Numerical Simulation of the Field Properties in a Reverberation Chamber in Time Domain

被引:0
|
作者
Rothenhaeusler, Markus [1 ]
Kulbat, Norbert [2 ]
机构
[1] EADS Deutschland GmbH, CASSIDIAN AIR Syst, D-85077 Manching, Germany
[2] Ingolstadt Univ Appl Sci, D-85051 Ingolstadt, Germany
关键词
reverberation chamber; Q-factor; numerical simulation; computational electromagnetics; standard deviation;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper gives insight in the experience gained with time domain simulation of the electromagnetic field properties in an existent reverberation chamber. In general, the reverberation chamber is a challenge for a time domain simulation software as the electromagnetic energy is injected in a highly conducting resonator. Only the conductor losses of the walls and the losses of present field generating or receiving antennas limit the achievable field strengths inside an empty reverberation chamber. Due to these low losses and a resulting high Q-factor, a decay constant of several microseconds is possible. The reverberation chamber, which was simulated in this project, is already calibrated and the according measurement data is available. The aim was to simulate the complete calibration procedure according to IEC 61000-4-21: 2003, Part 4-21 in the frequency range 200 MHz to 1000 MHz. Main parameters for evaluation of the simulation results are the standard deviation, the Q-factor and the achievable field strengths for a given input power.
引用
收藏
页码:321 / 324
页数:4
相关论文
共 50 条
  • [41] Simulations on field uniformity in a triangular reverberation chamber
    Chung, SY
    Rhee, JG
    Rhee, HJ
    INTERNATIONAL JOURNAL OF RF AND MICROWAVE COMPUTER-AIDED ENGINEERING, 2002, 12 (02) : 198 - 205
  • [42] Alternative Definitions of the Field Anisotropy in a Reverberation Chamber
    Xu, Qian
    Shen, Xueqi
    Peng, Peng
    Loh, Tian Hong
    Huang, Yi
    2022 3RD URSI ATLANTIC AND ASIA PACIFIC RADIO SCIENCE MEETING (AT-AP-RASC), 2022,
  • [43] THE USE OF THE REVERBERATION CHAMBER FOR RANDOM FIELD MEASUREMENTS
    HARDY, HC
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1953, 25 (04): : 821 - 821
  • [44] Numerical Simulations of Field Values, Wave Impedance, and Received Power Inside a Nonideal Reverberation Chamber
    Moglie, Franco
    Primiani, Valter Mariani
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2014, 56 (04) : 994 - 997
  • [45] Time Domain Technique for Rapid, Broadband Measurement of Human Absorption Cross Section in a Reverberation Chamber
    Robinson, Martin P.
    Zhang, Xiaotian
    Flintoft, Ian D.
    2017 XXXIIND GENERAL ASSEMBLY AND SCIENTIFIC SYMPOSIUM OF THE INTERNATIONAL UNION OF RADIO SCIENCE (URSI GASS), 2017,
  • [46] Frequency- and Time-Domain Measurement of Reverberation Chamber Q: An In-Silico Analysis
    West, James C.
    Rajamani, Vignesh
    Bunting, Charles F.
    2016 IEEE INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY (EMC), 2016, : 7 - 12
  • [47] Time Reversal for Reverberation Chamber Performance Evaluation
    Colella, E.
    Bastianelli, L.
    Primiani, V. Mariani
    Moglie, F.
    2022 IEEE MTT-S INTERNATIONAL CONFERENCE ON NUMERICAL ELECTROMAGNETIC AND MULTIPHYSICS MODELING AND OPTIMIZATION, NEMO, 2022,
  • [48] Efficient Determination of Reverberation Chamber Time Constant
    Zhang, Xiaotian
    Robinson, Martin P.
    Flintoft, Ian D.
    Dawson, John F.
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2018, 60 (05) : 1296 - 1303
  • [49] Frequency Domain Method for Scattering Damping Time Extraction of a Reverberation Chamber Based on Autocorrelation Functions
    Jia, Tianyuan
    Huang, Yi
    Xu, Qian
    Tian, Zhihao
    Jiang, Jingyuan
    Hua, Qiang
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2020, 62 (06) : 2349 - 2357
  • [50] Study on the matrix pencil method with application to predict time-domain response of a reverberation chamber
    Research Institute of Electrostatic And Electromagnetic Protection, Mechanical Engineering College, Shijiazhuang, 050003, China
    Appl Comput Electromagn Soc J, 2013, 9 (763-771):