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Smart Underground Antenna Arrays: A Soil Moisture Adaptive Beamforming Approach

机译:智能地下天线阵列:土壤水分自适应波束形成方法

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Current wireless underground (UG) communication techniques are limited by their achievable distance. In this paper, a novel framework for underground beamforming using adaptive antenna arrays is presented to extend communication distances for practical applications. Based on the analysis of propagation in wireless underground channel, a theoretical model is developed which uses soil moisture information to improve wireless under-ground communications performance. Array element in soil is analyzed empirically and impacts of soil type and soil moisture on return loss (RL) and resonant frequency are investigated. Accordingly, beam patterns are analyzed to communicate with underground and above ground devices. Depending on the incident angle, refraction from soil-air interface has adverse effects in the UG communications. It is shown that beam steering improves UG communications by providing a high-gain lateral wave. To this end, the angle, which enhances lateral wave, is shown to be a function of dielectric properties of the soil, soil moisture, and soil texture. Evaluations show that this critical angle varies from 0° to 16° and decreases with soil moisture. Accordingly, a soil moisture adaptive beamforming (SMABF) algorithm is developed for planar array structures and evaluated with different optimization approaches to improve UG communication performance.
机译:目前的无线地下(UG)通信技术受其可实现的距离的限制。本文提出了一种使用自适应天线阵列的地下波束成形的新颖框架,以延长用于实际应用的通信距离。基于无线地下通道中的传播分析,开发了一种理论模型,它采用土壤湿度信息来改善无线底层通信性能。对土壤中的阵列元素进行了分析,并研究了土壤类型和土壤水分对返回损失(RL)和谐振频率的影响。因此,分析光束图案以与地下和地面装置通信。根据入射角,土壤空中界面的折射在UG通信中具有不利影响。结果表明,光束转向通过提供高增益横向波来提高UG通信。为此,显着增强横向波的角度是土壤,土壤水分和土壤纹理的介电性质的函数。评估表明,这种临界角度从0°变化到16°,并用土壤水分降低。因此,为平面阵列结构开发了土壤湿度自适应波束形成(SMABF)算法,并以不同的优化方法评估以提高UG通信性能。

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