基于DPC方法的三相并网光伏系统非线性反步控制器设计

M. Pervej, T. K. Roy, F. K. Tumpa, M. Sarkar
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引用次数: 11

摘要

提出了一种基于电压源逆变器(VSI)的三相并网太阳能光伏系统的直接功率控制(DPC)新方法。采用基于功率动力学的非线性反步控制方案,而不是传统的脉冲电流动力学。因此,本文消除了电流内控制环,简化了系统建模和控制器设计,提高了暂态性能。相反,外部电压环用于从直流链路电压动态的闭环控制中产生有功功率参考。基于李雅普诺夫函数理论递归地设计了该控制器,并在控制器的每个设计阶段通过控制李雅普诺夫函数(clf)的公式来确定整个系统的总体稳定性。最后,在基于三相vsi的光伏并网系统上,对所设计的控制器在不同工况下的性能进行了测试。并与现有的控制器进行了性能比较,结果表明所设计的控制器在注入电流的总谐波失真(THD)和电能质量方面都优于现有的控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear backstepping controller design for a three-phase grid-connected photovoltaic system using DPC approach
A new direct power control (DPC) approach for a voltage source inverter (VSI) based three-phase grid-connected solar photovoltaic (PV) system is proposed in this paper. The proposed DPC is designed using the nonlinear backstepping control scheme based on the power dynamics rather than the conventional dp current dynamics. As a result, the inner current control loop is eradicated in this paper which simplifies the system modeling and controller design and enhances the transient performance. Conversely, the outer voltage loop is used to generate the active power reference from the closed loop control of the dc-link voltage dynamics. The proposed controller is designed recursively based on the Lyapunov function theory and overall stability of the whole system is confirmed with the formulation of control Lyapunov functions (CLFs) at every design stage of the controller. Finally, the performance of the designed controller is tested on a three-VSI based three-phase grid-connected PV system under different operating conditions. The performance is also compared with an existing controller and it is clear that designed controller can better performance than the existing controller in terms of the total harmonic distortion (THD) of the injected current and quality of power.
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