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Updated Abot me page
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rahulbhadani committed May 19, 2024
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Expand Up @@ -37,14 +37,13 @@ <h1 style="text-align: center"><a href="index.html">Rahul Bhadani</a></h1>
<h2>About Me</h2>
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<p>
I obtained my PhD in Electrical and Computer Engineering from the University of Arizona in May 2022. My dissertation work provides a workflow of controller design, synthesis, and their real-world deployment for societal-scale systems such as connected-and-autonomous vehicles, and traffic control.
I am Assistant Professor in Electrical and Computer Engineering (ECE) at The University of Alabama in Huntsville. I obtained my Ph.D. (2022), MS(2017) in ECE, MS(2022) in Statistics and MS(2020) in Optical Sciences from the University of Arizona. My dissertation work provides a workflow of controller design, synthesis, and their real-world deployment for societal-scale systems such as connected-and-autonomous vehicles, and traffic control. I am also directing AARC lab where I am investigating problems in data-driven and learning-enabled control for cyber-physical systems.

I contributed to several projects including (1) <a href="https://www.nsf.gov/awardsearch/showAward?AWD_ID=1253334">Domain-Specific Modeling Techniques for Cyber-Physical Systems</a>, (2) <a href="https://www.nsf.gov/awardsearch/showAward?AWD_ID=1521617&HistoricalAwards=false">Cyber-Physical Systems Virtual Organization: Active Resources</a>, (3) <a href="https://www.nsf.gov/awardsearch/showAward?AWD_ID=1446435">Control of Vehicular Traffic Flow via Low Density Autonomous Vehicles</a>, (4) <a href="http://catvehicle.arizona.edu/">REU Site: Cognitive and Autonomous Test Vehicles</a>.
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<p>My most recent project is Lagrangian Traffic smoothing using Connected-and-Autonomous Vehicles that concluded on Nov 2022. Visit project's website https://circles-consortium.github.io/ for upto date information. I also worked on FHWA-funded project on model-based desig of traffic signal controller for interfacing with SUMO.</p>

<p>Some of my research at the University of Arizona were done in free-space optical communication to improve channel capacity and bit-error rate using quantum information-theoretic phenomena such as squeezin and quantum-entanglement.</p>
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<b>Research Interests: Intelligent Transportation, Cyber-physical Systems, Machine Learning, Quantum Information Science</b></p>
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Expand All @@ -55,7 +54,9 @@ <h2>About Me</h2>
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<h3>Employment</h3>
<ul>
<li><div class="labeler" >Post-doctoral Research Fellow, <strong>Vanderbilt University</strong>, July 2022 - Present</div></li>
<li><div class="labeler" >Assistant Professor, <strong>The University of Alabama in Huntsville</strong>, August 2023 - Present</div></li>

<li><div class="labeler" >Post-doctoral Research Fellow, <strong>Vanderbilt University</strong>, July 2022 - July 2023</div></li>
<li><div class="labeler" >Graduate Research Assistant, <strong>The University of Arizona</strong>, August 2015 - May 2022</div></li>
<li><div class="labeler" >Instructor, Software Engineering Concepts ECE 473/573, <strong>The University of Arizona</strong>, January 2021 - June 2021 </div></li>
<li><div class="labeler" >Graduate Teaching Assistant, Programming-II ECE 273, <strong>The University of Arizona</strong>, August 2019 - December 2019</div></li>
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