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Magnetic Field Analysis and Structural Optimization of Deflection Double Stator Switched Reluctance Generator

机译:偏转双定子开关磁场发生器磁场分析与结构优化

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Switched reluctance generator has been widely used in industry. With the consumption of energy, the requirement of generator is higher and higher. The energy conversion rate of the traditional generator structure is very low, and it can no longer meet the existing technical indicators. In order to solve the problem of low efficiency of existing generators, this paper proposes a deflectable double stator switched reluctance generator (DDSRG), and performed a finite element analysis on this model. The magnetic density of the new generator is analyzed. A comparison between the proposed mathematical model and the finite element method verifies the accuracy of the model, finally, the core loss was used as the target to optimize the structure of the generator using the response surface method. The experimental results were compared with the simulation. The error was within the allowable range, which verified the correctness of the calculation method and the optimization scheme.
机译:开关磁阻发生器已广泛用于工业。 随着能源的消耗,发电机的要求越来越高。 传统发电机结构的能量转换率非常低,并且不再符合现有的技术指标。 为了解决现有发电机效率低的问题,本文提出了一种可偏转的双定子开关磁阻发生器(DDSRG),并对该模型进行了有限元分析。 分析了新发生器的磁密度。 所提出的数学模型与有限元方法之间的比较验证了模型的精度,最后,使用核心损耗用作使用响应表面方法优化发电机结构的目标。 将实验结果与模拟进行比较。 该错误在允许范围内,验证了计算方法的正确性和优化方案。

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