Implementation of Low-Cost High-Performance Generators for Testing the Harmonic Measurement Accuracy of Instrument Transformers

IF 5.6 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Adriano Demetrio;Marco Faifer;Christian Laurano;Roberto Ottoboni;Sergio Toscani
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引用次数: 0

Abstract

A proper characterization of instrument transformers requires waveform generators able to apply realistic periodic voltages and currents, resembling those typically found in distribution grids. This article proposes a simple approach for dramatically improving the performance of generators based on the usual, low-cost architecture consisting of a power amplifier and a coupling transformer, which enables reaching the required voltage and current levels. The method is based on iterative frequency-domain error feedback, with feedback gain set according to a preliminary frequency response measurement of the open-loop generation system. The theoretical analysis demonstrates that the asymptotic generation error depends on the adopted reference transducer, on the disturbance level, but not on the characteristics of the generation system. This feature thus enables reaching high generation accuracy without using an overdesigned coupling transformer. The proposed approach has been adopted for the implementation of a high current and a medium voltage generator. The experimental results confirm the effectiveness of the frequency-domain feedback method that in both the cases allows for a remarkable accuracy improvement.
低成本高性能发电机测试仪表变压器谐波测量精度的实现
仪器变压器的适当特性要求波形发生器能够应用实际的周期性电压和电流,类似于配电网中通常发现的波形发生器。本文提出了一种简单的方法,可以显著提高发电机的性能,该方法基于通常的低成本架构,该架构由功率放大器和耦合变压器组成,可以达到所需的电压和电流水平。该方法基于迭代频域误差反馈,根据开环发电系统的初步频响测量值设置反馈增益。理论分析表明,渐近产生误差取决于所采用的参考换能器和扰动水平,而与产生系统的特性无关。因此,该功能可以在不使用过度设计的耦合变压器的情况下达到高发电精度。所提出的方法已被用于实现一个大电流中压发电机。实验结果证实了频域反馈方法的有效性,在两种情况下都能显著提高精度。
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来源期刊
IEEE Transactions on Instrumentation and Measurement
IEEE Transactions on Instrumentation and Measurement 工程技术-工程:电子与电气
CiteScore
9.00
自引率
23.20%
发文量
1294
审稿时长
3.9 months
期刊介绍: Papers are sought that address innovative solutions to the development and use of electrical and electronic instruments and equipment to measure, monitor and/or record physical phenomena for the purpose of advancing measurement science, methods, functionality and applications. The scope of these papers may encompass: (1) theory, methodology, and practice of measurement; (2) design, development and evaluation of instrumentation and measurement systems and components used in generating, acquiring, conditioning and processing signals; (3) analysis, representation, display, and preservation of the information obtained from a set of measurements; and (4) scientific and technical support to establishment and maintenance of technical standards in the field of Instrumentation and Measurement.
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