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  1. (hist) ‎HUES GSoC Projects 2017 ‎[13,131 bytes]
  2. (hist) ‎HUESdata v1.0 Technology data specification ‎[12,599 bytes]
  3. (hist) ‎GSoC Projects ‎[11,106 bytes]
  4. (hist) ‎What is the HUES platform? ‎[5,666 bytes]
  5. (hist) ‎Casisi et al, 2015 - Effect of different economic support policies on the optimal systhesis and operation of a distribued energy supply system with renewable energy sources for an industrial area ‎[3,756 bytes]
  6. (hist) ‎Directions for submitting modules ‎[3,726 bytes]
  7. (hist) ‎Bischi et al, 2014 - A detailed MILP optimization model for combined cooling, heat, and power system operation planning ‎[3,626 bytes]
  8. (hist) ‎Wouters et al, 2015 - An energy integrated, multi-microgrid, MIP approach for residential distributed energy system planning - A South Australian case-study ‎[3,574 bytes]
  9. (hist) ‎Zhou et al, 2013 - A two-stage stochastic programming model for the optimal design of distributed energy systems ‎[3,558 bytes]
  10. (hist) ‎Costa and Fichera, 2014 - A mixed-integer linear programming (MILP) model for the evaluation of CHP system in the context of hospital structures ‎[3,542 bytes]
  11. (hist) ‎Buoro et al, 2011 - Optimization of Distributed Trigeneration Systems Integrated with Heating and Cooling Microgrids ‎[3,533 bytes]
  12. (hist) ‎Fuentes-Cortes et al, 2015 - Optimal design of integrated CHP systems for housing complexes ‎[3,496 bytes]
  13. (hist) ‎Ren and Gao, 2010 - A MILP model for integrated plan and evaluation of distributed energy system ‎[3,495 bytes]
  14. (hist) ‎Zhou et al, 2013 - An engineering approach to the optimal design of distributed energy systems in China ‎[3,487 bytes]
  15. (hist) ‎Ommen et al, 2014 - Comparison of linear, mixed integer and non-linear programming methods in energy system dispatch modelling ‎[3,474 bytes]
  16. (hist) ‎HUESdata v1.0 Time series data specification ‎[3,422 bytes]
  17. (hist) ‎Keirstead et al, 2012 - Evaluating biomass energy strategies for a UK eco-town with an MILP optimization model ‎[3,410 bytes]
  18. (hist) ‎Yang et al, 2015 - Optimal design of distributed energy resource systems coupled with energy distribution networks ‎[3,398 bytes]
  19. (hist) ‎Weber and Shah, 2011 - Optimisation based design of a district energy system for an eco-town in the United Kingdom ‎[3,395 bytes]
  20. (hist) ‎Buoro et al, 2013 - Multicriteria optimization of a distributed energy supply system for an industrial area ‎[3,378 bytes]
  21. (hist) ‎Stojiljkovic, 2015 - Greenhouse gases emission assessment in residential sector through buildings simulation and operation optimization ‎[3,368 bytes]
  22. (hist) ‎Yokohama et al, 2015 - Optimization of energy supply systems by MILP branch and bound method in consideration of hierarchical relationships between design and operation ‎[3,349 bytes]
  23. (hist) ‎Wakui and Yokoyama, 2015 - Optimal structural design of residential cogneration systems with battery based on improved solution method for mixed-integer linear programming ‎[3,345 bytes]
  24. (hist) ‎Ashouri et al, 2013 - Optimal design and operation of building services using mixed-integer linear programming techniques ‎[3,337 bytes]
  25. (hist) ‎Pazouki et al, 2014 - Uncertainty modeling in optimal operation of energy hub in presence of wind, storage, and demand response ‎[3,326 bytes]
  26. (hist) ‎Abdullah et al, 2015 - Sustainable energy system design with distributed renewable resources considering economic, environmental and uncertainty aspects ‎[3,323 bytes]
  27. (hist) ‎Steen et al, 2015 - Modeling of thermal storage systems in MILP distributed energy resource models ‎[3,313 bytes]
  28. (hist) ‎Casisi et al, 2009 - Optimal lay-out and operation of combined heat and power (CHP) distribtued generation systems ‎[3,181 bytes]
  29. (hist) ‎Orehounig et al, 2015 - Integration of decentralized energy systems in neighbourhoods using the energy hub approach ‎[3,106 bytes]
  30. (hist) ‎Acuri et al, 2007 - A mixed integer programming model for optimal design of trigeneration in a hospital complex ‎[3,061 bytes]
  31. (hist) ‎Omu et al, 2013 - Distributed energy resource system optmisation using mixed integer linear programming ‎[3,028 bytes]
  32. (hist) ‎Harb et al, 2015 - MIP approach for designing heating systems in residential buildings and neighbourhoods ‎[2,909 bytes]
  33. (hist) ‎OldMainPage ‎[2,884 bytes]
  34. (hist) ‎Fazlollahi and Marechal, 2013 - Multi-objective, multi-period optimization of biomass conversion technoogies using evolutionary algorithms and mixed integer linear programming (MILP) ‎[2,827 bytes]
  35. (hist) ‎Fazlollahi et al, 2014 - Multi-objectives, multi-period optimization of district energy systems: II. Daily thermal storage ‎[2,763 bytes]
  36. (hist) ‎Fazlollahi et al, 2012 - Methods for multi-objective investment and operating optimization of complex energy systems ‎[2,450 bytes]
  37. (hist) ‎Aste et al, 2013 - Cost optimal analysis of heat pump technology adoption in residential reference buildings ‎[2,446 bytes]
  38. (hist) ‎Download the technology database ‎[2,446 bytes]
  39. (hist) ‎HUES Platform ‎[2,379 bytes]
  40. (hist) ‎NewMainPage ‎[2,379 bytes]
  41. (hist) ‎Fazlollahi et al, 2015 - Multi-objective, multi-period optimization of district energy systems: IV - A case study ‎[2,373 bytes]
  42. (hist) ‎Rieder et al, 2014 - Multi-criteria dynamic design optimization of a small scale distributed energy system ‎[2,367 bytes]
  43. (hist) ‎Holjevac et al, 2015 - Adaptive control for evaluation of flexibility benefits in microgrid systems ‎[2,332 bytes]
  44. (hist) ‎Fazlollahi et al, 2014 - Multi-objectives, multi-period optimization of district energy systems: III. Distribution networks ‎[2,331 bytes]
  45. (hist) ‎OldContributionsPage ‎[2,282 bytes]
  46. (hist) ‎Milan et al, 2015 - Modeling of non-linear CHP efficiency curves in distributed energy systems ‎[2,242 bytes]
  47. (hist) ‎HUES data specification ‎[2,214 bytes]
  48. (hist) ‎Contribute - add models, code or data ‎[2,162 bytes]
  49. (hist) ‎Carvalho et al, 2011 - Optimal systhesis of trigeneration systems subject to environmental constraints ‎[2,116 bytes]
  50. (hist) ‎Ferrer-Marti et al, 2013 - A MILP model to design hybrid wind-photovoltaic isolated rural electrification projects in developing countries ‎[2,067 bytes]

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