A study of achievable coverages using passive radar systems in terrestrial traffic monitoring applications is presented. The study includes the estimation of the bistatic radar cross section of different commercial vehicle models that provide challenging low values which make detection really difficult. A semi-urban scenario is selected to evaluate the impact of excess propagation losses generated by an irregular relief. A bistatic passive radar exploiting UHF frequencies radiated by digital video broadcasting transmitters is assumed. A general method of coverage estimation using electromagnetic simulators in combination with estimated car average bistatic radar cross section is applied. In order to reduce the computational cost, hybrid sol...
Advanced driver assistance systems (ADAS) have recently been thrust into the spotlight in the automo...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
In the nearest future, connected vehicles will be widely spread due to ongoing standardization activ...
Automotive radar systems are indispensable for advanced driver assistance systems. Beside existing m...
We present a system characterisation of a Passive Bistatic Radar (PBR). The system under investigati...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Detection and location on the ground moving target are a function of dependent bistatic Radar Cross ...
In this paper, the comparison is investigated between quasi-monostatic and near forward scatter conf...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
With the rapid and growing diffusion of the automotive radar technology in modern vehicles, the prob...
The state-of-art automotive radar modules normally operate in the monostatic mode and little researc...
Passive Bistatic Radar (PBR) research is at its zenith with several notable PBR systems currently op...
Wireless communication and radars will play a crucial role for autonomous vehicles in the nearest fu...
The use of radar in automotive applications such as adaptive cruise control is limited to detecting ...
Wireless communication and radars will play a crucial role for autonomous vehicles in the nearest fu...
Advanced driver assistance systems (ADAS) have recently been thrust into the spotlight in the automo...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
In the nearest future, connected vehicles will be widely spread due to ongoing standardization activ...
Automotive radar systems are indispensable for advanced driver assistance systems. Beside existing m...
We present a system characterisation of a Passive Bistatic Radar (PBR). The system under investigati...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
Detection and location on the ground moving target are a function of dependent bistatic Radar Cross ...
In this paper, the comparison is investigated between quasi-monostatic and near forward scatter conf...
The first commercial automotive radars are designed for blind-spot detection, collision warning, and...
With the rapid and growing diffusion of the automotive radar technology in modern vehicles, the prob...
The state-of-art automotive radar modules normally operate in the monostatic mode and little researc...
Passive Bistatic Radar (PBR) research is at its zenith with several notable PBR systems currently op...
Wireless communication and radars will play a crucial role for autonomous vehicles in the nearest fu...
The use of radar in automotive applications such as adaptive cruise control is limited to detecting ...
Wireless communication and radars will play a crucial role for autonomous vehicles in the nearest fu...
Advanced driver assistance systems (ADAS) have recently been thrust into the spotlight in the automo...
The concept of “smart” cars or intelligent vehicles is presented as one of the most promising soluti...
In the nearest future, connected vehicles will be widely spread due to ongoing standardization activ...