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A Novel Modulation Scheme to Improve the Injected Power Quality for Modular Multilevel Medium Voltage Grid-Tied Power Converters

机译:一种新型调制方案,提高模块化多级介质电压网电力转换器的注入功率质量

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Advancement in solid-state semiconductor technologies has led to the medium-voltage power converters, by obviating the need of step-up transformers in renewable power generation systems. To improve the injected power quality of medium-voltage grid-tied power converters i.e., the harmonic components (e.g. total harmonic distortions) of the output current is minimized by various types of pulse width modulation (PWM) switching schemes. In this paper, a composite harmonic injected pulse width modulation (CHIPWM) switching scheme is proposed based on the modular multilevel cascaded (MMC) converter. The main feature of this modulation scheme is that it can improve the frequency spectra while reducing the switching power losses. In order to validate the performance of the proposed switching scheme, a 55-level, 3-phase MMC inverter is made in the MATLAB/Simulink environment for an 11kV renewable energy based power system. The performance of the proposed switching scheme is compared with different existing switching schemes in terms of THDs and switching power loss. From the simulation and numerical results, it is obvious that the 55-level MMC inverter with the proposed modulation scheme improves the injected power quality and reduces the inverter power losses as compared to the existing modulation schemes, which are very essential for the integration of renewable energy sources (RESs) to the existing utility grid.
机译:通过避免可再生发电系统中的升压变压器的需求,固态半导体技术的进步导致了中压力转换器。为了改善中电网连接功率转换器的注入功率质量,通过各种类型的脉冲宽度调制(PWM)开关方案,输出电流的谐波分量(例如总谐波变形)最小化。本文提出了一种基于模块化多级级联(MMC)转换器的复合谐波注入脉冲宽度调制(ChipWM)切换方案。该调制方案的主要特点是它可以改善频谱,同时降低开关功率损耗。为了验证所提出的切换方案的性能,在MATLAB / SIMULINK环境中进行55级,3阶段MMC逆变器,用于11kV可再生能量的电力系统。在THD和切换功率损耗方面将所提出的切换方案的性能与不同现有的开关方案进行比较。从模拟和数值结果来看,显而易见的是,与所提出的调制方案的55级MMC逆变器改善了注入的电能质量,并与现有调制方案相比减少了逆变器功率损耗,这对于可再生的集成至关重要能源(RESS)到现有的实用电网。

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