CT Instrumentation Channel Error Correction Using Dynamic State Estimation

Emeka Obikwelu, A. Meliopoulos
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引用次数: 3

Abstract

Protective relays depend on the fidelity of Protection-Class current transformer (CT) instrumentation channel outputs to perform reliably. Such channel errors as caused by CT saturation thus pose serious protection reliability challenges. This paper presents a new method for estimating the CT primary current in real-time through a Dynamic State Estimation (DSE) process. Specifically, the method involves obtaining discrete measurements of the CT secondary burden voltage through a continuous monitoring process. The CT primary current is then continuously estimated by the DSE process, based on fitting the continuously obtained measurement samples to the detailed and non-ideal CT channel model. The continuously estimated primary current can then be made readily available for protection functions. The CT primary current is one of multiple state variables dynamically estimated using this method. The paper also presents a simple algorithm that can detect CT saturation nearly instantaneously, based on using the dynamically estimated flux linkage.
基于动态估计的CT仪器通道误差校正
保护继电器依赖于保护级电流互感器(CT)仪表通道输出的保真度来可靠地工作。由于CT饱和引起的通道误差对保护可靠性提出了严峻的挑战。提出了一种利用动态估计(Dynamic State Estimation, DSE)方法实时估计电流互感器一次电流的新方法。具体而言,该方法涉及通过连续监测过程获得CT二次负荷电压的离散测量值。然后,基于将连续获得的测量样本拟合到详细的非理想CT通道模型中,通过DSE过程连续估计CT一次电流。连续估计的一次电流可以很容易地用于保护功能。电流互感器的一次电流是用该方法动态估计的多个状态变量之一。本文还提出了一种基于动态估计磁链的CT饱和度检测算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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