This paper studies 24-GHz automotive radar technology for detecting low-friction spots caused by water, ice, or snow on asphalt. The backscattering properties of asphalt in different conditions are studied in both laboratory and field experiments. In addition, the effect of water on the backscattering properties of asphalt is studied with a surface scattering model. The results suggest that low-friction spots could be detected with a radar by comparing backscattered signals at different polarizations. The requirements for the radar are considered, and a 24-GHz radar for road-condition recognition is found to be feasible
By its invention at the turn of this century, the automobile has had a revolutionary impact on human...
There has been significant investment in realizing autonomous vehicles technology. Despite tremendou...
Passive radiometers are well-known instruments used in the characterization of soil, sea surfaces an...
This paper studies 24-GHz automotive radar technology for detecting low-friction spots caused by wat...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
Traffic safety can be improved by detecting the road surface condition using automotive radar. This ...
Traffic safety can be improved by detecting the road surface condition using automotive radar. This ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper presents experimental results on detecting low friction spots due to snow, ice or water o...
This paper presents experimental results on detecting low friction spots due to snow, ice or water o...
Automotive radar technology for detecting low-friction spots caused by water, ice or snow on asphalt...
Automotive radar technology for detecting low-friction spots caused by water, ice or snow on asphalt...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
By its invention at the turn of this century, the automobile has had a revolutionary impact on human...
There has been significant investment in realizing autonomous vehicles technology. Despite tremendou...
Passive radiometers are well-known instruments used in the characterization of soil, sea surfaces an...
This paper studies 24-GHz automotive radar technology for detecting low-friction spots caused by wat...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
Traffic safety can be improved by detecting the road surface condition using automotive radar. This ...
Traffic safety can be improved by detecting the road surface condition using automotive radar. This ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper proposes that automotive radar technology could be used to detect low friction spots due ...
This paper presents experimental results on detecting low friction spots due to snow, ice or water o...
This paper presents experimental results on detecting low friction spots due to snow, ice or water o...
Automotive radar technology for detecting low-friction spots caused by water, ice or snow on asphalt...
Automotive radar technology for detecting low-friction spots caused by water, ice or snow on asphalt...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
By its invention at the turn of this century, the automobile has had a revolutionary impact on human...
There has been significant investment in realizing autonomous vehicles technology. Despite tremendou...
Passive radiometers are well-known instruments used in the characterization of soil, sea surfaces an...