TY - JOUR
T1 - Prediction of Passive Intermodulation on Mesh Reflector Antenna Using Collaborative Simulation
T2 - Multiscale Equivalent Method and Nonlinear Model
AU - Wu, Dongwei
AU - Xie, Yongjun
AU - Kuang, Yong
AU - Niu, Liqiang
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2018/3
Y1 - 2018/3
N2 - We propose a collaborative simulation method for evaluation of passive intermodulation (PIM) on mesh reflector antenna. The electric field on the surface of reflector can be simulated exactly and conveniently by the multiscale equivalent method and finite-element method solver. Meanwhile, the coefficients in the nonlinear model of PIM characteristic on mesh structure are determined from the experimental results on mesh reflector sample, so that the PIM of mesh reflector antenna with the same braided form and working conditions can be calculated using the same nonlinear model. In simulation, the PIM calculations of mesh reflector samples based on the actual woven form and with dimensions of 0.25 × 0.25m2 at C-band and Ku-band have been established, indicating basically consistent to the measured results and validating the effectiveness of this method. Moreover, the PIM prediction of a mesh reflector antenna with the same woven structure is also given. These results show that this method can be utilized to predict PIM level of the mesh reflector antenna under conditions of the precise PIM measurement of mesh reflector sample, also providing reference for designing the low PIM microwave components.
AB - We propose a collaborative simulation method for evaluation of passive intermodulation (PIM) on mesh reflector antenna. The electric field on the surface of reflector can be simulated exactly and conveniently by the multiscale equivalent method and finite-element method solver. Meanwhile, the coefficients in the nonlinear model of PIM characteristic on mesh structure are determined from the experimental results on mesh reflector sample, so that the PIM of mesh reflector antenna with the same braided form and working conditions can be calculated using the same nonlinear model. In simulation, the PIM calculations of mesh reflector samples based on the actual woven form and with dimensions of 0.25 × 0.25m2 at C-band and Ku-band have been established, indicating basically consistent to the measured results and validating the effectiveness of this method. Moreover, the PIM prediction of a mesh reflector antenna with the same woven structure is also given. These results show that this method can be utilized to predict PIM level of the mesh reflector antenna under conditions of the precise PIM measurement of mesh reflector sample, also providing reference for designing the low PIM microwave components.
KW - Cooperating simulation
KW - mesh reflector antenna
KW - multiscale
KW - passive intermodulation (PIM)
UR - https://www.scopus.com/pages/publications/85039772369
U2 - 10.1109/TAP.2017.2786304
DO - 10.1109/TAP.2017.2786304
M3 - 文章
AN - SCOPUS:85039772369
SN - 0018-926X
VL - 66
SP - 1516
EP - 1521
JO - IEEE Transactions on Antennas and Propagation
JF - IEEE Transactions on Antennas and Propagation
IS - 3
ER -