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Leveraging rail-based mobile energy storage to increase grid reliability in the face of climate uncertainty

Engineering and Technology

Leveraging rail-based mobile energy storage to increase grid reliability in the face of climate uncertainty

J. W. Moraski, N. D. Popovich, et al.

Explore the innovative use of the US rail system as a backup transmission grid through Rail-Based Mobile Energy Storage (RMES). This research by Jill W. Moraski, Natalie D. Popovich, and Amol A. Phadke reveals how RMES can address peak energy demands and improve grid resilience while saving costs compared to traditional infrastructure.

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Abstract
Maintaining reliability is increasingly challenging for electric grids as they endure more frequent extreme weather events and utilize more intermittent generation. Exploration of alternative reliability approaches is needed to effectively address these emerging issues. Here we examine the potential to use the US rail system as a nationwide backup transmission grid over which containerized batteries, or rail-based mobile energy storage (RMES), are shared among regions to meet demand peaks, relieve transmission congestion and increase resilience. We find that RMES is a feasible reliability solution for low-frequency, high-impact events and quantify its cost effectiveness relative to reliability-driven investments in transmission infrastructure and stationary capacity. Compared to new transmission lines and stationary battery capacity, deploying RMES for such events could save the power sector upwards of US$300 per kW-year and US$85 per kW-year, respectively. While no known technical barriers exclude RMES from grid participation, addressing interconnection challenges and revising regulatory frameworks is necessary for deployment at scale.
Publisher
Nature Energy
Published On
Jun 12, 2023
Authors
Jill W. Moraski, Natalie D. Popovich, Amol A. Phadke
Tags
electric grid
reliability
mobile energy storage
rail system
resilience
peak demand
cost savings
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