The technical field of this invention is radar based live object detection.
Recent years have witnessed widespread use of millimeter wave (mm-Wave) radars for advanced driver assistance system (ADAS) applications. Compared with other sensing modalities such as a camera, radar has the ability to perform equally well during different times of the day and can be deployed out of sight behind the car bumper or the doors. In many ADAS applications such as parking, cruise control, and braking, the radar is primarily used to find the three-dimensional location of objects around the vehicle. This includes range, azimuth angle, and elevation angle. The range is computed from the round trip delay of the transmitted signal and the two-dimensional (2D) angle is estimated by using the data collected by an antenna array employing a beamforming-based or an eigen-decomposition based high-resolution frequency estimation method.
The use of radar sensors in automotive pedestrian recognition systems is of special interest since radar sensors are less influenced by environmental conditions (e.g. fog, rain, etc.) as other systems like video cameras. Moreover, high resolution radar sensors are available in many modern vehicles as a part of Adaptive Cruise Control (ACC) systems.
A 77 GHz radar is used to detect a moving object in its view. This invention is based on processing the matched-filtered radar return on a frame-by-frame basis. For each window, the zeroth lag FFT cross-correlation coefficient is computed of the first chirp in the first frame with the first chirp in subsequent frames. Modified geometric mean (MGM) of the absolute values of these cross-correlation coefficients is then computed and compared with a threshold. This MGM serves as a decision measure to distinguish between a static scene and a scene that has a living object present in it.
These and other aspects of this invention are illustrated in the drawings, in which:
As shown in
The live object detection method of this invention is shown in
(304) Compute the modified geometric mean of W cross coefficients as:
(305) Declare the processing frame W of ith window as containing a live object or being static based on the following criterion:
If G(i)≧γ, the scene is declared static
If G(i)<γ, the scene is declared to have a live object present in it.
The threshold γ ranges between 0 and 1 and is chosen by the user beforehand.
This application claims priority under 35 U.S.C. 119(e) (1) to U.S. Provisional Application No. 62/142,086 filed Apr. 2, 2015.
| Number | Date | Country | |
|---|---|---|---|
| 62142086 | Apr 2015 | US |