• Title/Summary/Keyword: Passive UHF RFID

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Design Implementation of Lightweight and High Speed Security Protocol Suitable for UHF Passive RFID Systems (UHF 수동형 RFID 시스템에 적합한 경량 고속의 보안 프로토콜 설계 및 구현)

  • Kang, You-Sung;Choi, Yong-Je;Choi, Doo-Ho;Lee, Sang-Yeoun;Lee, Heyung-Sup
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.20 no.4
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    • pp.117-134
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    • 2010
  • A passive RFID tag which received attention as a future technology for automatic and quick identification faces some difficulties about security problems such as tag authentication, reader authentication, data protection, and untraceability in addition to cost and reliable identification. A representative passive RFID technology is the ISO/IEC 18000-6 Type C which is an international standard for 900 MHz UHF-band. This standard has some difficulties in applying to the security services such as originality verification, tag's internal information protection, and untraceability, because it does not provide high-level security solution. In this paper, we summarize security requirements of ISO/IEC ITC 1/SC 31 international standardization group, propose security protocols suitable for the UHF-band passive RFID system using a crypto engine, and analyze its security strength. In addition, we verify that it is possible to implement a tag conforming with the proposed security protocols by presenting concrete command/response pairs and cryptographic method.

Read Range Reduction in Passive UHF RFID Tag by Smart Device Signal Interference (스마트 기기 신호 간섭에 의한 수동형 UHF 대역 RFID 태그의 인식 거리 감소에 관한 연구)

  • Kwon, Jongwon;Song, Taeseung;Cho, Wonseo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.25 no.1
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    • pp.83-91
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    • 2014
  • The passive UHF RFID tags for item-level tagging are now explosively used in the supply chain and retail applications as they have several advantages, the two most relevant are cost and a longer read range. However, the signal interference problem between RFID tags and smart devices in real world is expected according to the smart-phone and tablet market growth together. The performance of RFID tags can be significantly less. The popular examples are the read-success rates and read range reduction. Especially, KT Corp. recently emphasized the serious signal interference at 900 MHz of LTE and old RFID frequencies through their public demonstration. By popular demands, this paper suggests the interference tolerance measurement method between the passive UHF RFID tag and the transmitted signal from a smart device. In addition, we selected three passive UHF RFID tags(Inlay) available on the market and quantitatively evaluated read range reduction results by interference signals using the PCR(Performance Change Rates) index. As a result, the LTE system is about three times as effective as the WCDMA system in terms of interference effects, and the read range performance of two RFID tags about 60 % drop.

Performance Analysis of Passive UHF RFID based Object Localization under Various Reader Antenna Locations (리더 안테나 위치에 따른 수동형 UHF RFID 기반 위치인식 성능 분석)

  • Choi, Jae Sung;Son, Byung Rak;Kim, Ju-Gon;Lee, Dong Ha
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.648-650
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    • 2015
  • In this research, we investigate an influence of a reader antenna location in Passive UHF RFID system based Object localization. When the localization system uses stationary RFID reader system, the performances of the system are significantly varied depending on the deployed antenna conditions due to its external environment such as reflection by the ground and obstacles. In this research we deeply study the RF conditions and differentiation with various antenna location. According to the empirical results, the localization system shows the best performance, where the reader antenna locates 1.5m from the target area of interest.

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Self Localization of Mobile Robot Using UHF RFID Landmark

