Standard

Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units: book chapter. / Moiseichenkov, Alexander; Dmitrieva, Anna; Senyuk, Mihail.
Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023: book. Institute of Electrical and Electronics Engineers Inc., 2023. p. 133-138.

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Harvard

Moiseichenkov, A, Dmitrieva, A & Senyuk, M 2023, Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units: book chapter. in Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023: book. Institute of Electrical and Electronics Engineers Inc., pp. 133-138, 2023 International Ural Conference on Electrical Power Engineering (UralCon), 29/09/2023. https://doi.org/10.1109/UralCon59258.2023.10291052

APA

Vancouver

Moiseichenkov A, Dmitrieva A, Senyuk M. Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units: book chapter. In Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023: book. Institute of Electrical and Electronics Engineers Inc. 2023. p. 133-138 doi: 10.1109/UralCon59258.2023.10291052

Author

Moiseichenkov, Alexander ; Dmitrieva, Anna ; Senyuk, Mihail. / Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units : book chapter. Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023: book. Institute of Electrical and Electronics Engineers Inc., 2023. pp. 133-138

BibTeX

@inproceedings{a0683c5ce4ba4317870ebf0b4c3c7373,
title = "Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units: book chapter",
abstract = "The study considers an algorithm for determining a synchronous generator rotor mechanical speed rotation according to the data of ph as or measurement unit. The mechanical speed of the rotor is a key indicator in the organization of the power unit operating mode emergency control. In addition, the mechanical speed of the synchronous generator rotor is used in testing the unloading speed of the turbine. Testing of the proposed method for determining of a synchronous generator rotor mechanical speed was performed on a physical model of a power system consisting of three low- power synchronous generators. As a result, the error in determining the the synchronous generator rotor mechanical speed did not exceed 0.5%. {\textcopyright} 2023 IEEE.",
author = "Alexander Moiseichenkov and Anna Dmitrieva and Mihail Senyuk",
year = "2023",
doi = "10.1109/UralCon59258.2023.10291052",
language = "English",
isbn = "979-835030339-1",
pages = "133--138",
booktitle = "Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
address = "United States",
note = "2023 International Ural Conference on Electrical Power Engineering (UralCon) ; Conference date: 29-09-2023 Through 01-10-2023",

}

RIS

TY - GEN

T1 - Development and Testing of an Algorithm for Determining the Angular Velocity of Rotation and Acceleration of a Synchronous Generator Rotor in Transient Processes Based on Phasor Measurement Units

T2 - 2023 International Ural Conference on Electrical Power Engineering (UralCon)

AU - Moiseichenkov, Alexander

AU - Dmitrieva, Anna

AU - Senyuk, Mihail

PY - 2023

Y1 - 2023

N2 - The study considers an algorithm for determining a synchronous generator rotor mechanical speed rotation according to the data of ph as or measurement unit. The mechanical speed of the rotor is a key indicator in the organization of the power unit operating mode emergency control. In addition, the mechanical speed of the synchronous generator rotor is used in testing the unloading speed of the turbine. Testing of the proposed method for determining of a synchronous generator rotor mechanical speed was performed on a physical model of a power system consisting of three low- power synchronous generators. As a result, the error in determining the the synchronous generator rotor mechanical speed did not exceed 0.5%. © 2023 IEEE.

AB - The study considers an algorithm for determining a synchronous generator rotor mechanical speed rotation according to the data of ph as or measurement unit. The mechanical speed of the rotor is a key indicator in the organization of the power unit operating mode emergency control. In addition, the mechanical speed of the synchronous generator rotor is used in testing the unloading speed of the turbine. Testing of the proposed method for determining of a synchronous generator rotor mechanical speed was performed on a physical model of a power system consisting of three low- power synchronous generators. As a result, the error in determining the the synchronous generator rotor mechanical speed did not exceed 0.5%. © 2023 IEEE.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85178329612

U2 - 10.1109/UralCon59258.2023.10291052

DO - 10.1109/UralCon59258.2023.10291052

M3 - Conference contribution

SN - 979-835030339-1

SP - 133

EP - 138

BT - Proceedings - 2023 International Ural Conference on Electrical Power Engineering, UralCon 2023

PB - Institute of Electrical and Electronics Engineers Inc.

Y2 - 29 September 2023 through 1 October 2023

ER -

ID: 49271932