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Multivariable current control of Modular Multilevel Converters with disturbance rejection and harmonics compensation

机译:具有干扰抑制和谐波补偿功能的模块化多电平转换器的多变量电流控制

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Voltage Source Converter (VSC) technology is very common in high-voltage direct current (HVDC) transmission systems. Compared to conventional VSC technology Modular Multilevel Converters (MMCs) offer advantages such as higher voltage levels, modular construction, longer maintenance intervals and improved reliability. For power transmission, stability, robustness of the control and especially the behavior during grid failures are important economic issues. Furthermore, compensation of harmonics can be an additional feature to improve the voltage quality of the connected grid. Regarding the innovative MMC topology, special control features are needed due to the higher number of control variables. This paper presents a multivariable control approach to realize an optimal current control of the positive, negative and zero phase-sequence converter currents without steady-state error and the compensation of higher harmonics using an extended estimator.
机译:电压源转换器(VSC)技术在高压直流(HVDC)传输系统中非常常见。与传统的VSC技术模块化多级转换器(MMCS)相比提供了更高电压电平,模块化结构,更长的维护间隔和提高可靠性等优点。对于电力传输,稳定性,控制的稳健性,特别是网格失败期间的行为是重要的经济问题。此外,谐波的补偿可以是提高连接网格的电压质量的附加功能。关于创新的MMC拓扑,由于控制变量数量越多,需要特殊控制特征。本文介绍了一种多变量控制方法,实现了无稳态误差的正,负和零相位转换器电流的最佳电流控制,以及使用扩展估算器的更高谐波的补偿。

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