Title :
Ultra Wide Band -High Power Radar-Material Responses II (Waveform and Material Density)
Author :
Moore, Rick L. ; Meadors, John ; Rice, Robert
Author_Institution :
Signature Technol. Lab., Georgia Tech Res. Inst., Atlanta, GA
Abstract :
This paper presents numerical calculations for high power ultra wide band radars interacting with EMI and radar suppression magnetic materials and components, e.g. isolators, EMI, coatings and/or various appliqus. Exposure may occur within the radar system or on a radiated target. New dynamic micromagnetic simulators are applied to predict non-linear permeability time and frequency response of micro and nano scale magnetic particles which may be used in composites. The paper predicts non-linear material response as a function of incident pulse shape, frequency spectra, various incident fields strengths for hard and soft magnetic material; calculates magnetic particle permeability and then applies effective media theory to predict pulse reflection. Results suggest exotic interactions may significantly alter the input impedance of devices and surfaces containing magnetic materials; changing reflection and absorption.
Keywords :
electromagnetic interference; magnetic particles; ultra wideband radar; EMI; dynamic micromagnetic simulators; magnetic particles; material density; material responses; radar suppression magnetic materials; ultra wideband high power radar; waveform density; Coatings; Electromagnetic interference; Isolators; Magnetic materials; Magnetic particles; Permeability; Pulse shaping methods; Reflection; Soft magnetic materials; Ultra wideband radar;
Conference_Titel :
Microwave Conference, 2008. EuMC 2008. 38th European
Conference_Location :
Amsterdam
Print_ISBN :
978-2-87487-006-4
DOI :
10.1109/EUMC.2008.4751774