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Analysis of synchronous reluctance machine with magnetically coupled three-phase windings and reactive power compensation

机译:具有磁耦合三相绕组和无功补偿的同步磁阻电机的分析

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Synchronous reluctance machine with simple salient rotor is known to have poor power factor because of its poor reactance ratio. This study presents the use of an auxiliary winding attached to a balanced capacitor to improve the effective reactance ratio as well as the performance characteristics of synchronous reluctance machine. A unique feature of this configuration is that although the machine runs at synchronous speed, the effective reactance ratio of the machine can be improved by appropriate sizing of the capacitor attached to the auxiliary winding, with the constraint of the ampere turn rating of the auxiliary winding. The operational characteristics of a simple salient rotor synchronous reluctance machine equipped with this configuration were investigated and shown to have a desirable performance. How the effective reactance ratio, power factor and airgap flux distribution depend on the size of capacitor attached to the auxiliary winding is determined using a simplified mathematical model of the system. Analytical results and experimental measurements are in good agreement, and demonstrate the effectiveness and benefits of the configuration.
机译:已知具有简单凸极转子的同步磁阻电机由于电抗比差而具有较差的功率因数。这项研究提出了使用辅助绕组连接到平衡电容器来改善有效电抗比以及同步磁阻电机的性能特征。这种配置的独特之处在于,尽管电机以同步速度运行,但通过适当大小化连接到辅助绕组的电容器,并限制辅助绕组的安培匝数额定值,可以提高电机的有效电抗比。 。对配备有这种配置的简单凸极转子同步磁阻电机的运行特性进行了研究,结果表明该电机具有理想的性能。使用系统的简化数学模型可以确定有效电抗比,功率因数和气隙通量分布如何取决于连接到辅助绕组的电容器的尺寸。分析结果和实验测量结果吻合良好,证明了该配置的有效性和优势。

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