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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >On the Optimal Design of Hybrid-Electric Power Systems for Offshore Vessels
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On the Optimal Design of Hybrid-Electric Power Systems for Offshore Vessels

机译:海上船舶混合动力系统的优化设计

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Evolution of technology is significantly increasing the presence of hybrid-electric power systems in offshore (support/operation) vessels. They require high dynamic response including dynamic positioning and high levels of reliability and safety. This paper presents a methodology for the optimal design of hybrid-electric power systems for all-electric offshore vessels focused on economic objectives. The methodology is based on the energy modeling of the most promising hybrid-electric power system architectures, as well as the use of an advanced multiobjective optimization technique to obtain the Pareto set of noninferior solutions, corresponding to the best sizing of the energy storage system and energy management strategy. Therefore, modern vessel power systems (ac or de distribution systems designed around the use of power electronics converters and energy storage systems) can be optimized in terms of fuel consumption, emissions, and capital expenditure/operational expenditure according to the vessel operation modes and power profiles.
机译:技术的发展极大地增加了近海(支持/操作)船舶中混合电力系统的存在。他们需要高动态响应,包括动态定位以及高水平的可靠性和安全性。本文针对经济目标,提出了一种用于全电动近海船舶的混合电力系统优化设计的方法。该方法基于最有前途的混合动力系统体系结构的能量模型,以及使用先进的多目标优化技术来获得帕累托非劣解的集合,这对应于储能系统的最佳尺寸和能源管理策略。因此,可以根据船舶的运行方式和功率,在燃油消耗,排放和资本支出/运营支出方面优化现代船舶动力系统(围绕使用电力电子转换器和能量存储系统而设计的交流或分布式系统)个人资料。

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