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Wavelet transform for voltage dips detection in a microgrid with distributed generation

机译:小波变换用于分布式发电微电网电压跌落检测

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The paper examines application of wavelet transform for voltage dips detection in microgrids with distributed generation. IEEE13 test grid with added 1.6 MW distribution generators is used for evaluation. Distribution generators are two 0.8 MW doubly-fed induction generators. Matlab/Simulink environment is used for modelling and evaluation of proposed algorithm for voltage dips detection. Six types of fault are examined and conclusions are derived. As a further confirmation of the obtained results, authors utilized the existing laboratory setup at the Faculty of Technical Sciences, in order to get as realistic as possible voltage dips signals from the grid, recorded over distribution transformer (small scale distribution transformer). Voltage dips are produced with grid emulator. These signals are then used for emulation, and analyzed with different wavelet methods. In paper is shown that wavelet is not appropriate solution as part of control of distribution generator grid-tie inverter in order to fast detect voltage dips, if the measurement is performed in place of inverter. None of the wavelets when using highest frequency band can't detect voltage dips fast and accurate at this spot in the grid. Solution to this problem can be to use signals that are measured at the connection point of the generators to the grid.
机译:本文探讨了小波变换在分布式发电微电网电压跌落检测中的应用。评估使用带有增加的1.6 MW配电发电机的IEEE13测试网格。配电发电机是两台0.8 MW双馈感应发电机。 Matlab / Simulink环境用于建模和评估提出的电压跌落检测算法。检查了六种类型的故障并得出了结论。为了进一步证实所获得的结果,作者利用了技术学院的现有实验室设置,以便尽可能实际地获得来自电网的电压骤降信号,并记录在配电变压器(小型配电变压器)上。电网仿真器会产生电压骤降。然后将这些信号用于仿真,并使用不同的小波方法进行分析。在纸上表明,如果要代替逆变器进行测量,则小波不适合作为配电发电机并网逆变器控制的一部分,以快速检测电压骤降。当使用最高频段时,所有小波都无法快速,准确地检测到电网中该点处的电压骤降。解决该问题的方法可以是使用在发电机到电网的连接点处测得的信号。

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