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Robust Model Predictive Controller Applied to Three-Phase Grid-Connected LCL Filters

机译:鲁棒模型预测控制器应用于三相网格连接的LCL过滤器

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摘要

Grid-connected inverters play an important role in renewable energy system nowadays, serving as an interface between the renewable energy source and the grid. However, the PWM modulation used to control the converters produces harmonic content that must be filtered properly. In this paper, an active damping strategy is used with a three-phase power converter with an LCL filter to achieve harmonic rejection. The control strategy which will be used is a continuous control set model predictive control (CCS-MPC) based on a state-space model of the system. This controller must ensure that the injected grid currents track sinusoidal references and reject harmonic disturbances from the grid voltage. This is achieved by using an augmented model of the system that contains resonant controllers. Following the unconstrained CCS-MPC methodology, a fixed gain controller that can be implemented similarly to a classical state-space feedback controller is obtained. An analysis of the impact of the CCS-MPC tuning parameters on the closed-loop response is made. Also, an a posteriori linear matrix inequality approach is used to show that the resulting closed-loop system is robust in regard to grid inductance uncertainties and variations. Simulation and experimental test results show that the proposed controller yields good results, complying with the IEEE 1547 Standard grid currents harmonic limits.
机译:网格连接的逆变器在现在在可再生能源系统中起重要作用,作为可再生能源和电网之间的界面。但是,用于控制转换器的PWM调制产生了必须正确过滤的谐波含量。在本文中,有主动阻尼策略与具有LCL滤波器的三相电力转换器一起使用以实现谐波抑制。将使用的控制策略是基于系统的状态空间模型的连续控制集模型预测控制(CCS-MPC)。该控制器必须确保注入的电网电流跟踪正弦引用并抑制来自电网电压的谐波干扰。这是通过使用包含谐振控制器的系统的增强模型来实现。在不受约束的CCS-MPC方法之后,获得可以与经典的状态空间反馈控制器类似地实现的固定增益控制器。进行了对CCS-MPC调谐参数对闭环响应的影响的分析。此外,用于将所得闭环系统的封闭线性矩阵不等式方法用于网格电感不确定性和变化方面是稳健的。仿真和实验测试结果表明,建议的控制器产生了良好的效果,符合IEEE 1547标准电流谐波限制。

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