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An Arm Isolation and Reconfiguration Fault Tolerant Control Method Based on Data-driven Methodology for Cascaded Seven-level Inverter

机译:级联七电平逆变器基于数据驱动方法的手臂隔离与重构容错控制方法

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摘要

Inverts, especially multi-level inverters are widely used in many fields, such as industrial production, transportation, aviation and so on. So great significance should be attached to the diagnosis and fault tolerance of inverters to keep the stability of systems. Data-driven approaches make full use of the process data to monitor the systems, so the voltage signals are collected firstly and then preprocessed and processed by specific strategy, fault labels will be produced hereafter. When the fault labels from data-driven fault detection and diagnosis system are generated, relevant fault tolerant control method will be activated in fault tolerant control system. Some measurements are necessary to achieve the higher utilization ratio of healthy IGBTs and sinusoidal output voltage. Based on above consideration, a group isolation and reconfiguration fault tolerant control method based on data-driven methodology for cascaded seven-level inverter is proposed here to reconfigure the SPWM, in which every H-bridge is divided into two groups. The simulation of cascaded seven-level inverter is built and the result indicates that the utilization of healthy IGBTs is improved.
机译:逆变器,特别是多电平逆变器,广泛应用于工业生产,交通运输,航空等领域。因此,对变频器的诊断和容错具有重要意义,以保持系统的稳定性。数据驱动的方法充分利用过程数据来监视系统,因此首先收集电压信号,然后通过特定的策略对其进行预处理和处理,之后将产生故障标签。当从数据驱动的故障检测和诊断系统生成故障标签时,将在容错控制系统中激活相关的容错控制方法。为了实现更高的健康IGBT利用率和正弦输出电压,必须进行一些测量。基于上述考虑,本文提出了一种基于数据驱动方法的级联七电平逆变器的组隔离和重配置容错控制方法,用于重配置SPWM,其中每个H桥都分为两组。建立了级联七电平逆变器的仿真结果,结果表明改进了健康IGBT的利用率。

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