Papers
6
Total Citations
63
H-Index
3
About
Nils Pohl is a prominent researcher specializing in millimeter-wave radar systems, FMCW (Frequency-Modulated Continuous Wave) sensing technologies, and advanced antenna characterization — fields that sit at the intersection of microwave engineering, robotics, and high-frequency electronics. His most influential contribution, a compact 120 GHz SiGe:C-based MIMO radar sensor designed for robot navigation in low-visibility environments (2017, 37 citations), demonstrated how highly integrated chipsets could enable 3D imaging in challenging conditions using just two transmit and eight receive channels — a landmark achievement in miniaturized radar design. Pohl has consistently pushed the boundaries of antenna measurement methodology, developing robotic, multi-arm FMCW-based characterization systems capable of ultrawideband millimeter-wave measurements with unprecedented precision and automation. His work on near-field probes for on-chip components operating up to 330 GHz further highlights his contributions to sub-terahertz instrumentation, while his investigation of 3D-printed radar targets at 145 GHz showcases a creative approach to radar calibration and positioning. Collectively accumulating over 60 citations, his research has meaningfully advanced autonomous sensing, high-frequency circuit characterization, and radar-assisted robotics, making his work essential reading for engineers working in next-generation radar and wireless sensing systems.
Research Focus
Key Achievements
Top Papers
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