Paper
23 May 2013 UWB micro-doppler radar for human gait analysis using joint range-time-frequency representation
Author Affiliations +
Abstract
In this paper, we present a novel, standalone ultra wideband (UWB) micro-Doppler radar sensor that goes beyond simple range or micro-Doppler detection to combined range-time-Doppler frequency analysis. Moreover, it can monitor more than one human object in both line-of-sight (LOS) and through wall scenarios, thus have full human objects tracking capabilities. The unique radar design is based on narrow pulse transceiver, high speed data acquisition module, and wideband antenna array. For advanced radar post-data processing, joint range-time-frequency representation has been performed. Characteristics of human walking activity have been analyzed using the radar sensor by precisely tracking the radar object and acquiring range-time-Doppler information simultaneously. The UWB micro-Doppler radar prototype is capable of detecting Doppler frequency range from -180 Hz to +180 Hz, which allows a maximum target velocity of 9 m/s. The developed radar sensor can also be extended for many other applications, such as respiration and heartbeat detection of trapped survivors under building debris.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yazhou Wang and Aly E. Fathy "UWB micro-doppler radar for human gait analysis using joint range-time-frequency representation", Proc. SPIE 8734, Active and Passive Signatures IV, 873404 (23 May 2013); https://doi.org/10.1117/12.2015642
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CITATIONS
Cited by 11 scholarly publications.
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KEYWORDS
Radar

Gait analysis

Doppler effect

Sensors

Antennas

Radar sensor technology

Receivers

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