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The modelling and three-level control of a hybrid propulsion system for a green ice-capable ship

机译:一种绿色冰船混合动力推进系统的建模与三级控制

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The decreasing of Arctic sea ice provides opportunities for commercial shipping between Asia and Europe due to its shorter distance. However, the Arctic environment is vulnerable to the pollutants from shipping activities. Therefore, it is important to consider the impacts of shipping activities in the Northern Sea Route (NSR), especially with a view to the possibility of reducing emissions of short-lived pollutants. In this paper, modelling of a hybrid propulsion system is conducted and implemented in Matlab Simulink. A 3-level control strategy with efficiency of power sources taken into consideration, is applied to ensure stability of voltage and frequency, as well as reducing the pollutants through minimizing the fuel consumption. A target journey with specific loading condition, which is related to NSR shipping, has been conducted to test the performance of the hybrid propulsion system with the 3-level control strategy and diesel electric system, the simulation results of the hybrid propulsion system applied with the three-level control strategy in this research can offer up to 22.7% fuel savings compared with a DC diesel electric system over a typical operating cycle. This justifies the use of hybrid propulsion as a more environmentally friendly propulsion system for the future ice-capable ships in the NSR. Finally, a sensitivity analysis is conducted to find the main factors, which influence fuel consumption. (c) 2021 Elsevier Ltd. All rights reserved.
机译:北极海冰的减少提供了亚洲和欧洲之间的商业航运的机会,因为它更短的距离。然而,北极环境是脆弱的,从船只活动的污染物。因此,要考虑在北海航线(NSR)航运活动的影响,特别是考虑到减少短命的污染物排放量的可能性是非常重要的。在本文中,混合动力推进系统的建模进行,并在Matlab Simulink中实现。用的考虑电源效率的3电平的控制策略,被施加以确保电压和频率的稳定性,以及通过最大限度地减少燃料消耗减少污染物。与特定的负荷条件,这是关系到NSR航运的靶旅程,已经进行了测试用3电平控制策略和柴油电力系统的混合动力推进系统的性能,该混合动力推进系统的模拟结果施加有在这项研究中的三电平控制策略,可提供高达节省燃油22.7%,其中柴油直流电力系统在一个典型的工作周期进行比较。这证明了使用混合动力推进作为未来冰能力的船舶在NSR更环保的推进系统。最后,灵敏度分析以找到的主要因素,它影响燃料消耗。 (c)2021 elestvier有限公司保留所有权利。

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