DOE OSTI · 2567013
Testbed Demonstration of a Microgrid Building Block Prototype
Abstract
With the adoption of ambitious climate action goals, the penetration level of distributed energy resources (DERs) is rapidly increasing. Microgrids are an efficient way to integrate these DERs, facilitating their operation and control. Additionally, microgrids enhance the overall resilience of the distribution system by serving critical loads both within and outside their boundaries. However, the need for substantial customized engineering leads to a high cost of development, installation and maintenance of microgrids. To address this challenge, Microgrid Building Blocks (MBB) are proposed to reduce the deployment cost of microgrids through modular, standardized design and implementation. This work presents a testbed demonstrating the integrated power conversion, control, and communication functionalities of an MBB. The testbed is formed by a real-time electromagnetic transient (EMT) simulation combined with a hardware and software prototype of MBB. The use cases supported by the MBB testbed are enumerated. The islanded operation, voltage regulation, and optimal dispatch capabilities of an MBB-based microgrid controller are validated through a case study.
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Somda, Baza [Virginia Tech], Jain, Akshay [Virginia Tech], Ashraf, Harris Bin [Virginia Tech], Liu, Chen-Ching [Virginia Tech], Zhang, Richard [Virginia Tech], Bharati, Alok Kumar [BATTELLE (PACIFIC NW LAB)], Tuffner, Francis K. [BATTELLE (PACIFIC NW LAB)] (ORCID:0000000219609663), Schneider, Kevin P. [BATTELLE (PACIFIC NW LAB)] (ORCID:0000000317495014), Ton, Dan [DOE]. 2024-12-31. Testbed Demonstration of a Microgrid Building Block Prototype. https://doi.org/10.1109/iecon55916.2024.10905520
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