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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Improved control of a photovoltaic pumping system by DTC-SVM to optimize the water flow
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Improved control of a photovoltaic pumping system by DTC-SVM to optimize the water flow

机译:通过DTC-SVM改进了对光伏泵系统的控制,以优化水流量

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This paper deals with two different techniques of vector method-related direct torque control: the conventional (DTC-C) and the space vector modulation (DTC-SVM). Both are used for an induction motor in the photovoltaic pumping system. Based on instantaneous space vector theory, and with an optimal selection of the space voltage vectors in each sampling period, the DTC achieves effective control of the stator flux and torque. Consequently, the number of space voltage vectors and switching frequency directly influence the performance of the DTC control system, giving an advantage for a rotor position free control system. In order to improve the efficiency of the photovoltaic generator, maximum power point tracking techniques are investigated. The incremental conductance (Inc-MPPT) algorithm is applied to the system with variable temperature and irradiance conditions. DTC associated with Inc-MPPT allows the system to operate at its maximum power, with a good performance and fast response without overshoot. Comparing the two control techniques of torque, it appears that DTC-SVM optimizes not only the photovoltaic conversion efficiency but also the losses in the induction motor, and it improves the water flow quantity.
机译:本文讨论了与矢量方法有关的直接转矩控制的两种不同技术:常规技术(DTC-C)和空间矢量调制(DTC-SVM)。两者都用于光伏泵系统中的感应电动机。基于瞬时空间矢量理论,并且通过在每个采​​样周期内对空间电压矢量进行最佳选择,DTC可以实现对定子磁通和转矩的有效控制。因此,空间电压矢量的数量和开关频率直接影响DTC控制系统的性能,从而为无转子位置控制系统提供了优势。为了提高光伏发电机的效率,研究了最大功率点跟踪技术。增量电导(Inc-MPPT)算法适用于温度和辐照度条件可变的系统。与Inc-MPPT相关的DTC可使系统以最大功率运行,具有良好的性能和快速的响应而不会出现过冲。比较转矩的两种控制技术,可以看出DTC-SVM不仅优化了光伏转换效率,而且优化了感应电动机的损耗,并改善了水流量。

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