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Hardware based analysis of RFID anti-collision protocols based on the standard EPCglobal Class-1 Generation-2.

, , , and . IWCMC, page 226-231. IEEE, (2015)

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Scalable RFID Tag Estimator With Enhanced Accuracy and Low Estimation Time., , , and . IEEE Signal Process. Lett., 24 (7): 982-986 (2017)Hardware based analysis of RFID anti-collision protocols based on the standard EPCglobal Class-1 Generation-2., , , and . IWCMC, page 226-231. IEEE, (2015)Classification of the Physical Surface in Sound-based Uroflowmetry., , , and . EMBC, page 1-4. IEEE, (2023)Reducing Transmitted Bits in a Memoryless RFID Anti-collision Protocol., , , and . WINSYS, page 152-157. SciTePress, (2016)Experimental Validation of Anti-Collision Protocols for RFID Sensor Networks., , , and . EURFID, page 1-8. IEEE, (2018)Timing-Aware RFID Anti-Collision Protocol to Increase the Tag Identification Rate., , , and . IEEE Access, (2018)Protocol for Streaming Data from an RFID Sensor Network., , , and . UCAmI, volume 2 of MDPI Proceedings, page 1234. MDPI, (2018)A High Throughput Anticollision Protocol to Decrease the Energy Consumption in a Passive RFID System., , , , and . Wirel. Commun. Mob. Comput., (2017)Automatic Classification of Audio Uroflowmetry with a Smartwatch., , , , and . EMBC, page 4325-4329. IEEE, (2022)Privacy-Preserving Automatic Collection of Acoustic Voiding Events., , , , , and . EMBC, page 1-4. IEEE, (2023)