Abstract
MOHRES conducts single and multio-objective size and configuration optimisation of standalone and on-grid hybrid renewable energy systems subject to uncertainties.
MOHRES can deal with a generic hybrid configuration consisting of Wind, PV, Diesel, Battery, Fuel Cell and Electrolyser components.
MOHRES employs innovative design and analysis methods and the state-of-the-art of optimisation technique.
MOHRES is the only HRES design and analysis tool that
- predicts the performance of a HRES accurately and understandable by the end-user/customer
- takes into account the end-user’s requirements in the end-user’s language,
- involves the customer in the design and selection process by providing them with a set of Pareto optimal solutions to select from through a simple and straightforward process,
- optimises dispatch strategy alongside with system size and configuration optimisations,
- takes into account the concept of flexible and plannable demand load.
MOHRES can deal with a generic hybrid configuration consisting of Wind, PV, Diesel, Battery, Fuel Cell and Electrolyser components.
MOHRES employs innovative design and analysis methods and the state-of-the-art of optimisation technique.
MOHRES is the only HRES design and analysis tool that
- predicts the performance of a HRES accurately and understandable by the end-user/customer
- takes into account the end-user’s requirements in the end-user’s language,
- involves the customer in the design and selection process by providing them with a set of Pareto optimal solutions to select from through a simple and straightforward process,
- optimises dispatch strategy alongside with system size and configuration optimisations,
- takes into account the concept of flexible and plannable demand load.
Original language | English |
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Media of output | Online |
Publication status | Published - Oct 2019 |
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Design optimisation of hybrid renewable energy systems
Maheri, A. (Coordinator)
Impact: Economic and/or Commercial, Other Impacts