IEEE Transactions on Aerospace and Electronic Systems, ISSN 0018-9251, 06/2019, Volume 55, Issue 3, pp. 1241 - 1260
We propose a millimeter-wave joint radar-communications (JRC) system comprising a bi-static automotive radar and vehicle-to-vehicle communications. We study...
mmWave automotive radar | phase modulated continuous waveform (PMCW) | OFDM | Estimation | Joint radar-communications system | Radar | Receivers | orthogonal frequency division multiple access (OFDMA) | super resolution | Sensors | Signal resolution | Automotive engineering | DESIGN | ENGINEERING, AEROSPACE | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Engineering and Technology | Elektroteknik och elektronik | Electrical Engineering, Electronic Engineering, Information Engineering | Teknik och teknologier | Signalbehandling | Signal Processing | continuous phase modulation;CW radar;fast Fourier transforms;frequency division multiple access;millimetre wave communication;millimetre wave radar;multiplexing;OFDM modulation;radar resolution;road vehicle radar;signal classification;vehicular ad hoc networks;mmWave automotive joint radar-communications system;bi-static automotive radar;vehicle-to-vehicle communications;orthogonal-frequency-division-multiple-access waveforms;JRC statistical bounds;phase-modulated-continuous-wave;millimeter-wave joint radar-communications system;low-complexity JRC super-resolution algorithms;fast Fourier transform;multiple signal classification;Radar;Automotive engineering;Receivers;OFDM;Signal resolution;Sensors;Estimation;Joint radar-communications system;mmWave automotive radar;orthogonal frequency division multiple access (OFDMA);phase modulated continuous waveform (PMCW);super resolution
mmWave automotive radar | phase modulated continuous waveform (PMCW) | OFDM | Estimation | Joint radar-communications system | Radar | Receivers | orthogonal frequency division multiple access (OFDMA) | super resolution | Sensors | Signal resolution | Automotive engineering | DESIGN | ENGINEERING, AEROSPACE | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Engineering and Technology | Elektroteknik och elektronik | Electrical Engineering, Electronic Engineering, Information Engineering | Teknik och teknologier | Signalbehandling | Signal Processing | continuous phase modulation;CW radar;fast Fourier transforms;frequency division multiple access;millimetre wave communication;millimetre wave radar;multiplexing;OFDM modulation;radar resolution;road vehicle radar;signal classification;vehicular ad hoc networks;mmWave automotive joint radar-communications system;bi-static automotive radar;vehicle-to-vehicle communications;orthogonal-frequency-division-multiple-access waveforms;JRC statistical bounds;phase-modulated-continuous-wave;millimeter-wave joint radar-communications system;low-complexity JRC super-resolution algorithms;fast Fourier transform;multiple signal classification;Radar;Automotive engineering;Receivers;OFDM;Signal resolution;Sensors;Estimation;Joint radar-communications system;mmWave automotive radar;orthogonal frequency division multiple access (OFDMA);phase modulated continuous waveform (PMCW);super resolution
Journal Article
IEEE Transactions on Vehicular Technology, ISSN 0018-9545, 04/2018, Volume 67, Issue 4, pp. 3012 - 3027
Millimeter-wave (mmWave) radar is widely used in vehicles for applications such as adaptive cruise control and collision avoidance. In this paper, we propose...
