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Improved GPR image focussing with repetitive normalised Superimposition techniques

机译:使用重复归一化叠加技术改善GPR图像聚焦

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The Superimposition technique offers an alternative to Fast Fourier Transform (FFT) and Inverse FFT calculations. side lobe levels are reduced with little or no increase in main lobe width, as opposed to standard windowing techniques where side lobe level reduction produces an increase in main lobe width with a resulting loss in resolution. The new technique uses repetitive superimpositions showing improvements over spatially variant apodization (SVA) techniques. A new normalisation scheme enhances side lobe reduction even further with no increase in main lobe width indeed it can reduce the main lobe width. The technique is seen to be more resilient to noise when appropriate multiple evaluations are chosen. The technique produces responses from reflections in GPR data that are resolved to responses much closer to a delta function than FFT/IFFT or SVA evaluations. When used in focussing algorithms the traditional hyperbolic characteristics of a B-scan are focussed into responses whose width in depth and plan position that are slightly better than half a wavelength of the bandwidth used. This is seen in theoretical data and in both data measured by commercial GPRs and in experimental data from a step frequency continuous wave based GPR. Theoretically the technique produces a strong indication of the permittivity of the ground the GPR measures are taken over, while in measured data the identification of the permittivity of the ground is less clear.
机译:叠加技术是快速傅立叶变换(FFT)和逆FFT计算的替代方法。与标准的开窗技术相反,在这种情况下,旁瓣电平在主瓣宽度很少增加或没有增加的情况下减小了,而在旁窗电平减小的情况下,主瓣宽度增加了,导致分辨率下降。新技术使用重复叠加,显示出比空间变异切趾(SVA)技术有所改进。一种新的归一化方案甚至在不增加主瓣宽度的情况下,进一步增强了旁瓣的减小,实际上它可以减小主瓣宽度。选择适当的多次评估后,该技术将对噪声具有更强的抵抗力。该技术从GPR数据的反射中产生响应,该响应被解析为比FFT / IFFT或SVA评估更接近于增量函数的响应。当在聚焦算法中使用时,B扫描的传统双曲线特性会聚焦到响应中,其深度和平面位置的宽度略好于所使用带宽的一半波长。从理论数据以及通过商业GPR测量的数据以及基于步进频率连续波的GPR的实验数据中都可以看到这一点。从理论上讲,该技术可以很好地表明已采取GPR措施的地面介电常数,而在测量数据中,对地面介电常数的识别尚不清楚。

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