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Linear and Nonlinear Control Techniques for a Three-Phase Three-Level NPC Boost Rectifier

机译:三相三电平NPC升压整流器的线性和非线性控制技术

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This paper deals with three control techniques for a three-phase three-level neutral-point-clamped (NPC) boost rectifier to study their relative performance. Linear, nonlinear, and nonlinear model reference adaptive control (MRAC) methods are developed to control power factor (PF) and regulate output and neutral point voltages. These controllers are designed in Simulink and implemented in real time using the DS1104 DSP of dSPACE for validation on a 1.2-kW prototype of an NPC boost rectifier operating at 1.92 kHz. The performance of boost converter with three control methods has been investigated respectively in steady state in terms of line-current harmonic distortion, efficiency, and PF and during transients such as load steps, utility disturbances, reactive power control, and dc-bus voltage tracking behavior. The linear PI controllers are characterized by reduced complexity but poor performance, whereas the nonlinear control technique has improved the converter performance significantly, while nonlinear MRAC exhibits much better performance in a wide operating range
机译:本文研究了三相三电平中性点钳位(NPC)升压整流器的三种控制技术,以研究其相对性能。开发了线性,非线性和非线性模型参考自适应控制(MRAC)方法来控制功率因数(PF)并调节输出和中性点电压。这些控制器是在Simulink中设计的,并使用dSPACE的DS1104 DSP实时实施,可在工作于1.92 kHz的NPC升压整流器的1.2 kW原型上进行验证。分别在稳态下针对线电流谐波失真,效率和PF以及在瞬态期间(例如负载阶跃,公用设施干扰,无功功率控制和直流母线电压跟踪)研究了三种控制方法的升压转换器的性能行为。线性PI控制器的特点是降低了复杂性但性能较差,而非线性控制技术则显着改善了转换器的性能,而非线性MRAC在较宽的工作范围内表现出更好的性能

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