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Computer aided techniques for estimation and reduction of electromagnetic measurement devices uncertainties

机译:估计和减少电磁测量设备不确定性的计算机辅助技术

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摘要

At non-linear electromagnetic measurement systems, the finite element method is the most convenient tool for the system analysis and measurement uncertainties budget estimation. Two non-linear devices will be analyzed by finite element method: electrical steel sheet testing device-Epstein frame and combined current-voltage instrument transformer. The Epstein frame must comply with the standard IEC 60404-2:1996+A1:2008, and the combined instrument transformer with the IEC 60044-3: 2002. The Epstein frame forms an unloaded transformer and the analytical transformer theory introduces some approximations. The main approximation is introduced by the standard IEC 60404-2 (through the presumption of constant, invariant to the specimen grade effective magnetic path length). The finite element method results will enable an Epstein frame and combined current-voltage instrument transformer prototype design (by using a computer program based on genetic algorithm with minimal uncertainty budget as goal function) with reduced measurement uncertainty, which will be experimentally verified in the Metrological Laboratory for Electromagnetic Quantities at the Faculty of Electrical Engineering and Information Technologies-Skopje.
机译:在非线性电磁测量系统中,有限元法是用于系统分析和测量不确定性预算估算的最便捷工具。将通过有限元方法分析两个非线性设备:电工钢板测试设备-Epstein框架和组合式电流-电压仪表变压器。爱泼斯坦框架必须符合IEC 60404-2:1996 + A1:2008标准,并且组合式互感器必须符合IEC 60044-3:2002。爱泼斯坦框架构成了无负载变压器,分析变压器理论引入了一些近似值。主要近似值是由标准IEC 60404-2引入的(通过假定样品等级的有效磁路长度恒定不变)。有限元方法的结果将使Epstein框架和组合的电流-电压仪表互感器原型设计(通过使用基于遗传算法的计算机程序,具有最小的不确定性预算作为目标函数)具有减小的测量不确定性,将在计量学中进行实验验证电气工程和信息技术学院的电磁量实验室-斯科普里。

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