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Computationally Efficient Model Predictive Direct Power Control with Online Finite Set Model Inductance Estimation Technique for Grid-Connected Photovoltaic Inverters

机译:基于网格连接光伏逆变器的在线有限型型电感估计技术的计算上有效的模型预测直接功率控制

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Model predictive direct power control (MP-DPC) is considered as a convenient control approach for grid-connected inverters, as it eliminates the need for internal control loops and external modulators. In this paper, a computationally efficient MP-DPC scheme is presented, which overcomes the main drawback of the traditional scheme by reducing the calculation burden. Based on the values of the reference and actual power, the reference voltage vector of the inverter can be calculated. By locating this reference voltage vector in the α-β reference frame, only three iterations are required. Hence, the cost function is optimized with a reduced calculation load. The dynamic behavior of the computationally efficient MP-DPC, traditional MP-DPC, and lookup table direct power control (LT-DPC) for grid-connected photovoltaic inverters is compared by simulation results. Furthermore, a novel online inductance estimation technique is proposed to enhance the robustness of the control scheme against any inductance variation.
机译:模型预测直接电源控制(MP-DPC)被认为是网格连接逆变器的方便控制方法,因为它消除了内部控制环路和外部调制器的需求。在本文中,提出了一种计算上有效的MP-DPC方案,其通过降低计算负担来克服传统方案的主要缺点。基于参考和实际功率的值,可以计算逆变器的参考电压矢量。通过在α-β参考帧中定位该参考电压矢量,只需要三个迭代。因此,通过降低的计算负载优化成本函数。通过仿真结果比较了计算上高效的MP-DPC,传统MP-DPC和查找表直接功率控制(LT-DPC)的动态行为通过仿真结果进行了比较了电网连接的光伏逆变器。此外,提出了一种新的在线电感估计技术,以增强控制方案对任何电感变化的鲁棒性。

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