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An adaptive PI control scheme to balance the neutral-point voltage in a solar PV fed grid connected neutral point clamped inverter

机译:自适应PI控制方案可平衡太阳能光伏馈电并网中性点钳位逆变器中的中性点电压

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In the context of current harmonics mitigation in inverter, neutral point clamped (NPC) inverter is the promising one because of its robustness. Owing to the advantages of NPC inverter, this paper considers a PV fed grid connected NPC inverter. However, the main concern with the NPC inverter is the unbalance in the DC link capacitor voltage due to non-idealities such as DC offset in modulating signals, dissimilarities in the DC link capacitors and asymmetric gating signals, which lead to non-zero neutral point voltage. To address this issue, this paper proposes a simple adaptive proportional integral (API) controller and operates in conjunction with the dq axes power controller for PV fed Grid connected NPC inverter, Comprehensive mathematical expressions are derived for the design of API controller and the control parameters are adjusted continuously based on maximum PV power, PV voltage and modulation index for achieving the faster dynamic response. The closed loop stability of the proposed API controller is verified under the deviation in neutral point voltage using root locus plot. The effectiveness of the API with dq axes power controller is analysed and validated through MATLAB simulations and experimentation under the various dynamic operation of the PV- grid interactive system.
机译:在减轻逆变器电流谐波的情况下,中性点钳位(NPC)逆变器因其坚固性而成为有前途的产品。由于NPC逆变器的优势,本文考虑了光伏馈电并网NPC逆变器。但是,NPC逆变器的主要问题是由于非理想因素(例如调制信号中的直流偏移,直流链路电容器的不相似性和不对称的门控信号)导致的直流链路电容器电压不平衡,导致中性点非零电压。针对这一问题,本文提出了一种简单的自适应比例积分(API)控制器,并与dq轴功率控制器配合使用,用于光伏并网NPC逆变器,推导了API控制器设计和控制参数的综合数学表达式。可以根据最大PV功率,PV电压和调制指数连续进行调整,以实现更快的动态响应。使用根轨迹图在中性点电压偏差下验证了所提出的API控制器的闭环稳定性。在光伏电网互动系统的各种动态操作下,通过MATLAB仿真和实验对带有dq轴功率控制器的API的有效性进行了分析和验证。

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