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Co-design of the LCL Filter and Control for Grid-Connected Inverters

机译:用于并网逆变器的LCL滤波器和控制的协同设计

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摘要

In most grid-connected inverters (GCI) with an LCL filter, since the design of both the LCL filter and the controller is done separately, considerable tuning efforts have to be exerted when compared to inverters using an L filter. Consequently, an integrated co-design of the filter and the controller for an LCL-type GCI is proposed in this paper. The control strategy includes only a PI current controller and a proportional grid voltage feed-forward controller. The capacitor is removed from the LCL filer and the design procedure starts from an L-type GCI with a PI current controller. After the PI controller has been settled, the capacitor is added back to the filter. Hence, it introduces a resonance frequency, which is identified based on the crossover frequencies to accommodate the preset PI controller. Using the proposed co-design method, harmonic standards are satisfied and other practical constraints are met. Furthermore, the grid voltage feed-forward control can bring an inherent damping characteristic. In such a way, the good control performance offered by the original L-type GCI and the sharp harmonic attenuation offered by the latter designed LCL filter can be well integrated. Moreover, only the grid current and grid voltage are sensed. Simulation and experimental results verify the feasibility of the proposed design methodology.
机译:在大多数具有LCL滤波器的并网逆变器(GCI)中,由于LCL滤波器和控制器的设计是分开进行的,因此与使用L滤波器的逆变器相比,必须付出相当大的调整努力。因此,本文提出了LCL型GCI滤波器和控制器的集成协同设计。该控制策略仅包括PI电流控制器和比例电网电压前馈控制器。从LCL滤波器中移出电容器,设计过程从带有PI电流控制器的L型GCI开始。 PI控制器稳定后,将电容器加回到滤波器中。因此,它引入了一个共振频率,该共振频率是根据交叉频率确定的,以适应预设的PI控制器。使用所提出的协同设计方法,可以满足谐波标准并满足其他实际约束。此外,电网电压前馈控制可以带来固有的阻尼特性。这样,可以很好地集成原始L型GCI提供的良好控制性能和后一种设计的LCL滤波器提供的尖锐谐波衰减。此外,仅感测电网电流和电网电压。仿真和实验结果验证了所提出设计方法的可行性。

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