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Distributed Measuring System for Predictive Diagnosis of Uninterruptible Power Supplies in Safety-Critical Applications

机译:安全关键应用中的不间断电源预测诊断的分布式测量系统

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This work proposes a scalable architecture of an Uninterruptible Power Supply (UPS) system, with predictive diagnosis capabilities, for safety critical applications. A Failure Mode and Effect Analysis (FMEA) has identified the faults occurring in the energy storage unit, based on Valve Regulated Lead-Acid batteries, and in the 3-phase high power transformers, used in switching converters and for power isolation, as the main bottlenecks for power system reliability. To address these issues, a distributed network of measuring nodes is proposed, where vibration-based mechanical stress diagnosis is implemented together with electrical (voltage, current, impedance) and thermal degradation analysis. Power system degradation is tracked through multi-channel measuring nodes with integrated digital signal processing in the transformed frequency domain, from 0.1 Hz to 1 kHz. Experimental measurements on real power systems for safety-critical applications validate the diagnostic unit.
机译:这项工作为安全关键型应用提出了具有可预测的诊断功能的不间断电源(UPS)系统的可扩展体系结构。故障模式和影响分析(FMEA)已基于阀门调节的铅酸蓄电池确定了在储能单元中发生的故障,并在开关转换器和用于电源隔离中使用的三相大功率变压器中确定了故障。电力系统可靠性的主要瓶颈。为了解决这些问题,提出了一种分布式的测量节点网络,其中基于振动的机械应力诊断与电气(电压,电流,阻抗)和热降解分析一起实施。通过多通道测量节点跟踪电源系统的性能下降情况,该节点在0.1 Hz至1 kHz的变换频域中具有集成的数字信号处理功能。用于安全关键应用的实际电源系统上的实验测量值可验证诊断单元。

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