Automatization analysis of the extremely sensitive laser-based dual-mode biomedical sensor
Usman Masud1,2, Muhammad Iram Baig1, Ahmed Zeeshan3
1Faculty of Electrical Engineering, University of Engineering and Technology, Taxila, Pakistan.
Lasers in Medical Science
|January 9, 2020
Summary
This study details a rigorous testing mechanism for a sensitive biomedical sensor, crucial for public use. The developed system ensures sensor reliability through detailed performance analysis and advanced control algorithms.
Area of Science:
- Biomedical Engineering
- Optoelectronics
- Sensor Technology
Background:
- Reliable biomedical sensors are essential for public health applications.
- Rigorous testing protocols are paramount for ensuring sensor accuracy and safety.
- Existing sensor validation methods require enhancement for sensitive devices.
Purpose of the Study:
- To establish an exhaustive testing mechanism for a highly sensitive biomedical sensor.
- To validate the performance and reliability of the sensor for general public use.
- To integrate advanced optoelectronic components and algorithms for precise control and analysis.
Main Methods:
- Implementation of a control system utilizing fibre Bragg gratings, optical amplifiers, and optical couplers.
- Development and application of new algorithms in LabView and MATLAB for sensor control.
- Performance evaluation through hysteresis curves, timing analysis, and error deviation investigation.
Main Results:
- The developed testing mechanism provides a comprehensive assessment of sensor performance.
- Hysteresis curves, timing analysis, and error deviation data confirm sensor credibility.
- The study validates the sensor's trustworthiness for intended biomedical applications.
Conclusions:
- The established testing protocols ensure the reliability and trustworthiness of the biomedical sensor.
- The system's performance validation supports its suitability for public use.
- The project's framework allows for future extensions and ongoing applications in sensor technology.


