Embedding the shooting and bouncing rays method in a hybrid solver framework

Benjamin Motz,Thomas Weiland

2018 International Applied Computational Electromagnetics Society Symposium (ACES)(2018)

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摘要
This contribution discusses aspects of the simulation of the radar cross section (RCS) for electrically large scatterers. Such simulations are needed in the development of automotive radar systems or aerospace applications. Simulating the RCS of large scatterers is typically very demanding in terms of computer runtime and memory if performed by a full wave simulation method. An asymptotic method is much less affected by these restrictions and therefore a good choice for this kind of simulation. On the other hand, asymptotic simulations are limited to structures of moderate geometrical complexity, i.e., features with sizes much larger than the simulated wavelength. In this work a hybrid domain decomposition framework is therefore used with an asymptotic method and a full wave simulation method to leverage the advantages of both simulation types.
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关键词
bouncing rays method,hybrid solver framework,radar cross section,RCS,automotive radar systems,aerospace applications,computer runtime,asymptotic simulations,shooting rays method,full wave simulation method,hybrid domain decomposition framework
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