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Novel method of pre-determining induction machine parameters and energetic efficiency

机译:预先确定感应电机参数和能量效率的新方法

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The efficiency concept becomes present at all levels of electric motors design, manufacturing and repairing activity. New legislations including Energy Independence Security Act and similar will effectively impose a new design constraint: efficiency of induction machines (IM). Various motor management programs promoted by the utilities, new standards will also closely monitor efficiency of the repaired motors. Proposed method covers the need of a rapid and effective evaluation of energetic efficiencies of new (including preliminary designs or prototypes) and/or rewound IM. Based on the d-q orthogonal Park model, differential equations modeling IM parameters are written. An original mathematical approach is used to determine the existence domain of the machine parameters, with direct estimation of energy efficiency domain as a function of IM parameters. The work presented in this paper has been done without considering non-sinusoidal power supply conditions and magnetic saturation. These topics, in the context of efficiency estimation, will make the subject of future published research. Proposed algorithm (MEMPE) was validated during pre-design process of dedicated IM for special applications. It was also used to pre-determine the new values of parameters of the rewound IM. Practical implications of this work are described with all their benefits for customers, utility programs, IM designers and service centers implementing new methodology for efficient repairs/rewinds of IM. This paper is a step into laborious work in finding analytical expressions that would allow efficiency estimation by non intrusive site measurements, without any need of performing costly dynamometer tests.
机译:效率概念出现在电动机设计,制造和维修活动的各个级别。包括《能源独立安全法》等在内的新法规将有效地施加新的设计约束:感应电机(IM)的效率。由公用事业公司推动的各种电动机管理计划,新标准也将密切监视维修电动机的效率。提议的方法涵盖了对新的(包括初步设计或原型)和/或倒带的IM的能量效率进行快速有效评估的需求。基于d-q正交Park模型,编写了建模IM参数的微分方程。原始的数学方法用于确定机器参数的存在域,并根据IM参数直接估算能效域。本文中提出的工作是在没有考虑非正弦电源条件和磁饱和的情况下完成的。在效率估算的背景下,这些主题将成为未来已发表研究的主题。在针对特殊应用的专用IM的预设计过程中,对提出的算法(MEMPE)进行了验证。它也可以用来预先确定倒带的IM参数的新值。描述了这项工作的实际意义,以及它们为客户,实用程序,IM设计人员和服务中心带来的所有好处,这些利益实现了有效修复/倒带IM的新方法。本文是一项艰巨的工作,旨在寻找无需通过昂贵的测功机测试即可通过非侵入式现场测量来估算效率的分析表达式。

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