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Comparison of harmonic detection methods applied in a photovoltaic inverter during harmonic current compensation

机译:谐波电流补偿中光伏逆变器中谐波检测方法的比较

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摘要

Traditional harmonic current detection methods track all harmonic contents of the load and the control tuning tends to be complex with low flexibility. However, several applications require a harmonic detector method able to track the higher load harmonic current. This work analyses harmonic detectors based on Discrete Fourier Transform (DFT): Fast Fourier Transform (FFT) and Iterative Discrete Fourier Transform (IDFT) and the detector based on Second Order Generalized Integrator (SOGI-PLL) structure. A comparison of the load harmonic current detection methods was done by variation in the load current and in the fluctuation of the grid frequency. Furthermore, the methods were applied in an adaptive current harmonic control strategy applied in multifunctional three-phase photovoltaic inverter. Simulation results showed that the DFT methods are faster and more accurate in the harmonic detection than the SOGI-PLL based method. However, SOGI-PLL structure is more robust during grid voltage frequency fluctuation.
机译:传统的谐波电流检测方法会跟踪负载的所有谐波含量,并且控制调整趋于复杂且灵活性较低。然而,一些应用需要谐波检测器方法,该方法能够跟踪较高的负载谐波电流。这项工作分析了基于离散傅里叶变换(DFT):快速傅里叶变换(FFT)和迭代离散傅里叶变换(IDFT)的谐波检测器以及基于二阶广义积分器(SOGI-PLL)结构的检测器。通过负载电流变化和电网频率波动来比较负载谐波电流检测方法。此外,将这些方法应用于多功能三相光伏逆变器中的自适应电流谐波控制策略。仿真结果表明,与基于SOGI-PLL的方法相比,DFT方法在谐波检测中更快,更准确。但是,在电网电压频率波动期间,SOGI-PLL结构更坚固。

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