Wireless LAN | IEEE 802.11ad | OFDM | Estimation | Channel estimation | millimeter wave communication | millimeter wave radar | vehicular communications | Radar applications | performance analysis | Automotive engineering | Automotive radar | TECHNOLOGIES | WAVE-FORM DESIGN | FREQUENCY | TRANSPORTATION SCIENCE & TECHNOLOGY | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Communication systems | Computer simulation | False alarms | Synchronism | Automobiles | Radar receivers | Adaptive control | Collision dynamics | Cruise control | Accuracy | Wireless communications | Algorithms | Wireless networks | Millimeter waves | Collision avoidance | Frequency synchronization | Target detection | Time synchronization | Communication
Wireless LAN | IEEE 802.11ad | OFDM | Estimation | Channel estimation | millimeter wave communication | millimeter wave radar | vehicular communications | Radar applications | performance analysis | Automotive engineering | Automotive radar | TECHNOLOGIES | WAVE-FORM DESIGN | FREQUENCY | TRANSPORTATION SCIENCE & TECHNOLOGY | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Communication systems | Computer simulation | False alarms | Synchronism | Automobiles | Radar receivers | Adaptive control | Collision dynamics | Cruise control | Accuracy | Wireless communications | Algorithms | Wireless networks | Millimeter waves | Collision avoidance | Frequency synchronization | Target detection | Time synchronization | Communication
Journal Article
IET Radar, Sonar & Navigation, ISSN 1751-8784, 5/2019, Volume 13, Issue 5, pp. 760 - 770
In this study, to reduce the performance degradation due to iron-clutter, the authors propose a suppression method for stationary clutter under iron-structures...
Research Article | clutter suppression scheme | radar detection | iron-tunnels | automotive FMCW radar | frequency-modulation continuous-wave radar | CW radar | iron-structures | frequency 77 | object detection | FMCW radar data | automotive radar | TELECOMMUNICATIONS | FM radar | radar signal processing | iron-bridges | ENGINEERING, ELECTRICAL & ELECTRONIC | millimetre wave radar | radar clutter | iron-clutter-rich environment | radar detection performance | road vehicle radar | suppression method | 0 GHz | phase analysis-based stationary clutter suppression
Research Article | clutter suppression scheme | radar detection | iron-tunnels | automotive FMCW radar | frequency-modulation continuous-wave radar | CW radar | iron-structures | frequency 77 | object detection | FMCW radar data | automotive radar | TELECOMMUNICATIONS | FM radar | radar signal processing | iron-bridges | ENGINEERING, ELECTRICAL & ELECTRONIC | millimetre wave radar | radar clutter | iron-clutter-rich environment | radar detection performance | road vehicle radar | suppression method | 0 GHz | phase analysis-based stationary clutter suppression
Journal Article
2019, ISBN 9783731508885
Current automotive radar sensors prove to be a weather robust and low-cost solution, but are suffering from low resolution and are not capable of classifying...
Machine-Learning | Millimeter-Wave Radar | Automotive Radar | Polarimetric Radar | Target Classification | Polarimetrie | Millimeterwellen-Radar | Objekterkennung | Automotive-Radar
Machine-Learning | Millimeter-Wave Radar | Automotive Radar | Polarimetric Radar | Target Classification | Polarimetrie | Millimeterwellen-Radar | Objekterkennung | Automotive-Radar
eBook
IEEE Transactions on Geoscience and Remote Sensing, ISSN 0196-2892, 04/2010, Volume 48, Issue 4, pp. 2066 - 2075
Recently, theoretical investigations have shown that switching between parts of the transmit and/or receive aperture in a pulse-to-pulse cycle may improve the...
radar detection | radar signal analysis | Statistical analysis | Radar theory | Physics | radar position estimation | Vehicles | Antenna switching | ground moving target indication (GMTI) | radar velocity measurement | synthetic aperture radar (SAR) | Layout | Radar imaging | spatial diversity | Radar antennas | Frequency | Radar signal processing | Testing | Ground moving target indication (GMTI) | Radar position estimation | Spatial diversity | Radar detection | Radar signal analysis | Synthetic aperture radar (SAR) | Radar velocity measurement | GEOCHEMISTRY & GEOPHYSICS | REMOTE SENSING | MOVING TARGET INDICATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Usage | Analysis | False alarms | Design and construction | Target acquisition | Remote sensing | Synthetic aperture radar | Methods | Antennas (Electronics) | Studies | Moving targets | Radar | Grounds | High frequencies | Statistics | Switching | Automotive components | Antennas
radar detection | radar signal analysis | Statistical analysis | Radar theory | Physics | radar position estimation | Vehicles | Antenna switching | ground moving target indication (GMTI) | radar velocity measurement | synthetic aperture radar (SAR) | Layout | Radar imaging | spatial diversity | Radar antennas | Frequency | Radar signal processing | Testing | Ground moving target indication (GMTI) | Radar position estimation | Spatial diversity | Radar detection | Radar signal analysis | Synthetic aperture radar (SAR) | Radar velocity measurement | GEOCHEMISTRY & GEOPHYSICS | REMOTE SENSING | MOVING TARGET INDICATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Usage | Analysis | False alarms | Design and construction | Target acquisition | Remote sensing | Synthetic aperture radar | Methods | Antennas (Electronics) | Studies | Moving targets | Radar | Grounds | High frequencies | Statistics | Switching | Automotive components | Antennas
Journal Article
IEEE JOURNAL OF SOLID-STATE CIRCUITS, ISSN 0018-9200, 10/2017, Volume 52, Issue 10, pp. 2613 - 2626
In this paper, the concept of phase modulated MIMO radars is explained and demonstrated with a 28-nm CMOS fully integrated 79-GHz radar SoC. It includes two...
