4.6 Article

Optimal Operation of Energy Hub Based Micro-energy Network with Integration of Renewables and Energy Storages

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.35833/MPCE.2020.000186

关键词

Micro-energy network (MEN); natural gas price; electricity price; energy hub (EH); renewables; energy storage optimal operation

资金

  1. National Natural Science Foundation of China [51777077]
  2. Thai Nguyen University of Technology (TNUT), Thai Nguyen, Vietnam

向作者/读者索取更多资源

This study proposes an optimized model of a micro-energy network that integrates solar, wind, and energy storage systems to minimize operation costs and greenhouse emissions. The results show that an optimal network consisting of multiple energy hubs can respond appropriately to fluctuations in electricity prices and time adjustments, while significantly reducing operation costs and emissions. This model provides a more efficient network model for future research.
This study proposes an optimized model of a micro-energy network (MEN) that includes electricity and natural gas with integrated solar, wind, and energy storage systems (ESSs). The proposed model is based on energy hubs (EHs) and it aims to minimize operation costs and greenhouse emissions. The research is motivated by the increasing use of renewable energies and ESSs for secure energy supply while reducing operation costs and environment effects. A general algebraic modeling system (GAMS) is used to solve the optimal operation problem in the MEN. The results demonstrate that an optimal MEN formed by multiple EHs can provide appropriate and flexible responses to fluctuations in electricity prices and adjustments between time periods and seasons. It also yields significant reductions in operation costs and emissions. The proposed model can contribute to future research by providing a more efficient network model (as compared with the traditional electricity supply system) to scale down the environmental and economic impacts of electricity storage and supply systems on MEN operation.

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