Simulated Training Instrument of Nuclear Radiation Reconnaissance Based on an Improved Ellipse Numerical Model

Shuijun He, Manchun Liang, G. Su, J. T. He
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Abstract

Discontinuity appears in simulated training instruments of nuclear radiation reconnaissance which adopted ellipse numerical model. In order to solve the problem, an improved ellipse numerical model was proposed, in which the contaminated area was taken into count as a whole. The level of nuclear radiation at any position in the contaminated area can be calculated by the improved ellipse numerical model. On the basis of the improved ellipse numerical model, the architecture of the simulated instrument for training of nuclear radiation reconnaissance was proposed. The results of experiments showed that the improved ellipse numerical model not only had the main characteristics of the contaminated area but also successfully solved the problem of numerical discontinuity. Through adjusting the parameters of the contaminated area, the improved training instrument can adapt to different scope of nuclear radiation reconnaissance without any regional restriction.
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基于改进椭圆数值模型的核辐射侦察模拟训练仪
采用椭圆数值模型的核辐射侦察模拟训练仪器存在不连续现象。为了解决这一问题,提出了一种将污染区域作为一个整体考虑的改进椭圆数值模型。利用改进的椭圆数值模型可以计算出污染区内任意位置的核辐射水平。在改进椭圆数值模型的基础上,提出了核辐射侦察训练模拟仪器的结构。实验结果表明,改进的椭圆数值模型不仅具有污染区的主要特征,而且成功地解决了数值不连续的问题。通过对污染区域参数的调整,改进后的训练仪能够适应不同范围的核辐射侦察,不受地域限制。
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