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Stability-Oriented Design for LCL-LC-Trap Filters in Grid-Connected Applications Considering Certain Variation of Grid Impedance

机译:考虑电网阻抗某些变化的并网应用中LCL-LC-Trap滤波器的面向稳定性设计

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In the distributed power generation systems, to suppress the switching harmonics, LCL filter combined with LC trap is attracting wide attention. However, in the digital control system, due to the folding effect of extra resonance poles, such LCL -LC- Trap filter behaves quite different from LCL filter. If the design and control of LCL -LC- Trap filter do not seriously consider the folding effect, the inverter can even be unstable. It is quite necessary to formulate a robust design and control dedicated for LCL -LC- Trap filter. First, this study analyzes the resonance of LCL -LC- Trap filter and shows the difference from LCL filter. To suppress the extra peak and phase sag caused by the folding effect, a passive resistor is then added. Unlike the typical passive damping, power loss of the passive resistor for suppressing the folding effect is minimal. By solving the folding effect, LCL -LC-Trap filter is treated as LCL filter within the Nyquist frequency. Then, a stability-oriented design based on resonance-frequency selection is provided, with which the inverter with LCL -LC- Trap filter can achieve the optimal phase margin in the default case while being robust for filter parameters variation. At last, results have been provided to verify the analysis and design.
机译:在分布式发电系统中,为了抑制开关谐波,LCL滤波器与LC陷阱相结合引起了广泛的关注。但是,在数字控制系统中,由于额外谐振极的折叠效应,此类LCL -LC-陷阱滤波器的行为与LCL滤波器完全不同。如果LCL -LC-陷波滤波器的设计和控制未认真考虑折叠效果,则逆变器甚至可能不稳定。非常有必要制定一个专门针对LCL -LC-陷阱滤波器的鲁棒设计和控制。首先,本研究分析了LCL -LC- Trap滤波器的谐振,并显示了与LCL滤波器的区别。为了抑制由折叠效应引起的额外的峰值和相位下陷,然后添加一个无源电阻器。与典型的无源阻尼不同,用于抑制折叠效应的无源电阻的功率损耗最小。通过解决折叠效应,将LCL -LC-Trap滤波器视为奈奎斯特频率内的LCL滤波器。然后,提供了一种基于谐振频率选择的面向稳定性的设计,借助该设计,具有LCL -LC- Trap滤波器的逆变器可以在默认情况下实现最佳相位裕量,同时对滤波器参数变化具有鲁棒性。最后,提供了结果以验证分析和设计。

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