dc.creator | Matarucco R.R. | |
dc.creator | Canossa J.H. | |
dc.creator | Alves D.A. | |
dc.creator | Da Silva L.C.P. | |
dc.creator | Castro C.A. | |
dc.date | 2006 | |
dc.date | 2015-06-30T18:10:27Z | |
dc.date | 2015-11-26T14:26:41Z | |
dc.date | 2015-06-30T18:10:27Z | |
dc.date | 2015-11-26T14:26:41Z | |
dc.date.accessioned | 2018-03-28T21:29:44Z | |
dc.date.available | 2018-03-28T21:29:44Z | |
dc.identifier | | |
dc.identifier | Controle Y Automacao. , v. 17, n. 2, p. 138 - 154, 2006. | |
dc.identifier | 1031759 | |
dc.identifier | | |
dc.identifier | http://www.scopus.com/inward/record.url?eid=2-s2.0-33947648444&partnerID=40&md5=701ac9e9e54dca701c4f7ad4dfdae4d5 | |
dc.identifier | http://www.repositorio.unicamp.br/handle/REPOSIP/103367 | |
dc.identifier | http://repositorio.unicamp.br/jspui/handle/REPOSIP/103367 | |
dc.identifier | 2-s2.0-33947648444 | |
dc.identifier.uri | http://repositorioslatinoamericanos.uchile.cl/handle/2250/1246135 | |
dc.description | This work presents a new methodology for static contingency analysis of electric power systems by using Continuation Methods. The post-contingency loading margin is obtained from the base case maximum loading point. The voltage magnitude of any bus can be used as a parameter in the parameterization step of the proposed continuation power flow. The branch selected for contingency evaluation is parameterized by a scaling factor which allows its the gradual removal and assures the continuation power flow convergence for the cases where the method would diverge for the complete transmission line removal. In general, for most of the analyzed contingencies little iterations are necessary for the determination of the post-contingency maximum loading point. It is shown that the method can be used as an alternative technique to verify and even to obtain the list of critical contingencies supplied by the electric power systems security analysis function. | |
dc.description | 17 | |
dc.description | 2 | |
dc.description | 138 | |
dc.description | 154 | |
dc.description | Ajjarapu, V., Christy, C., The Continuation Power Flow: A Tool for Steady State Voltage Stability Analysis (1992) IEEE Trans. on Power Systems, 7, pp. 416-423 | |
dc.description | Alves, D.A., da Silva, L.C.P., Castro, C.A., da Costa, V.F., Esquemas Alternativos para o Passo de Parametrização do Método da Continuação Baseados em Parâmetros Físicos (2002) Revista Controle & Automação, 13 (3), pp. 275-289 | |
dc.description | Alves, D.A., da Silva, L.C.P., Castro, C.A., da Costa, V.F., Parameterized Fast Decoupled Power Flow Methods for Obtaining the Maximum Loading Point of Power Systems - Part-I: Mathematical Modeling (2004) Electric Power Systems Research, 69 (1), pp. 93-104 | |
dc.description | Barbosa, L.V., Salgado, R., Unsolvable Power Flow Analysis - An Approach Based on Interior Point Non-Linear Optimization Methods (2001) IEEE Power Tech Conference, , Porto, Portugal | |
dc.description | Cañizares, C.A., Conditions for Saddle-Node Bifurcations in AC/DC Power Systems (1995) Electric Power Energy Systems, 17, pp. 61-68 | |
dc.description | Castro, C.A., Braz, L.M.C., Uma Nova Abordagem para a Solução do Problema de Fluxo de Carga pelo Método de Newton corn Otimização de Passo (1997) Revista Controle & Automação, 8 (3), pp. 121-133 | |
dc.description | Chiang, H.D., Li, H., Yoshida, H., Fukuyama, Y., Nakanishi, Y., The Generation of ZIP-V Curves for Tracing Power System Steady State Stationary Behavior due to Load and Generation Variations (1999) IEEE PES Summer Meeting, pp. 647-651. , Edmonton, Canada, pp | |
dc.description | Chiang, H.D., Flueck, A.J., Shah, K.S., Balu, N., CPFLOW: A Practical Tool for Tracing Power Systems Steady-State Stationary Behavior due to Load and Generation Variations (1995) IEEE Trans. Power Systems, 10, pp. 623-633 | |
dc.description | Chiang, H.D., Wang, C.S., Flueck, A.J., Look-Ahead Voltage and Load Margin Contingency Selection Functions for Large Scale Power Systems (1997) IEEE Trans. Power Systems, 12, pp. 173-180 | |
dc.description | Da Costa, G.R.M., Langona, M.K., Alves, D.A., A New Approach to the Solution of the Optimal Power Flow Problem Based on the Modified Newton's Method Associated to an Augmented Lagrangian Function (1998) Proceedings of the International Conference on Power System Technology, pp. 909-913. , Beijing, China, pp | |
