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An implementation and performance evaluation of a space variant OT-MACH filter for a security detection application using FLIR sensor

机译:使用FLIR传感器对安全检测应用的空间变量OT-Mach滤波器的实现与性能评估

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A space variant Optimal Trade-off Maximum Average Correlation Height (OT-MACH) filter is designed specifically for images acquired from a forward looking infrared (FLIR) sensor, using the maximum of the power spectral density (PSD) of the input image instead of the white noise covariance factor. The kernel can be locally modified depending upon its position in the input frame, which enables adaptation of the filter dependant on background heat signature variances and also enables the normalization of the filter energy levels. The detection capabilities of the filter were evaluated using different data sets of real images and 3D models for a suspected threat in order to define a thresholding parameter. The parameter was based on peak to correlation energy (PCE) and peak to side lobe ratio (PSR) of the correlation output which led to the definition of a criterion for predicting true and false detections. The hardware implementation of the system has been discussed in terms of FPGA versus DSP chipsets and a performance benchmark has been created using millions of multiply-accumulate operations per second (MMAC) and the cost. In this paper we propose an implementation and performance evaluation of a security detection application which uses a space variant OT-MACH filter with different data sets. Also a performance benchmark has been created for the hardware implementation of the proposed system on popular FPGA and DSP chipsets.
机译:空间变型最佳折衷最大平均相关高度(OT-Mach)滤波器专门用于从前向红外(FLIR)传感器获取的图像,使用输入图像的功率谱密度(PSD)的最大值而不是白噪声协方差因子。可以根据其在输入帧中的位置局部修改内核,这使得能够适应依赖于背景热签名方差的滤波器,并且还可以实现滤波能量水平的标准化。使用不同的数据集和3D模型来评估滤波器的检测能力,用于疑似威胁,以定义阈值参数。该参数基于峰值到相关能量(PCE)和峰与相关输出的峰值比(PSR)的峰值,其导致了用于预测真假检测的标准的定义。已经在FPGA与DSP芯片组方面讨论了系统的硬件实现,并且使用数百万乘以每秒(MMAC)和成本创建了性能基准。在本文中,我们提出了一种安全检测应用程序的实施和性能评估,该应用程序使用具有不同数据集的空间变量OT-Mach滤波器。此外,还为流行的FPGA和DSP芯片组上提出的系统的硬件实现创建了性能基准。

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