Ultra-Capacitor Models for All Electric and Hybrid Ship Power Systems

F. Balsamo, C. Capasso, M. Fantauzzi, D. Lauria, O. Veneri
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引用次数: 1

Abstract

In this paper a deep investigation of supercapacitor device modeling is performed with specific reference to hybrid energy storage modules, suitable to support both all electric /hybrid propulsion and on board MVDC distribution marine systems. In those applications, the combination of batteries and supercapacitors in realizing energy storage hybrid devices overtakes the intrinsic disadvantages of single use of electrochemical batteries and supercapacitors. On the other hand, proper design and management strategies of hybrid architecture are required in order to achieve the best performance in terms of dynamic and life cycle assessment on load profile of marine applications. In this way, the main results presented in this paper consists in a simple quadratic mathematical model of supercapacitor, evaluated as a quadratic function of the ultra-capacitor voltage, which is validated experimentally on the base of operative-cycle-based loading profiles, representative of marine application.The results and comparison reported in this work confirm the validity of the proposed model for preliminary design of hybrid energy storage systems and management strategies evaluation on the electrification of ship power systems.
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全电动和混合动力船舶动力系统的超级电容器模型
本文对超级电容器器件建模进行了深入研究,具体涉及混合储能模块,适用于支持全电力/混合动力推进和船上MVDC配电船舶系统。在这些应用中,电池和超级电容器的结合实现了储能混合装置,克服了电化学电池和超级电容器单独使用的固有缺点。另一方面,混合动力结构的设计和管理策略必须合理,才能在船舶负荷剖面动态和生命周期评估方面达到最佳性能。这样,本文提出的主要结果包括一个简单的超级电容器二次数学模型,该模型被评价为超级电容器电压的二次函数,并在基于工作循环的加载曲线上进行了实验验证,具有代表性的船舶应用。研究结果和比较结果验证了该模型对混合储能系统初步设计和船舶动力系统电气化管理策略评估的有效性。
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