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Evaluation of side-scan sonar performance for the detection of naval mines

机译:评估侧扫声纳性能以探测海军地雷

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Autonomous Underwater Vehicles (AUVs) equipped with high-resolution side-scan sonars (SSS) are used to carry out preliminary surveys of potentially hazardous areas in order to counter the threat posed by naval mines and reduce risk to personnel. The detection and classification of mine-like objects is conducted offline, after a scan has been completed while the actual identification and neutralization of potential targets is executed in a separate minehunting operation. In this paper the various influences on the imaging sonar system and, moreover, the resulting sonar imagery are assessed with regard to affecting the Probability of Detection and Classification (PDC). Image quality, sharpness and Signal-to-Noise Ratio (SNR) are among the more obvious and straightforwardly quantifiable factors. The complexity of a sonar image, however, can have a significant impact as well. Image lacunarity is used to characterize the seafloor in order to assess the corresponding minehunting difficulty. Additional factors under consideration are the heading angle of the AUV at any given measurement position as well as horizontal spreading and potential overlapping of successive sonic pulses.
机译:配备有高分辨率侧面扫描声纳(SSS)的自动水下航行器(AUV)用于对潜在危险区域进行初步调查,以应对海军水雷造成的威胁并减少人员危险。在完成扫描后,在不进行地雷探测和分类的同时,对潜在目标的实际识别和中和在单独的地雷搜寻操作中进行。在本文中,对成像声纳系统的各种影响以及由此产生的声纳图像进行了评估,以影响检测和分类的概率(PDC)。图像质量,清晰度和信噪比(SNR)是更明显和直接可量化的因素之一。然而,声纳图像的复杂性也会产生重大影响。图像隐隐性用于表征海底,以评估相应的排雷难度。正在考虑的其他因素是在任何给定测量位置的AUV航向角以及连续声脉冲的水平扩展和可能的重叠。

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