Stochastic Optimal Energy Management of Smart Home With PEV Energy Storage

Abstract: 

This paper proposes a stochastic dynamic programming framework for the optimal energy management of a smart home with plug-in electric vehicle (PEV) energy storage. This paper is motivated by the challenges associated with intermittent renewable energy supplies and the local energy storage opportunity presented by vehicle electrification. This paper seeks to minimize electricity ratepayer cost, while satisfying home power demand and PEV charging requirements. First, various operating modes are defined, including vehicle-to-grid, vehicle-to-home, and grid-to-vehicle. Second, we use equivalent circuit PEV battery models and probabilistic models of trip time and trip length to formulate the PEV to smart home energy management stochastic optimization problem. Finally, based on time-varying electricity price and time-varying home power demand, we examine the performance of the three operating modes for typical weekdays.

Author: 
Wu, Xiaohua
Hu, Xiaosong
Yin, Xiaofeng
Moura, Scott J.
Publication date: 
May 1, 2018
Publication type: 
Journal Article
Citation: 
Wu, X., Hu, X., Yin, X., & Moura, S. J. (2018). Stochastic Optimal Energy Management of Smart Home With PEV Energy Storage. IEEE Transactions on Smart Grid, 9(3), 2065–2075. https://doi.org/10.1109/TSG.2016.2606442