Presentation | 2010-08-03 An Experimental Study on Mechanical Model for Understanding Power System Stability Yuko OMAGARI, Tsuyoshi FUNAKI, |
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Abstract(in Japanese) | (See Japanese page) |
Abstract(in English) | It is difficult to understand the power system behavior intuitively due to its invisibility. The equivalent mechanical model of an electrical power system developed by NODA provides a means of visualizing the power system behavior, and helps the intuitive understanding of the stable/unstable operation of a power system. This study quantitatively evaluates the steady-state stability limit and the maximum local load shedding obtained from the mechanical model. The results show that the validity of the mechanical model is confirmed for small disturbances with weakly nonlinear conditions. However, only the qualitative validity is confirmed for large disturbances with highly nonlinear conditions. |
Keyword(in Japanese) | (See Japanese page) |
Keyword(in English) | Mechanical Model / Power System / Steady-state Stability / Transient Stability |
Paper # | CAS2010-47,NLP2010-63 |
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Committee | NLP |
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Conference Date | 2010/7/26(1days) |
Place (in Japanese) | (See Japanese page) |
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Registration To | Nonlinear Problems (NLP) |
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Language | ENG |
Title (in Japanese) | (See Japanese page) |
Sub Title (in Japanese) | (See Japanese page) |
Title (in English) | An Experimental Study on Mechanical Model for Understanding Power System Stability |
Sub Title (in English) | |
Keyword(1) | Mechanical Model |
Keyword(2) | Power System |
Keyword(3) | Steady-state Stability |
Keyword(4) | Transient Stability |
1st Author's Name | Yuko OMAGARI |
1st Author's Affiliation | Graduate school of Engineering, Osaka University() |
2nd Author's Name | Tsuyoshi FUNAKI |
2nd Author's Affiliation | Graduate school of Engineering, Osaka University |
Date | 2010-08-03 |
Paper # | CAS2010-47,NLP2010-63 |
Volume (vol) | vol.110 |
Number (no) | 166 |
Page | pp.pp.- |
#Pages | 6 |
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