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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >A Neutral-Point Voltage Controller With Hybrid Parameters for NPC Three-Level Grid-Connected Inverters Under Unbalanced Grid Conditions
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A Neutral-Point Voltage Controller With Hybrid Parameters for NPC Three-Level Grid-Connected Inverters Under Unbalanced Grid Conditions

机译:在不平衡网格条件下的NPC三级网格连接逆变器具有混合参数的中性点电压控制器

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摘要

To solve the neutral-point (NP) voltage unbalancing problem, a conventional proportional integral (PI) controller is used for NP clamped (NPC) three-level grid-connected inverters under balanced grid conditions. However, when the three-phase grid voltage is unbalanced, the NP voltage unbalancing problem becomes more serious and complex, which cannot be solved by a conventional PI controller with the variation of the unbalanced grid. Based on the transfer function of the injected zero-sequence component to the NP voltage, the NP voltage module has different characteristic performances in frequency-domain, which is a leading or lagging system with the variation of the unbalanced grid and output power factor. Besides, being appropriate for this NP voltage module in two cases, a PI controller with hybrid parameters (HP-PI controller) is proposed to balance the NP voltage in this paper. According to varied unbalanced grid and output power factor, hybrid parameters are designed for this controller in two cases by the Lagrange multiplier method appropriately. Furthermore, frequency-domain characteristics and the balancing time of the proposed HP-PI control method are analyzed. Experimental and simulation results show that, compared with conventional PI and quasi-proportional resonant (PR) control methods, the proposed HP-PI controller has a strong ability to balance NP voltage with a good dynamic and steady-state performance under varied unbalanced grid conditions, which also improves the quality of grid currents.
机译:为了解决中性点(NP)电压不平衡问题,在平衡网格条件下,传统的比例积分(PI)控制器用于NP钳位(NPC)三级网格连接逆变器。然而,当三相电压电压不平衡时,NP电压不平衡问题变得更严重,并且复杂,传统PI控制器不能通过不平衡网格的变化来解决。基于将注入的零序分量的传递函数转移到NP电压,NP电压模块在频域中具有不同的特性性能,这是具有不平衡电网和输出功率因数的变化的前导或滞后系统。此外,在两种情况下适用于该NP电压模块,提出了具有混合参数(HP-PI控制器)的PI控制器以平衡本文的NP电压。根据不同的不平衡电网和输出功率因数,通过LAGRANGE乘法器方法适当地为该控制器设计了混合参数。此外,分析了所提出的HP-PI控制方法的频域特性和平衡时间。实验和仿真结果表明,与传统的PI和准成型谐振(PR)控制方法相比,所提出的HP-PI控制器具有强大的平衡NP电压,在不同的不平衡网格条件下具有良好的动态和稳态性能,这也提高了网格电流的质量。

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