collaborators

5 papers

eess.SY2026

LiDAR-Derived Surface Priors for Multimodal Sensing-Assisted NLoS Beam Search in Indoor 60-GHz Networks

Amod Ashtekar, Dalton Davis, Rafaela Lomboy +3

Highly directional 60-GHz Internet-of-Things (IoT) links can exploit naturally occurring indoor surfaces to sustain connectivity under blockage. Identifying viable non-line-of-sigh…

cs.NI2026

Refined Bayesian Optimization for Efficient Beam Alignment in Intelligent Indoor Wireless Environments

Parth Ashokbhai Shiroya, Amod Ashtekar, Swarnagowri Shashidhar +1

Future intelligent indoor wireless environments require fast and reliable beam alignment to sustain high-throughput links under mobility and blockage. Exhaustive beam training achi…

cs.NI2025

See and Beam: Leveraging LiDAR Sensing and Specular Surfaces for Indoor mmWave Connectivity

Raj Sai Sohel Bandari, Amod Ashtekar, Omar Ibrahim +1

Millimeter-wave (mmWave) communication enables multi-gigabit-per-second data rates but is highly susceptible to path loss and blockage, especially indoors. Many indoor settings, ho…

cs.LG2025

Machine Learning for LiDAR-Based Indoor Surface Classification in Intelligent Wireless Environments

Parth Ashokbhai Shiroya, Swarnagowri Shashidhar, Amod Ashtekar +4

Reliable connectivity in millimeter-wave (mmWave) and sub-terahertz (sub-THz) networks depends on reflections from surrounding surfaces, as high-frequency signals are highly vulner…

cs.CV2025

Vision-Based Autonomous MM-Wave Reflector Using ArUco-Driven Angle-of-Arrival Estimation

Josue Marroquin, Nan Inzali, Miles Dillon Lantz +4

Reliable millimeter-wave (mmWave) communication in non-line-of-sight (NLoS) conditions remains a major challenge for both military and civilian operations, especially in urban or i…