  • Kwon, Hyouk-Gil;Kim, Min-Sik;Ryu, Je-Goon;Shim, Hyeon-Min;Lee, Eung-Hyuk
    • 제어로봇시스템학회:학술대회논문집
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    • 2005.06a
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    • pp.1606-1611
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    • 2005
  • The goal of this paper is to develop a self localization of mobile robot using UHF RFID landmark. We present landmark, a location sensing archetype system that uses UHF Radio Frequency Identification (UHF RFID) technology for locating objects inside buildings. The major advantage of landmark is that it improves the overall accuracy of locating objects by utilizing the concept of reference tags. Based on experimental analysis, we demonstrate that passive UHF RFID is a viable and cost-effective candidate for indoor location sensing. We conduct a series of experiments to evaluate performance of the positioning of the landmark System. In the standard setup, we place RF Reader which has two antennas and 25 tags in our lab. This research uses the assumption-based coordinates (ABC) algorithm[3] for determining the localization of robot. Also, we show how Radio Frequency Identification (UHF RFID) can be used in robot-assisted indoor navigation for the visually impaired. The experiments illustrate that passive UHF RFID tags can act as reliable landmark that trigger local navigation behaviors to achieve global navigation objectives.

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Dual-band RFID Tag Antenna Applicable for RF Power Harvester System (RF 에너지 충전 시스템 기능을 위한 이중대역 RFID 태그 안테나)

  • Mun, Byeonggwi;Rhee, Changyong;Kim, Jae-Sik;Cha, Junghoon;Lee, Byungje
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.12 no.5
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    • pp.46-51
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    • 2013
  • In this paper, a dual-band antenna is proposed for the RF power harvester system as well as RFID tag. The proposed antenna operates as the passive and active RFID tag antenna in the UHF and microwave band, respectively. In addition, to charge the battery of an active RFID tag in the microwave band, it harvest the RF signal for tagging from the passive RFID tag antenna in the UHF band. The proposed antenna operates in the UHF band (917~923.5 MHz) and microwave band (2.4~2.45 GHz). In order to obtain the dual-band operation, the dipole structure and meander parasitic elements are proposed as the ${\lambda}/2$ and $1{\lambda}$ dipole antenna, respectively. The radiating dipole structure in the microwave band acts as the coupled feed for the meander parasitic elements in the UHF band. The impedance bandwidth (VSWR < 2) of the proposed antenna covers 917~923.5 MHz (UHF band) and 2.4~2.45 GHz (Microwave band). Measured total efficiencies are over 45 % in the UHF band and over 70 % in the microwave band. Peak gains are over 0.18 dBi and 2.8 dBi in the UHF and microwave band with an omni-directional radiation pattern, respectively.

Passive UHF RFID Propagation Characteristics and Reconsideration of Link budget on Practical Communication Area (수동형 UHF RFID 인터페이스에 대한 Link budget의 재해석 및 전파 환경 요소 분석)

  • Jung, Jin-Woo;Park, Kyoung-Tae;Roh, Hyoung-Hwan;Park, Jun-Seok;Kim, Hyeong-Seok
    • 한국정보통신설비학회:학술대회논문집
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    • 2008.08a
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    • pp.469-472
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    • 2008
  • In this paper, we discuss the recent trends on the passive UHF RFID tag chip design techniques and several important system parameters. We also summarize link budget studies on both conventional and modem UHF RFID communications. The paper highlights the reverse link limited case, which has known to be the minor concern if reader continuous wave (CW) can reach the tag in sufficient level. This makes sense when the tag sensitivity is rather high (over 10-12${\mu}W$); however, since the tag chip fabrication technologies have been developed by time, the tag chip threshold levels are now less-dominant in determining link margin. If the tag limitation can be alleviated, the forward link limited case can be resolved; thus, we rather focus on the path-loss problem. Since the path-losses are still exist in both forward and reverse links, and it can be doubled while CW travels the reader-tag-reader path because forward link and reverse link are on the same distance. Consider if reader receiver sensitivity is very high in the worst case. In this case, weaken tag response (i.e., backscatters) cannot reach the level that reader receiver can process tag data; bit-error rate can be higher. Overall, backscatter levels should be high enough so that reader receiver can correctly function. After discussing link budget, we carried out practical measurements on fading effects between two circularly polarized UHF RFID antennas in a small scale area.

