Velocity measurement of intelligent wheelchair based on restoration of optical flow field

Xiuzhi Li, Chuanluo Xu, S. Jia, Shangyu Li
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引用次数: 1

Abstract

In this paper, the accuracy improvement of velocity measurement of intelligent wheelchair based on optical flow is studied. When wheelchair moves indoor, mechanical jittering occurs slightly, which has an impact on the accuracy of optical flow odometry. To solve the problem, a novel restoration method of optical flow field is proposed. Firstly, we select the starting and end points of optical flow vectors as the matched feature points, then solve the initial affine kinematic parameters using least square method. In the following, Kalman Filter (KF) is used to smooth the parameters with futile shake. In the end, optical flow field can be compensated to prepare for the follow-up optical flow odometry. Our experiments demonstrate the effectiveness of our method on velocity measurement of intelligent wheelchair.
基于光流场复原的智能轮椅速度测量
本文研究了基于光流的智能轮椅测速精度的提高。轮椅在室内运动时,会发生轻微的机械抖动,影响光流里程计的精度。为了解决这一问题,提出了一种新的光流场恢复方法。首先选取光流矢量的起始点和结束点作为匹配特征点,然后利用最小二乘法求解初始仿射运动参数;下面,使用卡尔曼滤波器(KF)平滑带有无效抖动的参数。最后对光流场进行补偿,为后续的光流里程测量做准备。实验验证了该方法在智能轮椅速度测量中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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