An extension module to embed commercially sensitive antenna models in gprMax

C. Warren, A. Giannopoulos, N. Diamanti, P. Annan
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引用次数: 3

Abstract

Models of antennas have been included in numerical simulations of ground penetrating radar (GPR) intermittently over the past 20 years with varying degrees of realism. Those antenna models that have been published have been mainly of antennas used in academia or for research purposes, and not regularly used commercial antennas. This is, of course, understandable as GPR manufacturers have a great deal invested in their intellectual property (IP) and want to protect it. However, there is a desire to find a solution to this problem, namely, to enable models of commercial antennas to be used in simulations whilst safeguarding the IP of the manufacturer. We present a framework that allows manufacturers to build encrypted modules containing models of their antennas that can be used with 3D gprMax models. All the properties of the antenna model such as the geometry, materials, and excitation, remain completely invisible to the user. The antenna module communicates with the main finite-difference time-domain grid by exchanging only electric and magnetic field values at boundaries around a volume enclosing the antenna. The initial development of this framework has been in done in cooperation with Sensors & Software Inc. using an experimental dipole antenna model. The finalised toolset will offer the potential of a step change in the quality of data from numerical models of GPR systems.
在gprMax中嵌入商业敏感天线模型的扩展模块
近20年来,探地雷达的数值模拟中断断续续地加入了天线模型,其真实程度各不相同。那些已发表的天线模型主要是用于学术或研究目的的天线,而不是经常使用的商业天线。当然,这是可以理解的,因为GPR制造商在他们的知识产权(IP)上投入了大量资金,并希望保护它。然而,人们希望找到解决这个问题的方法,即在保护制造商知识产权的同时,使商业天线模型能够用于模拟。我们提出了一个框架,允许制造商构建加密模块,其中包含可以与3D gprMax模型一起使用的天线模型。天线模型的所有属性,如几何形状、材料和激励,对用户来说都是完全不可见的。天线模块与主有限差分时域网格通信,仅通过交换围绕包围天线的体积的边界处的电场和磁场值。该框架的初步开发是与Sensors & Software Inc.合作完成的,使用的是实验性偶极子天线模型。最终确定的工具集将为探地雷达系统数值模型的数据质量提供一个阶梯式变化的可能性。
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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