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Modified predictive control for both normal and LVRT operations of a Quasi-Z-Source Matrix Converter based WECS

机译:基于WECS的准Z源矩阵转换器的正常和LVRT操作的改进预测控制

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摘要

A new Wind Energy Conversion System (WECS), a Permanent-Magnet Synchronous Generator (PMSG) fed by a Quasi-Z-Source Matrix Converter (qZSMC), is proposed. At the same time, the paper proposes a Modified Predictive Control (MPC) for both normal and Low Voltage Ride-Through (LVRT) operations of the proposed WECS. First, the qZSMC comprised of a Three-Phase Quasi-Z-Source Network (TPQZSN) and a Matrix Converter (MC) is analyzed in both time and frequency domains. The TPQZSN is modeled using state-space averaging method and its transfer functions are derived. The transfer functions are then analyzed using Bode plot, and eventually a guide to select the proper passive components of the qZSMC is rendered. A MPC is proposed to control grid-side quantities while the generator speed is controlled by shoot-through adjustment. Unlike the Traditional Predictive Control (TPC), the proposed MPC can be applied to z-source converters, while considerably reducing output current ripples. The proposed control system is further adapted to enhance LVRT capability of the proposed WECS. The performance of the proposed WECS is evaluated under both normal and abnormal working conditions, comparing it with the Traditional MC-based PMSG-WECS (TMC-WECS).
机译:提出了一种新的风能转换系统(WECS),即由准Z源矩阵转换器(qZSMC)供电的永磁同步发电机(PMSG)。同时,本文针对提出的WECS的正常和低电压穿越(LVRT)操作提出了一种改进的预测控制(MPC)。首先,在时域和频域中分析了由三相准Z源网络(TPQZSN)和矩阵转换器(MC)组成的qZSMC。 TPQZSN使用状态空间平均方法建模,并推导其传递函数。然后使用伯德图分析传递函数,最终给出了选择qZSMC适当无源组件的指南。提出了一种MPC来控制电网侧电量,同时通过直通调节来控制发电机速度。与传统的预测控制(TPC)不同,拟议的MPC可以应用于z源转换器,同时大大降低输出电流纹波。所提出的控制系统进一步适于增强所提出的WECS的LVRT能力。可以在正常和异常工作条件下评估建议的WECS的性能,并将其与基于传统MC的PMSG-WECS(TMC-WECS)进行比较。

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