Open Access

RFID-based logistics big data asset evaluation and data mining research


Cite

Vavilova, V., Construction of a simulation model of management of internal commodity flows of pharmacy networks. Innovative Economy, 2020(5-6): p. 89-96. Search in Google Scholar

Tarakanov, M., T. Lozova and I. Uzun, Integrated approach to the use of logistics and marketing in the system of commodity markets. Economics Ecology Socium, 2020. 4(3): p. 12-23. Search in Google Scholar

Buana, I., et al., The logistics system planning for red onion: case study of Sulawesi and Maluku Islands. IOP Conference Series Earth and Environmental Science, 2021. 649(1): p. 012043. Search in Google Scholar

Chen, P., A Traceable and Verifiable Tobacco Products Logistics System with GPS and RFID Technologies. Applied Sciences, 2021. 11. Search in Google Scholar

Kuteyi, D. and H. Winkler, Logistics Challenges in Sub-Saharan Africa and Opportunities for Digitalization. Sustainability, 2022. 14. Search in Google Scholar

Evseev, O., et al., Strategic Forecasting of Multimodal Container Traffic Basing on Transport and Economic Balance of the Russian Federation. Journal of Physics Conference Series, 2021. 1828(1): p. 012134. Search in Google Scholar

Xu, Z., Complex event detection for commodity distribution Internet of Things model incorporating radio frequency identification and Wireless Sensor Network. Future Generation Computer Systems, 2021. 125(7). Search in Google Scholar

Subsomboon, P., The development of database system for commodity flows and logistics system from Thailand to North Asia (China, Japan, South Korea)/Pattaraporn Subsomboon. Pediatrics International, 2015. Search in Google Scholar

Lim, H., et al. Towards timeout-less transport in commodity datacenter networks. in EuroSys ‘21: Sixteenth European Conference on Computer Systems. 2021. Search in Google Scholar

Sun, W., Destructive and Constructive Full Duplex Relaying for Commodity RFID System. IEEE Journal of Radio Frequency Identification, 2021. PP(99): p. 1-1. Search in Google Scholar

Rejeb, A., The Potentialities of RFID – Based Traceability System in the Olives Post – Harvest Stage. 2019. Search in Google Scholar

Hua, G.Z., The Reorganization of Yiwu Commodity Logistics System under E-commerce. Journal of Jinhua College of Vocation and Technology, 2010. Search in Google Scholar

Fang, C., et al., Mapping Relation of Leakage Currents of Polluted Insulators and Discharge Arc Area. Frontiers in Energy Research, 2021. 9. Search in Google Scholar

Suresh, S. and G. Chakaravarthi, RFID technology and its diverse applications: A brief exposition with a proposed Machine Learning approach. Measurement, 2022. 195: p. 111197. Search in Google Scholar

Ovezmyradov, B. and H. Kurata, Omnichannel fulfillment and item-level RFID tracking in fashion retailing. Computers & Industrial Engineering, 2022. 168: p. 108108. Search in Google Scholar

El Mattar, S. and A. Baghdad, An improved RFID anti-collision protocol (IMRAP) with low energy consumption and high throughput. Scientific African, 2022. 16: p. e01209. Search in Google Scholar

Khorasgani, A.A., M. Sajadieh and M.R. Yazdani, Novel lightweight RFID authentication protocols for inexpensive tags. Journal of Information Security and Applications, 2022. 67: p. 103191. Search in Google Scholar

Che, H. and J. Wang, A Two-Timescale Duplex Neurodynamic Approach to Biconvex Optimization. IEEE Transactions on Neural Networks and Learning Systems, 2019. 30(8): p. 2503-2514. Search in Google Scholar

Leung, K.H., C.K.M. Lee and K.L. Choy, An integrated online pick-to-sort order batching approach for managing frequent arrivals of B2B e-commerce orders under both fixed and variable time-window batching. Advanced Engineering Informatics, 2020. 45: p. 101125. Search in Google Scholar

Cen, L., et al., Application of density-based clustering algorithm and capsule network to performance monitoring of antimony flotation process. Minerals Engineering, 2022. 184: p. 107603. Search in Google Scholar

Govender, P. and V. Sivakumar, Application of k-means and hierarchical clustering techniques for analysis of air pollution: A review (1980–2019). Atmospheric pollution research, 2020. 11(1): p. 40-56. Search in Google Scholar

Boysen, N., et al., Automated sortation conveyors: A survey from an operational research perspective. European Journal of Operational Research, 2019. 276(3): p. 796-815. Search in Google Scholar

Mitroshin, P., et al., Big Data and Data Mining Technologies Application at Road Transport Logistics. Transportation Research Procedia, 2022. 61: p. 462-466. Search in Google Scholar

Ting, S.L., et al., Mining logistics data to assure the quality in a sustainable food supply chain: A case in the red wine industry. International Journal of Production Economics, 2014. 152: p. 200-209. Search in Google Scholar

Pal Singh, S., et al., Does service quality influence operational and financial performance of third party logistics service providers? A mixed multi criteria decision making-text mining-based investigation. Transportation Research Part E: Logistics and Transportation Review, 2022. 157: p. 102558. Search in Google Scholar

Hsiao, Y., M. Chen and W. Liao, Logistics service design for cross-border E-commerce using Kansei engineering with text-mining-based online content analysis. Telematics and Informatics, 2017. 34(4): p. 284-302. Search in Google Scholar

Holzapfel, A., H. Kuhn and M.G. Sternbeck, Product allocation to different types of distribution center in retail logistics networks. European Journal of Operational Research, 2018. 264(3): p. 948-966. Search in Google Scholar

eISSN:
2444-8656
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics