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A New Variable-Frequency Optimal Direct Power Control Algorithm

机译:一种新的变频最优直接功率控制算法

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This paper presents a new formulation for direct power control (DPC) with several improvements over previous DPC formulations such as an exact discrete-time expression for the predicted power variations yielded by a given inverter switching state and the inclusion of the computing delay time in the model. Based on this formulation, a variable-frequency optimal DPC algorithm is presented that selects the inverter switching state that minimizes the power error. This algorithm shows an excellent precision in estimating power variations, therefore reducing power ripple and unwanted current harmonics, while retaining the fast dynamics inherent to variable-frequency DPC. This makes this algorithm suitable for interfacing distributed generation to microgrids, where a fast and accurate power control is desirable in order to perform voltage and frequency regulation. Additionally, studies are carried out regarding the average switching frequency and the influence of the model parameters on the algorithm robustness.
机译:本文提出了一种直接功率控制(DPC)的新公式,它对以前的DPC公式进行了一些改进,例如精确的离散时间表达式,用于预测给定逆变器开关状态所产生的预测功率变化,并且将计算延迟时间包括在内。模型。基于该公式,提出了一种变频最佳DPC算法,该算法选择了使功率误差最小的逆变器开关状态。该算法在估算功率变化方面显示出极好的精度,因此在保持可变频率DPC固有的快速动态的同时,减少了功率纹波和不必要的电流谐波。这使得该算法适合于将分布式发电与微电网接口,其中需要快速而准确的功率控制以执行电压和频率调节。此外,还进行了有关平均开关频率以及模型参数对算法鲁棒性的影响的研究。

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