Wireless Position Based on Zigbee Network in High Speed Highway ETC System

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Abstract:

On the analysis of the development situation of the ETC home and abroad, CC2431 wireless location function is used in the high speed highway ETC system to realize data transmission between network centre node and terminal node safely, Record passing information of the vehicle terminal by the wireless data transmission between the coordinator and vehicle terminal. A weighted centroid position algorithm is introduced to meet the position accuracy. The test results of the wireless communication between vehicle terminal and coordinator show that CC2431 wireless position system can realize vehicle omnibearing position and real time monitor in the super-speed highway.

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696-700

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July 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] ZigBee Specification v1. 0, ZigBee Alliance, December (2006).

Google Scholar

[2] IEEE. IEEE standard 802. 15. 4-Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (LR-WPANs), IEEE, Online, Available: http: / /standards. ieee. org/getieee80 2 /download /802. 15. 4-(2003).

DOI: 10.1109/ieeestd.2006.232110

Google Scholar

[3] CC2431 A True System-On-Chip solution for 2. 4GHz IEEE 802. 15. 4 /ZigBee http: /www. ti. com/lit/ds/symlink /cc2431. pdf CC2431 Location Engine. http: /www. ti. com/product/cc2431.

DOI: 10.1145/1410012.1410022

Google Scholar

[4] Wang weij-jie, Huang Shou-zhi, Zhao Xue-zeng (2009) Research on highway inter-vehicle communication technology based on ZigBee. Journal of Dalian Jiaotong university 30(6): 90-94.

Google Scholar

[5] Fu De-yu, Wu Ping, Mao Wan-hua (2008) Application of the ZigBee Technology in the high speed highway ETC System. Microcontrollers & Embedded systems 13(3): 50-52.

Google Scholar

[6] Fang Zhen, Zhao Zhan, Guo peng, Zhang Yu-guo (2007) Analysis of distance measurement based on RSSI. Chinese Journal of sensor and actuators 20(11): 2526-2530.

Google Scholar

[7] Wang Yang, Huang Liu-sheng, Xiao Ming-jun, Xu Hong-li (2009) Localization algorithm for wireless sensor network based on RSSI-verify. Journal of Chinese computer systems 30(1): 59-62.

Google Scholar

[8] Zhou Yan, Li Hai-cheng (2009) Space localization algorithm based RSSI in wireless sensor networks. Journal on communications 30(6): 75-79.

Google Scholar

[9] Chen Wei-ke, Li Wen-feng, Shou Heng, Yuan Bing (2006) Weighted centroid localization algorithm based on RSSI for wireless sensor networks. Journal of Wuhan university of technology (Transportation Science&Engineering) 30(2): 265-268.

Google Scholar

[10] Wang Fu-bao, Shi Long, Ren Feng-yuan (2005) Self-localization systems and algorithms for wireless sensor networks. Journal of software16(5): 857-868.

Google Scholar

[11] Yang xiang, Lu Chao-ze, Pan wei (2011) A ZigBee-based highway vehicles prevent collision warning system research fourth international symposium on computational intelligence and design 13(7): 270-273.

DOI: 10.1109/iscid.2011.75

Google Scholar