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Control of an Asymmetric Alternate Arm Converter for HVDC

机译:用于HVDC的非对称交替臂转换器的控制

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摘要

The Modular Multilevel Converter (MMC) has become the choice topology for integration of renewable energy power plants into the grid, through submarine HVDC cables and HVDC lines. Nevertheless, the MMC requires significant large DC storage capacitors to mitigate for the large power pulsations that result from the single-phase like AC to DC conversion process that takes place in the arms. This work addresses a converter topology which uses modular multilevel arms only on the lower side of the MMC converter whereas the upper side uses only standard ON-OFF valves. This corresponds to a limit case of the Alternate Arm Converter (AAC) with no module on the upper side and no director switch on the lower side, i.e. an Asymmetrical ACC. Like the AAC, the Asymmetric AAC offers a significant reduction in DC energy storage requirements. In addition, the Asymmetric AAC offers a less restricted operation than the AAC, in terms of operating over a wide range of AC to DC voltage ratio, and the possibility of achieving both distortion-free AC current and ripple-free DC current. The principle of operation of the Asymmetric AAC is explained in detail and a suitable control strategy to demonstrate its operation is developed. Proposals are verified through simulation studies and experiments conducted on a low power prototype. Results confirm good operation of the proposed converter and control scheme.
机译:模块化多电平转换器(MMC)已成为将可再生能源电厂集成到网格中的选择拓扑,通过潜艇HVDC电缆和HVDC线路。然而,MMC需要显着的大型直流存储电容器,以减轻由在臂中发生的单相的单相的大功率脉动。这项工作解决了转换器拓扑结构,该转换器拓扑仅在MMC转换器的下侧使用模块化多电臂臂,而上部仅使用标准的开关阀。这对应于备用臂转换器(AAC)的限位情况,上侧没有模块,并且在下侧没有导向器开关,即不对称的ACC。与AAC一样,非对称AAC在直流能储存要求中显着降低。另外,非对称AAC提供比AAC更少的受限制操作,就在宽范围的AC到直流电压比方面,以及实现无失真AC电流和无纹波直流电流的可能性。详细说明了不对称AAC的操作原理,并开发了展示其操作的合适的控制策略。通过在低功率原型进行的模拟研究和实验验证提案。结果确认了所提出的转换器和控制方案的良好操作。

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