Abstract
Promoting garbage classification and reducing garbage amount are the roots for solving garbage siege problem. Therefore, municipal garbage logistics system can not only collect and transport municipal garbage, but also need to automatically realize precise gathering and managing information of garbage category, garbage producers, collecting spots, capacity, flow rate, and flow direction, which also needs to be blended into traditional garbage collecting and transporting flow. These are all difficulties that municipal garbage logistics system is facing currently. This essay provides a dynamic intelligent logistics system of the collection and transportation process of giant municipal garbage based on questions above. It shows a way of realizing on-car RFID automatically precise position identification and on-car dynamic measurement, which can be perfectly implemented in complicated environment. Besides, RFID precise position and automatic identification, on-car dynamic transduction and measurement, GPS position, GPRS mobile transmission, and other key IOT technologies and information technologies are also integrated, which leads to building up a fine-grained dynamic intelligent logistics system of the collection and transportation process of garbage. It has been successfully implemented in Shanghai and great achievements have also been made. It is a pioneering work of domestic municipal garbage logistics system.
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References
Wang YK (2011) Countermeasure of municipal garbage processing methods in china at logistics angle ≪Ecological Economy≫ (10)
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Acknowledgments
This task was sponsored by Ministry of Science and Technology project (2010BAK69B24) and Shanghai Commission of Science and Technology project (10DZ0583204).
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© 2015 Springer-Verlag Berlin Heidelberg
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Xu, S., Li, G., Ou, H., Wu, W. (2015). Research and Demonstration of Dynamic Intelligent Logistics System of the Collection and Transportation Process of Giant Municipal Garbage. In: Proceedings of China Modern Logistics Engineering. Lecture Notes in Electrical Engineering, vol 286. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-662-44674-4_4
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DOI: https://doi.org/10.1007/978-3-662-44674-4_4
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