Exploring the Frontiers of RFID Coverage Capacity: Theoretical and Practical Perspectives
Chengxuan Fu, Jia Liu, Xiaoyu Li, Xingyu Chen, Xuan Liu, Shigeng Zhang, Junzhao Du
Abstract
Radio Frequency Identification (RFID) technology, pivotal in sectors such as retail, logistics, healthcare, and security, faces a fundamental challenge in maximizing the efficiency of large-scale systems-specifically, the coverage capacity of RFID readers. This paper addresses the under-investigated problem of RFID coverage capacity by merging theoretical analysis and practical implementation to optimize reader deployment. By incorporating tag layout factors along with the link loss budget, we construct a theoretical model of coverage capacity that reflects the maximum number of tags a reader can effectively cover. Additionally, we develop a cutoff-power-based solution to bridge the gap between theoretical limits and practical application, without requiring any predetermined system parameters. A prototype is built upon commercial RFID systems and experimental results demonstrate a significant improvement in coverage capability.
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