activity
20192022
collaborators

5 papers

math.OC2022

A Model-Adaptive Clustering Method for Low-Carbon Energy System Optimization

Yuheng Zhang, Vivian Cheng, Dharik S. Mallapragada +2

Intermittent renewable energy resources like wind and solar pose great uncertainty of multiple time scales, from minutes to years, on the design and operation of power systems. Ene…

math.OC2021

Sector coupling via hydrogen to lower the cost of energy system decarbonization

Guannan He, Dharik S. Mallapragada, Abhishek Bose +2

There is growing interest in hydrogen (H) use for long-duration energy storage in a future electric grid dominated by variable renewable energy (VRE) resources. Modelling the r…

math.OC2020

The economics of utility-scale portable energy storage systems in a high-renewable grid

Guannan He, Jeremy Michalek, Soummya Kar +3

Battery storage is expected to play a crucial role in the low-carbon transformation of energy systems. The deployment of battery storage in the power gird, however, is currently se…

math.OC2020

Hydrogen Supply Chain Planning with Flexible Transmission and Storage Scheduling

Guannan He, Dharik S. Mallapragada, Abhishek Bose +2

Hydrogen is becoming an increasingly appealing energy carrier, as the costs of renewable energy generation and water electrolysis continue to decline. Developing modelling and deci…

math.OC2019

Power System Dispatch with Marginal Degradation Cost of Battery Storage

Guannan He, Soummya Kar, Javad Mohammadi +2

Battery storage is essential for the future smart grid. The inevitable cell degradation renders the battery lifetime volatile and highly dependent on battery dispatch, and thus inc…