Ahmed Bouzid
Papers
1
Total Citations
3
H-Index
1
About
Ahmed Bouzid is a researcher whose work sits at the intersection of precision instrumentation and embedded systems, with a particular focus on high-resolution analog-to-digital conversion (ADC) and its application to critical positioning challenges. His most cited paper, "High Resolution Large Scale ADC. Case study of an N bit per Volt ADC Implemented using FPAA and FPGA Applied for Precision Altimetry" (2020, 3 citations), addresses a fundamental gap in navigation: the lack of a system capable of delivering accurate position estimation across all environmental conditions. Bouzid’s key contribution in this work is a novel method for estimating altitude in precision vertical displacement scenarios, leveraging a hybrid FPAA-FPGA architecture to achieve an N-bit-per-Volt ADC. This approach tackles the inherent limitations of traditional altimetry by combining reconfigurable analog and digital processing, offering a pathway to more robust and accurate positioning systems. While his citation count is modest, the specificity and technical depth of his contribution highlight a focused effort to solve a real-world engineering problem. Bouzid’s research underscores the importance of custom hardware-software co-design in pushing the boundaries of sensor accuracy, making his work relevant for students and engineers exploring advanced ADC techniques and their role in autonomous navigation and aerospace applications.
Research Focus
Key Achievements
Top Papers
- 1