Diaz-Mercado, Yancy
Maryland Robotics Center
The Institute for Systems Research
Dr. Diaz is interested in the control and coordination of multi-agent systems using control theory, optimization, and graph theory. In particular, he is interested in developing theoretically-sound, scalable control solutions that enable effective control of large-scale networked systems, and applying these to facilitate robot swarm manipulation.
IEEE Spectrum Spotlight
Your finger on a tablet can control entire swarms of robots.
http://spectrum.ieee.org/automaton/robotics/robotics-software/georgia-tech-robot-swarm-control
Science Magazine Spotlight
How to control a robot fleet using a smart tablet.
http://www.sciencemag.org/news/2015/05/watch-how-control-robot-fleet-using-smart-tablet
WSB-TV (Channel 2 Action News) Interview with Craig Lucie
Georgia tech project could change how rescuers respond to disasters.
http://www.wsbtv.com/news/news/local/georgia- tech- project- could-change-how-rescuers-res/nmXNC/
Georgia Tech News.
Controlling swarms of robots with a finger.
http://www.news.gatech.edu/2015/05/12/controlling-swarms-robots-finger
Fox News.
Want to control a swarm of robots? Georgia tech has the answer.
http://www.foxnews.com/tech/2015/05/12/want-to-control-swarm-robots-georgia-tech-has-answer.html
UPI.
Watch a simple tablet control robot swarm.
http://www.upi.com/Science_News/2015/05/12/Watch-a-simple-tablet-control-robot-swarm/7491431455304/
Tech Times.
Control your own robot army with the tip of your finger.
Tech Crunch.
Swarming robots can now follow your fingertips.
http://techcrunch.com/2015/05/13/swarming-robots-can-now-follow-your-fingertips/
NH Voice.
Researchers program robots to respond to commands issued through tablet device.
http://nhv.us/content/15052449-researchers-program-robots-respond-commands-issued-through
Perfect Science.
Engineers program army of robots to respond to commands issued through tablet.
Spring 2020
ENME 462: Vibrations, Controls, and Optimization II
Fall 2019
ENME 808T: Advaced Topics: Network Control Systems
Spring 2019
ENME 361: Vibrations, Controls, and Optimization I
Fall 2018
ENME 462: Vibrations, Controls, and Optimization II
PhD Thesis
Interactions in Multi-Robot Systems Georgia Institute of Technology, 2016. |
Book Chapters
Human-Swarm Interactions via Coverage of Time-Varying Densities Wang, Yue; Zhang, Fumin (Ed.): Trends in Control and Decision-Making for Human-Robot Collaboration Systems, Chapter 15, Springer, 2017. |
Journal Articles
6. |
MagnetoSuture: Tetherless Manipulation of Suture Needles IEEE Transactions on Medical Robotics and Bionics, 2 (2), pp. 206-215, 2020. |
5. |
Sparsity Structure and Optimality of Multi-Robot Coverage Control IEEE Control Systems Letters, 4 (1), pp. 13-18, 2020. |
4. |
Coverage Control for Multirobot Teams With Heterogeneous Sensing Capabilities Robotics and Automation Letters (RA-L), IEEE, 3 (2), pp. 919-925, 2018. |
3. |
On Guaranteed Capture in Multi-Player Reach-Avoid Games via Coverage Control Control Systems Letters (L-CSS), IEEE, 2 (4), pp. 767-772, 2018, ISSN: 2475-1456. |
2. |
Multirobot Mixing via Braid Groups Robotics, IEEE Transactions on, PP (99), pp. 1-11, 2017, ISSN: 1552-3098. |
1. |
Multi-Robot Control Using Time-Varying Density Functions Robotics, IEEE Transactions on, 31 (2), pp. 489-493, 2015, ISSN: 1552-3098. |
Conference Proceedings
16. |
Towards Autonomous Control of Magnetic Suture Needles Intelligent Robots and Systems, IEEE International Conference on, Forthcoming, ((Under Review)). |
15. |
Low-Mobility Atmospheric Sensing via Multi-Vehicle Adaptive Coverage Control 2020 AIAA AVIATION Forum, 2020. |
14. |
Persistent Awareness-Based Multi-Robot Coverage Control Forthcoming, ((Under Review)). |
13. |
Decentralized Persistent Area Coverage Control with Loss of Awareness Control Technology and Applications (CCTA), IEEE Conference on, Forthcoming, ((To Appear)). |
12. |
Multi-Player Pursuer Coordination for Nonlinear Reach-Avoid Games in Arbitrary Dimensions via Coverage Control 2020 American Controls Conference (ACC), Forthcoming, ((To Appear)). |
11. |
Multi-Robot Control Using Coverage Over Time-Varying Domains 2020 American Controls Conference (ACC), Forthcoming, ((To Appear, Keynote Presentation)). |
10. |
Multi-Robot Control Using Coverage Over Time-Varying Non-Convex Domains 2020 International Conference on Robotics and Automation (ICRA), Forthcoming, ((To Appear)). |
9. |
Correct-by-Construction Synthesis for Multi-Robot Mixing Decision and Control (CDC), IEEE 54nd Annual Conference on, 2015. |
8. |
Distributed Dynamic Density Coverage for Human-Swarm Interactions American Control Conference (ACC), pp. 353-358, 2015. |
7. |
Multi-Robot Mixing of Nonholonomic Mobile Robots Control Applications (CCA), IEEE Conference on, pp. 524-529, 2014. |
6. |
Shortest Paths Through 3-Dimensional Cluttered Environments Robotics and Automation (ICRA), IEEE International Conference on, pp. 6579-6585, 2014. |
5. |
Multi-Robot Mixing Using Braids Decision and Control (CDC), IEEE 52nd Annual Conference on, pp. 2001-2005, 2013, ISSN: 0743-1546. |
4. |
Optimal trajectory generation for next generation flight management systems Digital Avionics Systems Conference (DASC), IEEE/AIAA 32nd, pp. 3C5-1-3C5-10, 2013, ISSN: 2155-7195. |
3. |
Voltage regulation for a thermoelectric generator using a KY-converter Center for Power Electronic Systems Annual Conference (CPES), 2011. |
2. |
An integrated undergraduate research experience in control, power electronics, and design using a Micromouse Frontiers in Education, IEEE, 2010. |
1. |
Maximum power control based on matching dc motor dynamics and fuel cell dynamic behavior Center for Power Electronic Systems Annual Conference (CPES), 2010. |
Online Abstracts
3. |
Interpersonal and interlimb synergies in handling of a heavy object motor task 01.08.2020, (Under Review). |
2. |
Multi-Robot Control Using Coverage Over Time-Varying Domains: Extended Abstract 01.01.2019. |
1. |
Controlling High-Complexity Robotic Swarms with Low-Complexity EEG Brain-Machine Interfaces Washington, DC, 01.01.2017, (Program No. 147.38). |
Intellectual Property
2. |
2015, (US Patent). |
1. |
Density-Based Manipulation of Teams of Robots 2014, (US Provisional Patent). |