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A novel power splitting drive train for variable speed wind power generators

机译:用于变速风力发电机的新型动力分配传动系

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In this paper a novel electrically controlled power splitting drive train for variable speed wind turbines is presented. A variable speed wind turbine has many advantages, mainly it can increase the power yield from the wind, alleviate the load peak in the electrical-mechanical drive train, and posses a long life time, also, it can offer the possibility to store the briefly timely wind-conditioned power fluctuations in the wind rotor, in which the rotary masses are used as storages of kinetic energy, consequently, the variable speed wind turbines are utilized in the wind power industry widely. In this work, on the basis of a planetary transmission a new kind of drive train for the variable speed wind turbines is proposed. The new drive train consists of wind rotor, three-shafted planetary gear set, generator and servo motor. The wind rotor is coupled with the planet carrier of the planetary transmission, the generator is connected with the ring gear through an adjustment gear pair, and the servo motor is fixed to the sun gear. By controlling the electromagnetic torque or speed of the servo motor, the variable speed operation of the wind rotor and the constant speed operation of the generator are realized, therefore, the generator can be coupled with the grid directly. At the nominal operation point, about 80% of the rotor power flow through the generator directly and 20% through the servo motor and a small power electronics system into the grid. As a result, the disadvantages in the traditional wind turbines, e.g. high price of power electronics system, much power loss, strong reaction from the grid and large crash load in the drive train will be avoided.
机译:在本文中,提出了一种用于变速风力涡轮机的新型电控功率分配传动系。变速风力涡轮机具有许多优点,主要是它可以提高风力发电量,减轻机电传动系统中的负载峰值,并具有较长的使用寿命,还可以提供短暂存储的可能性。风轮中的适时风力发电波动,其中旋转质量用作动能的存储,因此,变速风力涡轮机在风力发电行业得到了广泛的应用。在这项工作中,基于行星传动,提出了一种用于变速风力涡轮机的新型传动系。新的传动系统由风轮,三轴行星齿轮组,发电机和伺服电机组成。风轮与行星齿轮变速器的行星架联接,发电机通过调节齿轮对与齿圈连接,并且伺服电动机固定至太阳轮。通过控制伺服电机的电磁转矩或转速,实现了风轮的变速运行和发电机的恒速运行,因此,发电机可以直接与电网耦合。在标称运行点,约80%的转子功率直接流经发电机,而20%的流经伺服电动机和小型电力电子系统进入电网。结果,传统风力涡轮机的缺点例如为电力电子系统的价格高昂,功率损耗大,电网反应强烈以及传动系统中的大碰撞载荷都可以避免。

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