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

  • Jong Min Park (Department of Bio-industrial Machinery Engineering, Pusan National University ) ;
  • Eon Uck Kang (Research & Development Center of RESCO co., ltd) ;
  • Hyun Mo Jung (Department of Logistic Packaging, Kyoungbuk Science College)
  • 발행 : 2023.12.31

초록

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.

키워드

과제정보

This research was carried out with the support of Cooperative Research Program for development of data application technology for postharvest management of the agricultural and livestock product (Project No.: PJ017050042023), Rural Development Administration (RDA).

참고문헌

  1. Want, R. An introduction to RFID technology. IEEE Pervasive Computing, January~March 2006: 25-33. 
  2. ISO. http://www.iso.org/ 
  3. GS1 Korea (유통물류진흥원). http://www.gs1kr.org/front/main/appl/main.asp 
  4. Global Standards Management Process, http://www.gs1.org/gsmp/overview/ 
  5. 한국정보통신기술 RFID 주파수 대역 http://www.ktword.co.kr/test/view/view.php?m_temp1=3237 
  6. 권오복, 김재환. 농산물 RFID 물류유통정보시스템 구축 기본 방향. 2007. 한국농촌경제연구원. 
  7. 농림수산식품기술기획평가원. 농산물 물류 현황 및 표준화? 효율화 기술 동향. 2010 
  8. 최길영 외 6. RFID 기술과 표준화 동향. 전자통신동향분석 22(3): 29-37 (2007).  https://doi.org/10.1097/01.EEM.0000279129.55041.da
  9. ISO/IEC JTC 1 SC 31, http://www.iso.org/isostandards_development/technical_committees/list_of_iso_technical_committees/iso_technical_committee.htm?commid=45332/ 
  10. 한국정보통신기술협회(TTA). 정보통신 중점기술 표준화 로드맵 Ver. 2010 - RFID/USN 분야 차세대 RFID. 2009. 
  11. 오세원 외 2. RFID 표준화 및 기술 동향. 전자통신동향분석 20(3): 56~66 (2005).  https://doi.org/10.22648/ETRI.2005.J.200307
  12. https://data.epo.org/publication-server/document?iDocId=4821836&iFormat=2 
  13. COMSOL. https://www.comsol.com/blogs/rfid-tag-read-rangeantenna-optimization/ 
  14. IT839 전략 표준화 로드맵 https://www.tta.or.kr/data/androReport/whiteBook/4-2.pdf