TY - JOUR AB - Purpose The purpose of this paper is to propose an optimal energy management (OEM) method using intelligent optimization techniques applied to implement an optimally hybrid heat and power isolated microgrid. The microgrid investigated combines renewable and conventional power generation.Design/methodology/approach Five bio-inspired optimization methods include an advanced proposed multi-objective particle swarm optimization (MOPSO) approach which is comparatively applied for OEM of the implemented microgrid with other bio-inspired optimization approaches via their comparative simulation results.Findings Optimal multi-objective solutions through Pareto front demonstrate that the advanced proposed MOPSO method performs quite better in comparison with other meta-heuristic optimization methods. Moreover, the proposed MOPSO is successfully applied to perform 24-h OEM microgrid. The simulation results also display the merits of the real time optimization along with the arbitrary of users’ selection as to satisfy their power requirement.Originality/value This paper focuses on the OEM of a designed microgrid using a newly proposed modified MOPSO algorithm. Optimal multi-objective solutions through Pareto front demonstrate that the advanced proposed MOPSO method performs quite better in comparison with other meta-heuristic optimization approaches. VL - 37 IS - 6 SN - 0264-4401 DO - 10.1108/EC-05-2019-0194 UR - https://doi.org/10.1108/EC-05-2019-0194 AU - Anh Ho Pham Huy AU - Kien Cao Van PY - 2020 Y1 - 2020/01/01 TI - Optimal energy management of microgrid using advanced multi-objective particle swarm optimization T2 - Engineering Computations PB - Emerald Publishing Limited SP - 2085 EP - 2110 Y2 - 2024/04/24 ER -