Line Impedance Estimation Using Active and Reactive Power Variations

Publikation: Forskning - peer reviewKonferenceartikel i proceeding

Standard

Line Impedance Estimation Using Active and Reactive Power Variations. / Timbus, Adrian Vasile; Rodriguez, Pedro; Teodorescu, Remus; Ciobotaru, Mihai.

IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association, 2007. s. 1273-1279.

Publikation: Forskning - peer reviewKonferenceartikel i proceeding

Harvard

Timbus, AV, Rodriguez, P, Teodorescu, R & Ciobotaru, M 2007, 'Line Impedance Estimation Using Active and Reactive Power Variations'. i IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association, s. 1273-1279.

APA

Timbus, A. V., Rodriguez, P., Teodorescu, R., & Ciobotaru, M. (2007). Line Impedance Estimation Using Active and Reactive Power Variations. I IEEE Power Electronics Specialists Conference, PESC 2007. (s. 1273-1279). Electrical Engineering/Electronics, Computer, Communications and Information Technology Association.

CBE

Timbus AV, Rodriguez P, Teodorescu R, Ciobotaru M. 2007. Line Impedance Estimation Using Active and Reactive Power Variations. I IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association. s. 1273-1279.

MLA

Timbus, Adrian Vasile et al. "Line Impedance Estimation Using Active and Reactive Power Variations". IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association. 2007. 1273-1279.

Vancouver

Timbus AV, Rodriguez P, Teodorescu R, Ciobotaru M. Line Impedance Estimation Using Active and Reactive Power Variations. I IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association. 2007. s. 1273-1279.

Author

Timbus, Adrian Vasile; Rodriguez, Pedro; Teodorescu, Remus; Ciobotaru, Mihai / Line Impedance Estimation Using Active and Reactive Power Variations.

IEEE Power Electronics Specialists Conference, PESC 2007. Electrical Engineering/Electronics, Computer, Communications and Information Technology Association, 2007. s. 1273-1279.

Publikation: Forskning - peer reviewKonferenceartikel i proceeding

Bibtex

@inbook{f630c200bd0c11dca96e000ea68e967b,
title = "Line Impedance Estimation Using Active and Reactive Power Variations",
publisher = "Electrical Engineering/Electronics, Computer, Communications and Information Technology Association",
author = "Timbus, {Adrian Vasile} and Pedro Rodriguez and Remus Teodorescu and Mihai Ciobotaru",
year = "2007",
isbn = "978-1-4244-0655-5",
pages = "1273-1279",
booktitle = "IEEE Power Electronics Specialists Conference, PESC 2007",

}

RIS

TY - GEN

T1 - Line Impedance Estimation Using Active and Reactive Power Variations

A1 - Timbus,Adrian Vasile

A1 - Rodriguez,Pedro

A1 - Teodorescu,Remus

A1 - Ciobotaru,Mihai

AU - Timbus,Adrian Vasile

AU - Rodriguez,Pedro

AU - Teodorescu,Remus

AU - Ciobotaru,Mihai

PB - Electrical Engineering/Electronics, Computer, Communications and Information Technology Association

PY - 2007

Y1 - 2007

N2 - This paper proposes an estimation method of power system impedance based on power variations caused by a<br/>distributed power generation system (DPGS) at the point of common coupling (PCC). The proposed algorithm is<br/>computationally simple and uses the voltage variations at the point of common coupling (PCC) caused by the<br/>variations of the power delivered to utility network to derive the value of grid impedance. Accurate estimation of<br/>both resistive and inductive part of the impedance is obtained, as the results presented show.

AB - This paper proposes an estimation method of power system impedance based on power variations caused by a<br/>distributed power generation system (DPGS) at the point of common coupling (PCC). The proposed algorithm is<br/>computationally simple and uses the voltage variations at the point of common coupling (PCC) caused by the<br/>variations of the power delivered to utility network to derive the value of grid impedance. Accurate estimation of<br/>both resistive and inductive part of the impedance is obtained, as the results presented show.

KW - Line impedance

KW - Power variations

KW - Distributed generation

KW - Grid converter control

UR - http://ieeexplore.ieee.org/sea...

SN - 978-1-4244-0655-5

BT - IEEE Power Electronics Specialists Conference, PESC 2007

T2 - IEEE Power Electronics Specialists Conference, PESC 2007

SP - 1273

EP - 1279

ER -