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Optimum tracking of nonlinear-model predictive control for Boost based PFC rectifier

机译:Boost型PFC整流器非线性模型预测控制的最优跟踪。

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In this paper a tracking problem for a single-phase PFC rectifier exploiting the Boost converter as nonlinear system using model predictive control (MPC) is discussed. After approximation of the tracking error in the receding horizon by its Taylor-series expansion to any specified order, an analytic solution to the MPC is developed and a closed-form nonlinear predictive controller is presented. The main advantage of the proposed digital control PFC method is that unity power factor can be achieved over wide input voltage and load current range. Boost PFC topology with NMPC shows better and more accurate performance in both steady state and transient state than linear control methods. Simulation results demonstrate the effectiveness of the proposed NMPC.
机译:在本文中,讨论了利用模型预测控制(MPC)将Boost转换器用作非线性系统的单相PFC整流器的跟踪问题。通过将其泰勒级数展开到任意指定的阶数来逼近后退层中的跟踪误差之后,开发了MPC的解析解,并提出了一种闭式非线性预测控制器。提出的数字控制PFC方法的主要优点是,可以在较宽的输入电压和负载电流范围内实现单位功率因数。与线性控制方法相比,带有NMPC的Boost PFC拓扑在稳态和瞬态下均显示出更好,更准确的性能。仿真结果证明了所提出的NMPC的有效性。

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