A Multimode 76-To-81ghz Automotive Radar Transceiver With Autonomous Monitoring

2018 IEEE INTERNATIONAL SOLID-STATE CIRCUITS CONFERENCE - (ISSCC)(2018)

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摘要
Radar is a key sensing technology for advanced driver assistance systems and autonomous vehicles due to its strong detection capability, long range, and robustness to environmental variations such as inclement weather and lighting extremes. As these radars demonstrate increased levels of integration and performance [1,3], it is desired to have a single multimode radar transceiver that can address the stringent form factor constraints of corner radars and the wide and narrow field-of-view requirements of front radars used in urban and highway driving, respectively. This paper presents a single-chip 76-to-81 GHz radar transceiver, which utilizes frequency-modulated continuous wave (FMCW) synthesis, 3 transmitters, and 4 receivers with integrated ADCs, built in a 45nm CMOS technology. It achieves high resolution and flexible multimode operation to address all classes of short, medium, and long range. The design also features autonomous fault monitoring of the RF chain to support system-level functional safety.
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关键词
sensing technology,inclement weather,highway driving,integrated ADC,wide field-of-view requirements,single-chip radar transceiver,narrow field-of-view requirements,automotive radar transceiver,flexible multimode operation,45nm CMOS technology,frequency-modulated continuous wave synthesis,front radars,corner radars,stringent form factor constraints,single multimode radar transceiver,lighting extremes,environmental variations,strong detection capability,autonomous vehicles,advanced driver assistance systems,autonomous monitoring,system-level functional safety,autonomous fault monitoring,frequency 76 GHz to 81 GHz
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