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HE Xiang (何湘), CHEN Jianping (陈建平), ZHANG Yachun (张亚春), CHEN Yudong (陈玉东), ZENG Xiaojun (曾小军), TANG Chunmei (唐春梅). Numerical and Experimental Investigation on Electromagnetic Attenuation by Semi-Ellipsoidal Shaped Plasma[J]. Plasma Science and Technology, 2015, 17(10): 869-875. DOI: 10.1088/1009-0630/17/10/10
Citation: HE Xiang (何湘), CHEN Jianping (陈建平), ZHANG Yachun (张亚春), CHEN Yudong (陈玉东), ZENG Xiaojun (曾小军), TANG Chunmei (唐春梅). Numerical and Experimental Investigation on Electromagnetic Attenuation by Semi-Ellipsoidal Shaped Plasma[J]. Plasma Science and Technology, 2015, 17(10): 869-875. DOI: 10.1088/1009-0630/17/10/10

Numerical and Experimental Investigation on Electromagnetic Attenuation by Semi-Ellipsoidal Shaped Plasma

  • Some reports presented that the radar cross section (RCS) from the radar antenna of military airplanes can be reduced by using a low-temperature plasma screen. This paper gives a numerical and experimental analysis of this RCS-reduction method. The shape of the plasma screen was designed as a semi-ellipsoid in order to make full use of the space in the radar dome. In simulations, we discussed the scattering of the electromagnetic (EM) wave by a perfect electric conductor (PEC) covered with this plasma screen using the finite-difference-time-domain (FDTD) method. The variations of their return loss as a function of wave frequency, plasma density pro?le, and collision frequency were presented. In the experiments, a semi-ellipsoidal shaped plasma screen was produced. Electromagnetic attenuation of 1.5 GHz EM wave was measured for a radio frequency (RF) power of 5 kW at an argon pressure of 200-1150 Pa. A good agreement is found between simulated and experimental results. It can be confirmed that the plasma screen is useful in applications for stealth of radar antenna.
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