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Real Time Decoding of Color Symbol for Optical Positioning System

机译:光定位系统颜色符号的实时解码

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摘要

This paper presents the design and real-time decoding of a color symbol that can be used as a reference marker for optical navigation. The designed symbol has a circular shape and is printed on paper using two distinct colors. This pair of colors is selected based on the highest achievable signal to noise ratio. The symbol is designed to carry eight bit information. Real time decoding of this symbol is performed using a heterogeneous combination of Field Programmable Gate Array (FPGA) and a microcontroller. An image sensor having a resolution of 1600 by 1200 pixels is used to capture images of symbols in complex backgrounds. Dynamic image segmentation, component labeling and feature extraction was performed on the FPGA. The region of interest was further computed from the extracted features. Feature data belonging to the symbol was sent from the FPGA to the microcontroller. Image processing tasks are partitioned between the FPGA and microcontroller based on data intensity. Experiments were performed to verify the rotational independence of the symbols. The maximum distance between camera and symbol allowing for correct detection and decoding was analyzed. Experiments were also performed to analyze the number of generated image components and sub-pixel precision versus different light sources and intensities. The proposed hardware architecture can process up to 55 frames per second for accurate detection and decoding of symbols at two Megapixels resolution. The power consumption of the complete system is 342mw.
机译:本文介绍了可用作光学导航的参考标记的颜色符号的设计和实时解码。设计的符号具有圆形,并在纸上使用两个不同的颜色印刷。这对颜色是根据最高可实现的信噪比选择的。符号旨在携带八个位信息。使用现场可编程门阵列(FPGA)和微控制器的异构组合来执行该符号的实时解码。分辨率为1600像素的图像传感器用于捕获复杂背景中的符号的图像。对FPGA进行动态图像分割,组分标记和特征提取。从提取的特征进一步计算了感兴趣区域。属于符号的功能数据从FPGA发送到微控制器。图像处理任务基于数据强度在FPGA和微控制器之间进行分区。进行实验以验证符号的旋转独立性。分析了允许正确检测和解码的相机和符号之间的最大距离。还执行实验以分析产生的图像分量和子像素精度与不同光源和强度的数量。该建议的硬件架构可以每秒处理多达55帧,以便在两个百万像素分辨率下准确地检测和解码符号。完整系统的功耗为342mW。

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