Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications
This paper presents the feasibility and economics of using fuel cell backup power systems in telecommunication cell towers to provide grid services (e.g., ancillary services, demand response). The fuel cells are able to provide power for the cell tower during emergency conditions. This study evaluates the strategic integration of clean, efficient, and reliable fuel cell systems with the grid for improved economic benefits. The backup systems have potential as enhanced capability through information exchanges with the power grid to add value as grid services that depend on location and time. The economic analysis has been focused on the potential revenue for distributed telecommunications fuel cell backup units to provide value-added power supply. This paper shows case studies on current fuel cell backup power locations and regional grid service programs. The grid service benefits and system configurations for different operation modes provide opportunities for expanding backup fuel cell applications responsive to grid needs. The objective of this work primarily focuses on how fuel cells can become a significant part of the telecom backup power to reduce system costs, environmental impact, and dependence on fossil fuels, while ensuring continuity of indispensable service for mobile users. The study identifies the approaches on the fuel cell application through nano/microgrids for an extensive network of fuel cells as distributed energy resources. The possibilities of various application scenarios extend the fuel cell technologies and microgrid for reliable power supply.
Citation Formats
TY - DATA
AB - This paper presents the feasibility and economics of using fuel cell backup power systems in telecommunication cell towers to provide grid services (e.g., ancillary services, demand response). The fuel cells are able to provide power for the cell tower during emergency conditions. This study evaluates the strategic integration of clean, efficient, and reliable fuel cell systems with the grid for improved economic benefits. The backup systems have potential as enhanced capability through information exchanges with the power grid to add value as grid services that depend on location and time. The economic analysis has been focused on the potential revenue for distributed telecommunications fuel cell backup units to provide value-added power supply. This paper shows case studies on current fuel cell backup power locations and regional grid service programs. The grid service benefits and system configurations for different operation modes provide opportunities for expanding backup fuel cell applications responsive to grid needs. The objective of this work primarily focuses on how fuel cells can become a significant part of the telecom backup power to reduce system costs, environmental impact, and dependence on fossil fuels, while ensuring continuity of indispensable service for mobile users. The study identifies the approaches on the fuel cell application through nano/microgrids for an extensive network of fuel cells as distributed energy resources. The possibilities of various application scenarios extend the fuel cell technologies and microgrid for reliable power supply.
AU - Ma, Zhiwen
A2 - Eichman, Joshua
A3 - Kurtz, Jennifer
DB - C-MIX - Community Microgrid Information Exchange
DP - Open EI | National Laboratory of the Rockies
DO - 10.1115/ES2018-7184
KW - Fuel cells
KW - Hydrogen
KW - Battery energy storage
KW - Solar
KW - Photovoltaics
KW - PV
KW - Financing
KW - Business models
KW - Utility integration
KW - Bulk-system Integration
KW - Case studies
KW - Performance
LA - English
DA - 2018/01/01
PY - 2018
PB - NLR
T1 - Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications
UR - https://doi.org/10.1115/ES2018-7184
ER -
Ma, Zhiwen, et al. Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications. NLR, 1 January, 2018, C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1115/ES2018-7184.
Ma, Z., Eichman, J., & Kurtz, J. (2018). Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications. [Data set]. C-MIX - Community Microgrid Information Exchange. NLR. https://doi.org/10.1115/ES2018-7184
Ma, Zhiwen, Joshua Eichman, and Jennifer Kurtz. Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications. NLR, January, 1, 2018. Distributed by C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1115/ES2018-7184
@misc{CMIX_Dataset_42,
title = {Fuel Cell Backup Power System for Grid-Service and Micro-Grid in Telecommunication Applications},
author = {Ma, Zhiwen and Eichman, Joshua and Kurtz, Jennifer},
abstractNote = {This paper presents the feasibility and economics of using fuel cell backup power systems in telecommunication cell towers to provide grid services (e.g., ancillary services, demand response). The fuel cells are able to provide power for the cell tower during emergency conditions. This study evaluates the strategic integration of clean, efficient, and reliable fuel cell systems with the grid for improved economic benefits. The backup systems have potential as enhanced capability through information exchanges with the power grid to add value as grid services that depend on location and time. The economic analysis has been focused on the potential revenue for distributed telecommunications fuel cell backup units to provide value-added power supply. This paper shows case studies on current fuel cell backup power locations and regional grid service programs. The grid service benefits and system configurations for different operation modes provide opportunities for expanding backup fuel cell applications responsive to grid needs. The objective of this work primarily focuses on how fuel cells can become a significant part of the telecom backup power to reduce system costs, environmental impact, and dependence on fossil fuels, while ensuring continuity of indispensable service for mobile users. The study identifies the approaches on the fuel cell application through nano/microgrids for an extensive network of fuel cells as distributed energy resources. The possibilities of various application scenarios extend the fuel cell technologies and microgrid for reliable power supply.},
url = {https://cmix.openei.org/submissions/42},
year = {2018},
howpublished = {C-MIX - Community Microgrid Information Exchange, NLR, https://doi.org/10.1115/ES2018-7184},
note = {Accessed: 2026-08-06},
doi = {10.1115/ES2018-7184}
}
https://dx.doi.org/10.1115/ES2018-7184
Details
Data from Jan 1, 2018
Last updated Mar 30, 2026
Submitted Jun 2, 2026
Organization
NLR
Contact
Zhiwen, Ma

