EngineeringPhysics

Victor C. Chen, Fayin Li, Shen-Shyang Ho, Harry Wechsler

2006.3.6IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS

DOI: 10.1109/taes.2006.1603402

tlooto Summary

Radar targets experiencing micro-motion dynamics induce Doppler modulations, known as the micro-Doppler effect, on returned signals.

Abstract

When, in addition to the constant Doppler frequency shift induced by the bulk motion of a radar target, the target or any structure on the target undergoes micro-motion dynamics, such as mechanical vibrations or rotations, the micro-motion dynamics induce Doppler modulations on the returned signal, referred to as the micro-Doppler effect. We introduce the micro-Doppler phenomenon in radar, develop a model of Doppler modulations, derive formulas of micro-Doppler induced by targets with vibration, rotation, tumbling and coning motions, and verify them by simulation studies, analyze time-varying micro-Doppler features using high-resolution time-frequency transforms, and demonstrate the micro-Doppler effect observed in real radar data.

Citation format

CHEN, Victor C., et al. Micro-doppler effect in radar: Phenomenon, model, and simulation study. IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 2006, 42: 2–21.