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Antenna Impact on the Gauging Accuracy of Industrial Radar Level Measurements

机译:天线对工业雷达液位测量精度的影响

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This paper deals with a systematic evaluation of the antenna impact on the gauging accuracy of industrial radar level measurements for process automation. By this means, a framework is provided by which the antenna parameters of major influence on the gauging accuracy can be identified. Guidelines are given to what extent an improvement of these parameters results in a measurable accuracy increase. Firstly, the radar system theory for monostatic level gauging and the emulation of such radar systems by software and hardware are briefly reviewed. Secondly, an analytical model of traveling-wave endfire antennas is introduced, allowing to separately study the influence of individual antenna parameters on the distance measurement accuracy. Thus, a direct relationship between characteristic antenna properties, such as the level of the pattern attenuation in the direction of a parasitic scatterer, and the gauging performance is obtained. The investigations are conducted for one specific pulse-based barycentric signal-processing scheme, which is predestined for industrial level gauging due to its low complexity and reliability. Finally, the results are verified by measurements within a compact radar test range.
机译:本文对天线对过程自动化的工业雷达液位测量的测量精度的影响进行了系统的评估。通过这种方式,提供了一种框架,通过该框架可以识别对测量精度有重大影响的天线参数。给出了在多大程度上改善这些参数会导致可测量的精度提高的指南。首先,简要回顾了用于单站液位测量的雷达系统理论以及通过软件和硬件对此类雷达系统的仿真。其次,介绍了行波端射天线的分析模型,从而可以分别研究各个天线参数对测距精度的影响。因此,获得了特征天线特性(例如,在寄生散射体方向上的方向图衰减水平)与测量性能之间的直接关系。针对一种特定的基于脉冲的重心信号处理方案进行了研究,该方案​​由于其低复杂性和可靠性而注定用于工业级计量。最后,通过在紧凑的雷达测试范围内进行测量来验证结果。

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