CMOS | 79-GHz radar | phase modulated radar | TRANSMITTER | short range radar | MIMO radar | continuous wave radar | NOISE | automotive radar | phase modulated continuous wave (PMCW) radar | mm-wave radar | ENGINEERING, ELECTRICAL & ELECTRONIC
CMOS | 79-GHz radar | phase modulated radar | TRANSMITTER | short range radar | MIMO radar | continuous wave radar | NOISE | automotive radar | phase modulated continuous wave (PMCW) radar | mm-wave radar | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Journal of Solid-State Circuits, ISSN 0018-9200, 10/2017, Volume 52, Issue 10, pp. 2613 - 2626
Journal Article
IEEE Journal of Solid-State Circuits, ISSN 0018-9200, 10/2017, Volume 52, Issue 10, pp. 2613 - 2626
In this paper, the concept of phase modulated MIMO radars is explained and demonstrated with a 28-nm CMOS fully integrated 79-GHz radar SoC. It includes two...
79-GHz radar | Phase modulation | short range radar | continuous wave radar | Receivers | automotive radar | phase modulated continuous wave (PMCW) radar | mm-wave radar | CMOS | phase modulated radar | MIMO radar | Radar | Radar antennas | MIMO | Gain | Signal to noise ratio | Pseudorandom sequences | MIMO (control systems) | Transmitters | Digitization | Custom designed
79-GHz radar | Phase modulation | short range radar | continuous wave radar | Receivers | automotive radar | phase modulated continuous wave (PMCW) radar | mm-wave radar | CMOS | phase modulated radar | MIMO radar | Radar | Radar antennas | MIMO | Gain | Signal to noise ratio | Pseudorandom sequences | MIMO (control systems) | Transmitters | Digitization | Custom designed
Journal Article
IEEE Transactions on Microwave Theory and Techniques, ISSN 0018-9480, 03/2012, Volume 60, Issue 3, pp. 845 - 860
The market for driver assistance systems based on millimeter-wave radar sensor technology is gaining momentum. In the near future, the full range of newly...
millimeterwave silicon RFICs | Radar cross section | Receiving antennas | packaging and interconnects | Radar antennas | radar transceivers | antenna systems | Sensors | Vehicles | Automotive engineering | Automotive radar | PHASED-ARRAY TRANSCEIVER | MIXER | SILICON | ON-CHIP ANTENNAS | SYSTEMS | RECEIVER | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Microwave integrated circuits | Usage | Innovations | Bandwidth | Millimeter waves | Radar systems | Distribution (Probability theory) | Complementary metal oxide semiconductors | Frequency bands | Drivers | Radar | Markets | Antennas | Automotive components | Microwaves
millimeterwave silicon RFICs | Radar cross section | Receiving antennas | packaging and interconnects | Radar antennas | radar transceivers | antenna systems | Sensors | Vehicles | Automotive engineering | Automotive radar | PHASED-ARRAY TRANSCEIVER | MIXER | SILICON | ON-CHIP ANTENNAS | SYSTEMS | RECEIVER | ENGINEERING, ELECTRICAL & ELECTRONIC | Measurement | Microwave integrated circuits | Usage | Innovations | Bandwidth | Millimeter waves | Radar systems | Distribution (Probability theory) | Complementary metal oxide semiconductors | Frequency bands | Drivers | Radar | Markets | Antennas | Automotive components | Microwaves
Journal Article
Microwave and Optical Technology Letters, ISSN 0895-2477, 05/2019, Volume 61, Issue 5, pp. 1375 - 1380
Fully autonomous vehicles and the need to improve road safety have led to increased demands on the reliability of various advanced driver assistance systems...
