Modelling and nonlinear control of Dual-Active Bridge converters for DC microgrids

G. Paraíso, S. Pinto, J. F. Silva
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引用次数: 6

Abstract

This paper presents a novel control approach for a Dual Active Bridge (DAB) converter interconnecting a telecom isolated DC microgrid (IDCM) to a 380 V DC grid. A DAB converter is the ideal solution for this interconnection because it provides galvanic isolation, allows reversible power flow, and can operate with inherent soft switching, leading to high efficiency performance. The novel controller is based on Lyapunov's stability theory and adds integral terms to stabilize the IDCM nominal voltage. The new controller ensures the IDCM fast and stable transient response upon the connection of constant power loads (CPLs). In order to highlight the advantages of the new controller, comparisons using MATLAB/Simulink simulations are made with cascaded voltage/current linear controllers, their limitations being shown. Results point out that the novel controller is able to deal with the negative incremental resistance of CPLs, without the need of bulky stabilizing DC capacitors.
直流微电网双有源桥式变换器的建模与非线性控制
本文提出了一种将电信隔离直流微电网(IDCM)与380 V直流电网相连接的双有源桥式(DAB)变换器的新型控制方法。DAB转换器是这种互连的理想解决方案,因为它提供电流隔离,允许可逆潮流,并且可以使用固有的软开关,从而实现高效率。该控制器基于李雅普诺夫稳定性理论,并加入积分项来稳定IDCM标称电压。新的控制器确保IDCM在恒功率负载(cpl)连接时快速稳定的瞬态响应。为了突出新控制器的优点,使用MATLAB/Simulink仿真与级联电压/电流线性控制器进行了比较,并指出了它们的局限性。结果表明,该控制器能够有效地处理cpl的负增量电阻,而不需要笨重的稳定直流电容器。
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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