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Robust and generic control of full-bridge modular multilevel converter high-voltage DC transmission systems

机译:全桥模块化多电平转换器高压直流输电系统的鲁棒通用控制

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摘要

This paper presents the theoretical basis of the control strategy that allows the cell capacitor voltage regulation of the full-bridge modular multilevel converter (FB-MMC) to be controlled independent of its dc link voltage. The presented control strategy permits operation with reduced dc link voltage during permanent pole-to-ground dc fault, and controlled discharge and recharge of the HVDC links during shutdown and restart following clearance of temporary pole-to-pole dc faults. Additionally, it allows voltage source converter based HVDC links that employ FB-MMC to be operated with both positive and negative dc negative dc link voltages. This feature is well suited for hybrid HVDC networks, where the voltage source converters are operated alongside the line commutating current source converters, without any compromise to the power reversal at any terminals. The usefulness of the presented control strategy is demonstrated on full-scale model of HVDC link that uses FB-MMC with 101 cells per arm, considering the cases of pole-to-ground and pole-to-pole dc faults.
机译:本文介绍了控制策略的理论基础,该策略允许对全桥模块化多电平转换器(FB-MMC)的单元电容器电压调节进行控制,而不受其直流链路电压的影响。提出的控制策略允许在永久性地对地直流故障期间以降低的直流链路电压进行操作,并在清除临时性的极间直流故障后在停机和重新启动期间对HVDC链路进行受控的放电和充电。此外,它还允许使用FB-MMC的基于电压源转换器的HVDC链接在正和负dc负dc链接电压下运行。此功能非常适合混合HVDC网络,在该混合HVDC网络中,电压源转换器与线路换向电流源转换器一起运行,而不会损害任何端子上的功率反转。考虑到极对地和极对极直流故障的情况,所提出的控制策略的有效性在使用FB-MMC每臂101个单元的HVDC链路的全尺寸模型中得到了证明。

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