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◆ Results in Engineering2026-02-10· Microgrid

A novel hierarchical optimization energy management strategy of intelligent multi-port energy router in expressway DC microgrid

Pengfei Du, Hanqing Wang, Ruihua Li, Bo Hu, Jian Fang

原始摘要(英文原文)· Original abstract
Distributed photovoltaic (PV) generation and intelligent transportation devices are increasingly integrated into expressway DC microgrids, causing DC-bus voltage fluctuations due to PV intermittency and exposing the limitations of existing architectures in supporting flexible multi-directional energy flows. To address these challenges, this research proposes an integrated "Source-Grid-Load-Storage" operational framework enabled by an Intelligent Multi-port Energy Router (IMER). A model predictive control (MPC) scheme is designed for the grid-side port converter to enhance DC bus voltage regulation and transient performance. Considering the distinct characteristics of each port, a hierarchical optimization energy management strategy based on power-adaptive matching is further developed to coordinate multi-port power allocation. Simulation and hardware-in-the-loop experiments verify that the proposed MPC approach improves voltage stability and accelerates dynamic energy dispatch, while the hierarchical strategy ensures coordinated power sharing and system balance under both grid-connected and islanded modes, enhancing operational flexibility and reliability in expressway DC microgrids.
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A novel hierarchical optimization energy management strategy of intelligent multi-port energy router in expressway DC microgrid — 科研速览 Science Skim