Standard

Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area: book chapter. / Gavrilova, Albina; Bannykh, Pavel; Pazderin, Andrey.
Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023: book. Institute of Electrical and Electronics Engineers Inc., 2023. p. 100-103.

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

Harvard

Gavrilova, A, Bannykh, P & Pazderin, A 2023, Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area: book chapter. in Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023: book. Institute of Electrical and Electronics Engineers Inc., pp. 100-103, 2023 Belarusian-Ural-Siberian Smart Energy Conference (BUSSEC), Екатеринбург, Russian Federation, 25/09/2023. https://doi.org/10.1109/BUSSEC59406.2023.10296271

APA

Gavrilova, A., Bannykh, P., & Pazderin, A. (2023). Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area: book chapter. In Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023: book (pp. 100-103). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/BUSSEC59406.2023.10296271

Vancouver

Gavrilova A, Bannykh P, Pazderin A. Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area: book chapter. In Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023: book. Institute of Electrical and Electronics Engineers Inc. 2023. p. 100-103 doi: 10.1109/BUSSEC59406.2023.10296271

Author

Gavrilova, Albina ; Bannykh, Pavel ; Pazderin, Andrey. / Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area : book chapter. Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023: book. Institute of Electrical and Electronics Engineers Inc., 2023. pp. 100-103

BibTeX

@inproceedings{7736ce21200145ea84a13179b9fc0409,
title = "Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area: book chapter",
abstract = "The paper is proposed a new method for voltage stability assessment. The method is adopted to transfer capability between two interconnected area. Traditionally maximum loading condition between two area according to voltage stability is calculated using continuation power flow. In case of complex interconnected structure of power system main disadvantage of continuation power flow is needed to select changes in the power of nodes. The proposed method belongs to the class of direct methods for searching point of collapse. The method is based on optimization procedure. The objective function directly uses the power flow through connections between interconnected area. Specific features are the direct use Jacobi matrix singular condition and flow model. Direct use Jacobi matrix singular condition eliminates eigenvalue analysis and other indirect estimation methods. Flow model is used to solve the problem of poor convergence of optimization procedure. The proposed method was tested on a 7-bus system and showed its effectiveness compared to continuation power flow. {\textcopyright} 2023 IEEE.",
author = "Albina Gavrilova and Pavel Bannykh and Andrey Pazderin",
year = "2023",
doi = "10.1109/BUSSEC59406.2023.10296271",
language = "English",
isbn = "979-835035807-0",
pages = "100--103",
booktitle = "Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
address = "United States",
note = "2023 Belarusian-Ural-Siberian Smart Energy Conference (BUSSEC) ; Conference date: 25-09-2023 Through 29-09-2023",

}

RIS

TY - GEN

T1 - Voltage Stability Limit Calculation for Power Transfer Capability Between Two Area

T2 - 2023 Belarusian-Ural-Siberian Smart Energy Conference (BUSSEC)

AU - Gavrilova, Albina

AU - Bannykh, Pavel

AU - Pazderin, Andrey

PY - 2023

Y1 - 2023

N2 - The paper is proposed a new method for voltage stability assessment. The method is adopted to transfer capability between two interconnected area. Traditionally maximum loading condition between two area according to voltage stability is calculated using continuation power flow. In case of complex interconnected structure of power system main disadvantage of continuation power flow is needed to select changes in the power of nodes. The proposed method belongs to the class of direct methods for searching point of collapse. The method is based on optimization procedure. The objective function directly uses the power flow through connections between interconnected area. Specific features are the direct use Jacobi matrix singular condition and flow model. Direct use Jacobi matrix singular condition eliminates eigenvalue analysis and other indirect estimation methods. Flow model is used to solve the problem of poor convergence of optimization procedure. The proposed method was tested on a 7-bus system and showed its effectiveness compared to continuation power flow. © 2023 IEEE.

AB - The paper is proposed a new method for voltage stability assessment. The method is adopted to transfer capability between two interconnected area. Traditionally maximum loading condition between two area according to voltage stability is calculated using continuation power flow. In case of complex interconnected structure of power system main disadvantage of continuation power flow is needed to select changes in the power of nodes. The proposed method belongs to the class of direct methods for searching point of collapse. The method is based on optimization procedure. The objective function directly uses the power flow through connections between interconnected area. Specific features are the direct use Jacobi matrix singular condition and flow model. Direct use Jacobi matrix singular condition eliminates eigenvalue analysis and other indirect estimation methods. Flow model is used to solve the problem of poor convergence of optimization procedure. The proposed method was tested on a 7-bus system and showed its effectiveness compared to continuation power flow. © 2023 IEEE.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85178017467

U2 - 10.1109/BUSSEC59406.2023.10296271

DO - 10.1109/BUSSEC59406.2023.10296271

M3 - Conference contribution

SN - 979-835035807-0

SP - 100

EP - 103

BT - Proceedings of the 2023 Belarusian-Ural-Siberian Smart Energy Conference, BUSSEC 2023

PB - Institute of Electrical and Electronics Engineers Inc.

Y2 - 25 September 2023 through 29 September 2023

ER -

ID: 49263937