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MMF harmonic reduction in permanent magnet synchronous generator using different stator flux barriers for microturbine applications

机译:MMF在使用不同定子通量屏障的永磁同步发电机对MicroCurbine应用的谐波减少

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Distributed generation (DG) is playing a significant role nowadays due to the emerging emphasis of renewable energy source integration and many other inherent benefits. Microturbines are one of the most promising distributed generation units. High speed permanent magnet machines are typically used in microturbine application due to their high power density and high efficiency characteristics. To improve torque density and efficiency, fractional-slot concentrated winding (FSCW) is used. The advantages of using these windings are short and less complex end winding, high slot filling factor, low cogging torque, greater fault tolerance, and low manufacturing costs. However, the magnetic field of these windings has more space harmonics, including sub harmonics which lead to detrimental effects such as, additional losses in stator and rotor, noise and vibration. Modification of stator by using magnetic flux barriers in the stator yoke of electric machines with fractional slot concentrated winding reduces these undesirable space harmonics. Considering the machine performance this stator design has significant advantages over the conventional design. A comparison of machine with different flux barriers in stator yoke is studied using Ansoft Maxwell software. The machine with modified stator is then coupled with electrical unit of microturbine generation system using Ansoft Simplorer software.
机译:由于可再生能源源集成以及许多其他固有效益,分布式发电(DG)现在正在发挥重要作用。 Microturbines是最有前途的分布式发电单位之一。由于其高功率密度和高效率特性,高速永磁机器通常用于微涡轮机应用。为了提高扭矩密度和效率,使用分数槽浓缩绕组(FSCW)。使用这些绕组的优点是短而较差的端绕组绕组,高槽填充因子,低齿槽扭矩,更大的容错和低制造成本。然而,这些绕组的磁场具有更多的空间谐波,包括子谐波,这导致诸如定子和转子中的额外损耗,噪声和振动的诸如不利影响的子谐波。通过使用具有分数槽集中绕组的电机定子轭中的磁通屏障改造定子减少了这些不期望的空间谐波。考虑到机器性能,该定子设计与传统设计具有显着的优点。使用ANSoft Maxwell软件研究定子轭中具有不同磁通屏障的机器的比较。然后,使用ANSoft Spearorer软件与MicroCurbine发电系统的电气单元耦合机器。

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