Research of secondary effects in nonlinear radio-location
Keywords:nonlinear radar, nonlinear scatterer, effective radius of the scattering, experimental stand
AbstractIntroduction. The basic setting of nonlinear radio-locator (NR) in the field of technical guarding is the searching, identification and localization of radio-electronic mortgage devices − semiconductor nonlinear scatterers (NS).
Statement of the problem. The NR efficiency increasing is possible by minimization of such factors influence as: presence of obstacle structures "metal-oxide-metal" (МОМ-structures) in the investigated medium and presence of parasitic directional pattern lobe of emitting antenna. The analysis of nonlinear scatterers secondary unmasking features is considered. All possible regularities of the course of the phenomena and processes in the investigated medium, that are the consequence of nonlinear areas of NS semiconductor structures characteristics change (distortion) under sounding radiation, are considered.
Principal part. Researches showed that theoretically discovered effective radius change effect of nonlinear products dispersion of nonlinear scatterer response signal at the varying of nonlinear radio-locator sounding signal (SS) power-level allows to investigate the phenomenon of semiconductor structures characteristics of NS distortion at the action of relatively powerful ultrahigh frequency field. The effective radius change of nonlinear products dispersion of NS response signal at varying of exposing signal power-level is experimentally confirmed, which proves the possibility and expediency of the secondary unmasked features practice use for the search, identification and localization of NS in the technical guarding field:
− the area of looping appearance effect on functional dependence of response signal multiple harmonic level from the sounding signal power-level ;
− effect of processes inertiality of semiconductor structures volt-ampere characteristics distortion ;
− phenomena of cross-correlation dependence of response signal chaotic state degree from the sounding signal power-level .
Conclusion. The effective radius change of nonlinear products dispersion of NS response signal at varying of exposing signal power-level is experimentally confirmed, which proves the possibility and expediency of the secondary unmasked features practice use for the search, identification and localization of NS in the technical guarding field.
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