We present the design and characterization of a ground-based, zenith-pointing, 94 GHz FMCW Doppler radar demonstrator for cloud profiling. The radar uses an all solid-state and relatively simple homodyne architecture and two, low sidelobe 0.5 m diameter Fresnel zone plate antennas to reduce system costs. The low-phase noise, coherent radar employs a direct digital synthesis (DDS) chip for highly linear chirp generation. The design will be able to leverage ongoing future improvements in mm-wave low noise and power amplifier technology to maximize sensitivity. Once the radar is installed in a rooftop location, the processor will perform real-time range-Doppler measurements with averaging, to yield target velocity spectra as a function of alti...
This is a document that will describe a 340 GHz pulse Doppler radar. It will describe the system and...
Funding: UK Engineering and Physical Sciences Research Council under grant EP/S032851/1.Marine auton...
For a long period of time FHR is developing millimetre wave radars for airborne remote sensing appli...
We present the design and characterization of a ground-based, zenith-pointing, 94 GHz FMCW Doppler r...
International audienceDoppler cloud radars are amazing tools to characterize cloud and fog propertie...
The authors acknowledge the funding received from the Science and Technology Facilities Council whic...
The recent decade has brought rapid development in solid-state power amplifier (SSPA) technology. Th...
This dissertation presents a unique Compact Millimeter-wave Radar (CMR) developed at the University ...
The 94-GHz (W-band) Cloud Radar System (CRS) has been developed and flown on a NASA ER-2 high-altitu...
The successful realisation of high performance millimetre and sub-millimetre wave radars requires ke...
The 94 GHz MMW airborne radar system that provides a runway image in adverse weather conditions is n...
A Frequency Modulated Continuous Wave (FMCW) Doppler radar was assembled to detect human as sample t...
A new 94-GHz frequency-modulated continuous wave (FMCW) Doppler radar-radiometer system [Julich Obse...
The United States (U.S.) Department of Energy (DOE) Atmospheric Radiation Measurement (ARM) Climate ...
This is a document that will describe a 340 GHz pulse Doppler radar. It will describe the system and...
Funding: UK Engineering and Physical Sciences Research Council under grant EP/S032851/1.Marine auton...
For a long period of time FHR is developing millimetre wave radars for airborne remote sensing appli...
We present the design and characterization of a ground-based, zenith-pointing, 94 GHz FMCW Doppler r...
International audienceDoppler cloud radars are amazing tools to characterize cloud and fog propertie...
The authors acknowledge the funding received from the Science and Technology Facilities Council whic...
The recent decade has brought rapid development in solid-state power amplifier (SSPA) technology. Th...
This dissertation presents a unique Compact Millimeter-wave Radar (CMR) developed at the University ...
The 94-GHz (W-band) Cloud Radar System (CRS) has been developed and flown on a NASA ER-2 high-altitu...
The successful realisation of high performance millimetre and sub-millimetre wave radars requires ke...
The 94 GHz MMW airborne radar system that provides a runway image in adverse weather conditions is n...
A Frequency Modulated Continuous Wave (FMCW) Doppler radar was assembled to detect human as sample t...
A new 94-GHz frequency-modulated continuous wave (FMCW) Doppler radar-radiometer system [Julich Obse...
The United States (U.S.) Department of Energy (DOE) Atmospheric Radiation Measurement (ARM) Climate ...
This is a document that will describe a 340 GHz pulse Doppler radar. It will describe the system and...
Funding: UK Engineering and Physical Sciences Research Council under grant EP/S032851/1.Marine auton...
For a long period of time FHR is developing millimetre wave radars for airborne remote sensing appli...