antenna | radar | automotive | simulation | radar cross section
antenna | radar | automotive | simulation | radar cross section
Journal Article
Microwave and Optical Technology Letters, ISSN 0895-2477, 01/2019, Volume 61, Issue 1, pp. 56 - 62
A parasitic patch antenna array based on a new multi‐layer PCB technology, called the Any‐Layer PCB technology, is presented. The antenna is designed for 77‐81...
multi‐layer PCB | millimeter‐wave | automotive radar | 79 GHz radar | antenna array | 79 GHz radar | multi-layer PCB | millimeter-wave | DESIGN | OPTICS | ENGINEERING, ELECTRICAL & ELECTRONIC
multi‐layer PCB | millimeter‐wave | automotive radar | 79 GHz radar | antenna array | 79 GHz radar | multi-layer PCB | millimeter-wave | DESIGN | OPTICS | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
12.
Full Text
Moving target detection on an iron-bridge using phase analysis for automotive FMCW radar
Electronics Letters, ISSN 0013-5194, 10/2019, Volume 55, Issue 22, pp. 1196 - 1198
When driving on an iron-bridge, stationary iron-clutters cause disturbances in the detection of a moving target in an automotive radar system. In this Letter,...
Radar, sonar and navigation | 77 GHz FMCW-phased array radar | automotive FMCW radar | moving target detection method | CW radar | phase analysis | ego-vehicle | frequency 77 | object detection | FM radar | spatial domain | ENGINEERING, ELECTRICAL & ELECTRONIC | CLUTTER SUPPRESSION | phase similarity | iron-bridge | down-chirp beat-frequencies | moving target velocity | stationary iron-clutters | array antenna signal | automotive radar system | frequency-modulated continuous wave-phased array radar signal | road vehicle radar | 0 GHz | phased array radar
Radar, sonar and navigation | 77 GHz FMCW-phased array radar | automotive FMCW radar | moving target detection method | CW radar | phase analysis | ego-vehicle | frequency 77 | object detection | FM radar | spatial domain | ENGINEERING, ELECTRICAL & ELECTRONIC | CLUTTER SUPPRESSION | phase similarity | iron-bridge | down-chirp beat-frequencies | moving target velocity | stationary iron-clutters | array antenna signal | automotive radar system | frequency-modulated continuous wave-phased array radar signal | road vehicle radar | 0 GHz | phased array radar
Journal Article
Robotics and Autonomous Systems, ISSN 0921-8890, 07/2016, Volume 81, pp. 1 - 16
Robust environmental perception is a crucial parameter for the development of autonomous ground vehicle applications, especially in the field of agricultural...
MMW radar | 2D imaging | Robust perception | Mobile robotics | FMCW radar | ROBOTICS | OUTDOOR | MONOCULAR VISION SENSOR | SYSTEMS | AUTOMATION & CONTROL SYSTEMS | COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE | Robotics industry | Usage | Frequency modulation | Radar systems | Sensors | Robotics | Antennas (Electronics) | Construction | Radar data | Funding | Radar | Perception | Two dimensional | Automotive components | Engineering Sciences | Signal and Image processing | Automatic
MMW radar | 2D imaging | Robust perception | Mobile robotics | FMCW radar | ROBOTICS | OUTDOOR | MONOCULAR VISION SENSOR | SYSTEMS | AUTOMATION & CONTROL SYSTEMS | COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE | Robotics industry | Usage | Frequency modulation | Radar systems | Sensors | Robotics | Antennas (Electronics) | Construction | Radar data | Funding | Radar | Perception | Two dimensional | Automotive components | Engineering Sciences | Signal and Image processing | Automatic
Journal Article
IEEE Antennas and Wireless Propagation Letters, ISSN 1536-1225, 03/2018, Volume 17, Issue 3, pp. 418 - 421
As automotive radar and driver assistance systems prevail, weak scattering targets such as pedestrians and bicycles can be applied with radar cross section...
