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Adaptive Backstepping Control of Three-Phase Four-Wire Shunt Active Power Filters for Energy Quality improvement

机译:三相四线并联有源电力滤波器的自适应反步控制,以提高能量质量

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摘要

The increasing use of nonlinear loads entails serious electrical energy quality problem in power grids. In this paper, the energy quality issue is dealt with by using three-phase four-leg shunt active power filters (SAPFs). A new model that describes the whole controlled system including the SAPF and associated nonlinear and unbalanced loads is developed. The model also accounts for the electrical grid line impedance. The control objective is threefold: to make up for the harmonics and the reactive currents absorbed by the loads; to cancel the neutral current; and to regulate the inverter DC capacitor voltage. Based on the new model, a nonlinear controller is designed, using the backstepping technique. Moreover, the controller is made adaptive for compensating the uncertainty on the switching loss power. The performances of the proposed adaptive controller are formally analysed using tools from the Lyapunov stability and averaging theory, and their supremacy with respect to standard control solutions is illustrated through simulation.
机译:非线性负载的使用日益增加,导致电网中出现严重的电能质量问题。在本文中,通过使用三相四臂并联有源电力滤波器(SAPF)来解决能源质量问题。开发了一个描述整个受控系统的新模型,包括SAPF以及相关的非线性和不平衡负载。该模型还考虑了电网线阻抗。控制目标是三方面的:弥补谐波和负载吸收的无功电流;消除零线电流;并调节逆变器直流电容器的电压。在新模型的基础上,采用反推技术设计了一种非线性控制器。此外,使控制器自适应以补偿开关损耗功率的不确定性。使用Lyapunov稳定性和平均理论的工具对提出的自适应控制器的性能进行了形式化分析,并通过仿真说明了它们在标准控制解决方案方面的优越性。

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