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LabVIEW-based real-time error compensation system for measurement current transformer using piecewise linearisation

机译:基于LabVIEW的基于分段线性化的电流互感器实时误差补偿系统

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This article describes the development of an error compensation algorithm for a measurement current transformer (CT). The flux-magnetising current loops are derived in the proposed algorithm to minimise the number of required loops for computation. At every sampling interval, the exciting current is obtained from these loops and then it is added to the measured secondary current to gain the corrected primary current. The performance is tested using MATLAB program and later, the same code is executed in LabVIEW environment. Performance analysis indicates that the proposed algorithm improved the accuracy of the measurement CT notably even with minimum loops. The experimental test results demonstrate that the compensator is capable to correct the accuracy of the measurement CT in remarkable manner.
机译:本文介绍了一种用于测量电流互感器(CT)的误差补偿算法的开发。在所提出的算法中导出了磁通电流回路,以最大程度地减少计算所需回路的数量。在每个采样间隔,都会从这些环路获得励磁电流,然后将其添加到测量的次级电流中,以获取校正后的初级电流。使用MATLAB程序对性能进行了测试,随后,在LabVIEW环境中执行了相同的代码。性能分析表明,所提出的算法即使在最小环路下也能显着提高测量CT的精度。实验测试结果表明,补偿器能够以显着的方式校正测量CT的精度。

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