一种用于提高线性调制范围和容错能力的单直流源多电平变频器

IF 7.2 1区 工程技术 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Industrial Electronics Pub Date : 2025-02-05 DOI:10.1109/TIE.2025.3532615
Vaidika T. Pardhi;Rohith Pottekkat;Vivek R. S.;K. Gopakumar;Loganathan Umanand;Dariusz Zielinski
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引用次数: 0

摘要

提出的七电平混合多电平逆变器集成了一个三电平飞行电容器和一个级联h桥逆变器。主要目标是开发一种使用正弦控制在线性和扩展线性调制范围内有效运行的七电平拓扑。本设计在保留多电平结构的同时,利用正弦脉宽调制(PWM)扩大了线性调制范围。通过使用正弦PWM对过调制区域进行线性化,系统在磁链减弱时提高了性能,而传统的六步逆变器会产生低阶谐波。在这种拓扑结构中,即使在扩展的线性调制范围内,最大相位峰值基波仍然是直流链路电压的0.637倍。逆变器是容错的,确保电机驱动继续平稳运行,不中断,如果一个h桥开关发生故障,与飞电容逆变器仍然提供正弦电流。提出的设计使用单个直流电源,减少开关数量和低额定电压半导体开关,使其比其他七电平拓扑更高效。它特别适合电动汽车和一般交流电机驱动。电容器通过空间矢量冗余在所有动态条件下保持平衡,在输出相电压中保持适当的电压水平。该方法的有效性已在稳态和瞬态实验中得到验证。
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A Single DC Source Multilevel Inverter for Drives With Increasing Linear Modulation Range and Fault Tolerant Capability
The proposed seven-level hybrid multilevel inverter integrates a three-level flying capacitor with a cascaded H-bridge inverter. The main goal is to develop a seven-level topology that operates efficiently in both linear and extended linear modulation ranges using sinusoidal control. This design expands the linear modulation range with sinusoidal pulse width modulation (PWM) while preserving the multilevel structure. By linearizing the over-modulation region with sinusoidal PWM, the system improves performance during flux weakening, where conventional six-step inverters generate lower-order harmonics. In this topology, the maximum phase peak fundamental remains 0.637 times the dc-link voltage, even in the extended linear modulation range. The inverter is fault-tolerant, ensuring the motor drive continues to operate smoothly and without interruption if an H-bridge switch fails, with the flying capacitor inverter still providing sinusoidal currents. The proposed design uses a single dc source, a reduced switch count, and low-rated voltage semiconductor switches, making it more efficient than other seven-level topologies. It is particularly well-suited for electric vehicles and general ac motor drives. Capacitors remain balanced under all dynamic conditions through space vector redundancies, maintaining proper voltage levels in the output phase voltages. The effectiveness of the proposed method has been experimentally validated in both steady and transient states.
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来源期刊
IEEE Transactions on Industrial Electronics
IEEE Transactions on Industrial Electronics 工程技术-工程:电子与电气
CiteScore
16.80
自引率
9.10%
发文量
1396
审稿时长
6.3 months
期刊介绍: Journal Name: IEEE Transactions on Industrial Electronics Publication Frequency: Monthly Scope: The scope of IEEE Transactions on Industrial Electronics encompasses the following areas: Applications of electronics, controls, and communications in industrial and manufacturing systems and processes. Power electronics and drive control techniques. System control and signal processing. Fault detection and diagnosis. Power systems. Instrumentation, measurement, and testing. Modeling and simulation. Motion control. Robotics. Sensors and actuators. Implementation of neural networks, fuzzy logic, and artificial intelligence in industrial systems. Factory automation. Communication and computer networks.
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