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A solar PV system controlled by least sum of exponentials algorithm

机译:最小指数和算法控制的太阳能光伏系统

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This study proposes a new control for grid-connected solar PV (Photovoltaic) system which simultaneously injects active power and improves the quality of power of a three-phase distribution grid. The system comprises of a solar PV array, a VSC (Voltage Source Converter), a RC ripple filter and interfacing reactors connected to the three-phase distribution grid and linearonlinear balanced/unbalanced loads. The proposed control for the VSC in addition to harmonics mitigation, reactive compensation and balancing of three-phase loads concurrently extracts the maximum available power from the PV array by means of a MPPT (Maximum Power Point Tracking) algorithm. Besides the MPPT algorithm, the VSC is controlled by the least sum of exponentials algorithm. The THDs (Total Harmonic Distortions) of grid currents and the voltages at the PCC (Point of Common Coupling) are found to be within the limits given by IEEE 519 and IEEE 929 standards. The system performance is experimentally tested for a variety of loads and solar insolation levels on a prototype developed in the laboratory.
机译:这项研究提出了一种并网太阳能光伏系统的新控制方法,该系统可同时注入有功功率并提高三相配电网的电能质量。该系统包括一个太阳能光伏阵列,一个VSC(电压源转换器),一个RC脉动滤波器和连接到三相配电网和线性/非线性平衡/不平衡负载的接口电抗器。除了谐波抑制,无功补偿和三相负载平衡外,VSC的拟议控制还通过MPPT(最大功率点跟踪)算法同时从PV阵列中提取最大可用功率。除了MPPT算法外,VSC还由最小指数算法求和。发现电网电流的THD(总谐波失真)和PCC(公共耦合点)处的电压在IEEE 519和IEEE 929标准规定的范围内。在实验室开发的原型上,针对各种负载和日照水平对系统性能进行了实验测试。

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