dc.description | Ejebe, G.C., Irissari, G.D., Mokhatari, S., Obadina, O., Ristanovic, P., Tong, J., Methods for Contingency Screening and Ranking for Voltage Stability Analysis of Power Systems (1996) IEEE Trans. on Power Systems, 11, pp. 350-356 | |
dc.description | Feng, Z., Xu, W., Fast Computation of Post-Contingency System Margin for Voltage Stability Assessments of Large-Scale Power Systems (2000) IEE Proceedings - Generation, Transmission and Distribution, 147 (2), pp. 76-80 | |
dc.description | Flatabø, N., Ognedal, R., Carlsen, T., Voltage Stability Condition in a Power Transmission System Calculated by Sensitivity Methods (1990) IEEE Trans. on Power Systems, 5 (4), pp. 1286-1293 | |
dc.description | Freris, L.L., Sasson, A.M., Investigation of the Load-Flow Problem (1968) Proceeding of IEE, 115 (10), pp. 1459-1470 | |
dc.description | Critérios e Metodologias Estabelecidos no Âmbito da Força-Tarefa "Colapso de Tensão" do GTAD/SCEL/ GCOI para Estudos de Estabilidade de Tensão nos Sistemas Interligados Norte/Nordeste, Sul/Sudeste e Norte/Sul Brasileiros (1999) XV SNPTEE, , FTCT , Foz do Iguaçu, PR, Brasil | |
dc.description | Granville, S., Mello, J.C.O., Melo, A.C.G., Application of Interior Point Methods to Power Flow Unsolvability (1996) IEEE Trans. Power Systems, 11 (2), pp. 1096-1103 | |
dc.description | Granville, S., Latorre, M.L., Ojeda, J.R., 2). Colapso de Tensão e Fluxo de Potência Ótimo em Sistema de Potência (1996) Eletroevolução, pp. 47-53 | |
dc.description | Greene, S., Dobson, I., Alvarado, F.L., Contingency Ranking for Voltage Collapse via Sensitivities from a Single Nose Curve (1999) IEEE Trans. on Power Systems, 14, pp. 232-240 | |
dc.description | Special Publication Final Draft: Voltage Stability Assessment, Procedures and Guides, , http://www.power.uwaterloo.ca, IEEE Power System Stability Committee IEEE-SSC | |
dc.description | (2001) ONS Network Procedures-Guidelines and Criteria to Electrical Studies, , ONS | |
dc.description | Overbye, T.J., A Power Flow Measure for Unsolvable Cases (1994) IEEE Trans, on Power Systems, 9 (3), pp. 1359-1365 | |
dc.description | Peterson, N.M., Meyer, W.S., Automatic Adjustment of Transformer and Phase-Shifter Taps in the Newton Power Flow (1971) IEEE Trans. on PAS, PAS-90 (1), pp. 103-108 | |
dc.description | Rider, M.J., Castro, C.A., Paucar, V.L., Garcia, A.V., Higher-Order Interior Point Method for Minimising Load-Shedding in a Competitive Electric Power Market (2004) IEE Prooc. Generation Transm. Distrib, 151 (4), pp. 433-440 | |
dc.description | Taylor, C.W., (1994) Power System Voltage Stability, A, , MacGraw-Hill, Inc, New York, EUA | |
dc.description | Torres, G. L., Quintana, V. H., Carvalho, M. A. (2002). Higher-Order Interior Point Methods for Computing Minimum Load Shedding and Maximum Loadability of Power Systems. VIII Simpósio de Especialistas em Planejamento da Operação e Expansão Elétrica (SE-POPE), Brasília (DF), Brasil, IP-057Van Cutsem, T., Mailhot, R., Validation of a Fast Voltage Stability Analysis Method on the Hydro-Québec System (1997) IEEE Trans. on Power Systems, 12, pp. 282-292 | |
dc.description | (2003) Web site da Universidade de Washington, The Standard IEEE 118 Test Data, , http://www.ee.washington.edu/research/pstca, disponível em | |
dc.description | WSCC-Reactive Power Reserve Work Group (RRWG) (1998). Final Report: Voltage Stability Criteria, Under-voltage Load Shedding Strategy, and Reactive Power Reserve Monitoring Methodology, 154pYokoyama, A., Sekine, Y., A Static Voltage Stability Index Based on Multiple Load Flow Solutions (1989) Proceedings of Bulk Power System Voltage PhenomenaVoltage Stability and Security Conference, , Missoruri, EUA | |
dc.language | pt | |
dc.publisher | | |
dc.relation | Controle y Automacao | |
dc.rights | aberto | |
dc.source | Scopus | |
dc.title | Method Of Continuity Applied In The Analysis Of Contingency Of Transmission Lines [método Da Continuação Aplicado Na Análise De Contingência De Linhas De Transmissão] | |
dc.type | Artículos de revistas | |