四线制三电平三相NPC电压源整流器双拉格朗日模型无源控制

M. Mehrasa, S. Lesan, Seyed Nima Hoseini Emeni, A. Sheikholeslami
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引用次数: 18

摘要

本文介绍了四线制三电平三相NPC电压源整流器(VSR)的EL建模。四线制3级三相的负载电流可表示为两种形式:涉及电容器C1电流的负载电流和涉及电容器C2电流的负载电流。从而得到了四线制三电平三相NPC电压源整流器的两种EL模型。这些模型完全符合基霍夫电路理论,当然也符合叠加定律。其中一条规则用于控制C1的电压,另一条规则用于控制C2的电压。将EL模型从abc参照系转换为dq参照系,将完全保留两个模型的能量耗散特性。在驱动电振模型的基础上,将能量整形和阻尼注入技术相结合的控制方法应用于变换器的dq框架电振模型。为了研究C1和C2的输出调节问题,将电压间接控制方法应用于无源控制器。为了调节C1和C2输出电压的内部动态,在两个控制器模型中都添加了一个由PI控制器组成的外环。为了验证所提出的控制方法的有效性,利用matlab /SIMULINK软件进行了不同的仿真。仿真结果表明,该方法具有THD极低、功率因数统一、电流环动力学解耦、中性点电位振荡小等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Passivity-based control with dual lagrangian model of four-wire three-level three-phase NPC voltage-source rectifier
This paper presents the EL modeling of the four-wire 3-level 3-phase NPC voltage source rectifier (VSR). The load current of the four-wire 3-level 3-phase could be expressed in two forms: the load current involving the current of capacitor C1, and the load current involving the current of capacitor C2. So that two EL models will be obtained for four-wire 3-level 3-phase NPC voltage source rectifier. The models are completely in accordance with kirchoffs circuit theory and superposition law of course. One of the rules is utilized to control the voltage of C1 and the other is used to control the voltage of C2. Transforming the EL model from the abc reference frame to dq reference model will completely retain the energy dissipative properties of two models. Having drived the EL models, the control method combined with the techniques of the energy shaping and damping injection applied to the dq frame EL models of the converter. To study the output regulation problem of C1 and C2, the voltage indirect control method has been applied to the passivity based controller. To regulate the internal dynamics of the output voltages of C1 and C2 an outer loop that consisting PI controller is added to both controller models. To verify the ability of the proposed control method different simulations have been carried out by MATLAM/SIMULINK software. The simulation results clarify the abilities of the new method such as: very low THD, unity power factor, decoupled current loop dynamics, low oscillation in the neutral point potential (NPP).
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