Print Email Facebook Twitter Automotive radar interference study for different radar waveform types Title Automotive radar interference study for different radar waveform types Author Kumbul, U. (TU Delft Microwave Sensing, Signals & Systems) Uysal, Faruk (TU Delft Microwave Sensing, Signals & Systems) Silveira Vaucher, C. (TU Delft Electronics; NXP Semiconductors) Yarovoy, Alexander (TU Delft Microwave Sensing, Signals & Systems) Date 2021 Abstract Mutual interference between different radar waveforms used in automotive radar applications is studied. The existing interference analysis is extended to a generalised radar-to-radar interference equation that covers most of the common interference scenarios for automotive radar systems. The outcome of the generalised equation is demonstrated for a number of typical scenarios where radars with different continuously transmitting waveforms are involved. The proposed equation can be used to characterise the received interference and its features by analysing the instantaneous beat frequency of the victim radar. Moreover, an interference analysis of phase-coded frequency-modulated continuous waveforms is performed and demonstrated experimentally by using real-time automotive radars for the first time in the literature. The experimental results corroborate the interference analysis of different waveforms and validate the proposed generalised interference equation under various conditions. Subject automotive radarphase codingradar interferencewaveform analysisOA-Fund TU Delft To reference this document use: http://resolver.tudelft.nl/uuid:7193ddfc-3e94-4ac6-9e03-27c36435f106 DOI https://doi.org/10.1049/rsn2.12203 ISSN 1751-8784 Source IET Radar, Sonar and Navigation, 16 (2022) (3), 564-577 Part of collection Institutional Repository Document type journal article Rights © 2021 U. Kumbul, Faruk Uysal, C. Silveira Vaucher, Alexander Yarovoy Files PDF IET_Radar_Sonar_Navi_2021 ... _types.pdf 1.6 MB Close viewer /islandora/object/uuid:7193ddfc-3e94-4ac6-9e03-27c36435f106/datastream/OBJ/view