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System Development for Tracking a UHF Passive RF1D Tag in an Outpatient Clinic (외래병원 환경에서 UHF 수동형 RFID 기술을 활용한 태그 추적 시스템 개발)

  • Min, Dai-Ki
    • The Journal of Society for e-Business Studies
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    • v.16 no.3
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    • pp.113-127
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    • 2011
  • An RFID system has been widely applied in many areas over the initial SCM application. In the literature enormous RFID applications in healthcare are documented to improve patient safety, patient/provider logistics, and the efficiency of collecting data. Based on the proposed 4-layered RFID system architecture, we introduce a case that implemented an UHF passive RFID-based tracking system in an outpatient clinic. Particularly, we propose a method to process RFID data that contains noise and missing reads. The proposed method for processing unreliable RFID data is capable to locate the tag accurately and provide additional business information. We finally conclude the paper with identifying obstacles and what is necessary to ensure system reliability.

Design of Control Block for Passive UHF RFID Tag IC (수동형 UHF대역 RFID 태그 IC의 제어부 설계)

  • Woo, Cheol-Jong;Cha, Sang-Rok;Kim, Hak-Yun;Choi, Ho-Yong
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.45 no.9
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    • pp.41-49
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    • 2008
  • This paper presents a design of the control block of a passive UHF RFID tag IC according to EPCglobal Class-1 Generation-2 UHF RFID 1.1.0 Protocol. The control block includes a PIE block, CRC5/CRC16, a Slot Counter, a Random Number Generator, a Main Control Block, a Encoder and a Memory Interface. The control block has been designed using the Verilog HDL and has been simulated. Functional simulation results for the overall control block operation show that 11 instructions with 7 states are operated correctly. Also, the control block has been implemented with 36,230 gates by Synopsys Design Compiler and Apollo using Magnachip 0.25$\mu$m technology.

Analysis of Receiving Strength according to the Attachment Location of RFID tag in Palletized Unit-load of Agricultural Products

  • Jong Min Park;Eon Uck Kang;Hyun Mo Jung
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.29 no.3
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    • pp.211-221
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    • 2023
  • This study was conducted as a basic study for the selection of tags suitable for logistics management in the palletized unit-load unit and the development of various technologies to activate the palletized unit-load shipment of agricultural products through local APCs. Three types of passive RFID tags of UHF 900 MHz and one type of active RFID tag of 2.4 GHz band designed and manufactured through this study were used to analyze the receiving strength according to the tag's attachment location and distance of the palletized unit-load of agricultural products. In the passive RFID tag, there was a large difference in receiving strength by the tag's attachment location and a large amount of data loss depending on the distance within 30 m, whereas, in the active RFID tag, it was superior to the passive tags in terms of both receiving strength and data loss. Therefore, active tags are desirable from the perspective of multiple identification of warehouses with large spaces in relation to the application of RFID tags for palletized unit-loads of agricultural products, but the development of low-power technologies such as software wakeup power management as well as hardware to minimize battery power consumption is necessary.

An Implementation of a RFID Reader Firmware for ISO/IEC 18000-6 Type B Specification (ISO/IEC18000-6 Type B 규격에 적합한 리더 펌웨어 개발)

  • Yang, Jing-Gil;Bae, Sung-Woo;Jung, Myung-Sub;Jang, Byung-Jun;Kim, Jun-O;Park, Jun-Seok;Seong, Yeong-Rak;Oh, Ha-Ryoung
    • Proceedings of the IEEK Conference
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    • 2005.11a
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    • pp.1039-1042
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    • 2005
  • Recently, a considerable number of studies have been made on the $RFID^{[1-6]}$ systems. RFID is a technique of identifying an object using radio frequency transmission. The technology can be used to identify, track, sort or detect a wide variety of objects. The RFID system is composed of two main elements: a reader and a tag. Tags can either be active (powered by battery) or passive (powered by the reader field). The passive tags communicate back to the reader with a technique called 'backscatter'. RFID technology can be applied to the supply chain, security, logistics industry and etc. Especially, UHF RFID is worth noticing because of its relatively long identification range and commercial UHF RFID systems are under development. In this paper, we designed and implemented a UHF RFID reader firmware for ISO/IEC 18000-6 Type B specification.

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