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Design, simulation and experimental evaluation of energy system for an unmanned surface vehicle

机译:无人机的能源系统设计,仿真与实验评估

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Although fossil fuels are the world's most abundant, economical, and reliable way for energy production, long-lasting usage, would cause serious issues and it is well established in scientific circles as a serious event. On the other hand, renewable energies play a key role as a substitute for energy production. The environmental issues and depletion of fossil fuels have paved opportunities to electric and hybrid vehicles, which use renewable resources, especially in transportation. This study examines solar power importance for energy system of an unmanned surface vehicle titled Morvarid, which is expected to do the bathymetry tasks autonomously. Before description major parts of Morvarid's energy system, the most important and related studies are reviewed. This is followed by selecting the most suitable components for Morvarid's energy system by numerical examination and modeling. A Plug-in hybrid management system with an 8 KWh capacity lithium-ion battery was proposed. The PV array area was modeled for the whole year and resulted that an array with 8 m(2) surface is the best option. The last section contains power management reliability and energy safety of the boat by experimental tests. The experimental test at Chitgar-lake revealed that the Morvarid's power generating system, which uses sun tracker, can produce about 5.8 KWh energy per day. The proposed energy management system optimizes the available energy usage to enable the boat to do its tasks up to 7 h per day during three cloudy days without charging. When using energy just for daily tasks, the boat does not even need plug-in charge at sunny days. (C) 2018 Elsevier Ltd. All rights reserved.
机译:尽管化石燃料是世界上最丰富,最经济,最可靠的能源生产方式,但长期使用会引起严重问题,科学界已将之定为严重事件。另一方面,可再生能源在替代能源生产中起着关键作用。环境问题和化石燃料的枯竭为电动和混合动力汽车(这些交通工具使用可再生资源,尤其是交通运输)提供了机会。这项研究探讨了太阳能对无人驾驶水上交通工具Morvarid的能量系统的重要性,该交通工具有望自动完成测深任务。在描述Morvarid能源系统的主要部分之前,将回顾最重要和相关的研究。接下来,通过数值检查和建模为Morvarid的能源系统选择最合适的组件。提出了具有8 KWh容量锂离子电池的插电式混合动力管理系统。光伏阵列区域进行了全年建模,因此,具有8 m(2)表面的阵列是最佳选择。最后一部分通过实验测试包含了船的电源管理可靠性和能源安全性。在Chitgar-lake进行的实验测试表明,使用太阳追踪器的Morvarid发电系统每天可发电约5.8 KWh。拟议中的能源管理系统优化了可用能源的使用,以使船在三天阴天不充电的情况下每天最多可完成7小时的任务。当仅将能量用于日常任务时,船在晴天甚至不需要充电。 (C)2018 Elsevier Ltd.保留所有权利。

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