基于滑模观测器的小型风能转换系统无传感器控制

J. Senanayaka, H. Karimi, K. Robbersmyr
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引用次数: 8

摘要

小型风力涡轮机正在成为家庭应用的一个有吸引力的解决方案。这些微型发电单元可以用作独立应用程序或与电网连接的应用程序。然而,为了充分发挥这些风力涡轮机的潜在效益,系统必须低成本和可靠。在发电机轴上引入风速和转子转速传感器可能会降低小型风力发电机的可靠性。本文研究了一种无传感器并网的5kw小型风能转换系统。风力机的最大功率点跟踪方法完全独立于风速和转子转速的测量。利用发电机的输出电流和电压估计出最佳转子转速和实际转子转速。为了估计风电机组的最佳转子转速,采用了功率信号反馈的方法。此外,还设计了滑模观测器来估计转子转速。将滑模观测器系统的性能与实测转子转速的风能转换系统进行了比较。仿真结果表明了所提出的无传感器控制系统对所考虑的系统的有效性。
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Sliding-mode observer based sensor-less control of a small wind energy conversion system
Small wind turbines are becoming an attractive solution for household applications. These micro generation units can be used as standalone applications or grid connected applications. However to get the full potential benefits of these wind turbines, systems should be low cost and reliable. Introducing the wind speed and rotor speed sensors at the generator shaft may reduce the reliability of small wind turbines. In this study, a grid connected sensor-less 5 kW small wind energy conversion system has been studied. The maximum power point tracking method of the wind turbine is totally independent from wind speed and rotor speed measurements. Optimum rotor speed and actual rotor speed are estimated using output current and voltage of the generator. To estimate the optimum rotor speed of the wind turbine, power signal feedback method has been used. Moreover, a sliding-mode observer is designed to estimate the rotor speed. Performance of the sliding-mode observer system has been compared with the measured rotor speed based wind energy conversion system. The simulation results show the effectiveness of the proposed sensor-less control system for the system under consideration.
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