Reconstructing Primary Voltage across Inductive VTs - Part II: Validation, Application, and Analysis
This two-part paper presents an inverse method to reconstruct the primary voltage of a VT from the available distorted secondary signals. In this second part, the performance of the proposed inverse method is validated by simulation using a 10 kV inductive voltage transformer (VT). Additionally, fou...
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Veröffentlicht in: | IEEE transactions on power delivery 2023-04, Vol.38 (2), p.1-11 |
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creator | Zou, Binyang Sima, Wenxia Yang, Ming Duan, Pan Li, Yongfu Luo, Xiaoxiao Qiu, Yuting de Leon, Francisco |
description | This two-part paper presents an inverse method to reconstruct the primary voltage of a VT from the available distorted secondary signals. In this second part, the performance of the proposed inverse method is validated by simulation using a 10 kV inductive voltage transformer (VT). Additionally, four laboratory experiments are performed to show the potential applications of the proposed method. These experiments closely represent realistic field conditions. The simulation and experimental results verify the accuracy and reliability of the method. The robustness and parameter accessibility are discussed. The novel inverse method provides an effective solution for the accurate reproduction of high-frequency transients and low-frequency over-voltages measurements. Furthermore, the reconstructed primary voltage waveforms provide usable data for the study of voltages in power systems. |
doi_str_mv | 10.1109/TPWRD.2022.3213720 |
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In this second part, the performance of the proposed inverse method is validated by simulation using a 10 kV inductive voltage transformer (VT). Additionally, four laboratory experiments are performed to show the potential applications of the proposed method. These experiments closely represent realistic field conditions. The simulation and experimental results verify the accuracy and reliability of the method. The robustness and parameter accessibility are discussed. The novel inverse method provides an effective solution for the accurate reproduction of high-frequency transients and low-frequency over-voltages measurements. 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In this second part, the performance of the proposed inverse method is validated by simulation using a 10 kV inductive voltage transformer (VT). Additionally, four laboratory experiments are performed to show the potential applications of the proposed method. These experiments closely represent realistic field conditions. The simulation and experimental results verify the accuracy and reliability of the method. The robustness and parameter accessibility are discussed. The novel inverse method provides an effective solution for the accurate reproduction of high-frequency transients and low-frequency over-voltages measurements. Furthermore, the reconstructed primary voltage waveforms provide usable data for the study of voltages in power systems.</description><subject>Black-box model</subject><subject>duality</subject><subject>Electric power systems</subject><subject>Frequency measurement</subject><subject>Inverse method</subject><subject>Inverse problems</subject><subject>Lightning</subject><subject>Parameter robustness</subject><subject>Reliability aspects</subject><subject>Resistance</subject><subject>Transient analysis</subject><subject>transient voltage</subject><subject>Voltage measurement</subject><subject>voltage transformer</subject><subject>Voltage transformers</subject><subject>Waveforms</subject><subject>Windings</subject><issn>0885-8977</issn><issn>1937-4208</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9kF1LwzAUhoMoOKd_QG8C3tp58tUk3o35NRg4xpyXJU3S0VHbmnTC_r3bOrw6HHifw3kfhG4JjAgB_bicfy2eRxQoHTFKmKRwhgZEM5lwCuocDUApkSgt5SW6inEDABw0DJBbeNvUsQtb25X1Gs9D-W3CDq-aqjNrj40NTYx4WrtD4Nfj1TLiBM9N6PB0-oRXpiqd6cqmfsDjtq1Ke1pM7fC4NtUulvEaXRSmiv7mNIfo8_VlOXlPZh9v08l4lljK0y7Jc-UARMo0sZpbp3ieCpnKItUFQEEVFY5oIYVg1rFcOsrzQmuvBVFEWWBDdN_fbUPzs_WxyzbNNuyfiBmVGgjjQrN9ivapY7Xgi6ztS2cEsoPN7GgzO9jMTjb30F0Pld77f0BrkhJO2B_nSW_J</recordid><startdate>20230401</startdate><enddate>20230401</enddate><creator>Zou, Binyang</creator><creator>Sima, Wenxia</creator><creator>Yang, Ming</creator><creator>Duan, Pan</creator><creator>Li, Yongfu</creator><creator>Luo, Xiaoxiao</creator><creator>Qiu, Yuting</creator><creator>de Leon, Francisco</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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In this second part, the performance of the proposed inverse method is validated by simulation using a 10 kV inductive voltage transformer (VT). Additionally, four laboratory experiments are performed to show the potential applications of the proposed method. These experiments closely represent realistic field conditions. The simulation and experimental results verify the accuracy and reliability of the method. The robustness and parameter accessibility are discussed. The novel inverse method provides an effective solution for the accurate reproduction of high-frequency transients and low-frequency over-voltages measurements. 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subjects | Black-box model duality Electric power systems Frequency measurement Inverse method Inverse problems Lightning Parameter robustness Reliability aspects Resistance Transient analysis transient voltage Voltage measurement voltage transformer Voltage transformers Waveforms Windings |
title | Reconstructing Primary Voltage across Inductive VTs - Part II: Validation, Application, and Analysis |
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