三维无源雷达感知活体和无生命物体的特性

I. Sidorov, A. Gudkov, E. Novichikhin, Alexey Taradin, R. Haarbrink, Chizhikov Sergey
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引用次数: 2

摘要

通常,被动雷达只能测量物体的两个坐标,如物体的方向或物体的两个笛卡尔坐标。这是二维位置。然而,当在某些环境中感知物体时,例如,在人体内,或者当用多光谱被动雷达感知地下物体时,有可能确定第三个坐标——物体的深度。这是3D定位的情况。本文研究了被动雷达对活体和非活体物体的三维定位特点。对于有生命的物体,它是医用多通道多频放射热成像,特别用于确定恶性肿瘤的位置。对于无生命物体,通过遥感地球来确定地表温度、整体湿度和地下水位深度。建立了描述人体自身辐射热场接收过程的模型。分析了通过在两个不同频率范围内同时测量天线温度来计算所需参数的可能性。给出了用解析法和数值法求解的条件。根据射线热像仪的参数和源的热对比确定肿瘤可能的最大探测深度。多频接收的必要性得到了肯定。给出了当前模型中肿瘤深度和温度的解析解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The specific of 3D passive radars sensing alive and non-alive objects
Usually, two coordinates of the object only can be measured by passive radar, like the direction to the object or two Cartesian coordinates of the object. This is the 2D location. However, when sensing an object in the some environment, for example, inside the human body, or when sensing underground objects with multispectral passive radar, it is possible to determine the third coordinate - the depth of the object. This is the case of 3D location. This article is devoted to consideration of features of 3D location by passive radars for alive and non-alive objects. For alive objects, it is medical multichannel multifrequency radiothermography, which is used, in particular, to determine the location of a malignant tumor. For non-living objects, it is remote sensing of the earth to determine surface temperature, integral humidity and depth of water table. The models for the description of the reception processes of the own human radio-thermal field are resulted. The possibility of calculating the required parameters by measuring antenna temperatures simultaneously in two different frequency ranges is analyzed. The conditions for solutions finding by both analytical and numerical methods are revealed. The possible maximum depth for tumors detection depending on the parameters of radiothermograph and thermal contrast in the source is determined. The necessitate of multi frequency receiving is approving. Analytical solutions for tumor depth and temperature for the current model are presented.
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