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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Two Degrees of Freedom Active Damping Technique for $LCL$ Filter-Based Grid Connected PV Systems
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Two Degrees of Freedom Active Damping Technique for $LCL$ Filter-Based Grid Connected PV Systems

机译:基于$ LCL $滤波器的并网光伏系统的两自由度主动阻尼技术

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In grid connected photovoltaic (PV) systems, lowpass filters are utilized to reduce injected current harmonics. $LCL$ filters have recently drawn attention for PV system grid interfaces due to their small size and they have shown better attenuation to switching harmonics than simple L filters. However, the $LCL$ filter causes resonance resulting in oscillation and instability issues. This paper proposes an effective active damping technique by introducing a two-degree-of-freedom (2DOF) PID control structure. The 2DOF control structure allows the independent action of PI and D terms giving two degrees of freedom. The design is based on a typical three-phase grid-tied PV system. The active damping control loop is formed by using the existing grid side inductor currents and thus eliminating the need of additional sensors. The relative stability is illustrated in frequency domain by using bode plots. A real-time hardware-in-loop study is performed to validate the performance of the proposed 2DOF technique to damp out the $LCL$ filter resonance.
机译:在并网光伏(PV)系统中,低通滤波器用于减少注入的电流谐波。 $ LCL $滤波器由于尺寸小,最近已吸引了光伏系统电网接口的注意,与简单的L滤波器相比,它们显示出更好的开关谐波衰减。但是,$ LCL $滤波器会引起谐振,从而导致振荡和不稳定性问题。通过引入两自由度(2DOF)PID控制结构,本文提出了一种有效的主动阻尼技术。 2DOF控制结构允许PI和D项的独立作用,提供两个自由度。该设计基于典型的三相并网光伏系统。有源阻尼控制环路是通过使用现有的电网侧电感器电流形成的,因此无需额外的传感器。通过使用波特图在频域中说明了相对稳定性。进行了实时硬件在环研究,以验证所提出的2DOF技术抑制$ LCL $滤波器谐振的性能。

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