We introduce a reduced order model (ROM) methodology for inverse electromagnetic wave scattering in layered lossy media, using data gathered by an antenna which generates a probing wave and measures the time resolved reflected wave. We recast the wave propagation problem as a passive infinite-dimensional dynamical system, whose transfer function is expressed in terms of the measurements at the antenna. The ROM is a low-dimensional dynamical system that approximates this transfer function. While there are many possible ROM realizations, we are interested in one that preserves passivity and in addition is: (1) data driven (i.e., is constructed only from the measurements) and (2) it consists of a matrix with special sparse algebraic structure, whose entries contain spatially localized information about the unknown dielectric permittivity and electrical conductivity of the layered medium. Localized means in the intervals of a special finite difference grid. The main result of the paper is to show with analysis and numerical simulations that these unknowns can be extracted efficiently from the ROM.
翻译:我们采用了一种减少顺序模型(ROM)方法,用于在层层失传介质中反向散布电磁波,使用由天线收集的数据产生探波并测量时间溶解反射波;我们将波传播问题重新定位为被动的无限动态系统,其转移功能以天线的测量值表示;ROM是一个接近这种转移功能的低维动态系统。虽然许多可能实现的ROM,但我们感兴趣的是能够保持被动性的一种,此外还有:(1)由数据驱动的(即仅根据测量结果构建的)和(2)由特别稀有的代数结构组成的矩阵,其条目含有关于层层介质未知的电离电动允许性和电传导率的空间局部信息;在特殊有限电网的间隔内采用本地化手段;论文的主要结果是通过分析和数字模拟显示这些未知数据能够有效地从ROM中提取。