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Fault-tolerant design of a classical voltage-source inverter using z-source and standby redundancy

机译:使用Z源和备用冗余的经典电压源逆变器容错设计

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This paper proposes modifications of the classical two-level three-phase voltage-source inverter topology structure with the aim of increasing its reliability to safety-critical applications. This solution intends to achieve fast changing and “soft” commutation between main and redundant branches through the combination of mechanical commutators and power devices. Also, important modifications in the power supply stage will allow to withstand severe short-circuit conditions. With those modifications, the energy processing capability can be maintained for most common failure modes. Several aspects of failure modes, detection and isolation processes within voltage-source inverters are also discussed regarding the requirements of safety related applications. Experimental results from a prototype are included to confirm the validity of the proposed solution.
机译:本文提出了经典的两级三相电压源逆变器拓扑结构的修改,目的是提高其对安全关键应用的可靠性。通过机械换向器和功率器件的组合,该解决方案旨在实现主和冗余分支之间的快速变化和“软”换向。此外,电源级中的重要修改将允许承受严重的短路条件。利用这些修改,可以为大多数常见的故障模式保持能量处理能力。还讨论了关于安全相关应用的要求的电压源逆变器内的故障模式的几个方面,检测和隔离过程。包括原型的实验结果以确认所提出的解决方案的有效性。

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