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Analytical approach for the optimal design of combined energy storage devices in ship power system

机译:船舶动力系统组合储能装置优化设计的解析方法

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In the last years a great interest has been paid in the relevant literature to the benefits deriving from the use of direct current for ship power systems. This is in compliance with the most recent concept about all-electric-ship and smart electrical distribution for achieving better performances by exploiting as far as possible the potentiality of integrated power systems. In this context the storage devices play a crucial role in improving the reliability, the efficiency and the dynamic performances of the whole electric system. Moreover, compared to conventional ship propulsion plants, this approach has a significant impact on ship design (particularly when combined to azimuthing thruster or podded thrust units) as regards comfortable (noise and vibrations), flexibility (for general plan), consumption and environment protection. The variety of pulsed and intermittent loads also requires a proper choice of the storage devices and of the techniques for the optimal system design. Focusing on DC ship power systems, in this paper two different methodologies for the design of combined storage systems constituted by batteries and supercapacitors are proposed. Based on some typical loads, some relevant case studies are analyzed and discussed.
机译:在过去的几年中,在相关文献中人们对使用直流电用于船舶动力系统所带来的好处引起了极大的兴趣。这符合关于全电船和智能配电的最新概念,该概念通过尽可能地利用集成电源系统的潜力来获得更好的性能。在这种情况下,存储设备在提高整个电气系统的可靠性,效率和动态性能方面起着至关重要的作用。此外,与传统的船舶推进装置相比,该方法在舒适度(噪声和振动),灵活性(用于总体计划),消耗和环境保护方面对船舶设计(尤其是与方位推进器或吊舱式推进器组合使用)有重大影响。 。该品种的脉冲和间歇性负载也需要存储设备和技术的最佳系统设计一个合适的选择。针对直流船用电力系统,本文提出了两种不同的方法来设计由电池和超级电容器组成的组合式存储系统。基于一些典型的负载,对一些相关的案例研究进行了分析和讨论。

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