DocumentCode
557980
Title
A millimeter-wave FMCW radar system simulator for automotive applications including nonlinear component models
Author
Dudek, Manuel ; Kissinger, Dietmar ; Weigel, Robert ; Fischer, Georg
Author_Institution
Inst. for Electron. Eng., Friedrich-Alexander Univ., Erlangen, Germany
fYear
2011
fDate
12-14 Oct. 2011
Firstpage
89
Lastpage
92
Abstract
A fully differential millimeter wave frequency modulated continuous wave (FMCW) radar architecture is built up in Agilent´s RF design and system simulation environment ADS® to investigate the influence of RF impairments on system level on the target signal. To take also the surroundings of the automotive scenario into account a 3D ray tracing channel simulator is coupled in a Matlab® co-simulation providing realistic data of the traffic situation. Therefore investigations on the performance of the radar frontend in an automotive long range radar (LRR) application are enabled, the functionality of the circuitry can be verified and components designed in the most beneficial way, so that the best performance is achieved with the available resources. For nonlinear behavior the frontend components are parameterized according to recently published values for 77GHz SiGe circuits. The functionality of the complete simulation environment is demonstrated by calculating a typical traffic situation.
Keywords
CW radar; FM radar; Ge-Si alloys; mathematics computing; millimetre wave radar; radar computing; ray tracing; road vehicle radar; 3D ray tracing channel simulator; ADS system simulation environment; Agilent RF design; Matlab cosimulation; RF impairments; SiGe; automotive LRR application; automotive applications; automotive long-range radar application; frequency 77 GHz; frequency modulated continuous wave radar architecture; frontend components; fully-differential millimeter-wave FMCW radar system simulator; nonlinear behavior; nonlinear component models; radar frontend; traffic situation; Automotive engineering; Integrated circuit modeling; Radar cross section; Receivers; Silicon germanium; FMCW; automotive radar; millimeter-wave radar; modeling; nonlinear circuits; simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference (EuRAD), 2011 European
Conference_Location
Manchester
Print_ISBN
978-1-4577-1156-5
Type
conf
Filename
6101050
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