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Decoupled control of grid connected inverter with dynamic online grid impedance measurements for micro grid applications

机译:用于微电网应用的具有动态在线电网阻抗测量的并网逆变器解耦控制

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This paper presents a decoupled control of grid connected inverter using dynamic online grid impedance measurements for a micro grid application. The proposed controller is implemented in synchronous reference frame (SRF) and controlled using linear PI controllers. The mutual coupling introduced between the d and q control loops due to the transformation into SRF is accurately decoupled using the dynamically measured grid impedance using a feed-forward control. The decoupling allows independent control of active and reactive powers against step changes in the active/reactive power references. The online measurement of the actual impedance and its use further for decoupling is proposed in this paper for making the decoupling accurate inspite of the network configuration being altered like in micro grids. Here the grid resistance and inductance are measured during the operation using a non-characteristic frequency current continuously injected into the grid, and subsequently calculating the impedance using discrete Fourier transforms. The continuous injection of non-characteristic current at 75 Hz avoids the injection of sub-harmonics into the grid during measurements. The control loop is updated periodically with the estimated grid impedance, thus enabling the independent control of active and reactive powers delivered by the inverter. The proposed decoupled controller with grid impedance measurement is tested through simulation studies and hardware experiments. The experiments are conducted with the proposed controller on a scaled down laboratory model of micro-grid with a 1 kVA solar inverter, and the performances are presented for step changes in the power references and the results are presented.
机译:本文针对微电网应用提出了使用动态在线电网阻抗测量的并网逆变器解耦控制。所提出的控制器在同步参考框架(SRF)中实现,并使用线性PI控制器进行控制。通过动态测量的电网阻抗和前馈控制,可以将由于转换成SRF而在d和q控制回路之间引入的互耦精确地解耦。去耦允许针对有功/无功功率基准中的阶跃变化独立控制有功功率和无功功率。本文提出了在线测量实际阻抗的方法,并将其进一步用于去耦,尽管网络结构像微电网一样发生了变化,也可以使去耦准确。在此,使用连续注入电网的非特性频率电流在运行过程中测量电网电阻和电感,然后使用离散傅立叶变换计算阻抗。在75 Hz下连续注入非特征电流可以避免在测量过程中将次谐波注入电网。控制环路会以估算的电网阻抗定期更新,从而可以独立控制逆变器提供的有功功率和无功功率。通过仿真研究和硬件实验对所提出的具有电网阻抗测量值的解耦控制器进行了测试。使用建议的控制器在带有1 kVA太阳能逆变器的微电网的按比例缩小的实验室模型上进行了实验,并给出了功率基准阶跃变化的性能,并给出了结果。

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