V2G应用中基于矩阵变换器的谐振双有源电桥

D. Thrimawithana, U. Madawala, R. Twiname, D. Vilathgamuwa
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引用次数: 36

摘要

双有源电桥(dab)可用于向电动汽车(ev)或车辆到电网(V2G)应用中的电网提供隔离和双向电源。然而,这种系统本质上需要两阶段的功率转换过程,这大大增加了功率损耗。此外,与DAB转换器相关的低功率因数进一步降低了此类系统的效率。本文提出了一种基于矩阵变换器的新型谐振DAB变换器,该变换器只需要单级功率转换过程,即可实现电动汽车与电网之间的隔离双向功率传输。该变换器包括基于矩阵变换器的前端,通过高频隔离变压器和调谐LCL网络与EV侧全桥变换器连接。建立了一个数学模型,预测了系统的行为,表明潮流的大小和方向都可以通过相对相角或变流器产生的电压的幅度调制来控制。通过仿真验证了所提概念的可行性。本文提出的基于矩阵变换器的DAB,具有单功率转换阶段,成本低,适合单辆或多辆电动汽车或V2G应用的充电和放电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel matrix converter based resonant dual active bridge for V2G applications
Dual-active bridges (DABs) can be used to deliver isolated and bidirectional power to electric vehicles (EVs) or to the grid in vehicle-to-grid (V2G) applications. However, such a system essentially requires a two-stage power conversion process, which significantly increases the power losses. Furthermore, the poor power factor associated with DAB converters further reduces the efficiency of such systems. This paper proposes a novel matrix converter based resonant DAB converter that requires only a single-stage power conversion process to facilitate isolated bi-directional power transfer between EVs and the grid. The proposed converter comprises a matrix converter based front end linked with an EV side full-bridge converter through a high frequency isolation transformer and a tuned LCL network. A mathematical model, which predicts the behavior of the proposed system, is presented to show that both the magnitude and direction of the power flow can be controlled through either relative phase angle or magnitude modulation of voltages produced by converters. Viability of the proposed concept is verified through simulations. The proposed matrix converter based DAB, with a single power conversion stage, is low in cost, and suites charging and discharging in single or multiple EVs or V2G applications.
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