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JuwanHa committed Sep 3, 2024
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<div class="docs-section" id="bio">
<h3>Bio</h3>
<p>
I'm a Ph.D. student in the <a href="https://research.design.ncsu.edu/betlab/">Building Energy Technology Laboratory (BETlab)</a>
within the <a href="https://design.ncsu.edu/phd-in-design/">Ph.D. in Design Program</a>
at <a href="https://www.ncsu.edu/">North Carolina State University (NC STATE)</a>. I also serve as the president of the NC STATE Chapter of the American Society of Heating, Refrigerating, and Air-Conditioning Engineers (ASHRAE).
Additionally, I am a Fellow in the <a href="https://climateleaders.kenan.ncsu.edu/teams/2024-student-mentor-teams/">KIETS Climate Leaders Program</a>, where I contribute to interdisciplinary leadership teams focused on developing solutions that mitigate and adapt to the challenges of climate change.
I am fortunate to be advised by <a href="https://design.ncsu.edu/people/scho3/">Dr. Soolyeon Cho</a>.
I also completed a summer internship with the Building Technology & Urban Systems (BTUS) Division at Lawrence Berkeley National Laboratory (LBNL) under the guidance of <a href="https://eta.lbl.gov/people/donghun-kim">Dr. Donghun Kim</a>,
where I developed an AI-tech assistant leveraging Large Language Models (LLM) to accelerate the deployment of low-cost model predictive control (MPC) technology for grid-interactive efficient buildings (GEBs).
I am also the Principal Investigator (PI) of a research project supported by the Next-Generation Science & Technology (S&T) Leaders NET, Korean Federation of Science & Technology Societies (KOFST).
This project focuses on a synthetic study of the energy potential of solar power systems at the community level, utilizing AI and spatiotemporal data.This project focuses on a synthetic study of the energy potential of solar power systems at the community level, utilizing AI and spatiotemporal data.
I'm a Ph.D. student in the <a href="https://research.design.ncsu.edu/betlab/">Building Energy Technology Laboratory (BETlab)</a>
within the <a href="https://design.ncsu.edu/phd-in-design/">Ph.D. in Design Program</a>
at <a href="https://www.ncsu.edu/">North Carolina State University (NC STATE)</a>. I also serve as the president of the NC STATE Chapter of the American Society of Heating, Refrigerating, and Air-Conditioning Engineers (ASHRAE).
Additionally, I am a Fellow in the <a href="https://climateleaders.kenan.ncsu.edu/teams/2024-student-mentor-teams/">KIETS Climate Leaders Program</a>, where I contribute to interdisciplinary leadership teams focused on developing solutions that mitigate and adapt to the challenges of climate change.
I am fortunate to be advised by <a href="https://design.ncsu.edu/people/scho3/">Dr. Soolyeon Cho</a>.
I also completed a summer internship with the Building Technology & Urban Systems (BTUS) Division at Lawrence Berkeley National Laboratory (LBNL) under the guidance of <a href="https://eta.lbl.gov/people/donghun-kim">Dr. Donghun Kim</a>,
where I developed an AI-tech assistant leveraging Large Language Models (LLM) to accelerate the deployment of low-cost model predictive control (MPC) technology for grid-interactive efficient buildings (GEBs).
I am also the Principal Investigator (PI) of a research project supported by the Next-Generation Science & Technology (S&T) Leaders NET, Korean Federation of Science & Technology Societies (KOFST).
This project focuses on a synthetic study of the energy potential of solar power systems at the community level, utilizing AI and spatiotemporal data.This project focuses on a synthetic study of the energy potential of solar power systems at the community level, utilizing AI and spatiotemporal data.
</p>
I am deeply interested in implementing microgrids at the community scale using grid-edge resources such as Grid-Interactive Efficient Buildings (GEBs) and Electric Vehicles (EVs).
My focus is on developing Model Predictive Coordinated Control (MPCC) technology for buildings by incorporating Distributed Energy Resources (DERs) such as Thermal Energy Storage (TES), Battery Energy Storage Systems (BESS), Vehicle-to-Building (V2B), and Building Envelope as Virtual Battery.
This approach aims to enhance the energy flexibility of buildings, reducing peak loads. Also, I aim to develop technologies that support right-sizing decisions for DERs at the community level and improve resiliency, facilitating the implementation of microgrids within communities.
<p>

</p>
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