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Forward simulation of root's ground penetrating radar signal: simulator development and validation

机译:根部探地雷达信号的正向模拟:模拟器的开发和验证

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It remains unclear how the limiting factors (e.g., root size, root water content, spacing between roots, and soil water content) affect root investigation using ground penetrating radar (GPR). The objective of this study is to develop a theoretical forward simulation protocol of synthesizing root's GPR signal and test the feasibility of our proposed simulation protocol in evaluating the impacts of limiting factors on GPR-based root detection and quantification. The proposed forward simulation protocol was developed by integrating several existing numerical models, such as the Root Composition Model, the Root Dielectric Constant Model, the Root Electrical Conductivity Model, the Soil Dielectric Constant Model, the Soil Electrical Conductivity Model, and a newly-established model (Root Length-Biomass Model). Resolution and GPR index obtained from both field collected radargrams and corresponding simulations were compared to validate the accuracy of simulation. Simulated radargrams exhibit similar resolution with that of the in situ collected. The same trends of root radar signals against different levels of root size, root water content, interval between roots, root depth, and antenna frequency were observed on both in situ radargrams and simulated radargrams. Strong correlations (correlation coefficients ranging from 0.87 to 0.96) were found between GPR indices extracted from the simulated data and those from the field collected data. Our proposed forward simulation is effective for assessing the impacts of limiting factors on root detection and quantification using GPR. This forward simulation protocol can be used to provide guidance for in situ GPR root investigation and can predict the accuracy of GPR-based root quantification under site-specific conditions.
机译:尚不清楚限制因素(例如,根部大小,根系含水量,根系间距和土壤含水量)如何影响使用地面穿透雷达(GPR)的根系调查。这项研究的目的是开发一种合成根的GPR信号的理论前向仿真协议,并测试我们提出的仿真协议在评估限制因素对基于GPR的根检测和定量的影响方面的可行性。拟议的前向仿真协议是通过集成几个现有的数值模型而开发的,例如根组成模型,根介电常数模型,根电导率模型,土壤介电常数模型,土壤电导率模型以及新建立的模型。模型(根长-生物量模型)。比较了从现场收集的雷达图和相应模拟获得的分辨率和GPR指数,以验证模拟的准确性。模拟雷达图显示的分辨率与原位采集的相似。在实地雷达图和模拟雷达图上都观察到根雷达信号针对不同水平的根大小,根水含量,根之间的间隔,根深度和天线频率的相同趋势。从模拟数据中提取的GPR指数与现场采集的数据中的GPR指数之间发现了很强的相关性(相关系数在0.87至0.96之间)。我们提出的正演模拟可有效评估限制因素对使用GPR进行根检测和定量分析的影响。此正演模拟协议可用于为原位GPR根调查提供指导,并可预测在特定地点条件下基于GPR的根定量的准确性。

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