RCS Reduction Using Reconfigurable Chessboard Coding Plasma-Based Dielectric Resonator Structure

S. Zainud-Deen, H. Malhat, A. S. Zainud-Deen, M. M. Badawy
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Abstract

In this paper, reconfigurable chessboard coding plasma-based dielectric resonator structure for radar cross section reduction is investigated. The radar cross section (RCS) reduction is essential in military applications. The metallic conductor surface is covered with plasma-based dielectric resonator (DRA) unit-cells arranged in chessboard configuration. The plasma ionization voltage values are tuned to reflect the electromagnetic wave with phase shift of 180° and equal amplitudes. The phase 0° state represents the logic “0” while the phase 180° state represents the logic “1”. The chessboard arrangement consists of super-cells with 0/1 logic states. The RCS is reduced over a wide angle range reduction with −18 dBm2 at the broadside direction and below −32 dBm2 over the angular range from −90° to 90° according to the super-cell size. The non-uniform allocation of unit-cells in the super-cell chessboard arrangement is investigated. The RCS reduction bandwidth extended from 8.5 GHz to 9.65 GHz.
利用可重构棋盘编码等离子体介电谐振器结构降低RCS
本文研究了一种基于可重构棋盘编码等离子体的介质谐振器结构,用于雷达截面缩减。雷达横截面(RCS)的降低在军事应用中是必不可少的。金属导体表面覆盖以棋盘状排列的等离子体基介电谐振器(DRA)单元。调整等离子体电离电压值,使之反映相移180°、振幅相等的电磁波。阶段0°状态表示逻辑“0”,阶段180°状态表示逻辑“1”。棋盘排列由逻辑状态为0/1的超级单元组成。根据超级电池的尺寸,RCS在宽角度范围内减小- 18 dBm2,在- 90°到90°的角度范围内减小- 32 dBm2。研究了超细胞棋盘排列中单位细胞的非均匀分配问题。RCS降频带宽从8.5 GHz扩展到9.65 GHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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