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Redundancy and Derating Strategies for Modular Multilevel Converter for an Electric Drive

机译:电动驱动器模块化多电平转换器的冗余和降低策略

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摘要

Reliability is an important issue in medium-voltage electrical drives. The modular multilevel converter (MMC) is an inherently fault-tolerant topology and an interesting solution when quadratic loads are used. Redundancy strategies can be used to extend system failure capability. The strategies presented in the literature affect the dynamic performance and the power losses of the MMC. In addition, for isolated and inaccessible areas, such as ore slurry pumps, which are widely used in mining industries, the maintenance time and cost are high. This paper compares four redundancy strategies applied in a MMC for an electric drive and presents a derating strategy to maintain the system operating after a greater number of failures. The results showed that hot redundancy schemes have less impact on the dynamic performance of the system than the strategy that operates with the nominal submodule number. Besides, hot redundancy presents up to 14.72% more power losses. For quadratic loads, such as the ore slurry pump, it was concluded that, for 14% of failures, the speed reference should be reduced to at least 28% in order to keep the system operating.
机译:可靠性是中压电驱动器中的一个重要问题。模块化多电平转换器(MMC)是当使用二次负载时固有的容错拓扑和一个有趣的解决方案。冗余策略可用于扩展系统故障功能。文献中提出的策略影响了MMC的动态性能和功率损耗。此外,对于被广泛用于采矿行业的矿石浆料泵等隔离和难以进入的区域,维护时间和成本高。本文比较了在MMC中应用于电动驱动的四种冗余策略,并呈现了在更大量故障后保持系统运行的降额策略。结果表明,热冗余方案对系统的动态性能影响较小,而不是用标称子模块数运行的策略。此外,热冗余呈现出高达14.72%的功率损耗。对于诸如矿石浆料泵的二次载荷,得出结论,对于14%的故障,应将速度参考降至至少28%,以保持系统运行。

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