Battery energy storage systems (BESS) have become fundamental part of modern power systems due to their capability to provide multiple grid services. As the renewable penetration increases, BESS procurement is also expected to increase where it is envisioned to play a systematic and strategical role in power systems planning and operation. Hence, in this paper we present a multiple grid service procurement and operation for BESS - ranging from energy arbitrage, reserve/regulation services, power factor correction, and demand management. The proposed framework considers an optimal multi-temporal dimension, designed to be operable for both planning and real-time operation. Moreover, non-linearity inherent to BESS services and uncertainty associated to market forecasts variables are addressed using techniques such as polyhedral norms and robust optimization approaches. The developed model is tested using a utility-scaled BESS and the obtained results show the effectiveness of the systematic BESS multi-service planning and operation approach.
Published: March 23, 2022
Citation
Hanif S., M.E. Alam, R.L. Kini, B. Bhatti, and J.C. Bedoya Ceballos. 2022.Multi-Service Battery Energy Storage System Optimization and Control.Applied Energy 311.PNNL-SA-165530.doi:10.1016/j.apenergy.2022.118614