With the rapid development of embedded technology, a variety of embedded application systems gradually come into our lives. The design applies the embedded characteristics to the construction of the electronic guide dog system, meeting the agility needs of the electronic guide dogs. In order to make the existing network video surveillance system miniaturization and simplification, we propose a general webcam implementation. In the design, the embedded Linux operating system is transplanted into Samsung S3C2440 ARM9 chip. The design mainly uses the webcam as a sensor for obstacle avoidance and detection of moving objects, and makes the Web server miniaturization to save space and reduce costs. The system also uses the voice control Beidou navigation device, so the electronic guide dogs can be accepted the commands given by “dog-controlling man”, position the destination automatically and accurately, and guide the “dog-controlling man” marching to it. The system also has good real-time nature and automatic interactivity, and it can be widely used in a variety of electronic guide dogs, so it has broad development prospects.
Published in | American Journal of Embedded Systems and Applications (Volume 1, Issue 1) |
DOI | 10.11648/j.ajesa.20130101.12 |
Page(s) | 13-16 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2013. Published by Science Publishing Group |
Embedded, Electronic Guide Dog, Beidou Navigation Instrument, Webcam, S3C2440, Embedded Linux
[1] | Zhou Xiaoguang, Pan Yantao. S3C2440A-based embedded video system design[A]. Electronic Measurement Technology[J], 2006, 29 (6): 89-91. |
[2] | Wang Peizhen, Xu Junsheng. ARM9-based embedded Linux Image Acquisition System design[A]. Intelligent control, detection technology and its application [J], 2007, 36 (19): 89-92. |
[3] | Guo Changdong, Yao Shuncai. Car Security and Defence System Design and Implementation[A]. Electronic Component Application J], 2011, (3). |
[4] | Wang Jianfei, Meng Yanjie, Zhao Yong. The video capture card driver design of Linux-based operating system[A]. Microcomputer Information[J], 2007, (2): 102-104. |
[5] | Jiang Min, Shi Jian. The remote video surveillance technology based on embedded WEB server[A]. Computer age [J], 2007 (5): 31-32. |
[6] | Ye Weiqiong. The Implementation Method of Embedded Web Server intelligent home central controller [M]. Guangzhou: Guangdong University Press, 2005. |
APA Style
YUE Xiangyu. (2013). The Design and Realization of Embedded Electronic Guide Dogs. American Journal of Embedded Systems and Applications, 1(1), 13-16. https://doi.org/10.11648/j.ajesa.20130101.12
ACS Style
YUE Xiangyu. The Design and Realization of Embedded Electronic Guide Dogs. Am. J. Embed. Syst. Appl. 2013, 1(1), 13-16. doi: 10.11648/j.ajesa.20130101.12
AMA Style
YUE Xiangyu. The Design and Realization of Embedded Electronic Guide Dogs. Am J Embed Syst Appl. 2013;1(1):13-16. doi: 10.11648/j.ajesa.20130101.12
@article{10.11648/j.ajesa.20130101.12, author = {YUE Xiangyu}, title = {The Design and Realization of Embedded Electronic Guide Dogs}, journal = {American Journal of Embedded Systems and Applications}, volume = {1}, number = {1}, pages = {13-16}, doi = {10.11648/j.ajesa.20130101.12}, url = {https://doi.org/10.11648/j.ajesa.20130101.12}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajesa.20130101.12}, abstract = {With the rapid development of embedded technology, a variety of embedded application systems gradually come into our lives. The design applies the embedded characteristics to the construction of the electronic guide dog system, meeting the agility needs of the electronic guide dogs. In order to make the existing network video surveillance system miniaturization and simplification, we propose a general webcam implementation. In the design, the embedded Linux operating system is transplanted into Samsung S3C2440 ARM9 chip. The design mainly uses the webcam as a sensor for obstacle avoidance and detection of moving objects, and makes the Web server miniaturization to save space and reduce costs. The system also uses the voice control Beidou navigation device, so the electronic guide dogs can be accepted the commands given by “dog-controlling man”, position the destination automatically and accurately, and guide the “dog-controlling man” marching to it. The system also has good real-time nature and automatic interactivity, and it can be widely used in a variety of electronic guide dogs, so it has broad development prospects.}, year = {2013} }
TY - JOUR T1 - The Design and Realization of Embedded Electronic Guide Dogs AU - YUE Xiangyu Y1 - 2013/09/10 PY - 2013 N1 - https://doi.org/10.11648/j.ajesa.20130101.12 DO - 10.11648/j.ajesa.20130101.12 T2 - American Journal of Embedded Systems and Applications JF - American Journal of Embedded Systems and Applications JO - American Journal of Embedded Systems and Applications SP - 13 EP - 16 PB - Science Publishing Group SN - 2376-6085 UR - https://doi.org/10.11648/j.ajesa.20130101.12 AB - With the rapid development of embedded technology, a variety of embedded application systems gradually come into our lives. The design applies the embedded characteristics to the construction of the electronic guide dog system, meeting the agility needs of the electronic guide dogs. In order to make the existing network video surveillance system miniaturization and simplification, we propose a general webcam implementation. In the design, the embedded Linux operating system is transplanted into Samsung S3C2440 ARM9 chip. The design mainly uses the webcam as a sensor for obstacle avoidance and detection of moving objects, and makes the Web server miniaturization to save space and reduce costs. The system also uses the voice control Beidou navigation device, so the electronic guide dogs can be accepted the commands given by “dog-controlling man”, position the destination automatically and accurately, and guide the “dog-controlling man” marching to it. The system also has good real-time nature and automatic interactivity, and it can be widely used in a variety of electronic guide dogs, so it has broad development prospects. VL - 1 IS - 1 ER -