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Harmonic Mitigation in Wind Turbine Energy Conversion Systems

机译:风力涡轮机能量转换系统的谐波缓解

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Permanent magnet synchronous generators (PMSG) applied to wind energy conversion system (WECS) using variable speed operation is being used more frequently in wind turbine application. Variable speed systems have several advantages over the traditional method of operating wind turbines, such as the reduction of mechanical stress and an increase in energy capture. To allow the variable speed operation of the PMSG WECS a conventional three-phase bridge rectifier (BR) with a bulky capacitor associated with a voltage source current controlled inverter (VS-CCI) is used. This simple scheme introduces a high intensity low frequency current harmonic content into the PMSG and consequently increases the total loses in it. Subsequently, decreases the power capability of the system. This paper presents a comparative simulation study between three different approaches applied to harmonic mitigation in PMSG WECS. The studied techniques are: a) harmonic trap filters (HTF), b) single-switch three-phase boost rectifier (PFC) and c) a three-phase boost type PWM rectifier (PWMREC).
机译:在风力涡轮机应用中更频繁地使用应用于风能转换系统(WECS)的永磁同步发电机(PMSG)。变速系统与传统的操作风力涡轮机的方法具有若干优点,例如减少机械应力和能量捕获的增加。为了允许PMSG WECS的可变速度操作,使用具有与电压源电流控制逆变器(VS-CCI)相关的庞大电容器的传统三相桥式整流器(BR)。这种简单的方案将高强度低频电流谐波含量引入PMSG中,因此增加了总损失。随后,降低系统的功率能力。本文介绍了三种不同方法应用于PMSG WECs谐波缓解的比较模拟研究。研究的技术是:a)谐波捕获滤波器(HTF),b)单开关三相升压整流器(PFC)和C)三相升压型PWM整流器(PWMREC)。

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