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Capacitor voltage balancing and circulating current suppression of modular multi-level converters under unbalanced load condition

机译:不平衡负载条件下模块化多电平转换器的电容器电压平衡和循环电流抑制

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Modular multilevel converters can provide higher reliability, improved performance during fault condition, increased efficiency and more flexibility than two level and conventional multilevel converters. By utilizing these structures, higher voltage amplitude can be achieved with lower rated power devices. In this paper, a novel modified capacitor voltage balancing algorithm for regulation of each arm's capacitors is proposed and each capacitor is balanced about its nominal value and in each period, the summation of upper and lower arm capacitor voltages are equalized. So, the decreased deviation between upper and lower half-bridge capacitors can decrease the circulating current. Also, the circulating current among phases (a, b, and c) can be removed in unbalanced load and fault condition. During unbalanced load conditions (such as single phase fault, unbalanced voltage and nonlinear loads), the generated circulating current in each phase can distort the converter performance. The frequency of circulating current is twice the fundamental network frequency that can increase the THD and decrease the converter efficiency. In this paper, the resonant controller with a novel balancing algorithm are employed to improve the converter performance. Finally, simulation in MATLAB/ SIMULINK environment is used to validate the theories.
机译:与两级和常规多级转换器相比,模块化多级转换器可提供更高的可靠性,故障状况下的性能提高,效率提高以及更大的灵活性。通过利用这些结构,可以用较低额定功率的设备获得较高的电压幅度。本文提出了一种新颖的改进的电容器电压平衡算法,用于调节每个臂的电容器,使每个电容器的标称值保持平衡,并且在每个周期内,上下臂电容器电压的总和均等。因此,减小上下半桥电容器之间的偏差可以减小循环电流。同样,在不平衡负载和故障条件下,可以消除相(a,b和c)之间的循环电流。在不平衡负载条件下(例如单相故障,不平衡电压和非线性负载),每相中产生的循环电流会扭曲转换器的性能。循环电流的频率是网络基本频率的两倍,可以增加THD并降低转换器效率。在本文中,采用具有新颖平衡算法的谐振控制器来改善转换器性能。最后,在MATLAB / SIMULINK环境中进行仿真以验证理论。

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