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Optimal planning of hybrid photovoltaic/battery/diesel generator in ship power system

机译:船舶电力系统中混合光伏/电池/柴油发电机的最佳规划

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In line with the increasing concern on the pollution release by marine ships, renewable energy technologies in ships power system has received so much attention. Recently, photovoltaic (PV) and energy storage system (ESS) are been integrated into conventional diesel generator in ships power system Nevertheless, improper sizing of the overall ship power station will result in a high investment cost and increase COsub2/sub emission. This paper devised a methodology to compute the optimal size of the ESS, PV and diesel generator in a ship power system to minimize COsub2/sub emission, fuel cost, and investment cost. It is a well-known fact that power generation in a sailing ship depend on the time zone, local time, date, latitude, and longitude along ship navigation route and the condition of the ship power system also differs from power systems on land. The devised method in this paper takes into accounts the geographical and season variation of solar insolation along the route from Lagos (Nigeria) to Conakry (Guinea) and accurately model the power output of PV modules is along the route.
机译:根据海洋船舶污染释放的越来越多,船舶电力系统的可再生能源技术受到如此多的关注。最近,光伏(PV)和储能系统(ESS)被整合到船舶动力系统中的传统柴油发电机中,整个船舶电站的尺寸不当将导致高投资成本和增加CO 2 发射。本文设计了一种方法来计算船舶电力系统中ESS,PV和柴油发电机的最佳大小,以最大限度地减少CO 2 发射,燃料成本和投资成本。众所周知的事实是,帆船中的发电取决于船舶导航路线的时区,当地时间,日期,纬度和经度,船舶电力系统的状况也与土地上的电力系统不同。本文的设计方法考虑到从拉各斯(尼日利亚)到Conakry(几内亚)的路线的太阳能缺失的地理和季节变化,准确地模拟PV模块的功率输出沿着该路线。

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