电机铁损预测。利用瞬态有限元方法的独特工程方法。第1部分:理论和计算方法

J. Lorenz
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引用次数: 8

摘要

运行损耗直接影响电机的温度分布、寿命和效率。在设计过程的早期实现对机器性能的准确预测可能是一个重大挑战。可以使用有限元方法来预测关键的机器性能参数,如操作损失和效率,并且计算能力的进步允许更广泛地使用这种方法。本文重点介绍了一种新的、独特的机器铁损预测方法——瞬态有限元法。新方法的一个显著不同之处在于对给定的层合钢试验损耗测试数据进行预测损耗函数的计算。对几种层合钢的铁损预测函数与常用的历史方法进行了比较。
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Electrical machine iron loss predictions - A unique engineering approach utilizing transient finite element methods - Part 1: Theory and calculation method
Operating losses directly impact the temperature profiles, life, and efficiency of electrical machines. Achieving accurate predictions of machine performance early in the design process can be a significant challenge. Finite element methods for predicting critical machine performance parameters such as operating losses and efficiency can be used, and advances in computing capabilities have allowed for more extensive use of this approach. This paper is focused on the concepts used in a new and unique method for predicting machine iron losses using transient finite element methods (FEM). A significant difference of the new method is the manner in which the predictive loss function is arrived at given lamination steel experimental loss test data. The new iron loss predictive function is compared to a common historical method for several lamination steels.
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Pole-restraining control for Modular Multilevel Converters in electric-ship applications Generic modeling and analysis framework for shipboard system design Electric generation technologies for all-electric ships with Medium-Voltage DC power distribution systems Electrical machine iron loss predictions - A unique engineering approach utilizing transient finite element methods - Part 1: Theory and calculation method Modular Multilevel Converter for propulsion system of electric ships
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