A harmonic radar and set of passive transponders are used for detection and identification of vulnerable road users (VRU) in automotive applications. The radar system transmits a signal consisting of two distinct frequency components in the 76- 81 GHz band. A small transponder is carried by the VRU. The antenna and the electric circuitry of the transponder are printed on flexible film and it can therefore be integrated in clothes. In the transponder the two frequency components are mixed together and a harmonic product, offset from all other reflections, is transmitted back to the radar. By synthesizing this harmonic frequency the radar system can unambiguously identify and localize VRU
A spectrum sensing technique is described which is used to enhance the performance of harmonic step-...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Automotive radar systems using integrated 24 GHz radar sensor techniques are currently under develop...
A harmonic radar and set of passive transponders are used for detection and identification of vulner...
This paper presents building blocks for a proposed automotive intermodulation radar for detecting an...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
Harmonic radar is a promising radar technique for the detection of electronic devices in security re...
Nonlinear radar exploits the difference in frequency between radar waves that illuminate and are ref...
Vehicle detection has been a vital part of Intelligent Transportation Systems (ITS) for many years, ...
Automotive radar can be used to detect and identify roadway obstructions including slowly-moving per...
Ehicle detection has been a vital part of Intelligent Transportation Systems (ITS) for many years, s...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Nonlinear circuit components such as diodes, transistors, etc. receive a transmitted signal at a fun...
IEEE Radar Conference (RadarConf) (2017 : The Westin SeattleSeattle; United States)A new approach to...
The state-of-art automotive radar modules normally operate in the monostatic mode and little researc...
A spectrum sensing technique is described which is used to enhance the performance of harmonic step-...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Automotive radar systems using integrated 24 GHz radar sensor techniques are currently under develop...
A harmonic radar and set of passive transponders are used for detection and identification of vulner...
This paper presents building blocks for a proposed automotive intermodulation radar for detecting an...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
Harmonic radar is a promising radar technique for the detection of electronic devices in security re...
Nonlinear radar exploits the difference in frequency between radar waves that illuminate and are ref...
Vehicle detection has been a vital part of Intelligent Transportation Systems (ITS) for many years, ...
Automotive radar can be used to detect and identify roadway obstructions including slowly-moving per...
Ehicle detection has been a vital part of Intelligent Transportation Systems (ITS) for many years, s...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Nonlinear circuit components such as diodes, transistors, etc. receive a transmitted signal at a fun...
IEEE Radar Conference (RadarConf) (2017 : The Westin SeattleSeattle; United States)A new approach to...
The state-of-art automotive radar modules normally operate in the monostatic mode and little researc...
A spectrum sensing technique is described which is used to enhance the performance of harmonic step-...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Automotive radar systems using integrated 24 GHz radar sensor techniques are currently under develop...