Research on Load Models Effect on Stability of Voltage of DC End Power System

Article Preview

Abstract:

Load characteristic is one of the vital factors that effect the stability of voltage of power system. As the most important dynamic load in power system, induction motor is one of the most direct reasons which resulting in instability of voltage. In simulated analysis, the establishment of load model, choice of parameter as well as ratio distribution of different kinds of load will lay considerable influence on the stability of system. This thesis establishes the load model of induction motor in stable and transient state and simulates on the basis of Shandong power grid. As the simulating result shows, load ratio of induction motor has fundamental effect on the voltage stability of Shandong power grid. As the load ratio of induction motor increases, the stability of voltage of Shandong power grid decrease and the voltage may even break down.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1404-1410

Citation:

Online since:

August 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Aik D L H, Andersson G. Influence of load characteristics on the power/voltage stability of HVDC systems, Part 1: basic equations and realationships[J]. IEEE Trans on Power Delivery, 1998, 13(4): 1437-1444.

DOI: 10.1109/61.714625

Google Scholar

[2] Aik D L H, Andersson G. Influence of load characteristics on the power/voltage stability of HVDC systems, Part 2: stability margin sensitivity[J]. IEEE Trans on Power Delivery, 1998, 13(4): 1445-1452.

DOI: 10.1109/61.714627

Google Scholar

[3] Chen Huixiang, Wang Zhonghong, Cui Wenjin. Research on Voltage Stability of Guangdong Power System[J]. Automatic Control on Electrical Power System, 2004, 28(7): 86-89.

Google Scholar

[4] Liao Minchuan, Cai Guanglin, Zhang Yongjun. Analysis on Transient Voltage Stability of Receiving End of AC and DC Power System[J]. Protection and Centralization of Power System, 2009, 37(10): 1-4, 18.

Google Scholar

[5] Taylor C W. Power system voltage stability[M]. Beijing, China Electric Power Press, (2002).

Google Scholar

[6] Tang Yong, Bo Guangquan, Yinyonghua, etc. User Guide of BPA Transient Stability Procedure(Chinese Version 4. 15) [Z]. China Electric Power Research Institute, (2010).

Google Scholar

[7] Xi'an Jiaotong University. Calculation of Power System[M]. Beijing: Water Conservancy and Electric Power Press, (1978).

Google Scholar

[8] China Electric Power Research Institute. User Guide of Synthetical Procedure of Power System Analysis(PSASP)[Z]. China Electric Power Research Institute, (2003).

DOI: 10.17775/cseejpes.2017.0015

Google Scholar