Title :
Multistep Cylindrical Structure Design for Wideband Radar Cross Section Reduction at Normal Incidence
Author :
Shin-Hon Chen ; Yuan-Chang Hou ; Wen-Jiao Liao
Author_Institution :
Chung-Shan Inst. of Sci. & Technol., Taoyuan, Taiwan
Abstract :
A wideband radar cross section (RCS) reduction measure applicable to rod-like targets is proposed. This technique uses the differences in radii among multistep cylindrical structures to create a phase reversal for backscattering cancellation. In order to broaden the reduction bandwidth, a simple one-step design is evolved into a multistep one using the binomial expansion method. Its superior performance is verified via numerical simulations based on the physical optics (PO) and full-wave method. Under normal incidence, a 2.45:1 bandwidth ratio is achieved for more than 20-dB RCS reduction with a live-step design. Effects of critical design parameters such as the number of steps and the cylinder displacement order are examined. This approach can be employed on rod-like defense targets. A series of simulations that emulate a periscope protruding from the sea surface is conducted to demonstrate the applicability of the proposed technique.
Keywords :
backscatter; military radar; physical optics; radar cross-sections; backscattering cancellation; binomial expansion method; cylinder displacement order; full-wave method; multistep cylindrical structure design; numerical simulations; phase reversal; physical optics; reduction bandwidth; rod-like defense targets; sea surface; wideband radar cross section reduction; Backscatter; Bandwidth; Materials; Radar antennas; Radar cross-sections; Binominal expansion; Radar cross section; binominal expansion; cylindrical structure; physical optics; physical optics (PO); radar cross section (RCS); stealth technique;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2394804