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Open Circuit Switch Fault Detection in Flying Capacitor and Cascaded H-Bridge Multilevel Converters

机译:飞行电容器中的开路开关故障检测和级联H-Bridge多级转换器

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摘要

This article proposes a simple and fast active power device open circuit fault detection and localization technique. The proposed technique applies to the family of flying capacitor multilevel converters (FCMCs), including dc/dc FCMCs, single or multi-phase H-bridge FCMCs, and cascaded H-bridge multilevel converters. The localization technique needs to sense the voltage and direction of current at the output terminals of converters to detect and localize the fault. A circuit with multiple window detectors is utilized to track the output voltage level and current direction with high bandwidth. The algorithm compares the measured and expected terminal voltage, considering the commanded switch states and the terminal current direction. Once potential fault locations are identified, healthy switches are filtered out from the set of potential faulty switches over successive switching transitions. The proposed technique is experimentally validated on a single phase H-bridge FCMC. The switch state commands and pulsewidth modulation (PWM) is handled by a DSP while the fault detection and localization algorithm is implemented on a separate field programmable gate array (FPGA). The asynchronous operation of the DSP and FPGA is discussed.
机译:本文提出了一种简单快捷的有源电源装置开路故障检测和定位技术。所提出的技术适用于飞行电容器多级转换器(FCMC)的系列,包括DC / DC FCMCS,单相H桥FCMC和级联H桥多级转换器。本地化技术需要感测转换器的输出端子处的电流的电压和方向,以检测和定位故障。具有多个窗口检测器的电路用于跟踪高带宽的输出电压电平和电流方向。算法比较测量的和预期的终端电压,考虑指定的开关状态和端子电流方向。一旦识别出潜在故障位置,通过连续的切换转换,从一组电位故障开关滤出了健康开关。所提出的技术在单相H桥FCMC上进行实验验证。开关状态命令和脉冲宽度调制(PWM)由DSP处理,而故障检测和定位算法在单独的现场可编程门阵列(FPGA)上实现。讨论了DSP和FPGA的异步操作。

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