Determination of the Position of the Laser Spot in the Plane of the Photo Sensor of the Multimedia Shooting Gallery

S. Yaremenko, I. Krak
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引用次数: 2

Abstract

One of the key problems of the operation of a multimedia shooting gallery with a laser emitter is investigated - the recognition of a laser spot and the determination of its centroid in the plane of the photosensor. The analysis of the factors influencing the reliability of detection of the laser spot and the accuracy of determining its centroid is carried out. Based on the analysis, an algorithm for positioning the laser spot through a 2-stage binarization of the image was developed. At the 1st stage, a fragment with a laser spot is highlighted, at the 2nd stage, the centroid of the spot is determined. Experimental studies have been carried out to determine the optimal binarization thresholds. The reliability of the laser spot detection according to the developed algorithm is 99.9%, which is higher than the indicators for the existing models of laser shooting ranges (95%). Good interpretability of the algorithm allows you to explain hit inaccuracies caused by random factors in order to eliminate them. The performance of the algorithm is high due to its maximum possible simplicity and the minimum number of iterations. The program processes a frame when shooting video at a rate of 25 frames per second. The accuracy of determining the centroid coordinates according to the proposed algorithm is within 0.5 pixels at a photosensor resolution of 1280 * 720. This figure is consistent with the accuracy of other approaches to positioning a laser spot on a raster image
多媒体射击场光传感器平面内激光光斑位置的确定
研究了带激光发射器的多媒体射击场运行的关键问题之一——激光光斑的识别及其在光敏器平面内质心的确定。对影响激光光斑检测可靠性和质心确定精度的因素进行了分析。在此基础上,提出了一种对图像进行二级二值化的激光光斑定位算法。在第一阶段,突出带有激光光斑的碎片,在第二阶段,确定光斑的质心。为了确定最佳二值化阈值,进行了实验研究。根据所开发的算法,激光光斑检测的可靠性为99.9%,高于现有型号激光射击场的指标(95%)。算法的良好可解释性允许您解释由随机因素引起的命中不准确性,以便消除它们。该算法具有最大可能的简单性和最小的迭代次数,具有较高的性能。该程序在以每秒25帧的速率拍摄视频时处理一帧。在1280 * 720的光敏传感器分辨率下,根据该算法确定质心坐标的精度在0.5像素以内。这个数字与在光栅图像上定位激光光斑的其他方法的精度是一致的
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