Converters with high boost, energy storage and bi-directional power flow in energy systems

M. F. Rahman, I. Osman, D. Xiao, K. Alam
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引用次数: 2

Abstract

This paper reviews the existing structures for converter stages in renewable energy and motor drive systems that offer high voltage gain at the input of an inverter. The inverter may also connect the DC supply to the utility grid. For traction motor drives in vehicle and rail transport and in high-frequency transformer connected grids, bi-directional power flow capability is also required. Cascaded high-boost non-isolated DC stage which offers multi-stage or multi-level DC inputs and output connections is the focus of attention in this paper. The high voltage DC supply to the inverter allows connections to inverters for motor drive and utility at the required voltage level. This arrangement may lead to reduced battery management issues and reduced size of storage elements, flexibility of connections with several input DC supplies at different levels, and improved reliability through series/parallel connection of converters with some redundancy. Several options for the high-boost stage which are currently available will be reviewed. This will be followed by considerations for energy storage elements and converters suitable for bi-directional power transfer capabilities. Converter topologies and control issues using a high-frequency link for bi-directional power flow between two AC grids will also be discussed.
在能源系统中具有高升压、能量存储和双向功率流的转换器
本文综述了可再生能源和电机驱动系统中现有的在逆变器输入端提供高电压增益的变换器级结构。逆变器也可以将直流电源连接到公用电网。对于车辆和轨道运输以及高频变压器连接电网中的牵引电机驱动器,还需要双向功率流能力。提供多级或多级直流输入输出连接的级联高升压非隔离直流级是本文研究的重点。逆变器的高压直流电源允许在所需的电压水平上连接到电机驱动和公用事业的逆变器。这种安排可以减少电池管理问题,减少存储元件的尺寸,灵活地连接不同电平的多个输入直流电源,并通过冗余转换器的串联/并联连接提高可靠性。将对目前可用的几种高增压级方案进行审查。接下来将考虑适合双向电力传输能力的储能元件和转换器。转换器拓扑和控制问题使用高频链路双向功率流在两个交流电网之间也将讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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