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A NOVEL DIGITALIZED HYDROSTATIC DRIVE SOLUTION FOR MODERN WIND TURBINE

机译:现代风轮机的新型数字化静液压驱动解决方案

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Gearbox is a concern in modern wind turbines, increasing the maintenance cost and therefore the cost of energy (COE). A hydrostatic transmission (HST) improves the turbine drivetrain reliability by using slightly compressible mineral oil as the working medium rather than a rigid gearbox. An HST eliminates the power converter since it is a continuous variable transmission (CVT), making the turbine simpler and more cost effective. The turbine operates below the rated wind speed for a considerable time in a year, making the variable hydraulic motor run at partial displacement for the most common configuration of a hydrostatic wind turbine, a fixed displacement pump and a variable displacement motor. This results in low drivetrain efficiency. Moreover, large variable displacement motors for megawatt turbine are commercially unavailable. A digitalized hydrostatic drive for a modern wind turbine is proposed to improve the drivetrain efficiency at low wind speeds. The digital coding method for hydrostatic wind turbine is studied. A dynamic simulation model of the digitalized hydrostatic (dHST) wind turbine has been developed in Simulink. A widely used efficiency model for the hydrostatic pump and motors is used in the simulation to make the study practical. The proposed digitalized hydrostatic solution has been compared with a conventional hydrostatic solution. Simulation results show the benefits of digitalized hydrostatic transmission over conventional hydrostatic transmission in drivetrain efficiency, system complexity and cost.
机译:齿轮箱是现代风力涡轮机中的一个问题,增加了维护成本并因此增加了能源成本(COE)。静液压变速箱(HST)通过使用可压缩程度较小的矿物油而不是刚性齿轮箱作为工作介质,从而提高了涡轮机传动系统的可靠性。 HST取消了功率转换器,因为它是无级变速器(CVT),使涡轮机更简单且更具成本效益。涡轮机在一年内会在低于额定风速的状态下运行相当长的时间,从而使可变液压马达在部分排量下运行,这是静压风力涡轮机,固定排量泵和可变排量马达的最常见配置。这导致动力传动系统效率低。此外,用于兆瓦级涡轮的大型可变排量电动机在商业上是不可用的。提出了一种用于现代风力涡轮机的数字化静液压驱动器,以提高低风速时的传动系统效率。研究了静压风力发电机的数字编码方法。在Simulink中开发了数字化静液压(dHST)风力发电机组的动态仿真模型。仿真中使用了广泛使用的静液压泵和电动机的效率模型,以使该研究切实可行。拟议的数字化静液压解决方案已与常规静液压解决方案进行了比较。仿真结果显示了数字化静液压传动比传统静液压传动在传动系统效率,系统复杂性和成本方面的优势。

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