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IITB_TDR: A portable TDR system with DWT based denoising for soil moisture measurement

机译:IITB_TDR:具有基于DWT的DWT的便携式TDR系统,用于土壤湿度测量

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In this paper, we have discussed design and development of Time domain reflectometery (TDR) system called as IITB_TDR and also explained the novel TDR signal analysis method with wavelet based denoising technique in order to determine the soil moisture. Among the reported soil measurement techniques, the TDR is known for the accuracy, robustness and ease of use for in-situ measurement. Even-though TDR is an established technique, high cost and complex design restrict its penetration into the agricultural practices. The complexity of the TDR system is mainly due to the need of time synchronization between the pulse generator which generates the EM wave and sampler which samples the pulse with few hundreds of pico seconds resolution. In IITB_TDR, the pulse generator and sampler run independent of each other without requiring the time synchronization. The proposed design uses the equivalent time sampling with an adaptive delta modulation and the sampling resolution of 100 ps has been achieved. To analyze the captured TDR signal, a novel time extraction method with wavelet transform based denoising is also proposed in this paper. The IITB_TDR system and signal analysis technique have been tested with 5 different standard materials and three different types of soil for various levels of moisture. The maximum difference of +/- 2% and +/- 3% has been observed with the IITB_TDR system when compared with the standard oven drying technique and commercial TDR. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文讨论了时域反射测量(TDR)系统的设计和开发称为IITB_TDR,还解释了基于小波的去噪技术的新型TDR信号分析方法,以确定土壤水分。在报告的土壤测量技术中,TDR是以原位测量的准确性,鲁棒性和易用性而闻名的。即使是TDR是一种既定的技术,高成本和复杂的设计将其渗透到农业实践中。 TDR系统的复杂性主要是由于脉冲发生器之间的时间同步,该脉冲发生器产生EM波和采样器,该采样器用几百微米秒分辨率对脉冲进行采样。在IITB_TDR中,脉冲发生器和采样器彼此独立运行,而不需要时间同步。所提出的设计使用具有自适应增量调制的等效时间采样,并实现了100 ps的采样分辨率。为了分析捕获的TDR信号,本文还提出了一种新的基于小波变换的去噪的新型时间提取方法。 IITB_TDR系统和信号分析技术已经用5种不同的标准材料和三种不同类型的土壤测试,用于各种水分。与标准烤箱干燥技术和商业TDR相比,使用IITB_TDR系统观察到+/- 2%和+/- 3%的最大差异。 (c)2018年elestvier b.v.保留所有权利。

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