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首页> 外文期刊>International journal of systems assurance engineering and management >Wind energy conversion system based on dual stator induction generator controlled by nonlinear backstepping and pi controllers
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Wind energy conversion system based on dual stator induction generator controlled by nonlinear backstepping and pi controllers

机译:基于双定子异步发电机的非线性反步控制和pi控制器的风能转换系统

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摘要

To capture wind energy and to produce electrical power, many conversion systems have been proposed. This work treats also the modeling and the control of dual stator induction generator DSIG integrated in wind energy conversion system. In order to increase the flow of the power to the grid and to ensure an optimum operating point, it is very important to act on the generator side controllers and the conversion system output variables. The Proportional integral PI controllers have been widely used to control alternative machines. In this case, the inverters, which fed the DSIG, are controlled simultaneously with a displaced angle of 30°. So, the synthesis PI gains still difficult. To solve this problem, a nonlinear backstepping control is proposed. For that, the suggested study presents the comparison of the performances of the two strategies. Different simulation tests are conducted to evaluate the efficiency and the validity of the proposed control strategies. We notice that in the steady state, the two controls allow the same performance (tracking). In transient mode, the backstepping command is better in terms of response time and overshoot.
机译:为了捕获风能并产生电力,已经提出了许多转换系统。这项工作还涉及集成在风能转换系统中的双定子感应发电机DSIG的建模和控制。为了增加流向电网的功率并确保最佳运行点,对发电机侧控制器和转换系统输出变量起作用非常重要。比例积分PI控制器已被广泛用于控制替代机器。在这种情况下,为DSIG供电的逆变器以30°的位移角被同时控制。因此,合成PI获得仍然很困难。为了解决这个问题,提出了一种非线性反推控制。为此,建议的研究提出了两种策略的性能比较。进行了不同的仿真测试,以评估所提出的控制策略的效率和有效性。我们注意到,在稳定状态下,两个控件允许相同的性能(跟踪)。在瞬态模式下,backstepping命令在响应时间和过冲方面更好。

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