A man wearing a grey sweater and white shirt, holding and working on a laptop, stands in the corridor of a server room. He's looking to his side amidst rows of servers and cables, illuminated by cool-toned lighting. The setting emphasizes the critical importance of cybersecurity in today's CMMC-compliant environments.

IEEE Conference on Synthetic Aperture Computational Imaging ( 2024 )

Automotive, mmWave, THz, Polarimetric, ISAR, 3D imaging, and high-dimensional feature processing using tensors are some of the radars.

Sonar: Bathymetry, wideband regimes, micronavigation and position uncertainty

Optics include deep learning techniques, ptychography, hohographs, coded aperture imaging, wiretinger flow, and phase retrieval imaging.

5G: Near-field beam focusing, channel sounding, over-the-air calibration, MIMO antenna testbeds, intelligent reflecting surfaces

Techniques for wave localization and migration in seismology

Deconvolution, hardware de-embediment, and neuromorphic computing techniques are examples of inverse problems.

Auto-focusing techniques in data-driven signal processing

Image reconstruction using under-sampled measurements in magnetic resonance imaging

Estimating flow and velocity in ultrasound

Networked coherent radars and sonars are distributed sensors.

Wireless power transfer to UAVs through power beaming

5G signal interference in radiometry and remote sensing

Rydberg probes and lithium-niobate piezoelectric sensors are examples of quantum receivers.

Coherent UAV swarms: integrated sensing and communications

Low-noise receivers and satellite interference mitigation in radio astronomy

LiDAR, 4D mm wave radar, autonomous driving, and point cloud processing

Regularization in model-based image reconstruction

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