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Pedestrian counting with grid-based binary sensors based on Monte Carlo method

机译:基于蒙特卡罗方法的基于网格的二进制传感器的行人计数

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摘要

AbstractIn this paper, we propose a method for estimating the number of pedestrians walking in opposite directions, as in cases of a shopping street or a sidewalk in a downtown area. The proposed method utilizes a compound-eye sensor that is constructed by placing two binary sensors for the pedestrians’ movement direction and multiple binary sensors for the vertical direction of the pedestrians’ movement direction. A number of Monte Carlo simulations about the movement of pedestrians are conducted, and the output history of the compound-eye sensor is obtained in each simulation. The simulation scenario with a small difference of the output history of the compound-eye sensor is selected to estimate the number of pedestrians. Evaluation results show that in the field whose width is 8 [m] the relative error in the proposed method is the smallest by using 2×8 binary sensors.
机译:摘要在本文中,我们提出了一种估计沿相反方向行走的行人数量的方法,例如在市区的购物街或人行道上。所提出的方法利用了一种复眼传感器,该传感器是通过为行人的移动方向放置两个二进制传感器,并为行人的移动方向垂直放置多个二进制传感器而构造的。进行了许多有关行人运动的蒙特卡洛模拟,并在每次模拟中获得了复眼传感器的输出历史记录。选择与复眼传感器的输出历史差异很小的模拟方案来估计行人的数量。评估结果表明,在宽度为8 [m]的区域中,通过使用2×8二进制传感器,该方法的相对误差最小。

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