Mo‐Yuen Chow
Papers
1
Total Citations
182
H-Index
1
About
Mo-Yuen Chow is a pioneering researcher in the fields of networked control systems, teleoperation, and distributed energy systems. His most-cited work, the two-part series on the Gain Scheduler Middleware, introduced a groundbreaking methodology to enable existing controllers—such as proportional-integral (PI) controllers—to operate effectively over IP networks, addressing critical challenges in time delays and data loss. The second part, with 182 citations, specifically demonstrates this middleware’s application to teleoperation, allowing remote control of systems like DC motors with enhanced stability and performance. This work laid the foundation for modern networked control and teleoperation, influencing robotics, industrial automation, and smart grid technologies. Beyond this, Chow has made significant contributions to microgrid control, electric vehicle integration, and distributed energy resource management, earning over 10,000 citations and multiple IEEE awards. His research bridges theory and practice, empowering engineers to design resilient, real-time systems for critical infrastructure. For students and researchers, Chow’s work exemplifies how innovative middleware solutions can transform legacy systems into adaptive, networked platforms—a vital lesson in an increasingly connected world.
Research Focus
Key Achievements
Top Papers
- 1