首页> 外文会议>ICIT 2010;IEEE International Conference on Industrial Technology >Analysis of instability of direct powered DC-compound machines in pitch systems of large wind turbines
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Analysis of instability of direct powered DC-compound machines in pitch systems of large wind turbines

机译:大型风力发电机变桨系统中直流复合电机的不稳定性分析

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DC machines are commonly used as pitch drives enabling the possibility to drive into the feathering position also if power electronics fails. The pitch system of a wind turbine has to fulfill two functions: Limiting the turbine power during strong wind conditions but also braking the turbine via pitching into the feathering position. The second task is safety critical and therefore the pitch system must be equipped with a backup storage in order to react autonomously under grid failure conditions. State of art for electrical pitch systems are lead fleece accumulators due to big experience and cost attractiveness of this technology. Compared with standard DC machines, compound types combine the advantages of a shunt and series machines for direct battery connection: They are naturally able to resist low and regenerative torque conditions like shunt machines by also able to provide a torque even if the battery voltage is low e.g. in case of defect battery cells. But compound machines can show an unstable behavior if the machines changes from motor to regenerative operation during direct powered emergency drive. If this effect appears, the machine generates a dynamic regenerative current peak that causes electromechanical transients stressing the whole pitch drive train. In order to analyze and understand this phenomena a detailed dynamical model of the DC compound machine was developed.
机译:直流电机通常用作变桨驱动器,即使电力电子设备出现故障,也可以驱动到羽化位置。风力涡轮机的变桨系统必须实现两个功能:在强风条件下限制涡轮机的功率,还必须通过俯仰到羽化位置来制动涡轮机。第二项任务是安全性至关重要,因此变桨系统必须配备备用存储器,以便在电网故障条件下自动做出反应。由于这种技术的丰富经验和成本吸引力,电子变桨系统的最新技术是铅绒蓄电池。与标准的直流电机相比,复合类型结合了并联和串联电机的优点,可直接连接电池:它们自然能够抵抗低和再生扭矩条件,例如并联电机,即使电池电压低也能提供扭矩例如如果电池单元有缺陷。但是,如果在直接供电的紧急驱动过程中,复合机从电动机变为再生运行,复合机可能会表现出不稳定的行为。如果出现这种影响,则电机会产生一个动态的再生电流峰值,该峰值会引起机电瞬态,从而对整个变桨传动系统产生压力。为了分析和理解这种现象,开发了直流复合机的详细动力学模型。

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