风力发电系统的最优控制

Nasri Nouha, Tounsi Souhir
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引用次数: 0

摘要

本文提出了一种新的风力发电机组控制技术,该技术可以防止电气元件中的超速和过流。这种技术是基于调节电池的充电电压,通过一个交流-直流转换器控制,以保持这个恒定电压等于电池的标称充电电压。这种工作状态被认为是额定状态,因为电池是通过标称电压向电池注入标称电流来充电的。随后开发的控制算法允许电池在标称功率下连续充电。控制协议使得有可能施加与电动势相一致的发电机提供的三个电压,并且具有等于电池充电电压的振幅。这项技术使使用机械制动器的缺点,如机械能传输部件的磨损和风力涡轮机成本的上升成为可能。与由电磁转矩控制和升降机斩波器控制的风力涡轮机相比,使用交直流转换器的风力涡轮机具有控制算法简单的优点,有利于实时集成到电子卡中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Control of Wind Energy Generation System
In this paper is presented a new wind turbine control technology, providing protection against overspeed accompanied by overcurrent in the electrical components. This technology is based on regulating the recharging voltage of the batteries by an AC-DC converter controlled in such a way as to maintain this constant voltage equal to the nominal charging voltage of the batteries. This operating regime is considered as the rated regime since the batteries are recharged by the nominal voltage injecting a nominal current into the batteries. The control algorithm developed subsequently allows continuous recharging of the batteries at nominal power. The control protocol makes it possible to impose the three voltages delivered by the generator in phase with the electromotive forces and having an amplitude equal to that of the recharging voltage of the batteries. This technology makes it possible to increase the disadvantages of using a mechanical brake such as the wear of the mechanical energy transmission components and the rise in the cost of the wind turbine. Compared to wind turbines controlled by electromagnetic torque control and those controlled by a lift chopper, those using an AC-DC converter have the advantage of simplicity of the control algorithm favoring the possibility of integration into electronic cards in real time.
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