Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems
To assess the economic value of batteries in hybrid PV-battery systems, one must create a dispatch profile for the battery. Many analyses of battery value assume perfect forecasts of PV generation and load, determining an upper limit on the value of the battery. Prior work that accounts for forecast uncertainty often does so in the context of a single dispatch algorithm, which does not provide a baseline for comparison. Furthermore, when multiple dispatch algorithms are assessed with uncertainty, the benefits considered are for diesel generation in a microgrid, not retail rate savings. This work addresses the gaps in the literature by comparing the performance of both heuristic and optimal dispatch algorithms for retail rate savings under forecast uncertainty, and provides comparisons of the robustness of these algorithms and their associated estimates of economic value. We find that using a perfect forecast can overestimate the value of hybrid PV-battery systems between 1% and 8% compared to the reality of using a day-ahead forecast, depending on the dispatch algorithm used. Thus, accounting for forecast uncertainty in system design and analysis will significantly improve the accuracy of modeled system values.
Citation Formats
TY - DATA
AB - To assess the economic value of batteries in hybrid PV-battery systems, one must create a dispatch profile for the battery. Many analyses of battery value assume perfect forecasts of PV generation and load, determining an upper limit on the value of the battery. Prior work that accounts for forecast uncertainty often does so in the context of a single dispatch algorithm, which does not provide a baseline for comparison. Furthermore, when multiple dispatch algorithms are assessed with uncertainty, the benefits considered are for diesel generation in a microgrid, not retail rate savings. This work addresses the gaps in the literature by comparing the performance of both heuristic and optimal dispatch algorithms for retail rate savings under forecast uncertainty, and provides comparisons of the robustness of these algorithms and their associated estimates of economic value. We find that using a perfect forecast can overestimate the value of hybrid PV-battery systems between 1% and 8% compared to the reality of using a day-ahead forecast, depending on the dispatch algorithm used. Thus, accounting for forecast uncertainty in system design and analysis will significantly improve the accuracy of modeled system values.
AU - Mirletz, Brian
A2 - Laws, Nicholas
DB - C-MIX - Community Microgrid Information Exchange
DP - Open EI | National Laboratory of the Rockies
DO - 10.1109/PVSC48320.2023.10359894
KW - Solar
KW - Photovoltaics
KW - PV
KW - Battery energy storage
KW - Diesel generators
KW - Other liquid-fuel generators
KW - Wind energy
KW - Financing
KW - Business models
KW - Case studies
KW - Performance
KW - Planning and design
KW - Planning
KW - Design
LA - English
DA - 2023/01/01
PY - 2023
PB - NLR
T1 - Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems
UR - https://doi.org/10.1109/PVSC48320.2023.10359894
ER -
Mirletz, Brian, and Nicholas Laws. Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems. NLR, 1 January, 2023, C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1109/PVSC48320.2023.10359894.
Mirletz, B., & Laws, N. (2023). Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems. [Data set]. C-MIX - Community Microgrid Information Exchange. NLR. https://doi.org/10.1109/PVSC48320.2023.10359894
Mirletz, Brian and Nicholas Laws. Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems. NLR, January, 1, 2023. Distributed by C-MIX - Community Microgrid Information Exchange. https://doi.org/10.1109/PVSC48320.2023.10359894
@misc{CMIX_Dataset_88,
title = {Impacts of Dispatch Strategies and Forecast Errors on the Economics of Behind-the-Meter PV-Battery Systems},
author = {Mirletz, Brian and Laws, Nicholas},
abstractNote = {To assess the economic value of batteries in hybrid PV-battery systems, one must create a dispatch profile for the battery. Many analyses of battery value assume perfect forecasts of PV generation and load, determining an upper limit on the value of the battery. Prior work that accounts for forecast uncertainty often does so in the context of a single dispatch algorithm, which does not provide a baseline for comparison. Furthermore, when multiple dispatch algorithms are assessed with uncertainty, the benefits considered are for diesel generation in a microgrid, not retail rate savings. This work addresses the gaps in the literature by comparing the performance of both heuristic and optimal dispatch algorithms for retail rate savings under forecast uncertainty, and provides comparisons of the robustness of these algorithms and their associated estimates of economic value. We find that using a perfect forecast can overestimate the value of hybrid PV-battery systems between 1\% and 8\% compared to the reality of using a day-ahead forecast, depending on the dispatch algorithm used. Thus, accounting for forecast uncertainty in system design and analysis will significantly improve the accuracy of modeled system values.},
url = {https://cmix.openei.org/submissions/88},
year = {2023},
howpublished = {C-MIX - Community Microgrid Information Exchange, NLR, https://doi.org/10.1109/PVSC48320.2023.10359894},
note = {Accessed: 2026-08-05},
doi = {10.1109/PVSC48320.2023.10359894}
}
https://dx.doi.org/10.1109/PVSC48320.2023.10359894
Details
Data from Jan 1, 2023
Last updated Mar 30, 2026
Submitted Jun 2, 2026
Organization
NLR
Contact
Brain Mirletz

