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A previously introduced numerical approach to modeling a susceptibility test within a reverberation chamber has been validated against experimental measurement. A sample equipment-under-test (EUT) was fabricated and tested within a reverberation chamber over a large frequency band. The scattering parameter between the source antenna and the EUT measurement port measured within the chamber over a large...
The use of Feature Selective Validation (FSV) in validating the current induced on a wire inside a highly resonant cavity environment by an incident plane wave in the frequency range from 300 MHz to 8.5 GHz is examined. FSV gives fair agreement between measured and simulated results. A visual comparison of the responses suggests that the agreement is better than fair. When comparing the results of...
A cavity Green's function moment method has been implemented using the recently introduced spectral domain factorization that dramatically reduces the cost of treating electromagnetically large chambers. The mixed potential form of the EFIE is implemented here, avoiding the strong singularities in the electric-field Green's function formulation of the original implementation. The method is used to...
The random electromagnetic field within a reverberation chamber is modeled using a superposition of plane waves. Based on rigorous sampling theory, the ideal continuous plane-wave spectrum within the chamber is sampled over the sphere to yield nearly ideal field statistics (including spatial autocorrelation) over a specified test volume such as that occupied by an equipment under test (EUT). The same...
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