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Design of an active front-end rectifier controller with an accurate estimation for the dynamic of its deadbeat current control loop

机译:有源前端整流器控制器的设计及其无差拍电流控制环路的动态特性的准确估算

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This paper proposes a control strategy for a grid-connected single-phase Active Front-End (AFE) rectifier that deals with both of ac-side sinusoidal current quality during steady state and dc-bus voltage fluctuations under transient operation issues. This control strategy consists of two control loops. The outer one is used for the control of the dc-bus voltage and is based on a PI controller. The inner loop is used for the control of the grid current and is based on a Deadbeat Predictive (DP) controller that operates with a fixed switching frequency. In order to prevent interactions between the two control loops, the outer control loop dynamic should be at least ten times lower than that of the inner control loop dynamic. For this purpose, a theoretical approach for computing the dynamic of the deadbeat predictive current control is described. Then, the dc-bus voltage controller is designed so that the following constraints are satisfied: (a) the bandwidth of the voltage control loop must be very low with regard to that of the current control loop to prevent interaction between them; (b) the third harmonic component of the grid current resulting from the double line frequency ripples of the measured dc-bus voltage has to be mitigated complying with standards, and (c) reducing the transient fluctuations of the dc-bus voltage caused by instantaneous and high level changes of the active power consumed by the dc load. Simulation and experimental results for the control algorithm validation are also presented and discussed.
机译:本文提出了一种并网单相有源前端(AFE)整流器的控制策略,该策略可处理稳态期间的交流侧正弦电流质量和瞬态运行问题下的直流母线电压波动。该控制策略包括两个控制回路。外部的一个用于控制直流总线电压,并基于PI控制器。内部环路用于控制电网电流,并基于以固定开关频率运行的无差拍预测(DP)控制器。为了防止两个控制回路之间的相互作用,外部控制回路动态特性至少应比内部控制回路动态特性低十倍。为此,描述了一种用于计算无差拍预测电流控制的动态性的理论方法。然后,设计直流总线电压控制器,使其满足以下约束:(a)电压控制环路的带宽必须相对于电流控制环路的带宽非常低,以防止它们之间的相互作用; (b)由直流母线电压的双线频率纹波引起的电网电流的三次谐波分量必须符合标准,并且(c)减少由瞬时直流电引起的直流母线电压的瞬态波动以及直流负载消耗的有功功率的高电平变化。还介绍并讨论了控制算法验证的仿真和实验结果。

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