返回
Multi-objective day-ahead scheduling of microgrids using modified grey wolf optimizer algorithm
DOI:10.3233/JIFS-171688.png)
摘要
En 中文
Investigation of the environmental/economic optimal operation management of a microgrid (MG) as a case study for applying a novel modified multi-objective grey wolf optimizer (MMOGWO) algorithm is presented in this paper. MGs can be considered as a fundamental solution in order for distributed generators' (DGs) management in future smart grids. In the multi-objective problems, since the objective functions are conflict, the best compromised solution should be extracted through an efficient approach. Accordingly, a proper method is applied for exploring the best compromised solution. Additionally, a novel distance-based method is proposed to control the size of the repository within an aimed limit which leads to a fast and precise convergence along with a well-distributed Pareto optimal front. The proposed method is implemented in a typical grid-connected MG with non-dispatchable units including renewable energy sources (RESs), along with a hybrid power source (micro-turbine, fuel-cell and battery) as dispatchable units, to accumulate excess energy or to equalize power mismatch, by optimal scheduling of DGs and the power exchange between the utility grid and storage system. The efficiency of the suggested algorithm in satisfying the load and optimizing the objective functions is validated through comparison with different methods, including PSO and the original GWO.
Keyword:
Multi objective optimal operation management
pareto optimal solution
modified grey wolf optimizer
micro-grid
renewable energy sources
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
3.8
论文数:
4.6K
被引数:
1.2W
机构
引用论文
Biogeography based optimization technique for best compromise solution of economic emission dispatch
Real time experimental implementation of optimum energy management system in standalone Microgrid by using multi-layer ant colony optimization基于多层蚁群算法的独立微网最优能量管理系统实时实验实现
Microgrid operation and management using probabilistic reconfiguration and unit commitment基于概率重构和机组组合的微电网运行管理
Considering uncertainty in the optimal energy management of renewable micro-grids including storage devices
RENEWABLE ENERGY
IF9.1
Stochastic Optimization of Renewable-Based Microgrid Operation Incorporating Battery Operating Cost考虑电池运行成本的基于可再生能源的微电网运行随机优化

