Chandani Anand
Papers
2
Total Citations
28
H-Index
2
About
Chandani Anand is a researcher whose work bridges the critical domains of optical sensing, embedded systems, and precision measurement. Her most influential contribution, "Depth Resolution Enhancement in Time-of-Flight Cameras Using Polarization State of the Reflected Light" (2018), has garnered 20 citations and addresses a fundamental challenge in 3D imaging. By leveraging the polarization state of reflected light, Anand proposed a novel method to mitigate systematic and environmental errors that degrade depth accuracy in ToF cameras—technology essential for robotic navigation, gaming, and autonomous systems. This work demonstrates her ability to enhance sensor performance through innovative optical techniques. Earlier, Anand contributed to industrial automation with her paper "Wireless multi-sensor embedded system for Agro-industrial monitoring and control" (2010, 8 citations), where she developed a multi-sensor platform capable of measuring up to eight parameters in harsh environments. This system optimized data acquisition for agricultural and industrial applications, showcasing her versatility in combining hardware design with algorithmic efficiency. Anand’s research reflects a commitment to advancing real-world sensing technologies, from improving depth perception in consumer electronics to enabling robust monitoring in challenging settings. Her work continues to inspire engineers and researchers seeking to push the boundaries of sensor accuracy and reliability.
Research Focus
Key Achievements
Top Papers
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- 2