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首页> 外文期刊>EPE Journal: European Power Electronics and Drives >Loss and Rating Considerations of a Wind Energy Conversion System with Reactive Compensation by Magnetic Energy Recovery Switch (MERS)
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Loss and Rating Considerations of a Wind Energy Conversion System with Reactive Compensation by Magnetic Energy Recovery Switch (MERS)

机译:具有磁能回收开关(MERS)无功补偿的风能转换系统的损耗和额定值考虑

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Electrical conversion system for permanent magnet wind generators is challenging due to the large rating of power semiconductor devices needed and the associated costs and losses. This motivates the search for new configurations improving these relationships. Additionally, due to the large inductance present in the generator (synchronous reactance), voltage drops results with resistive load and the generator output power is limited. Traditionally, a conventional active rectifier is used, with a 3-level type illustrated in Fig. la. The main challenges with this solution are the costs and also increased losses resulting from high speed switching and filter operation. A solution utilizing an active series compensation device combined with a diode bridge is investigated in this paper as shown in Fig. lb. The series compensator supplies only reactive power with a resulting good generator utilization. This also means that the VA capability of the active semiconductor part can be reduced compared to an active rectifier since the active rectifier also needs to supply the full active power. The use of an active series compensator called Magnetic Energy Recovery Switch (MERS) is studied. MERS is a simple configuration with low switching losses and simple control acting as a variable capacitor. Due to the special characteristics of this configuration, a new IGBT with low on-state voltage has been developed. The performance of the configuration has been confirmed with experiments on a 50 kW multi-pole permanent magnet generator. Numerical investigations on large scale system indicate potential for loss reductions and power semiconductor rating reduction compared to using an active rectifier solution.
机译:由于所需的功率半导体器件的额定值高以及相关的成本和损失,用于永磁风力发电机的电转换系统具有挑战性。这激发了寻找改善这些关系的新配置的动力。另外,由于发电机中存在较大的电感(同步电抗),导致电阻性负载导致电压下降,并且发电机的输出功率受到限制。传统上,使用传统的有源整流器,其具有图1a所示的3级类型。该解决方案的主要挑战是成本,以及由于高速切换和滤波器操作而导致的损失增加。如图1b所示,本文研究了一种采用有源串联补偿装置和二极管电桥的解决方案。串联补偿器仅提供无功功率,因此具有良好的发电机利用率。这也意味着,与有源整流器相比,有源半导体部件的VA能力可以降低,因为有源整流器还需要提供全部有功功率。研究了一种称为磁能回收开关(MERS)的有源串联补偿器的使用。 MERS是一种简单的配置,具有较低的开关损耗和作为可变电容器的简单控制。由于这种配置的特殊特性,已开发出一种具有低导通电压的新型IGBT。通过在50 kW多极永磁发电机上进行的实验已证实了该配置的性能。大规模系统的数值研究表明,与使用有源整流器解决方案相比,可以降低损耗并降低功率半导体的额定值。

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