Publication Type | Proceedings Article |
Year of Publication | 1995 |
Authors | Chiva, A.; Heredia, F.J.; Nabona, N. |
Conference Name | IEEE '95 Stockholm Power Tech |
Series Title | International Symposium on Electric Power Engineering |
Volume | 6, PS |
Pagination | 67-73 |
Conference Start Date | 18/06/1995 |
Publisher | Royal Institute of Technology and IEEE Power Engineering Society |
Conference Location | Stockholm, Sweden |
Key Words | research; nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; spinning reserve; transmission security contraints; paper |
URL | Click Here |
DOI | http://hdl.handle.net/2117/14936 |
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short term hydrothermal OPF
Network Model of Short-Term Optimal Hydrothermal Power Flow with Security Constraints
Sat, 02/04/2012 - 15:01 — adminRecent Advances in Optimisation of Generation Operation
Fri, 01/29/2010 - 20:20 — adminPublication Type | Conference/School/Seminar attendance |
Year of Publication | 1999 |
Authors | F.-Javier Heredia |
Conference Name | Electric Energy Systems University Enterprise Training Partnership |
Event Type | Seminar |
Conference Organiser | Electricité de France (EDF) |
Conference Dates | 25-26/03/1999 |
Conference Location | Clamart, France |
Key Words | research; power systems; EDF |
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Optimum Short-Term Hydrothermal Scheduling with Spinning Reserve through Network Flows
Sun, 10/28/2007 - 19:47 — adminPublication Type | Conference Paper |
Year of Publication | 1995 |
Authors | Heredia, F. J.; Nabona, N. |
Conference Name | IEEE/Power Engineering Society Winter Meeting |
Conference Date | 02/1995 |
Conference Location | New York, EEUU |
Type of Work | Contributed oral presentation |
Key Words | nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; spinning reserve; research |
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Network Model of Short-Term Optimal Hydrothermal Power Flow with Security Constraints
Sun, 10/28/2007 - 19:23 — adminPublication Type | Conference Paper |
Year of Publication | 1995 |
Authors | Chiva, A.; Heredia, F.J.; Nabona, N. |
Conference Name | IEEE '95 Stockholm Power Tech |
Series Title | International Symposium on Electric Power Engineering |
Volume | 6, PS |
Pagination | 67-73 |
Conference Date | 18-22/06/1995 |
Publisher | Royal Institute of Technology and IEEE Power Engineering Society |
Conference Location | Stockholm, Sweden |
Type of Work | Contributed oral presentation |
Key Words | research; nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; spinning reserve; transmission security contraints; research |
URL | Click Here |
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Planificación Hidrotérmica a Corto Plazo. Optimización de un modelo acoplado de flujos no lineales en red
Sun, 10/28/2007 - 19:03 — adminPublication Type | Conference Paper |
Year of Publication | 1997 |
Authors | Heredia, F. J.; Nabona, N. |
Conference Name | XVIII Congreso Nacional de Estadística e Investigación Operativa |
Conference Date | 11-14/03/1997 |
Conference Location | València, Spain |
Type of Work | Contributed oral presentation |
Key Words | nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; research |
Abstract | El Modelo Acoplado del problema de Planificación Hidrotérmica a Corto Plazo permite optimizar conjuntamente el sistema hidráulico, térmico y la red de transmisión mediante la resolución de un único problema de flujos no lineales en red con restricciones laterales. Este trabajo describe el modelo matemático, los resultados computacionales y las posibles extensiones del método. |
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Nonlinear network flows with side constraints applied to short term hydrothermal coordination of electricity generation
Sun, 10/28/2007 - 18:50 — adminPublication Type | Conference Paper |
Year of Publication | 1992 |
Authors | Heredia, F. J.; Nabona, N. |
Conference Name | European Conference on Numerical Methods in Engineering '92 |
Conference Date | 1992 |
Conference Location | Brussels, Belgium |
Type of Work | Contributed oral presentation |
Key Words | nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; research |
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Planificación Óptima de Gran Dimensión de la Producción Hidrotérmica de Energía Eléctrica a Corto Plazo (TAP96-1044).
Thu, 10/25/2007 - 00:23 — adminPublication Type | Funded research projects |
Year of Publication | 1996 |
Authors | F.-Javier Heredia |
Type of participation | Full time researcher |
Duration | 07/1996-06/1999 |
Funding organization | Ministerio de Educación y Ciencia / Comisión Interministerial de Ciencia y Tecnologia |
Partners | Departament d'Estadística i Investigació Operativa / Universitat Politècnica de Catalunya |
Full time researchers | 9 |
Budget | 56.428€ |
Project code | TAP96-1044 |
Key Words | research; nonlinear network flows; side constraints; power systems; transmission network; short-term hydrothermal coordination; project; public; competitive; cicyt; energy |
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Development and computational test of an undecoupled optimum short-term hydrothermal scheduling code using network flows
Mon, 09/17/2007 - 23:01 — adminPublication Type | Journal Article |
Year of Publication | 1994 |
Authors | Heredia, F. J.; Nabona, N. |
Journal Title | TOP |
Volume | 2 |
Issue | 1 |
Pages | 28 |
Start Page | 105 |
Publisher | Springer |
ISSN Number | 1134-5764 |
Key Words | nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; spinning reserve; research; paper |
URL | Click Here |
DOI | 10.1007/BF02574762 |
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Optimum Short-Term Hydrothermal Schedulling with Spinning Reserve through Network Flows
Mon, 09/17/2007 - 18:34 — adminPublication Type | Journal Article |
Year of Publication | 1995 |
Authors | Heredia, F. J.; Nabona, N. |
Journal Title | IEEE Trans. on Power Systems |
Volume | 10 |
Issue | 3 |
Pages | 10 |
Start Page | 1642 |
Publisher | The Institue of Electrical and Electronic Engineering |
ISSN Number | 0885-8950 |
Key Words | nonlinear network flows; side constraints; power systems; short-term hydrothermal OPF; spinning reserve; research; paper |
Abstract | Optimizing the thermal production of electricity in the short term in an integrated power system when a thermal unit commitment has been decided means coordinating hydro and thermal generation in order to obtain the minimum thermal generation costs over the time period under study. Fundamental constraints to be satisfied are the covering of each hourly load and satisfaction of spinning reserve requirements and transmission capacity limits. A nonlinear network flow model with linear side constraints with no decomposition into hydro and thermal subproblems was used to solve the hydrothermal scheduling. Hydrogeneration is linearized with respect to network variables and a novel thermal generation and transmission network is introduced. Computational results are reported |
URL | Click Here |
DOI | http://dx.doi.org/10.1109/59.466476 |
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