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선박 실내 위치 인식을 위한 테이퍼드 슬롯 안테나 설계 및 구현

Design and Implementation of Tapered Slot Antenna for Ship's Indoor Location-Aware System

  • Choi, Dong-You (Chosun University Department of Communication Engineering) ;
  • Kim, Sun-Woong (Chosun University Department of Information and Communication Engineering) ;
  • Park, Jung-Jin (Chosun University Department of Information and Communication Engineering) ;
  • Jeong, Min-A (Mokpo National University Department of Computer Engineering) ;
  • Lee, Seong Ro (Mokpo National University Department of Electronics Engineering)
  • 투고 : 2014.10.08
  • 심사 : 2014.12.04
  • 발행 : 2014.12.31

초록

본 논문에서는 IR-UWB 통신 시스템의 테이퍼드 슬롯 안테나를 통해 지상 건물의 실내위치인식이 아닌 해양선박 실내에서의 위치 인식에 적합한 안테나를 제안하였다. 제안한 테이퍼드 슬롯 안테나는 Ansys사의 HFSS를 사용하여 전산모의 하였으며, 주파수 영역에서의 반사손실 및 정재파비, 방사패턴 등을 분석하였다. 분석한 결과 2.36 GHz ~ 5.51 GHz 대역에서 -10 dB 반사손실 및 $VSWR{\leq}2$를 만족하였으며, 방사패턴은 모든 대역에 걸쳐 특정한 방향으로 전파에 대한 감도가 높아지는 end-fire 특성을 보였다.

In this paper, we have proposed a tapered slot antenna for IR-UWB communication system suitable of indoor positioning in the building. The designed tapered slot antenna is designed using Ansys Inc. HFSS and its standing wave ratio, return loss, and radiation pattern is analyzed. In 2.36 GHz ~ 5.51 GHz and, the designed antenna shows satisfactory return loss at -10 dB and meets the requirement of $VSWR{\leq}2$. The presented designed showed a higher sensitivity for the end-fire propagation characteristics in a specific direction across all bands of the radiation pattern.

키워드

참고문헌

  1. J. Igor Immoreev, "Ultra-wideband systemsfeatures and ways of development," 2004 2nd Int. Workshop Ultrawideband and UltraShort Impulse Signals, pp. 19-22, Sevastopol, Ukraine, Sept. 2004.
  2. Notice of inquiry in the Matter of Revision of Part 15 of the Commission's Rules Regarding Ultra-Wideband Transmission System, FCC Doc. No. 98-208/ET No. 98-153.
  3. R. Garg, P. Bhartia, I. Bahl, and A. Ittipiboon, Microstrip Antenna Design Handbook, Artech House, Norwood, MA, 2001.
  4. X. Deng, Q. Wang, and G. Victor, "Structural health monitoring using active sensors and wavelet transform," in Proc. SPIE 3668, Smart Structures and Materials 1999: Smart Structures and Integrated Systems, vol. 3668, pp. 363-370, Newport Beach, Jun. 1999.
  5. J. D. McKinney, D. Peroulis, A. M. Weiner, "Time-domain measurement of the frequencydependent delay of broadband antennas," IEEE Trans. Ant. Propaga., vol. 56, no. 1, pp. 39-47, Jan. 2008. https://doi.org/10.1109/TAP.2007.913079
  6. S. R. Lee, M. A. Jeong, Y. G. Kim, and S. W. Min, "Proposal of USN configuration and routing scheme inside a ship," J. KICS, vol. 39C, no. 08, pp. 660-666, Aug. 2014. https://doi.org/10.7840/kics.2014.39C.8.660
  7. K. J. Jeon, B. H. Ko, S. C. Myung, S. R. Lee, and K. S. Kim, "Protograph-based block LDPC code design for marine satellite communications," J. KICS, vol. 39C, no. 7, pp. 515-520, Jul. 2014. https://doi.org/10.7840/kics.2014.39C.7.515
  8. K, H. Lee, E. H. Kwak, and B. G. Kim, "Effect of substrate thickness, perforation position and size on the bandwidth and radiation characteristics of a proximity coupled perforated microstrip patch antenna," J. KICS, vol. 39A, no. 6, pp. 301-321, Jun. 2014. https://doi.org/10.7840/kics.2014.39A.6.310
  9. K. Y. Kim, "Design of UWB beam scanning antenna systems based on time domain analysis," Ph.D. Dissertation, Electronic Engineering, Kwangwoon Univ., Dec. 2013.
  10. K. Chang, RF and Microwave Wireless System, NY: WILEY, pp. 74-75, 2000.
  11. S. Shrestha, S. K. Noh, and D. Y. Choi, "Comparative study of antenna design for RF energy harvesting," Int. J. Ant. Propaga., vol. 2013, pp. 1-10, 2013.
  12. D. Y. Choi, Sika Shrestha, J. J. Park, and S. N. Noh, "Design and performance of an efficient rectenna incorporating a fractal structure," Int. J. Commun. Syst., vol. 2014, no. 27, pp. 1-19, Jul. 2014.

피인용 문헌

  1. Analysis of Tapered Slot Antenna for UWB with Directivity Characteristic vol.20, pp.4, 2016, https://doi.org/10.6109/jkiice.2016.20.4.691