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A novel adaptive command-filtered backstepping sliding mode control for PV grid-connected system with energy storage

机译:储能光伏并网系统的新型自适应指令滤波反推滑模控制

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摘要

In order to solve the problems of power fluctuation in the photovoltaic (PV) grid-connected system and the nonlinearity in the model of inverters, a projection-based adaptive backstepping sliding mode controller with command-filter is designed in the system to adjust the DC-link voltage and the AC side current in the PV grid-connected system. Firstly, the mathematical model of the inverter in PV system is established, then backstepping control method is applied to control it, and the command filter is added to the controller to eliminate the differential expansion of the backstepping controller. Furthermore, the adaptive law based on Lyapunov stability theory is designed to estimate the uncertain parameters in the grid-connected inverter. A projection algorithm is introduced into the adaptive controller due to the demand of guaranteeing the bounded estimated value. Additionally, a sliding mode controller is increased to improve its robustness in this system. Considering the influence of irradiation and temperature changes, a battery energy storage system (BESS) is applied on the DC side to suppress the fluctuation of the output power of the PV system. Finally, the simulation results demonstrate that the presented strategy can control precisely the grid-connected inverter.
机译:为了解决光伏并网系统的功率波动和逆变器模型非线性的问题,在系统中设计了基于投影的自适应反推滑模控制器,该滤波器具有指令滤波器,用于调节直流。光伏并网系统中的交流电压和交流侧电流。首先建立光伏系统逆变器的数学模型,然后采用反步控制方法进行控制,并在控制器中添加指令滤波器,以消除反步控制器的微分展开。此外,设计了基于Lyapunov稳定性理论的自适应律来估计并网逆变器中的不确定参数。由于需要保证有界估计值,因此将投影算法引入自适应控制器。另外,增加了滑模控制器以改善其在该系统中的鲁棒性。考虑到照射和温度变化的影响,在直流侧应用电池储能系统(BESS)以抑制光伏系统输出功率的波动。最后,仿真结果表明所提出的策略可以精确地控制并网逆变器。

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