A Study on the Branch Composition of an Optimum Polarization Diversity by Considering XPD in Indoor Radio Environments

실내무선 환경에서 XPD를 고려한 최적편파 다이버시티의 브랜치 구성에 관한 연구

  • 하덕호 (부경대학교 정보통신공학과) ;
  • 이주현 (부경대학교 정보통신공학과) ;
  • 윤영석 (부경대학교 정보통신공학과)
  • Published : 1999.04.01

Abstract

In this paper, in order to suggest an optimal polarization diversity composition method in indoor radio wave propagation environments, the variation of the cross polarization discrimination(XPD) was theoretically analyzed by a computer simulation and compared to the actual measured data. From the results, it can be seen that the cross polarization discrimination of the case, a circularly polarized antenna was used at the transmitting end as well as the vertical and horizontal polarized antenna branches were used at receiving end (CV-CH), is lower than that of the case, horizontal polarized antenna at the transmitting end as well as the horizontal and vertical polarized antenna branches at the receiving end(HH-HV), and that of the case, vertical polarized antenna at the transmitting end as well as the vertical and horizontal polarized antenna branches at the receiving end(VV-VH). In this paper, to get more effective CV-CH polarization diversity composition, the amount of cross polarization discrimination values at the signals received by horizontal polarized antenna is compensated and the polarization diversity effect through the cumulative probability distribution is estimated. From the evaluation results, it was found that the polarization diversity effect was better at the compensated case than at the uncompensated case. On the other hand, it can be known that the polarization diversity effect is getting better as the cross polarization discrimination values are getting lower, and also be known that the effect can be improved if a transmitting antenna is composed of the ellipse polarized antenna by adjusting the axial ratio of the circularly polarized antenna and, a receiving antenna is made up of the vertical and horizontal polarized antenna branches.

본 논문에서는 실내 무선환경에서 최적 편파 다이버시티를 구성하는 방안을 제시하기 위하여 먼저 이론적 해석을 통하여 교차편파식별도(XPD : Cross Polarization Discrimination)를 해석하고 이를 실제 측정 데이터와 비교하였다. 그 결과 아직까지 본 연구실에서 가장 좋은 편파 다이버시티로 확인된 바 있는 원형편파안테나 로 송신하고 수직, 수평편파안테나로 수신하는 경우(CV-CH)의 교차편파식별도(XPD)는 수직편파안테나로 송신하고 수직, 수평편파안테나로 수신하는 경우(VV-VH)와 수평면파안테나로 송신하고 수평편파, 수직편파 안테나로 수신하는 경우(HH-HV)보다 우수함을 확인하였다. 본고에서는 더 좋은 CV -CH 편파다이버시티 구 성을 위해 수신단에서 교차편파식별도(XPD) 값만큼 보상하여 누적확률분포도를 통한 다이버시티 효과를 평 가하였다. 그 결과 보상을 하여 교차편파식별도(XPD) 값을 낮게 한 경우가 보상하지 않은 경우보다 상당한 다이버시티 효과가 있음을 확인하였다. 한편, 송신측의 원형편파 안테나의 축 비를 교정하여 타원편파 안테나 로 구성하고, 수신측에서 수평 및 수직 안테나로 수신하면 신호간의 교차편파식별도(XPD)가 최소화되어 편파다이버시티 효과를 향상시킬 수 있음을 알 수 있었다.

Keywords

References

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