https://doi.org/10.1051/epjap:2004201
An efficient global analysis of a rectenna using the combination of a full-wave model and a rational approximation
1
EADS CCR, 12 rue Pasteur, 92150 Suresnes, France
2
LGEP – Laboratoire de Génie Électrique de Paris, UMRS 8507 CNRS, SUPELEC, UPS, UPMC, Plateau de Moulon, 91192 Gif-sur-Yvette
Cedex, France
3
EADS Space Transportation, Avionics, 78130 Les Mureaux,
France
Corresponding author: pichon@lgep.supelec.fr
Received:
23
January
2004
Revised:
27
May
2004
Accepted:
4
August
2004
Published online:
23
November
2004
The paper presents a reliable model for the susceptibility analysis of a Rectenna (Rectifying Antenna) in the context of microwave energy transfer. The approach allows to take into account both distributed electromagnetic portions of the antenna and the rectifier circuit including lumped elements. From the 3D electromagnetic modelling of the structure the input impedance is obtained as a function of frequency. Then a rational approximation of the Laplace variable is chosen to describe the port behaviour. The technique provides a straightforward way for a time domain simulation using Pspice or Saber. The proposed approach can be efficiently used to provide a non-linear time-domain study in the framework of EMC (Electromagnetic Compatibility) for various electronic equipments involving printed circuit-boards, internal structures of electronic components or Micro-Electro-Mechanical Systems (MEMS).
PACS: 41.20.Jb – Electromagnetic wave propagation; radiowave propagation / 84.32.Hh – Inductors and coils; wiring / 84.40.Ba – Antennas: theory, components and accessories
© EDP Sciences, 2005