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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >A robust control algorithm for a multifunctional grid tied inverter to enhance the power quality of a microgrid under unbalanced conditions
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A robust control algorithm for a multifunctional grid tied inverter to enhance the power quality of a microgrid under unbalanced conditions

机译:多功能并网逆变器的鲁棒控制算法,可在不平衡条件下提高微电网的电能质量

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摘要

This paper proposes a robust control algorithm for a Multifunctional grid-tied inverters (MFGTI) under unbalanced load and main voltage conditions. The proposed algorithm uses the instantaneous power theory to design the MFGTI controller. A Positive Fundamental Components Estimator (PFCE) is used to estimate the undesired components of the load current such as harmonics, reactive current, and negative sequence component. The PFCE is a lightweight open loop algorithm. Hence, a good robustness is achieved with a lower computation burden. Furthermore, a new sliding mode controller (SMC) is used as a DC bus voltage regulator to enhance the dynamic performance and robustness against parameter variation. The MFGTI is connected at the Point of Common Coupling (PCC), interfacing the microgrid to the main grid, Alongside the active power injection, the proposed control algorithm allows the MFGTI to compensate reactive power, mitigate harmonics, and balance the load. Thus, the microgrid will meet the different power quality standards. An experimental prototype is designed to verify both the performance and robustness of the control algorithm. The attained results confirm the validity of the proposed algorithm.
机译:本文提出了一种在不平衡负载和主电压条件下的多功能并网逆变器(MFGTI)的鲁棒控制算法。该算法采用瞬时功率理论设计了MFGTI控制器。正基本成分估计器(PFCE)用于估计负载电流的不需要成分,例如谐波,无功电流和负序成分。 PFCE是一种轻量级的开环算法。因此,以较低的计算负担实现了良好的鲁棒性。此外,新的滑模控制器(SMC)用作直流总线电压调节器,以增强动态性能和抵抗参数变化的鲁棒性。 MFGTI连接在公共耦合点(PCC),将微电网与主电网连接。除了有功功率注入外,所提出的控制算法还允许MFGTI补偿无功功率,减轻谐波并平衡负载。因此,微电网将满足不同的电能质量标准。设计了一个实验原型,以验证控制算法的性能和鲁棒性。所得结果证实了所提算法的有效性。

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