Hamiltonian modeling of generator integrated AVR and PSS
Authors
Jing Qian, Yun Zeng, Lixiang Zhang, Tianmao Xu
Abstract
In this article AVR and PSS are integrated with generator, and constituted the complete object-oriented model included generator and its controllers. By means of energy composition of analog circuit, controller AVR and PSS equivalent energy function descriptions are obtained. Then controller energy functions are added to the generator Hamiltonian function, and composed the total energy function of system. Furthermore, a Hamiltonian model of generator integrated AVR and PSS is derived. Finally, according to the dissipative properties of Hamiltonian model, AVR and PSS influences on generator system dissipative properties are analyzed, and PSS damping effect on port is discussed. The results show that damping characteristics reflected in the model are consistent with practical system.
Keywords
generator; AVR; PSS; Hamiltonian model; dissipative characteristics
Citation
- Journal: Procedia Engineering
- Year: 2012
- Volume: 31
- Issue:
- Pages: 1217–1224
- Publisher: Elsevier BV
- DOI: 10.1016/j.proeng.2012.01.1167
- Note: International Conference on Advances in Computational Modeling and Simulation
BibTeX
@article{Qian_2012,
title={{Hamiltonian modeling of generator integrated AVR and PSS}},
volume={31},
ISSN={1877-7058},
DOI={10.1016/j.proeng.2012.01.1167},
journal={Procedia Engineering},
publisher={Elsevier BV},
author={Qian, Jing and Zeng, Yun and Zhang, Lixiang and Xu, Tianmao},
year={2012},
pages={1217--1224}
}
References
- Wang, Y., Cheng, D., Liu, Y. & Li, C. AdaptiveH∞excitation control of multimachine power systems via the Hamiltonian function method. International Journal of Control 77, 336–350 (2004) – 10.1080/0020717042000196254
- Mei, S., Shen, T., Hu, W., Lu, Q. & Sun, L. Robus control of a Hamiltonian system with uncertainty and its application to a multi-machine power system. IEE Proc., Control Theory Appl. 152, 202–210 (2005) – 10.1049/ip-cta:20041121
- Cervera, J., van der Schaft, A. J. & Baños, A. Interconnection of port-Hamiltonian systems and composition of Dirac structures. Automatica 43, 212–225 (2007) – 10.1016/j.automatica.2006.08.014
- Ma, J. & Mei, S. Hamiltonian realization of power system dynamic models and its applications. Sci. China Ser. E-Technol. Sci. 51, 735–750 (2008) – 10.1007/s11431-008-0077-x
- Liu, Q. J., Sun, Y. Z., Shen, T. L. & Song, Y. H. Adaptive nonlinear co-ordinated excitation and STATCOM controller based on Hamiltonian structure for multimachine-power-system stability enhancement. IEE Proc., Control Theory Appl. 150, 285–294 (2003) – 10.1049/ip-cta:20030319
- Hao, J., Wang, J., Chen, C. & Shi, L. Nonlinear excitation control of multi-machine power systems with structure preserving models based on Hamiltonian system theory. Electric Power Systems Research 74, 401–408 (2005) – 10.1016/j.epsr.2004.12.003
- Kundur, (2002)