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Accumulator Capacitor Converter for a Switched Reluctance Generator

机译:开关磁阻发电机的电容器电容转换器

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摘要

In this paper, a novel converter is presented to improve the excitation process in switched reluctance generators (SRGs). Accumulator capacitor converter (ACC) is based on a singular scheme of flyback converters. ACC performs two main roles. First, in an initial step, it charges an accumulator capacitor with a determined value of voltage; then, during the magnetizing period, it discharges the stored energy into machine coils. Therefore, ACC provides the SRG with a determined magnetizing energy and uses the forced magnetizing phenomenon to magnetize its coils. The processes yield some outstanding superiority such as excellent operation at high speeds, simple controlling scheme, lower stress on the excitation source, etc., over conventional converters. To analyze the performance of ACC, the required analytical expressions for charging the capacitor and discharging it into the coils are developed and the constraints for switching periods are demonstrated in detail. Afterward, through MATLAB/Simulink and finite-element analysis (FEA) simulations, its operation is evaluated and compared to conventional asymmetric bridge and bifilar converters (BFCs); moreover, its test bed is assembled and tested experimentally, and its results, along with the simulation ones, validates ACC performance.
机译:在本文中,提出了一种新颖的转换器,以改善开关磁阻发电机(SRG)中的励磁过程。蓄能器电容器转换器(ACC)基于反激转换器的单一方案。 ACC扮演两个主要角色。首先,在初始步骤中,它以确定的电压值对蓄电池电容器充电;然后,在磁化期间,它将存储的能量释放到机器线圈中。因此,ACC为SRG提供了确定的磁化能量,并使用强制磁化现象将其线圈磁化。与传统的转换器相比,该方法具有一些突出的优越性,例如在高速下的出色操作,简单的控制方案,对激励源的较低应力等。为了分析ACC的性能,开发了对电容器充电并将其放电到线圈中所需的解析表达式,并详细说明了开关周期的约束。之后,通过MATLAB / Simulink和有限元分析(FEA)仿真,评估了它的操作并将其与传统的不对称桥式和双线转换器(BFC)进行了比较;此外,它的测试台是通过实验组装和测试的,其结果与仿真结果一起验证了ACC的性能。

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