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Maximum constant boost approach for controlling quasi-Z-source-based interlinking converters in hybrid AC–DC microgrids

机译:用于控制交直流微电网中基于准Z源的互连转换器的最大恒定升压方法

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摘要

This study presents the mathematical modelling and control design methodology of bidirectional quasi-Z-source inverters (qZSIs) for interlinking converter application in hybrid AC-DC microgrids. The proposed control scheme provides the maximum constant boost (MCB) control capability for the qZSI in both grid-connected and islanded modes of operation even in the presence of unbalanced AC loads. The proposed approach maintains the MCB without any additional control loop for regulating the voltage of the DC-side capacitor of the qZSI. This is done by determining the shoot through duty cycle of the qZSI based on the inverter modulation index. Moreover, maintaining the MCB condition, the proposed control scheme provides a high stability margin for the qZSI network. The effectiveness of the proposed method is demonstrated through simulation studies conducted on a typical AC-DC hybrid microgrid in MATLAB/Simulink environment for both islanded and grid-connected modes of operation.
机译:这项研究提出了双向准Z源逆变器(qZSI)的数学建模和控制设计方法,该逆变器在交流AC-DC微电网中互连应用。所提出的控制方案即使在存在不平衡的交流负载的情况下,也可以在并网和孤岛运行模式下为qZSI提供最大的恒定升压(MCB)控制能力。所提出的方法保持了MCB,而无需任何其他控制回路来调节qZSI的DC侧电容器的电压。这是通过根据逆变器调制指数确定qZSI的直通占空比来完成的。此外,在维持MCB条件的情况下,所提出的控制方案为qZSI网络提供了较高的稳定性裕度。通过在MATLAB / Simulink环境中针对孤岛和并网运行模式的典型AC-DC混合微电网进行的仿真研究,证明了该方法的有效性。

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