包括用于智能维护的传感器;设备消耗功率;移动和固定通信网络接入点;通过网络传输数据的模型;机组人员流动模型;电气系统的配电和微调模型;以及模拟紧急情况的火灾模型。仿真结果表明,由于实施了智能维护系统,机器的可用性有所提高。还展示了无线网络使用情况对正常操作情况下船员资源利用率和整体船舶能力的影响。一个简单的重新计划算法可用于提高人员利用率并估计人员需求。还研究了诸如在不同地点发生火灾等紧急情况的影响。进行敏感性分析以验证开发的模型,并给出有关验证的注释。

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