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ONERA-ISA

ONERA-ISA


Transfert de technologie

Diagnosis of Electromagnetic Compatibility

Applications

Electromagnetic modeling for lightning protection of the ELA3 launch pad
 
EMIR technique used to measure the near field radiated by an antenna

 > Automotive

  • Electromagnetic susceptibility in motor vehicles.
  • Electromagnetic topology in vehicle wiring.

 > Aeronautical

  • Electromagnetic topology in aircraft wiring.
  • Measurements of a system's electromagnetic level.
  • Electromagnetic data base processing.

 > Space

  • Electromagnetic simulation of electromagnetic coupling.
  • Design of equivalent ground level tests.

 > Naval

  • Electromagnetic coupling between aerials.
  • On-board electromagnetic coupling and zoning constraints.

 > Ordinance

  • Electromagnetic safety related to propellers

Keywords

  • Electromagnetic compatibility (EMC), Electromagnetic topology, Electromagnetic coupling, Wiring, Lightning, HIRF (High Intensity Radiated Fields), Electrostatic discharges.

Advantages

  • High level of electromagnetic compatibility expertise at system level and of protection design, made possible by research oriented testing facilities combined with excellent numerical modeling capabilities.
  • Various types of electromagnetic threats are considered: lightning, High Intensity Radiated Fields (HIRF), Electrostatic Discharges (ESD), Electromagnetic Interference (EMI).
  • Onera holds a leading position in France in electromagnetic coupling assessment of complex systems.
  • Important electromagnetic compatibility data banks available including hundreds of bibliography references, achievements and tests.

Testing

  • Impedance measurements of

    • Material surface (Zs).
    • Shielded cables transfer (Zt).
  • Testing facilities

    • Anechoic chamber (10 x 7 x 4 m3)
    • Mode Stirred Chamber (4.9 x 3.7 x 3.2 m3).
    • TEM cell.
    • Stripline cell.
    • EMIR Technique.

Simulation and Computer codes

  • 3D simulation of electromagnetic compatibility on complex systems, taking into consideration structure, wiring and equipment input.
  • Time domain modeling: ALICE (FDTD), EIVE (FVTD), GD (Discontinuous Gallerkin).
  • Frequency domain : ELSEM3D (Integral Methods), FERMAT (Asymptotic Methods).
  • Cable harness modeling: CRIPTE.
  • High frequency stochastic modeling : RANDOMOP, PWB (Power Balance).

Expertise

  • Wiring design and protection.
  • High level technical advice and expertise in the physics of electromagnetic coupling.
  • Control, testing and diagnosis of risks.
  • Design of lightning protection for structures and industrial sites.
  • Lectures and training sessions.
  • Numerical simulation and development of computer codes.
  • Measuring of electromagnetic constraints on large systems.
  • System level Functional electromagnetic compatibility.
  • System level Stochastic electromagnetic compatibility.

Customers

  • Renault, Peugeot, Alstom, Sagem, Snecma, EADS CCR, DCN, Cnes, Eurocopter, Dasault-Aviation.

 


DTD/FVTD and wiring model of a Volvo S80 illuminated
by a biconical antenna (GEMCAR UE project)


Non-uniform cable models

 

Expert :

Jean-Philippe Parmantier [CV]



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