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A Multi-Agent System for Smart Energy Management Devoted to Vehicle Applications: Realistic Dynamic Hybrid Electric System Using Hydrogen as a Fuel

机译:用于型车辆应用的智能能量管理的多智能技术系统:使用氢作为燃料的现实动态混合电动系统

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摘要

Real-time simulation test beds for new zero-emission hybrid electric vehicles are considered as an attractive challenge for future transport applications that are fully recommended in the laboratory environment. In contrast, new zero-emission hybrid electric vehicles have a more complicated charging procedure. For this reason, an efficient simulation tools development for hydrogen consumption control becomes critical. In this vein, a New Zero Emission Hybrid Electric Vehicle Simulation (NZE-HEVSim) tool for the dynamic Fuel Cell Hybrid-Electric System is proposed to smartly control multisource activities. The designed system consists of a proton-exchange membrane fuel cell used to provide the required energy demand and a Supercapacitor system for energy recovery assistance in load peak or in fast transient. To regulate the supplied power, an efficient Real-Time Embedded Intelligent Energy Management (RT-EM-IEM) is implemented and tested through various constraints. The proposed intelligent energy management system aims to act quickly against sudden circumstances related to hydrogen depletion in the basis required fuel consumption prediction using multi-agent system (MAS). The proposed MAS strategy aims to define the proper operating agent according to energy demand and supply. The obtained results prove that the designed system meets the objectives set for RT-EM-IEM by referring to an experimental velocity database.
机译:用于新的零排放式混合动力电动汽车的实时仿真试验床被认为是在实验室环境中完全推荐的未来运输应用的有吸引力的挑战。相比之下,新的零排放混合动力电动车具有更复杂的充电程序。因此,用于氢消耗控制的有效仿真工具开发变得至关重要。在该静脉中,提出了一种用于动态燃料电池混合电动系统的新的零发射混合动力电动车辆仿真(NZE-HEVSIM)工具,以巧妙地控制多源活动。设计的系统由质子交换膜燃料电池组成,用于提供所需的能量需求和超级电容器系统,用于负载峰值或快速瞬态的能量回收辅助。为了调节所提供的电源,通过各种约束实现和测试了高效的实时嵌入式智能能量管理(RT-EM-IEM)。拟议的智能能源管理系统旨在迅速采取与氢耗尽相关的突然情况,基于使用多助剂系统(MAS)所需的燃料消耗预测。拟议的MAS战略旨在根据能源需求和供应定义适当的运营商。所获得的结果证明,设计的系统通过参考实验速度数据库符合RT-EM-IEM的目标。

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