A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - Applied Energy, 2018 - Elsevier
Coordinated charging can utilize the properties of electric vehicles (EVs) to obtain various
benefits. However, there are two major challenges, viz. the uncertainty of EV charging …

A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - Applied Energy, 2018 - inis.iaea.org
[en] Highlights:• A novel real-time scheduling strategy for integrating large-scale electric
vehicles (EVs) into smart grid is proposed.• The conceptual framework and the major …

A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - Applied Energy, 2018 - econpapers.repec.org
Coordinated charging can utilize the properties of electric vehicles (EVs) to obtain various
benefits. However, there are two major challenges, viz. the uncertainty of EV charging …

A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - Applied Energy, 2018 - ideas.repec.org
Coordinated charging can utilize the properties of electric vehicles (EVs) to obtain various
benefits. However, there are two major challenges, viz. the uncertainty of EV charging …

A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - Applied Energy, 2018 - ui.adsabs.harvard.edu
Coordinated charging can utilize the properties of electric vehicles (EVs) to obtain various
benefits. However, there are two major challenges, viz. the uncertainty of EV charging …

[引用][C] A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into smart grid

Y Zheng, Y Shang, Z Shao, L Jian - 2018