Mazaheri Ali, Barati Farhad, Ghavipanjeh Farideh
Department of Energy, Materials and Energy Research Centre, Karaj, Iran.
Sci Rep. 2023 Sep 8;13(1):14851. doi: 10.1038/s41598-023-41944-2.
Dead-time is the most important disturbance in a voltage-source inverter's operation. It introduces low-order harmonics at the inverter's output voltage. To compensate for the dead-time effects in three-phase grid-tied inverters, this paper proposes a Linear Quadratic Gaussian (LQG) multivariable control approach. The LQG multivariable control is known as a robust control approach while provides a high band-width for the closed-loop system. Therefore, it promises significant attenuations in the dead-time introduced harmonics. To achieve a high performance, we run the three-phase grid-tied inverter in the current-controlled mode. Based on the nominal multivariable model derived for the three-phase grid-tied inverter in a synchronous reference frame, the LQG controller is composed such that the closed-loop system exhibits robust stability while attenuates disturbances significantly. The dead-time introduced harmonics produce disturbances in the synchronous reference frame with the highest frequencies. This is the reason for considering the dead-time as the most important disturbance in an inverter's operation. For an experimental set-up manufactured for the three-phase grid-tied inverter, we developed a detailed model in MATLAB/Simulink. It is employed for the performance verifications of designed LQG controller. Extensive results are presented for different important scenarios, based on which, the excellent performance of proposed approach is proven. In fact, by employing the proposed approach, the dead-time introduced harmonics are significantly attenuated such that a Total Harmonics Distortions (THD) of about 5% is achieved for the injected currents to grid which meets the IEEE 1547 standard.
死区时间是电压源逆变器运行中最重要的干扰因素。它会在逆变器输出电压中引入低阶谐波。为了补偿三相并网逆变器中的死区时间影响,本文提出了一种线性二次高斯(LQG)多变量控制方法。LQG多变量控制是一种鲁棒控制方法,同时为闭环系统提供了高带宽。因此,它有望显著衰减死区时间引入的谐波。为了实现高性能,我们在电流控制模式下运行三相并网逆变器。基于在同步参考系中为三相并网逆变器推导的标称多变量模型,设计了LQG控制器,使闭环系统具有鲁棒稳定性,同时能显著衰减干扰。死区时间引入的谐波在同步参考系中产生频率最高的干扰。这就是将死区时间视为逆变器运行中最重要干扰因素的原因。对于为三相并网逆变器制造的实验装置,我们在MATLAB/Simulink中开发了一个详细模型。它用于设计的LQG控制器的性能验证。针对不同的重要场景给出了大量结果,据此证明了所提方法的优异性能。实际上,通过采用所提方法,死区时间引入的谐波得到了显著衰减,使得注入电网的电流总谐波失真(THD)约为5%,符合IEEE 1547标准。