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Modified SVPWM Scheme for Fault-Tolerant Control of AC–DC PWM Converter

机译:用于AC-DC PWM转换器的容错控制改装SVPWM方案

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This article proposes a new SVPWM-based fault-tolerant control (FTC) approach for a three-phase two-level ac-dc converter. Voltage vectors deviation and affected voltage space sectors under faulty conditions are first analyzed. Then, a 12-sector division-based FTC approach is proposed. With the division scheme, sectors affected by faulty switches can be effectively separated from unaffected ones, and SVPWM strategies are implemented to compensate for distorted reference voltage vector in each sector. The scheme to determine the compensation ratio of vectors is also provided to maximize fault-tolerant performance. Six types of defined failure modes, including single and multiple switch faults, are analyzed and tested in experiments. Evaluations on results of current averaged total harmonic distortions, fluctuation of generator speed, torque oscillations, and stability of dc-link voltage verify its capability to achieve maximum system recovery. The approach proposed is an SVPWM-based method for ac-dc converters that require no additional hardware equipment and provide an effective and low-cost fault-tolerant solution.
机译:本文为三相二级AC-DC转换器提出了一种新的SVPWM基容错控制(FTC)方法。首先分析了电压矢量偏差和受影响的电压空间扇区。然后,提出了一种基于12个基于部门的分割的FTC方法。利用划分方案,受故障交换机影响的扇区可以从未受到的影响有效地分离,并且实施了SVPWM策略以补偿每个扇区中的扭曲参考电压矢量。还提供了确定载体补偿比的方案以使容错性能最大化。在实验中分析和测试了六种类型的定义故障模式,包括单一和多个开关故障。对电流平均总谐波畸变的结果,发电机速度,扭矩振荡的波动,直流链路电压的稳定性的评估验证了其实现最大系统恢复的能力。提出的方法是基于SVPWM的AC-DC转换器的方法,其不需要额外的硬件设备,并提供有效和低成本的容错解决方案。

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