This paper presents the design of a compact Radar for real-time detection of targets in smart mobility applications. The Radar integrates Fabry–Perot resonating antennas, X-band and configurable continuous wave transceiver, high-speed analog-digital-converter and low-power/low-cost FPGA for the baseband signal processing. The latter includes region-of-interest selection, 2D Fast Fourier Transform for range-Doppler map extraction, peak detection and alarm decision logic. The transmitted power can be configured from few mW to 1.8 W. This allows for a trade-off between the maximum detection range, from few hundreds of meters up to 1.54 km, and the Radar power consumption, from 2.56 W to 11.66 W. The measured speed is up to 40 m/s. The speed an...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The power dissipation and cost of the next generation pulse radar beamforming systems needs to be re...
This paper presents the design of a compact Radar for real-time detection of targets in smart mobili...
This paper presents the design of a compact Radar for real-time detection of targets in smart mobili...
The paper presents an X-band FMCW (Frequency Modulated Continuous Wave) Radar Imaging system, called...
The paper presents the design and test of a compact multi-channel platform for acquisition and real-...
The paper presents the design and test of a compact multi-channel platform for acquisition and real-...
RF Transceiver and FPGA-based Baseband Design of X-band Radars for Smart Mobility System
RF Transceiver and FPGA-based Baseband Design of X-band Radars for Smart Mobility System
The design and test of a Radar sensor signal acquisition and processing platform is presented in the...
The design and test of a Radar sensor signal acquisition and processing platform is presented in the...
This paper presents a low-cost X-band FMCW radar system suitable for short range sensing in an indoo...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The power dissipation and cost of the next generation pulse radar beamforming systems needs to be re...
This paper presents the design of a compact Radar for real-time detection of targets in smart mobili...
This paper presents the design of a compact Radar for real-time detection of targets in smart mobili...
The paper presents an X-band FMCW (Frequency Modulated Continuous Wave) Radar Imaging system, called...
The paper presents the design and test of a compact multi-channel platform for acquisition and real-...
The paper presents the design and test of a compact multi-channel platform for acquisition and real-...
RF Transceiver and FPGA-based Baseband Design of X-band Radars for Smart Mobility System
RF Transceiver and FPGA-based Baseband Design of X-band Radars for Smart Mobility System
The design and test of a Radar sensor signal acquisition and processing platform is presented in the...
The design and test of a Radar sensor signal acquisition and processing platform is presented in the...
This paper presents a low-cost X-band FMCW radar system suitable for short range sensing in an indoo...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The prototype of a low power radar with a coverage range from some hundred meters to a few kilometre...
The power dissipation and cost of the next generation pulse radar beamforming systems needs to be re...