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A Novel Open-Circuit Fault Detection and Localization Scheme for Cascaded H-Bridge Stage of a Three-Stage Solid-State Transformer

机译:三级固态变压器级联H桥级开关故障检测与定位方案

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摘要

A three-stage solid-state transformer (SST) is a preferred replacement for line frequency transformer as it provides ancillary services in addition to stepping-up/down of grid voltages. Each active switch in SST is a potential source of failure, and a quick fault detection and isolation help in reducing the downtime. In this article, a novel fault detection and localization algorithm is proposed to localize the open-circuit (OC) faults (be it a single switch fault or multiple switch faults in multiple modules) in the cascaded H-bridge (CHB) stage of the SST. The proposed method is designed such that only one voltage sensor is needed to measure the grid-side voltage of the CHB for fault detection and localization. By comparing the estimated grid-side voltage of the CHB with the measured values, OC fault is detected. Once the fault is detected, the modulation scheme is switched from phase-shifted unipolar sinusoidal pulsewidth modulation (SPWM) to phase-shifted bipolar SPWM to localize the faults. The difference in the measured grid-side voltage of the CHB before and after each module's state change is calculated and faults are localized. The presented algorithm is substantiated using experimental results from a 1-kVA SST prototype. The main advantage of the proposed algorithm is that it requires only 2n comparisons to localize the faulty modules in a CHB with n H-bridges, which takes less than a line cycle to complete.
机译:三级固态变压器(SST)是线变频器的优选替代,除了踩踏网格电压的踩踏/下方还提供了辅助服务。 SST中的每个活动开关都是失败的潜在来源,并且快速故障检测和隔离有助于减少停机时间。在本文中,一种新颖的故障检测和定位算法来定位开路(OC)故障(无论是单个开关故障或在多个模块的多个开关故障)的在级联的H桥(CHB)阶段SST。所提出的方法设计成使得只需要一个电压传感器来测量CHB的电网侧电压以进行故障检测和定位。通过将CHB的估计电网侧电压与测量值进行比较,检测到OC故障。检测到故障后,调制方案从相移的单极正弦脉冲脉冲调制(SPWM)切换到相移双极SPWM以定位故障。计算每个模块的状态变化之前和之后的CHB的测量电网侧电压的差异,并且故障是本地化的。呈现的算法使用1-kVA SST原型的实验结果证实。所提出的算法的主要优点是,它只需要2n的比较来将CHB中的故障模块本地化为N H-Bridges,这需要少于线循环来完成。

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