近海面大气折射对红外探测距离的影响
Refraction effects on infrared system detection ranges in near sea surface
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摘要: 基于几何光学和抛物线近似方法建立光线传播轨迹数学模型,计算最大探测距离(MIVR),并分析蜃影出现的成因。通过数值分析及海上试验的对比验证,结果表明:在相同的风速条件下,MIVR会随海气温差的增大而减小;当海气温差不变时,随着风速的增大,MIVR逐渐减小;海气温差越大,MIVR的递减量越趋于平缓;MIVR与高度位置的对应关系几乎是一条标准的直线,且MIVR随着高度参数的减小而递减;通过与试验数据的对比,模型评估MIVR的准确率较高。Abstract: This paper established optical propagation tracing mathematical model based on geometrical optics and parabolic approximation method, extracting maximum inter-vision ranges (MIVR) to denote the absolute detection range limit imposed by refraction for a given sensor and target height, determining the appearance mechanism of mirage. When wind speed is constant, MIVR decreases with the increase of air-sea difference in temperature (ASTD); but MIVR decreases with the increase of wind speed under the constant ASTD; the MIVR decreases with ASTD increasing, the corresponding relationships of MIVR and the height position is a standard straight line, and MIVR reduces with the height parameter decreasing; the accuracy of MIVR is better.
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Key words:
- infrared system detection /
- atmospheric optics /
- near sea surface /
- subrefraction /
- mirage
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