Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint

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Rural, isolated power systems in the mainland U.S. and in states like Alaska and Hawaii are powered by assets like diesel generators. These rural, isolated power systems also cannot operate at the higher band of medium voltage (like 69kV). They are primarily in the 12 to 14 kV range to keep the cost of the distribution investments lower. Because of this mid-band medium voltage range, the line losses and distribution transformers losses consume significant diesel consumption (almost 10 percent of the peak load). This work considers one such power system powering an isolated system and presents key findings online losses, and transformer losses. Understanding and documenting the impacts is critical for these communities operating their power systems and take actions to reduce expensive diesel consumption. In this paper, we will present one such typical grid and model it in electromagnetic transients (EMT) domain. We used the tower structure, under ground cabling installation to develop high fidelity models of lines. We also used high fidelity models of distribution transformers to present the no-load losses and full load loses. We will also present technical solutions available commercially off-the-shelf to reduce these losses and reduce diesel consumption. This work will be a primer for communities to understand the technical challenges and to understand the possible solution available to solve such challenges for rural, isolated power system operators.

Citation Formats

TY - DATA AB - Rural, isolated power systems in the mainland U.S. and in states like Alaska and Hawaii are powered by assets like diesel generators. These rural, isolated power systems also cannot operate at the higher band of medium voltage (like 69kV). They are primarily in the 12 to 14 kV range to keep the cost of the distribution investments lower. Because of this mid-band medium voltage range, the line losses and distribution transformers losses consume significant diesel consumption (almost 10 percent of the peak load). This work considers one such power system powering an isolated system and presents key findings online losses, and transformer losses. Understanding and documenting the impacts is critical for these communities operating their power systems and take actions to reduce expensive diesel consumption. In this paper, we will present one such typical grid and model it in electromagnetic transients (EMT) domain. We used the tower structure, under ground cabling installation to develop high fidelity models of lines. We also used high fidelity models of distribution transformers to present the no-load losses and full load loses. We will also present technical solutions available commercially off-the-shelf to reduce these losses and reduce diesel consumption. This work will be a primer for communities to understand the technical challenges and to understand the possible solution available to solve such challenges for rural, isolated power system operators. AU - Prabakar, Kumaraguru A2 - Velaga, Yaswanth Nag A3 - Meadows, Rebecca A4 - McGilton, Ben A5 - Greco, Tessa A6 - Salmon, Jonathan A7 - Hill, Karl A8 - Tinney, Levi DB - C-MIX - Community Microgrid Information Exchange DP - Open EI | National Laboratory of the Rockies DO - KW - Diesel generators KW - Other liquid-fuel generators KW - Hydrogen KW - Battery energy storage KW - Solar KW - Photovoltaics KW - PV KW - Planning and design KW - Planning KW - Design KW - Maintenance and operations KW - Operations KW - Maintenance KW - Commissioning KW - Resilience KW - Extreme weather LA - English DA - 2024/03/01 PY - 2024 PB - NLR T1 - Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint UR - https://cmix.openei.org/submissions/379 ER -
Export Citation to RIS
Prabakar, Kumaraguru, et al. Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint. NLR, 1 March, 2024, C-MIX - Community Microgrid Information Exchange. https://cmix.openei.org/submissions/379.
Prabakar, K., Velaga, Y., Meadows, R., McGilton, B., Greco, T., Salmon, J., Hill, K., & Tinney, L. (2024). Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint. [Data set]. C-MIX - Community Microgrid Information Exchange. NLR. https://cmix.openei.org/submissions/379
Prabakar, Kumaraguru, Yaswanth Nag Velaga, Rebecca Meadows, Ben McGilton, Tessa Greco, Jonathan Salmon, Karl Hill, and Levi Tinney. Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint. NLR, March, 1, 2024. Distributed by C-MIX - Community Microgrid Information Exchange. https://cmix.openei.org/submissions/379
@misc{CMIX_Dataset_379, title = {Understanding Line Losses and Transformer Losses in Rural Isolated Distribution Systems: Preprint}, author = {Prabakar, Kumaraguru and Velaga, Yaswanth Nag and Meadows, Rebecca and McGilton, Ben and Greco, Tessa and Salmon, Jonathan and Hill, Karl and Tinney, Levi}, abstractNote = {Rural, isolated power systems in the mainland U.S. and in states like Alaska and Hawaii are powered by assets like diesel generators. These rural, isolated power systems also cannot operate at the higher band of medium voltage (like 69kV). They are primarily in the 12 to 14 kV range to keep the cost of the distribution investments lower. Because of this mid-band medium voltage range, the line losses and distribution transformers losses consume significant diesel consumption (almost 10 percent of the peak load). This work considers one such power system powering an isolated system and presents key findings online losses, and transformer losses. Understanding and documenting the impacts is critical for these communities operating their power systems and take actions to reduce expensive diesel consumption. In this paper, we will present one such typical grid and model it in electromagnetic transients (EMT) domain. We used the tower structure, under ground cabling installation to develop high fidelity models of lines. We also used high fidelity models of distribution transformers to present the no-load losses and full load loses. We will also present technical solutions available commercially off-the-shelf to reduce these losses and reduce diesel consumption. This work will be a primer for communities to understand the technical challenges and to understand the possible solution available to solve such challenges for rural, isolated power system operators.}, url = {https://cmix.openei.org/submissions/379}, year = {2024}, howpublished = {C-MIX - Community Microgrid Information Exchange, NLR, https://cmix.openei.org/submissions/379}, note = {Accessed: 2026-08-06} }

Details

Data from Mar 1, 2024

Last updated Mar 30, 2026

Submitted Jun 2, 2026

Organization

NLR

Contact

Kumaraguru Prabakar

Authors

Kumaraguru Prabakar

NLR

Yaswanth Nag Velaga

NLR

Rebecca Meadows

NLR

Ben McGilton

NLR

Tessa Greco

NLR

Jonathan Salmon

Igiugig Village Council

Karl Hill

Igiugig Village Council

Levi Tinney

Igiugig Village Council
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