首页> 外文会议>Proceedings of 2013 10th International Bhurban Conference on Applied Sciences amp; Technology >Multiple surface range Estimation in 3D flash imaging ladar via expectation maximization
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Multiple surface range Estimation in 3D flash imaging ladar via expectation maximization

机译:通过期望最大化在3D闪光成像激光雷达中进行多表面范围估计

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Multiple surface range estimation has become a challenging in 3D Flash imaging ladar due to the received pulse is corrupted by many factors, such as the optical aberrations from the imaging system, the noise from the detector and the medium through which it is imaging. These factors either cause the scene's intensity to spread, or blur, across pixel or add unwanted and disruptive noise effects. The intensity spreading and noise corrupts the correct pixel intensities at each range gate by mixing intensities with neighboring pixels thereby providing false intensity values and therefore incorrect photon counts to the range estimation. In this paper, we propose an algorithm to enhance the range estimation of multiple surfaces per pixel in 3D Flash imaging ladar. Using this algorithms, we can improve the multiple surface range estimation performance over traditional multiple surface range estimate algorithms. A comparison between the existing methods and the proposed algorithms has been carried out. The simulation results show the efficiency and effectiveness of proposed method over existing algorithms.
机译:由于3D Flash成像雷达的多表面范围估计已成为一项挑战,因为接收到的脉冲受到许多因素的破坏,例如成像系统的光学像差,检测器产生的噪声以及通过其成像的介质。这些因素会导致场景的强度在整个像素上散布或模糊,或者添加不必要的破坏性噪声效果。强度扩展和噪声通过将强度与相邻像素混合而破坏了每个距离门的正确像素强度,从而提供了错误的强度值,因此为距离估计提供了不正确的光子计数。在本文中,我们提出了一种算法来增强3D Flash成像雷达中每个像素多个表面的距离估计。使用这种算法,我们可以比传统的多表面范围估计算法提高多表面范围估计性能。现有方法与提出的算法之间进行了比较。仿真结果表明了该方法在现有算法上的有效性和有效性。

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