Title :
Combination of a full-wave method and ray tracing for radiation pattern simulations of antennas on vehicle roofs
Author :
Mocker, Marina S. L. ; Schiller, Manuel ; Brem, Robert ; Sun, Zuguang ; Tazi, Hicham ; Eibert, Thomas F. ; Knoll, Alois
Author_Institution :
Lehrstuhl fur Hochfrequenztech., Tech. Univ. Munchen, Munich, Germany
Abstract :
An electromagnetic simulation approach combining a full-wave method with ray tracing is presented. This is used to simulate the radiation characteristic of a roof antenna system on a vehicle roof. The radiated fields of the antenna are first simulated for example with CST Microwave Studio (MWS) or measured and then utilized in the ray tracer. Besides to the modeling of the roof itself, also the antenna patterns are investigated. Small distances between the antenna and the vehicle roof do not allow to work with far-field assumptions. In this case, antennas with reduced extents are used, called subtransmitters [1]. These subtransmitters are represented by surface currents obtained from simulations with CST MWS. With this concept, also an antenna on the roof can be simulated with a ray tracing approach. Finally, more accurate results can be gained in Virtual Test Drive simulations. Furthermore, the simulation of radiation characteristics of vehicle roof antennas can be accelerated.
Keywords :
antenna radiation patterns; electromagnetic waves; ray tracing; vehicles; antenna radiation pattern simulations; electromagnetic simulation approach; full-wave method; radiated fields; ray tracing; roof antenna system; subtransmitters; surface currents; vehicle roofs; virtual test drive simulations; Antenna radiation patterns; Computational modeling; Diffraction; Metals; Ray tracing; Vehicles;
Conference_Titel :
Antennas and Propagation (EuCAP), 2015 9th European Conference on
Conference_Location :
Lisbon