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Simultaneous energy management and optimal components sizing of a zero- emission ferry boat

机译:零排放渡轮的同时能源管理和最佳组件大小

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摘要

Due to environmental and economic issues as well as the high performance of marine vessels, efficient energy using has been becoming more demanding. Also, in order to have a zero-emission ship, the utilization of a fuel cell combined with energy storage such as batteries gets more and more attention. In this work, a zero-emission hybrid energy system, including fuel cells, batteries, and cold-ironing, is employed to have an environmentally friendly vessel, and to create condition in which ship operates with high performance, both energy management and components sizing of fuel cells and batteries using real data of ferry boat and intelligent optimization method are done simultaneously. In addition, all constraints related to energy management and component sizing with the topography of the boat and electric power sources are represented and analyzed thoroughly. Ultimately, hourly energy management and component sizing for one specific day are considered in this work, and to optimize this problem, the Improved Sine Cosine Algorithm (ISCA) is utilized. According to obtained results, the proposed energy management and component sizing result in the high-performance ship which could be utilized in the marine industry.
机译:由于环境和经济问题以及船舶的高性能,对有效利用能源的要求越来越高。而且,为了拥有零排放的船舶,燃料电池与诸如电池的能量存储相结合的利用越来越受到关注。在这项工作中,采用零排放混合能源系统(包括燃料电池,电池和熨烫设备)来建造环保型船舶,并为船舶在高性能,能源管理和部件选型方面的运行创造条件。同时使用渡轮的真实数据和智能优化方法对燃料电池和电池进行了分析。此外,对与能源管理和与船舶和电源的地形有关的组件尺寸确定的所有约束都进行了详尽的表示和分析。最终,这项工作考虑了一天中的每小时能源管理和组件大小确定,并且为了优化此问题,使用了改进的正弦余弦算法(ISCA)。根据获得的结果,所提出的能源管理和组件选型结果将使这艘高性能船舶可用于海洋工业。

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