Research on Key Techniques for Monitoring System of Agricultural Products Transportation Environment Based on Internet of Things

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Abstract:

Along with the construction of the international tourism island, the National Development and Reform Commission plans to build Hainan Island into an important national winter fruit production base. That makes new demands for tropical agricultural products logistics. In order to ensure that winter melon food is supplied regularly in China, it is important to raise the agricultural products logistics level. Transportation environment is a key factor of tropical agricultural production quality and safety in logistics. As we all known, a bad transportation environment will result in food spoilage and waste, and thus it's very necessary to monitor, collect and process environmental information, but scholars less involve in this area now. The key problems about information collection, analysis, diagnosis and early warning prediction are systematically studied in this paper. We emphasize the key technology of information, including sensor, WSN, computer network and database. Based on advanced information technology and developed hardware, we put forward an available information monitoring system of agricultural products transportation environment. Technically, the research will be helpful for monitoring transportation environment and ensuring the quality safety of agricultural products in transit.

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Periodical:

Advanced Materials Research (Volumes 588-589)

Pages:

1086-1090

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Online since:

November 2012

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[1] WangLingling, Chen Xiuyan, Huang Bin, et al. Research on Tropical Fruits Information Management in Low Carbon Logistics[J]. Journal of Agricultural Mechanization Research, 2011(7): 243-246. (in Chinese with English abstract).

Google Scholar

[2] Guangshui Ma, Hongjun Guan. The application research of cold-chain logistics delivery schedule based on JIT. Industrial Mechatronics and Automation. International Conference on Digital Object Identifier. 2009: 368 -370.

DOI: 10.1109/icima.2009.5156639

Google Scholar

[3] Liu Ping, Suo Zhilin. Restrictions and countermeasures discussion on the construction of agricultural logistics infrastructure platform in China. Logistics Systems and Intelligent Management, 2010 International Conference on Volume: 2: 965-968.

DOI: 10.1109/iclsim.2010.5461039

Google Scholar

[4] Yacan Wang, Lili Yang, Xiaoyan Huang. Logistics system performance evaluation of the fresh and live agricultural products with an application of analytic network process. Logistics Systems and Intelligent Management, 2010 International Conference on Volume: 1. 2010: 130-134.

DOI: 10.1109/iclsim.2010.5461452

Google Scholar

[5] Lingyun Zhou, Wenke Wang, Dong Mu. Dynamical fuzzy decision of agricultural product logistics channels under variable conditions. Service Operations and Logistics, and Informatics, 2008. IEEE/SOLI 2008. IEEE International Conference on Volume: 1. 2008: 1237-1240.

DOI: 10.1109/soli.2008.4686588

Google Scholar

[6] Shuanglin Zhao. Research of the Modern Rural Logistic System Construction. e-Education, e-Business, e-Management, and e-Learning, 2010. IC4E '10. International Conference on Digital Object Identifier. 2010: 521-523.

DOI: 10.1109/ic4e.2010.60

Google Scholar

[7] Gao Xiuyun, Chen Gang, Wang Xueliang, et al. The impact of information technology on the development of tropical agriculture in Hainan[J]. Chinese Journal of Tropical Agriculture, 2011, 31(7): 75-78. (in Chinese with English abstract).

Google Scholar

[8] Liu Hang, Liao Guiping, Yang Fan. Application of wireless sensor network in agriculture producing[J]. Agricultural Network Information, 2008, (11): 16-18. (in Chinese with English abstract).

Google Scholar

[9] Feng Youbing, Zhang Rongbiao, Gu Guodong. Discussion on the Development of Water-saving Irrigation the 10th Five-Year Plan Period of China[J]. China Rural Water and Hydropower, 2007, (2): 24-26. (in Chinese with English abstract).

Google Scholar

[10] Cao Yuanjun, Wang Xinzhong, Yangjianquan. Design of farmland weather monitor system based on WSN[J]. Journal of Agricultural Mechanization Research, 2008, (12): 163-165. (in Chinese with English abstract).

Google Scholar

[11] Liu Yunhao. Introduction to Internet of Things[M]. published by the Science Press in 2011. (in Chinese with English abstract).

Google Scholar