TY - GEN
T1 - Bi-static radar cross section (RCS) reduction of impedance cylinder
AU - Tezel, Necmi Serkan
AU - Paker, Selçuk
PY - 2006
Y1 - 2006
N2 - Reduction of RCS of military targets is important issue and can be regarded as part of passive ECM (Electronic Counter Measure). Reduction of RCS is basically made by multilayer coating the surface of the target by lossy dielectrics. In this case, boundary condition which is satisfied on the surface of target can be modelled by IBC (Impedance Boundary Condition). We propose the method that determines the surface impedance value of the cylinder satisfying reduced bistatic RCS. We also applied the proposed method to minimise the mono-static RCS of the impedance cylinder. Minimised mono-static RCS was compared to those of perfectly electrical conductor (PEC) cylinder and good reduction values were observed over a wide frequency range and angle.
AB - Reduction of RCS of military targets is important issue and can be regarded as part of passive ECM (Electronic Counter Measure). Reduction of RCS is basically made by multilayer coating the surface of the target by lossy dielectrics. In this case, boundary condition which is satisfied on the surface of target can be modelled by IBC (Impedance Boundary Condition). We propose the method that determines the surface impedance value of the cylinder satisfying reduced bistatic RCS. We also applied the proposed method to minimise the mono-static RCS of the impedance cylinder. Minimised mono-static RCS was compared to those of perfectly electrical conductor (PEC) cylinder and good reduction values were observed over a wide frequency range and angle.
UR - http://www.scopus.com/inward/record.url?scp=71849084573&partnerID=8YFLogxK
U2 - 10.1109/RADAR.2006.1631820
DO - 10.1109/RADAR.2006.1631820
M3 - Conference contribution
AN - SCOPUS:71849084573
SN - 0780394968
SN - 9780780394964
T3 - IEEE National Radar Conference - Proceedings
SP - 331
EP - 334
BT - 2006 IEEE Radar Conference
T2 - 2006 IEEE Radar Conference
Y2 - 24 April 2006 through 27 April 2006
ER -