Abstract
In order to coordinate multiple different scheduling objectives from the perspectives of economy, environment, and users, a practical multi-objective dynamic optimal dispatch model incorporating energy storage and user experience is proposed for isolated microgrids. In this model, besides microturbine units, energy storage is employed to provide spinning reserve services for microgirds; and furthermore, from the perspective of demand side management, a consumer satisfaction indicator is developed to measure the quality of user experience. A two-step solution methodology incorporating multi-objective optimisation and decision analysis is put forward to address this model. First, a powerful heuristic optimisation algorithm, called the θ-dominance based evolutionary algorithm, is used to find a well-distributed set of Pareto-optimal solutions of the problem. Thereby, the best compromise solutions are identified from the entire solutions with the use of decision analysis by integrating fuzzy C-means clustering and grey relation projection. The simulation results on the modified Oak Ridge National Laboratory Distributed Energy Control and Communication lab microgrid test system demonstrate the effectiveness of the proposed approach.
Author supplied keywords
- Pareto optimisation
- Pareto-optimal solutions
- consumer satisfaction indicator
- decision analysis
- demand side management
- distributed power generation
- dominance based evolutionary algorithm
- energy storage
- evolutionary algorithm
- evolutionary computation
- fuzzy C-means clustering
- fuzzy set theory
- grey relation projection
- heuristic optimisation algorithm
- isolated microgrid dispatch
- isolated microgrids
- microturbine units
- multiobjective dynamic optimal dispatch model
- multiobjective model
- multiobjective optimisation
- multiple different scheduling objectives
- power generation dispatch
- quality of user experience
- spinning reserve services
- two-step solution methodology
- user experience
Cite
CITATION STYLE
Li, Y., Yang, Z., Zhao, D., Lei, H., Cui, B., & Li, S. (2019). Incorporating energy storage and user experience in isolated microgrid dispatch using a multi-objective model. IET Renewable Power Generation, 13(6), 973–981. https://doi.org/10.1049/iet-rpg.2018.5862
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.