Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL)

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The Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL) project?s controls research area aims to expand the benefits from distributed wind (DW) generation assets beyond solely providing low cost power directly to consumers. To make distributed wind turbines operate more effectively there is a need for more advanced ways to control them, allowing power companies, businesses, and energy consumers to take advantage of the unique characteristics of wind energy. DW can contribute to the safe and secure operation of grid by providing services such as voltage regulation, frequency regulation, spinning reserves, and even blackstart capabilities. In the larger DER context where much of the research has focused around solar technologies, the inertia available in wind technologies has generally not been considered. For wind turbines to provide these services in an optimal and expanded way, development and demonstration of control methods and communication interfaces within a grid and microgrid framework are required. In this document, NREL led the literature review in collaboration with SNL, of DER controls-focused integration research to establish a baseline for the controls research under the MIRACL project to identify specific control functions to be focused on throughout this project. This literature review focused primarily on the control functions of variable distributed generation, largely pulling from past solar PV and battery controls works, with a specific focus on applicability for distributed wind energy systems. The goal of this document is to identify a research roadmap based on the open literature and past national laboratory works to inform advanced wind turbine and power electronics control functions for four use cases: 1) distributed wind in isolated systems, 2) grid-connected microgrids (wind-hybrid systems and islanded operation), 3) behind-the-meter distributed wind applications in the power distribution systems, and 4) front-of-the-meter distributed wind applications in the power distribution systems.

Citation Formats

TY - DATA AB - The Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL) project’s controls research area aims to expand the benefits from distributed wind (DW) generation assets beyond solely providing low cost power directly to consumers. To make distributed wind turbines operate more effectively there is a need for more advanced ways to control them, allowing power companies, businesses, and energy consumers to take advantage of the unique characteristics of wind energy. DW can contribute to the safe and secure operation of grid by providing services such as voltage regulation, frequency regulation, spinning reserves, and even blackstart capabilities. In the larger DER context where much of the research has focused around solar technologies, the inertia available in wind technologies has generally not been considered. For wind turbines to provide these services in an optimal and expanded way, development and demonstration of control methods and communication interfaces within a grid and microgrid framework are required. In this document, NREL led the literature review in collaboration with SNL, of DER controls-focused integration research to establish a baseline for the controls research under the MIRACL project to identify specific control functions to be focused on throughout this project. This literature review focused primarily on the control functions of variable distributed generation, largely pulling from past solar PV and battery controls works, with a specific focus on applicability for distributed wind energy systems. The goal of this document is to identify a research roadmap based on the open literature and past national laboratory works to inform advanced wind turbine and power electronics control functions for four use cases: 1) distributed wind in isolated systems, 2) grid-connected microgrids (wind-hybrid systems and islanded operation), 3) behind-the-meter distributed wind applications in the power distribution systems, and 4) front-of-the-meter distributed wind applications in the power distribution systems. AU - Reilly, James A2 - Poudel, Ram A3 - Krishnan, Venkat A4 - Preus, Robert A5 - Baring-Gould, Ian A6 - Anderson, Ben A7 - Naughton, Brian A8 - Wilches-Bernal, Felipe A9 - Darbali, Rachid DB - C-MIX - Community Microgrid Information Exchange DP - Open EI | National Laboratory of the Rockies DO - KW - Wind energy KW - Power electronics and inverters KW - Power electronics KW - Inverters KW - Fuel cells KW - Battery energy storage KW - Power plant controls KW - SCADA KW - Planning and design KW - Planning KW - Design KW - Maintenance and operations KW - Operations KW - Maintenance KW - Commissioning KW - Policy and regulation KW - Policy KW - Regulation LA - English DA - 2021/01/01 PY - 2021 PB - NLR T1 - Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL) UR - https://cmix.openei.org/submissions/317 ER -
Export Citation to RIS
Reilly, James, et al. Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL). NLR, 1 January, 2021, C-MIX - Community Microgrid Information Exchange. https://cmix.openei.org/submissions/317.
Reilly, J., Poudel, R., Krishnan, V., Preus, R., Baring-Gould, I., Anderson, B., Naughton, B., Wilches-Bernal, F., & Darbali, R. (2021). Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL). [Data set]. C-MIX - Community Microgrid Information Exchange. NLR. https://cmix.openei.org/submissions/317
Reilly, James, Ram Poudel, Venkat Krishnan, Robert Preus, Ian Baring-Gould, Ben Anderson, Brian Naughton, Felipe Wilches-Bernal, and Rachid Darbali. Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL). NLR, January, 1, 2021. Distributed by C-MIX - Community Microgrid Information Exchange. https://cmix.openei.org/submissions/317
@misc{CMIX_Dataset_317, title = {Distributed Wind Controls: A Research Roadmap for Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL)}, author = {Reilly, James and Poudel, Ram and Krishnan, Venkat and Preus, Robert and Baring-Gould, Ian and Anderson, Ben and Naughton, Brian and Wilches-Bernal, Felipe and Darbali, Rachid}, abstractNote = {The Microgrids, Infrastructure Resilience, and Advanced Controls Launchpad (MIRACL) project?s controls research area aims to expand the benefits from distributed wind (DW) generation assets beyond solely providing low cost power directly to consumers. To make distributed wind turbines operate more effectively there is a need for more advanced ways to control them, allowing power companies, businesses, and energy consumers to take advantage of the unique characteristics of wind energy. DW can contribute to the safe and secure operation of grid by providing services such as voltage regulation, frequency regulation, spinning reserves, and even blackstart capabilities. In the larger DER context where much of the research has focused around solar technologies, the inertia available in wind technologies has generally not been considered. For wind turbines to provide these services in an optimal and expanded way, development and demonstration of control methods and communication interfaces within a grid and microgrid framework are required. In this document, NREL led the literature review in collaboration with SNL, of DER controls-focused integration research to establish a baseline for the controls research under the MIRACL project to identify specific control functions to be focused on throughout this project. This literature review focused primarily on the control functions of variable distributed generation, largely pulling from past solar PV and battery controls works, with a specific focus on applicability for distributed wind energy systems. The goal of this document is to identify a research roadmap based on the open literature and past national laboratory works to inform advanced wind turbine and power electronics control functions for four use cases: 1) distributed wind in isolated systems, 2) grid-connected microgrids (wind-hybrid systems and islanded operation), 3) behind-the-meter distributed wind applications in the power distribution systems, and 4) front-of-the-meter distributed wind applications in the power distribution systems.}, url = {https://cmix.openei.org/submissions/317}, year = {2021}, howpublished = {C-MIX - Community Microgrid Information Exchange, NLR, https://cmix.openei.org/submissions/317}, note = {Accessed: 2026-08-06} }

Details

Data from Jan 1, 2021

Last updated Mar 30, 2026

Submitted Jun 2, 2026

Organization

NLR

Contact

Edward Baring-Gould

Authors

James Reilly

NLR

Ram Poudel

NLR

Venkat Krishnan

NLR

Robert Preus

NLR

Ian Baring-Gould

NLR

Ben Anderson

NLR

Brian Naughton

Sandia National Laboratories

Felipe Wilches-Bernal

Sandia National Laboratories

Rachid Darbali

Sandia National Laboratories
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