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Design considerations for a PM-BLDC machine for flywheel energy storage applications

机译:飞轮储能应用的PM-BLDC机器的设计注意事项

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This paper gives the guidelines for the design of BLDC generator and selection of a bi-directional converter topology for optimal energy harvesting from a Flywheel Energy Storage (FES) system. A typical FES system consists of a rectifier, a bi-directional converter (BDC), an electrical machine (BLDC generator), and a flywheel. The BDC is operated as a boost converter for maintaining a constant dc bus voltage while energy is being harvested from the flywheel. Internal resistance (R) of the source significantly affects the boost converter gain and harvestable energy. It is important to model this source resistance to design an effective energy harvesting system. Dependency of this source resistance on machine parameters needs to be studied and modeled. An extensive analysis of the BLDC machine has been carried out using FEM/FFT to understand this phenomenon. This has helped in predicting R and choosing appropriate converter topology for optimizing the harvestable energy. Those losses in a BLDC generator, which reflect as series source resistance to the BDC, have been quantified. An FES system of 5.0kW rating with a backup time of 60sec has been built and evaluated. The results obtained from this set up have been analyzed to validate the theoretical analysis of the overall system.
机译:本文为BLDC发电机的设计和双向转换器拓扑的选择提供了指南,以从飞轮储能(FES)系统中获取最佳能量。典型的FES系统由整流器,双向转换器(BDC),电机(BLDC发电机)和飞轮组成。 BDC用作升压转换器,以在从飞轮收集能量时保持恒定的直流总线电压。源的内部电阻(R)会严重影响升压转换器的增益和可收获的能量。对这种源电阻进行建模以设计有效的能量收集系统非常重要。这种源电阻对机器参数的依赖性需要进行研究和建模。已经使用FEM / FFT对BLDC机器进行了广泛的分析,以了解这种现象。这有助于预测R并选择适当的转换器拓扑以优化可收获的能量。 BLDC发生器中的那些损耗已反映为对BDC的串联电源电阻,已被量化。已构建并评估了额定功率为5.0kW,备用时间为60sec的FES系统。从该设置中获得的结果已经过分析,以验证整个系统的理论分析。

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