Papers
2
Total Citations
37
H-Index
2
About
Zaeema Wajid’s research focuses on robust control systems, fault-tolerant electronics, and precision automation for industrial applications. Her most cited work, “Reliable speed control of a permanent magnet DC motor using fault-tolerant H-bridge” (2014, 27 citations), addresses a critical need in robotics, automotive, and process industries by developing a control architecture that ensures smooth, uninterrupted motor operation even under fault conditions—enhancing overall system reliability and productivity. In her 2021 paper “PID Tuning with reference tracking and plant uncertainty along with disturbance rejection” (10 citations), she tackles the growing demand for automation and robustness by refining PID control strategies to maintain accurate performance despite external disturbances and parameter uncertainties. Together, these contributions demonstrate her expertise in bridging theoretical control design with practical, fault-tolerant implementations. Her work is particularly notable for its direct relevance to modern automated systems where safety and precision are paramount. With a growing citation footprint, Wajid’s research continues to influence engineers seeking dependable, high-performance control solutions for real-world electromechanical systems.
Research Focus
Key Achievements
Top Papers
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