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Novel methods of measuring impurity levels in liquid tanks

机译:测量液罐中杂质水平的新方法

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A microwave multi level gauging system employing a FSCW radar measurement technique is described. Conventional FMCW radar technique is normally employed to find only the level of the liquid surface in storage tanks. The system described here also detects a second level, caused for example by an impurity such as water in a petrol tank. For estimating the time delay and amplitude of each reflection from each scatterer an optimal signal processing algorithm is derived, based on a reference model. To determine the physical height of the impurity level, in for example petrol tanks, the dielectric constant of the petrol must be known. A novel algorithm is derived for estimating this from the same measurement. Measurement uncertainties of /spl plusmn/0.2 mm have been achieved for the multi level range detection, performed in the frequency range from 1.5 to 3.5 GHz. From this measured data the error of the calculated dielectric constants was about to 1%. This yields an accuracy for the petrol height of 0.5%.
机译:描述了一种采用FSCW雷达测量技术的微波多级测量系统。通常使用常规的FMCW雷达技术来仅查找储罐中的液面高度。这里描述的系统还检测第二液位,例如由汽油箱中的诸如水之类的杂质引起。为了估计来自每个散射体的每个反射的时间延迟和幅度,基于参考模型导出了最佳信号处理算法。为了确定杂质水平的物理高度,例如在汽油罐中,必须知道汽油的介电常数。派生了一种新颖的算法,用于根据相同的测量结果对此进行估算。对于多电平范围检测,在1.5至3.5 GHz的频率范围内实现了/ spl plusmn / 0.2 mm的测量不确定度。根据该测量数据,计算出的介电常数的误差约为1%。这样得出的汽油高度精确度为0.5%。

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