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Average-Value Modeling of Diode Rectifier Systems Under Asymmetrical Operation and Internal Faults

机译:不对称工作和内部故障下的二极管整流器系统的均值建模

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摘要

Line-commutated rectifiers (LCRs) are extensively utilized in exciters of large electrical machines, ac–dc power systems of ships, vehicles, aircraft, and many other industrial applications. Efficient and accurate computer simulations are necessary to analyze various aspects of such systems under both normal and unbalanced/faulty operating conditions. The so-called parametric average-value modeling (PAVM) technique has been recently developed and shown to provide accurate and computationally efficient models of power-electronic converters for system-level simulations. In this paper, the PAVM methodology is extended to LCRs with internal faults. The new formulation considers the asymmetrical operation of rectifiers by including the ac-side characteristic (i.e., 5th, 7th, etc.) and non-characteristic (i.e., 2nd, 3rd, 4th, etc.) harmonics in both positive and negative sequences as well as dc components that may be present on ac variables. The proposed PAVM is verified by experimental measurements and detailed model and is demonstrated to have excellent accuracy under various operating modes and fault configurations.
机译:线路换向整流器(LCR)广泛用于大型电机,船舶,车辆,飞机的AC-DC电源系统的励磁机以及许多其他工业应用中。为了在正常和不平衡/故障操作条件下分析此类系统的各个方面,必须进行有效而准确的计算机仿真。最近开发出了所谓的参数均值建模(PAVM)技术,该技术可为系统级仿真提供功率电子转换器的准确且计算效率高的模型。在本文中,PAVM方法被扩展到具有内部故障的LCR。新公式通过包括交流侧特性(即5 n n,7 n n等)和非特征(即2 n nd n,3 n rd n,4 n n等)谐波在正序和负序中以及在交流变量中可能存在的直流分量。通过实验测量和详细模型验证了所提出的PAVM,并证明了其在各种操作模式和故障配置下均具有出色的准确性。

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