Antenna measurements | Radar cross-sections | millimeter wave | dihedral corner reflector | Scattering | Backscattering | Millimeter wave radar | Radar antennas | radar cross section (RCS) | Automotive engineering | collision avoidance radar | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC
Antenna measurements | Radar cross-sections | millimeter wave | dihedral corner reflector | Scattering | Backscattering | Millimeter wave radar | Radar antennas | radar cross section (RCS) | Automotive engineering | collision avoidance radar | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
Proceedings of the IEEE, ISSN 0018-9219, 07/2012, Volume 100, Issue 7, pp. 2372 - 2379
Automotive radars are on the market since 1999, both in the frequency range around 24 GHz as well as 76.5 GHz, with a new frequency band ranging from 77 to 81...
Reflectivity | lens antennas | Automotive applications | Microstrip antennas | millimeter-wave radar | Radar antennas | Reflector antennas | Sensors | leaky-weave antennas | Millimeter wave communication | Automotive engineering | reflector antennas | radar antennas | microstrip antennas | ENGINEERING, ELECTRICAL & ELECTRONIC
Reflectivity | lens antennas | Automotive applications | Microstrip antennas | millimeter-wave radar | Radar antennas | Reflector antennas | Sensors | leaky-weave antennas | Millimeter wave communication | Automotive engineering | reflector antennas | radar antennas | microstrip antennas | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Transactions on Antennas and Propagation, ISSN 0018-926X, 12/2017, Volume 65, Issue 12, pp. 7207 - 7216
A novel array antenna with a flat-shoulder shaped radiation pattern is proposed as the transmitting antenna for 77 GHz automotive radar application. When it is...
77 GHz automotive radar | substrate-integrated waveguide (SIW) | Spaceborne radar | Transmitting antennas | linear series-fed patch array | long-range radar (LRR) | Radar antennas | medium-range radar (MRR) | Antenna radiation patterns | Antenna arrays | Automotive engineering | shaped radiation pattern | SHAPED-BEAM SYNTHESIS | DESIGN | FILTERS | REFLECTARRAY | MILLIMETER-WAVE | TELECOMMUNICATIONS | SENSORS | POWER DIVIDER | LOW-PROFILE | ENGINEERING, ELECTRICAL & ELECTRONIC | LENS | Waveguides | Usage | Research | Synthesis | Radar arrays | Distributing | Substrates | Automotive radar
77 GHz automotive radar | substrate-integrated waveguide (SIW) | Spaceborne radar | Transmitting antennas | linear series-fed patch array | long-range radar (LRR) | Radar antennas | medium-range radar (MRR) | Antenna radiation patterns | Antenna arrays | Automotive engineering | shaped radiation pattern | SHAPED-BEAM SYNTHESIS | DESIGN | FILTERS | REFLECTARRAY | MILLIMETER-WAVE | TELECOMMUNICATIONS | SENSORS | POWER DIVIDER | LOW-PROFILE | ENGINEERING, ELECTRICAL & ELECTRONIC | LENS | Waveguides | Usage | Research | Synthesis | Radar arrays | Distributing | Substrates | Automotive radar
Journal Article
IET Radar, Sonar & Navigation, ISSN 1751-8784, 10/2018, Volume 12, Issue 10, pp. 1131 - 1136
In this study, the authors propose a novel direction of arrival (DoA) estimation algorithm called ‘multiple-input–multiple-output (MIMO)–monopulse’ by...
