枣庄学院学报
棘莊學院學報
조장학원학보
Journal of Zaozhuang University
2015年
5期
18-22
,共5页
太赫兹%雷达散射截面缩减%人工磁导体%棋盘型结构
太赫玆%雷達散射截麵縮減%人工磁導體%棋盤型結構
태혁자%뢰체산사절면축감%인공자도체%기반형결구
terahertz%radar cross-section reduction%artificial magnetic conductor(AMC)%chessboard configuration
本文设计了一种太赫兹波段薄的新型棋盘型结构,实现了宽频段RCS的缩减.该结构为不同尺寸的人工磁导体耶路撒冷十字型组成,通过优化单元结构,使反射相位差在较宽范围内保持在180±30度之间,从而降低后向散射能量,达到宽频段RCS的缩减.仿真表明在0.76-1.26THz范围内反射波在法向会相消,对应远场产生四个对称方向波束;该结构相对同尺寸的金属板相应的波段内RCS的缩减量达到10dB以上,最大缩减量达到25dB,与理论分析一致.总之,棋盘型结构为实现宽频段RCS缩减提供一种新的途径,将在成像、雷达隐身等方面具有重要的意义.
本文設計瞭一種太赫玆波段薄的新型棋盤型結構,實現瞭寬頻段RCS的縮減.該結構為不同呎吋的人工磁導體耶路撒冷十字型組成,通過優化單元結構,使反射相位差在較寬範圍內保持在180±30度之間,從而降低後嚮散射能量,達到寬頻段RCS的縮減.倣真錶明在0.76-1.26THz範圍內反射波在法嚮會相消,對應遠場產生四箇對稱方嚮波束;該結構相對同呎吋的金屬闆相應的波段內RCS的縮減量達到10dB以上,最大縮減量達到25dB,與理論分析一緻.總之,棋盤型結構為實現寬頻段RCS縮減提供一種新的途徑,將在成像、雷達隱身等方麵具有重要的意義.
본문설계료일충태혁자파단박적신형기반형결구,실현료관빈단RCS적축감.해결구위불동척촌적인공자도체야로살랭십자형조성,통과우화단원결구,사반사상위차재교관범위내보지재180±30도지간,종이강저후향산사능량,체도관빈단RCS적축감.방진표명재0.76-1.26THz범위내반사파재법향회상소,대응원장산생사개대칭방향파속;해결구상대동척촌적금속판상응적파단내RCS적축감량체도10dB이상,최대축감량체도25dB,여이론분석일치.총지,기반형결구위실현관빈단RCS축감제공일충신적도경,장재성상、뢰체은신등방면구유중요적의의.
In this article,a thin and novel chessboard configuration was proposed,which can achieved the broadband radar cross-section( RCS)reduction in THz frequency. This chessboard configuration is formed by combining artificial magnetic conduc-tor( AMC)of Jerusalem Crosses with different dimensions. The difference reflection phase about 180 ± 30 degree can be a-chieved in the broadband frequency through the optimization the unit structure and the backscattering energy is reduced,so the radar cross-section reduction can be attained in the broadband frequency. The simulation results show that the reflectivity wave will be cancelled at the normal direction,and can generate four symmetrical directional beam,and radar cross section re-duction compared with bare metallic plate with the same size is more than 10dB within the same bandwidth,the maximum re-duction is up to 25 dB. The chessboard configuration open a new route to achieve the RCS reduction,so it is of great application values in imaging and stealth of THz frequencies.