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Bifurcation analysis of a DC–DC bidirectional power converter operating with constant power loads

机译:恒功率负载下DC-DC双向功率变换器的分岔分析

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摘要

Direct current (DC) microgrids (MGs) are an emergent option to satisfy new demands for power quality and integration of renewable resources in electrical distribution systems. This work addresses the large-signal stability analysis of a DC–DC bidirectional converter (DBC) connected to a storage device in an islanding MG. This converter is responsible for controlling the balance of power (load demand and generation) under constant power loads (CPLs). In order to control the DC bus voltage through a DBC, we propose a robust sliding mode control (SMC) based on a washout filter. Dynamical systems techniques are exploited to assess the quality of this switching control strategy. In this sense, a bifurcation analysis is performed to study the nonlinear stability of a reduced model of this system. The appearance of different bifurcations when load parameters and control gains are changed is studied in detail. In the specific case of Teixeira Singularity (TS) bifurcation, some experimental results are provided, confirming the mathematical predictions. Both a deeper insight in the dynamic behavior of the controlled system and valuable design criteria are obtained.
机译:直流(DC)微电网(MG)是满足电力质量和配电系统中可再生资源整合新要求的新兴选择。这项工作解决了连接到孤岛MG中的存储设备的DC-DC双向转换器(DBC)的大信号稳定性分析。该转换器负责控制恒定功率负载(CPL)下的功率平衡(负载需求和发电)。为了通过DBC控制DC总线电压,我们提出了一种基于冲洗滤波器的鲁棒滑模控制(SMC)。利用动态系统技术来评估这种切换控制策略的质量。从这个意义上讲,进行了分叉分析以研究该系统的简化模型的非线性稳定性。详细研究了当改变负载参数和控制增益时不同分叉的出现。在特谢拉奇异点(TS)分叉的特定情况下,提供了一些实验结果,证实了数学预测。获得了对受控系统动态行为的更深入的了解以及有价值的设计标准。

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