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Modeling of a Linear Switched Reluctance Machine and Drive for Wave Energy Conversion Using Matrix and Tensor Approach

机译:基于矩阵和张量法的线性开关磁阻电机和波能转换驱动模型

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摘要

Low power density is an obstacle of linear switched reluctance machines (LSRMs) to be competitive candidates for the wave energy conversion, which is increasingly a potential source of renewable energy. Meanwhile, the strong coupling and nonlinearity of LSRMs and drives make it very difficult to derive a comprehensive mathematical model for the behavior of the system. This paper presents a new excitation winding configuration to improve the power density and proposes a new method to model the LSRM and drive based on the matrix and tensor approach. The accuracy of the model has been evaluated by comparison to the simulation result from the finite element analysis tool.
机译:低功率密度阻碍了线性开关磁阻电机(LSRM)成为波能转换的竞争候选者,而波能转换正日益成为可再生能源的潜在来源。同时,LSRM和驱动器之间的强耦合和非线性使其很难为系统的行为导出一个综合的数学模型。本文提出了一种新的励磁绕组配置,以提高功率密度,并提出了一种基于矩阵和张量法建模LSRM和驱动的新方法。通过与有限元分析工具的仿真结果进行比较,评估了模型的准确性。

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