![]() ![]() We evaluated the proposed approach through extensive experiments and compared it with existing baseline approaches in terms of execution time and detection accuracy under varying RFID tag cloning ratio. The proposed approach is based on consistency of dual hash collisions and modified count-min sketch vector. To this end, we propose an approach for detecting cloned RFID tags in RFID systems with high detection accuracy and minimal overhead thus overcoming practical challenges in existing approaches. With many industries such as pharmaceutical and businesses deploying RFID technology with a variety of products, it is important to tackle RFID tag cloning problem and improve the resistance of the RFID systems. A successful cloning of the RFID tags in many commercial applications can lead to many serious problems such as financial losses, brand damage, safety and health of the public. Specifically, RFID tags are prone to basic cloning and counterfeiting security attacks. ![]() Kamaludin, Hazalila Mahdin, Hairulnizam Abawajy, Jemal HĪlthough Radio Frequency Identification (RFID) is poised to displace barcodes, security vulnerabilities pose serious challenges for global adoption of the RFID technology. PMID:29565982Ĭlone tag detection in distributed RFID systems. The results of the experiments show that the proposed approach outperforms the baseline approaches in cloned RFID tag detection accuracy. In this chapter we will review the current status of EST databases, the pros and cons of EST-type data and describe possible strategies to retrieve meaningful information.Ĭlone tag detection in distributed RFID systemsĪlthough Radio Frequency Identification (RFID) is poised to displace barcodes, security vulnerabilities pose serious challenges for global adoption of the RFID technology. Since most of the analysis is performed with a computer, the term "in silico" strategy has been coined. Information strategies have been devised to query EST databases. Human ESTs are the bulk of the data and have been widely used to identify new members of gene families, as markers on the human chromosomes, to discover polymorphism sites and to compare expression patterns in different tissues or pathologies states. These ESTs are derived from a vast number of cDNA libraries obtained from different species. Rapid in silico cloning of genes using expressed sequence tags (ESTs).Įxpressed sequence tags (ESTs) are short single-pass DNA sequences obtained from either end of cDNA clones. ![]()
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