Weixin Wu
Papers
1
Total Citations
28
H-Index
1
About
Weixin Wu is a researcher whose work has advanced the precision of real-time digital systems, with a particular focus on latency measurement and cyber-physical interactions. His key research areas include embedded systems, real-time computing, and sensor-actuator network performance. Wu’s most notable contribution is a groundbreaking method for measuring end-to-end latency from sensing to actuation at a continuous 1-millisecond resolution—a tenfold improvement over prior techniques that could only sample at 10–33 ms intervals or at discrete events. This work, published in 2013 and cited 28 times, has been instrumental for applications requiring ultra-low-latency feedback, such as autonomous systems, robotics, and high-frequency control loops. By enabling finer-grained analysis of digital system delays, Wu’s research has helped engineers identify bottlenecks and optimize performance in time-critical environments. His achievements underscore a commitment to pushing the boundaries of measurement fidelity, providing tools that are essential for the next generation of responsive, real-world computing systems.
Research Focus
Key Achievements
Top Papers
- 1