Rao Qingwen, Xu Guanjun, Mao Wangchen
Shanghai Key Laboratory of Multidimensional Information Processing, East China Normal University, Shanghai 200241, China.
Peng Cheng Laboratory, Shenzhen 518052, China.
Sensors (Basel). 2021 Apr 2;21(7):2466. doi: 10.3390/s21072466.
In this paper, the detection of the lunar surface soil permittivity with megahertz electromagnetic (EM) waves by spaceborne radar is studied based on the EM scattering theory, the Boltzmann-Shukla equations, and the improved scattering matrix method (ISMM). The reflection characteristics of the lunar surface soil subject to megahertz waves are analyzed through the EM scattering theory and expressed by the lunar surface soil permittivity. Then, the lunar ionosphere is assumed to be composed of dusty plasma, and its EM characteristics are described with the Boltzmann-Shukla equations. Finally, the transmission and reflection characteristics of the propagation of EM waves in the lunar ionosphere are numerically calculated with ISMM. Thus, the complex permittivity of lunar surface soil is obtained. In addition, the effects of detection environment situations, such as the lunar illumination intensity, characteristics of the lunar dust and dust charging process in the lunar ionosphere, on the amplitude and phase of EM waves are also investigated in this study. The simulation results show that an EM wave at a high frequency induces a strong effective wave with a stable phase shift and a significantly small interferential wave. Moreover, the lunar illumination is more effective under EM waves in low frequency bands; the characteristics of the lunar dust have a notable influence on the transmission and absorption coefficients of the effective waves. These conclusions help in real applications involving the detection of the lunar surface soil permittivity by spaceborne radar in various lunar environments.
本文基于电磁散射理论、玻尔兹曼 - 舒克拉方程和改进散射矩阵方法(ISMM),研究了利用星载雷达通过兆赫兹电磁波探测月球表面土壤介电常数的问题。通过电磁散射理论分析了月球表面土壤在兆赫兹波作用下的反射特性,并用月球表面土壤介电常数来表示。然后,假定月球电离层由尘埃等离子体组成,并用玻尔兹曼 - 舒克拉方程描述其电磁特性。最后,用ISMM数值计算了电磁波在月球电离层中传播的透射和反射特性。由此得到月球表面土壤的复介电常数。此外,本研究还考察了探测环境情况,如月球光照强度、月球尘埃特性以及月球电离层中的尘埃充电过程等对电磁波幅度和相位的影响。仿真结果表明,高频电磁波能诱导出具有稳定相移且干扰波显著较小的强有效波。而且,在低频波段的电磁波作用下,月球光照的影响更为明显;月球尘埃特性对有效波的透射和吸收系数有显著影响。这些结论有助于在各种月球环境下利用星载雷达探测月球表面土壤介电常数的实际应用。