Partially decoupled HAD OPF algorithm for constrained power economic dispatch

Research output: Contribution to conferencePaper

Abstract

A partially decoupled hierarchical aggregation/disaggregation (HAD) OPF algorithm is developed for the constrained power economic dispatch. The effects of the new partially decoupled real power OPF are investigated. The test results show that the proposed method has acceptable accuracy, and efficiently speeds up the computation process.

Original languageEnglish
Pages21-26
Number of pages6
Publication statusPublished - 1 Dec 1995
Externally publishedYes
EventProceedings of the 1995 IEEE Conference on Control Applications - Albany, NY, USA
Duration: 28 Sep 199529 Sep 1995

Other

OtherProceedings of the 1995 IEEE Conference on Control Applications
CityAlbany, NY, USA
Period28/9/9529/9/95

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Agglomeration
Economics

ASJC Scopus subject areas

  • Control and Systems Engineering

Cite this

Huang, G. M., & Song, K. (1995). Partially decoupled HAD OPF algorithm for constrained power economic dispatch. 21-26. Paper presented at Proceedings of the 1995 IEEE Conference on Control Applications, Albany, NY, USA, .

Partially decoupled HAD OPF algorithm for constrained power economic dispatch. / Huang, Garng Morton; Song, K.

1995. 21-26 Paper presented at Proceedings of the 1995 IEEE Conference on Control Applications, Albany, NY, USA, .

Research output: Contribution to conferencePaper

Huang, GM & Song, K 1995, 'Partially decoupled HAD OPF algorithm for constrained power economic dispatch' Paper presented at Proceedings of the 1995 IEEE Conference on Control Applications, Albany, NY, USA, 28/9/95 - 29/9/95, pp. 21-26.
Huang GM, Song K. Partially decoupled HAD OPF algorithm for constrained power economic dispatch. 1995. Paper presented at Proceedings of the 1995 IEEE Conference on Control Applications, Albany, NY, USA, .
Huang, Garng Morton ; Song, K. / Partially decoupled HAD OPF algorithm for constrained power economic dispatch. Paper presented at Proceedings of the 1995 IEEE Conference on Control Applications, Albany, NY, USA, .6 p.
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