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Emergence of hybrid energy storage systems in renewable energy and transport applications - A review

机译:混合能源存储系统在可再生能源和运输应用中的兴起-评论

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摘要

The idea of Hybrid Energy Storage System (HESS) lies on the fact that heterogeneous Energy Storage System (ESS) technologies have complementary characteristics in terms of power and energy density, life cycle, response rate, and so on. In other words, high power ESS devices possess fast response rate while in the contrary, high energy ESS devices possess slow response rate. Therefore, it may be beneficial to hybridize ESS technologies in the way that synergize functional advantages of two heterogeneous existing ESS technologies As a consequence, this hybridization provides excellent characteristics not offered by a single ESS unit. This new technology has been proposed and investigated by several researchers in the literature particularly in the fields of renewable energy and electrified transport sector. In this context and according to an extensive literature survey, this paper is to review the concept of the HESS, hybridization principles and proposed topologies, power electronics interface architectures, control and energy management strategies, and application arenas. (C) 2016 Elsevier Ltd. All rights reserved.
机译:混合储能系统(HESS)的思想基于这样一个事实,即异构储能系统(ESS)技术在功率和能量密度,生命周期,响应率等方面具有互补的特性。换句话说,高功率ESS设备具有快速响应速率,而相反,高能量ESS设备具有慢响应速率。因此,以使两种不同的现有ESS技术的功能优势协同作用的方式来混合ESS技术可能是有益的。因此,这种杂交提供了单个ESS单元无法提供的出色特性。这项新技术已经由几位研究人员提出并进行了研究,特别是在可再生能源和电气化运输领域。在这种情况下,根据广泛的文献调查,本文将回顾HESS的概念,混合原理和拟议的拓扑,电力电子接口架构,控制和能源管理策略以及应用领域。 (C)2016 Elsevier Ltd.保留所有权利。

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