Special Issue: Advanced Automotive Sensing – Towards Car Autonomy | radar tracking | automotive-radar application | direction of arrival estimation algorithm | monopulse DoA estimation | CW radar | MIMO-monopulse target localisation | frequency 79 | direction-of-arrival estimation | automotive radar | TELECOMMUNICATIONS | FM radar | ENGINEERING, ELECTRICAL & ELECTRONIC | LINEAR ARRAYS | tracking radar | MIMO radar | road vehicle radar | monopulse technique | 0 GHz
Special Issue: Advanced Automotive Sensing – Towards Car Autonomy | radar tracking | automotive-radar application | direction of arrival estimation algorithm | monopulse DoA estimation | CW radar | MIMO-monopulse target localisation | frequency 79 | direction-of-arrival estimation | automotive radar | TELECOMMUNICATIONS | FM radar | ENGINEERING, ELECTRICAL & ELECTRONIC | LINEAR ARRAYS | tracking radar | MIMO radar | road vehicle radar | monopulse technique | 0 GHz
Journal Article
NATURE COMMUNICATIONS, ISSN 2041-1723, 03/2019, Volume 10, Issue 1, pp. 1423 - 9
It is widely believed that range resolution, the ability to distinguish between two closely situated targets, depends inversely on the bandwidth of the...
MULTIDISCIPLINARY SCIENCES | Coherent radar | Coherence length | Automotive industry | Radar | Bandwidths | Military communications | Autonomous cars | Astronomy
MULTIDISCIPLINARY SCIENCES | Coherent radar | Coherence length | Automotive industry | Radar | Bandwidths | Military communications | Autonomous cars | Astronomy
Journal Article
IET Radar, Sonar & Navigation, ISSN 1751-8784, 10/2018, Volume 12, Issue 10, pp. 1154 - 1164
Cases of interference between pulsed radars, frequency-modulated continuous wave and noise-modulated automotive radars at frequencies around 24 and 77 GHz are...
Special Issue: Advanced Automotive Sensing – Towards Car Autonomy | noise-modulated automotive radars | pulsed radars | CW radar | frequency 77 | radar receiver | noise modulations | automotive radar sensors | frequency 24 | frequency-modulated waveforms | TELECOMMUNICATIONS | FM radar | frequency-modulated continuous wave radars | ENGINEERING, ELECTRICAL & ELECTRONIC | radiofrequency interference | radar receivers | radio-frequency interference | road vehicle radar | 0 GHz
Special Issue: Advanced Automotive Sensing – Towards Car Autonomy | noise-modulated automotive radars | pulsed radars | CW radar | frequency 77 | radar receiver | noise modulations | automotive radar sensors | frequency 24 | frequency-modulated waveforms | TELECOMMUNICATIONS | FM radar | frequency-modulated continuous wave radars | ENGINEERING, ELECTRICAL & ELECTRONIC | radiofrequency interference | radar receivers | radio-frequency interference | road vehicle radar | 0 GHz
Journal Article
IEEE Transactions on Aerospace and Electronic Systems, ISSN 0018-9251, 06/2016, Volume 52, Issue 3, pp. 1132 - 1145
Micro-Doppler (MD)-based target classification capabilities of automotive radars can provide high reliability and short latency to future active safety...
Radar antennas | MIMO radar | Motion estimation | Scattering | Estimation | Automotive engineering | DOPPLER SIGNATURES | ENGINEERING, AEROSPACE | TELECOMMUNICATIONS | TARGET CLASSIFICATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Radar systems | Usage | Computer-generated environments | Research | Computer simulation | MIMO communications | Pedestrians | Algorithms | Radar | Regression | Radar signatures | Automobiles
Radar antennas | MIMO radar | Motion estimation | Scattering | Estimation | Automotive engineering | DOPPLER SIGNATURES | ENGINEERING, AEROSPACE | TELECOMMUNICATIONS | TARGET CLASSIFICATION | ENGINEERING, ELECTRICAL & ELECTRONIC | Radar systems | Usage | Computer-generated environments | Research | Computer simulation | MIMO communications | Pedestrians | Algorithms | Radar | Regression | Radar signatures | Automobiles
Journal Article
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