Online glint noise identification for tracking manoeuvring targets - Electronics Letters
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چکیده
8 DAVIS, D.D.. GAYLORD, T.K., GLYTSIS, E.N., KOSINSKI, S.G., MEITLER, s.c., and VENGSARKER, A.M.: ‘Long-period fibre grating fabrication with focused CO2 laser pulses’, Electron. Lett., 1998, 34, pp. 302-303 DAVIS, D.D.. GAYLORD, T.K., GLYTSIS, E.N., and METTLER, s.c.: ‘CO, laser-induced long-period fibre gratings: spectral characteristics, cladding modes and polarisation independence’, Electron. Lett., 1998, 34, pp. 1416-1417 JANOS, M., and CANNING, J.: ‘Permanent and transient resonances thermally induced in optical fibre Bragg gratings’, Electron. Lett., 1995, 31, pp. 1007-1009 RAINE, K.w., FECED, R., KANELLOPOULOS, s.E., and HANDEREK, v.A.: ‘Measurement of axial stress at high spatial resolution in ultraviolet-exposed fibers’, Appl. Opt., 1999, 38, pp. 1086-1095 SCEATS, M., and KRUG, P.A.: ‘Photoviscous annealing dynamics and stability of photorefractivity in optical fibers’. SPIE Proc. Photosensitivity and Self-organisation in Optical Fibers and Waveguides, 1993, Vol. 2044, pp. 113-120 FLEMING, J.W., and MOESLEY, A.H.: ‘Thermophysical characterization of lightguides’. AT&T-Bell Laboratories Internal Technical Memorandum, 1989 A mixture of two Gaussian components has been proposed to model the glint noise distribution [2, 31:
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