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Modeling and control of a permanent magnet synchronous generator dedicated to standalone wind energy conversion system

机译:专用于独立风能转换系统的永磁同步发电机的建模和控制

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摘要

The interest for the use of renewable energies has increased, because of the increasing concerns of the environmental problems. Among renewable energies, wind energy is now widely used. Wind turbines based on an asynchronous generator with a wound rotor present the inconvenience of requiring a system of rings and brooms and a multiplier, inferring significant costs of maintenance. To limit these inconveniences, certain manufacturers developed wind turbines based on synchronous machines with large number of pairs of poles coupled directly with the turbine, avoiding using the multiplier. If the generator is equipped with permanent magnets, the system of rings and brooms is eliminated. The control of the permanent magnet synchronous generator (PMSG) can be affected with the implementation of various techniques of control. This paper presented a new approach mainly based on the control strategy of power production system based on the PMSG. In fact, a mathematical model that simulates the Matlab chain was established with the introduction of control techniques, such as direct control of the torque (DTC) to control the load side converter (LSC), the control of the speed of the turbine and the DC-bus voltage ensured by PI regulators. To show the performance of the correctors used, some simulation results of the system were presented and analyzed.
机译:由于对环境问题的日益关注,使用可再生能源的兴趣已经增加。在可再生能源中,风能现已被广泛使用。基于具有绕线转子的异步发电机的风力涡轮机带来的不便之处在于需要环和扫帚以及倍增器的系统,从而导致大量的维护成本。为了限制这些不便,某些制造商开发了基于同步电机的风力涡轮机,该同步电机具有大量直接与涡轮机耦合的极对,从而避免了使用倍增器。如果发电机装有永磁体,则无需使用环和扫帚系统。永磁同步发电机(PMSG)的控制可能会受到各种控制技术的影响。本文提出了一种新的方法,该方法主要基于基于PMSG的发电系统的控制策略。实际上,通过引入控制技术(例如直接控制转矩(DTC)来控制负载侧变流器(LSC),涡轮机速度和转速控制)建立了模拟Matlab链的数学模型。 PI调节器确保直流母线电压。为了显示所使用的校正器的性能,给出并分析了系统的一些仿真结果。

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