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Modified Quasi-Z-Source Inverter with Model Predictive Control for Constant Common-Mode Voltage

机译:具有恒定恒定共模电压的模型预测控制的改进型准Z源逆变器

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摘要

The common-mode voltage (CMV) of transformerless inverters in photovoltaic system should be properly addressed. The conventional CMV reduction methods for voltage source inverters should be modified when applied to the quasi-Z-source inverters with shoot-through states. The shoot-through states in a quasi-Z-source inverter may lead to high-frequency harmonics in the CMV, thus inducing severe leakage currents. Hence, this paper analyzes the CMV in the quasi-Z-source inverter. More importantly, a modified quasi-Z-source inverter that can achieve a constant CMV through model predictive control is discussed. Furthermore, redundant switching vectors are added to reduce the computation burden when the model predictive control is adopted. Simulations are presented to validate the CMV reduction methods.
机译:光伏系统中无变压器逆变器的共模电压(CMV)应正确解决。当将电压源逆变器的常规CMV降低方法应用于具有直通状态的准Z源逆变器时,应进行修改。准Z源逆变器中的直通状态可能导致CMV中的高频谐波,从而引起严重的泄漏电流。因此,本文分析了准Z源逆变器中的CMV。更重要的是,讨论了一种可通过模型预测控制实现恒定CMV的改进型准Z源逆变器。此外,当采用模型预测控制时,添加冗余切换矢量以减少计算负担。进行仿真以验证CMV减少方法。

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