Title :
Measurement validation for radio-frequency interference estimation by reciprocity theorem
Author :
Li, Liang ; Pan, Jingnan ; Hwang, Chulsoon ; Cho, Gyuyeong ; Park, Harkbyeong ; Zhang, Yaojiang ; Fan, Jun
Author_Institution :
EMC Laboratory, Missouri University of Science and Technology, 4000 Enterprise Dr. Rolla, USA
Abstract :
This paper presents the measurement validation of reciprocity theorem method for near-field coupling estimation. The overall problem is decomposed into two parts, the first part is called forward problem, and the second part is called the reverse problem. For forward problem, the noise source IC is modelled by physics-based dipole moment model with data obtained from a near-field scanning plane, then the tangential E and H fields on a Huygens´s box enclosing the victim antenna are calculated by analytical expression. In reverse problem, the victim RF antenna is modelled in full-wave simulation tool and the tangential E and H field are obtained by simulation. With tangential E and H field obtained in forward problem and reverse problem, the coupled noise power is then estimated by reciprocity theorem. The estimated noise coupling power is compared with measured power at the victim antenna port with IC excited. The difference is within 5dB which is acceptable for engineering practice.
Keywords :
Dipole antennas; Integrated circuit modeling; Mathematical model; Noise; Patch antennas; Radio-frequency interference; Reciprocity theorem; digital/RF circuit design; dipole-moment model; near-field coupling; near-field scanning;
Conference_Titel :
Electromagnetic Compatibility (EMC), 2015 IEEE International Symposium on
Conference_Location :
Dresden, Germany
Print_ISBN :
978-1-4799-6615-8
DOI :
10.1109/ISEMC.2015.7256150