BER Performance Analysis of Groupwise Iterative- Multipath Interference Cancellation(GWI-MPIC) Algorithm for Coherent HSDPA System

동기식 HSDPA시스템의 그룹단위 반복 다중경로 간섭제거 알고리즘의 오류율 성능해석

  • 구제길 (용인송딤대학 디지털전자정보과)
  • Published : 2004.03.01

Abstract

This paper drives the exact expression of bit error rate(BER) performance for groupwise iterative-multipath interference cancellation(GWI-MPIC) algorithm for cancelling multipath interference components in a coherent high-speed downlink packet access(HSDPA) system of W-CDMA downlink and the BER performance is evaluated by numerical analysis. The performance of GWI-MPIC is compared to the successive interference cancellation(SIC) algorithm for multipath components. From numerical results, the optimal average BER performance of weighting factor ${\beta}$$\_$h/ for interference cancellation is obtained at ‘${\beta}$$\_$h/=0.8’ and then this weighting factor is hereafter applied to other performance analysis. Numerical results showed that the average BER performance of GWI-MPIC algorithm is rapidly degraded at multipath L=6, but is revealed the good performance than that of SIC algorithm in terms of increasing the number of multipath. This results also indicated that the average BER performance is greatly degraded due to increasing interference power more than multicode K=8. The average BER performance of the proposed algorithm is superior to the performance of SIC algorithm about 3 ㏈ for processing gain PG=128 at multipath L=2 and Average BER=1.0${\times}$10$\^$-5/. And also, the results produced good performance in case of linear monotonic reduction of multipath fading channel gain than that of constant channel gain variation, because multipath fading channel gain which is arrived later is small.

논문은 W-CDMA 시스템의 동기식 고속 다운링크 패킷접속(HSDPA: high-speed downlink packet access) 시스템에서 다중경로 간섭성분 제거를 위한 그룹단위 반복 다중경로 간섭제거(GWI-MPIC: Goupwise iterative-multipath interference cancellation) 알고리즘을 적용하여 오류율 성능을 유도하고 수치해석으로 성능을 분석한 것이다. GWI-MPIC 알고리즘은 다중경로 직렬간섭제거(SIC: successive interference cancellation) 알고리즘 성능과 비교하였다. 성능분석에 따르면, 간섭제거 가중인자($\beta$$_{h}$)에 따른 성능이 ‘$\beta$$_{h}$=0.8’에서 최적 평균 BER 성능을 얻었으며, 그 결과를 다른 성능분석에 적용하였다. 다중경로수 ‘L=6’에서 오류율 성능이 급격히 저하되었으나 경로수가 증가할수록 직렬간섭제거(SIC) 알고리즘 성능보다 우수함을 알 수 있었다. 다중코드 ‘K=8’ 이상에서는 다중경로수에 비례한 간섭 전력의 증가로 성능 저하가 두드러졌다. 그리고 확산이득 ‘PG=128’인 경우 다중경로 수 ‘L=2’와 평균 BER =1.0${\times}$$10^{-5}$에서 직렬간섭제거 알고리즘 성능보다 3 ㏈ 정도 우수한 결과를 얻었다. 또한 다중경로 페이딩 채널이득이 선형단조 감소한 경우, 뒤에 도달한 다중경로의 페이딩 채널이득이 적게 되어 일정이득(‘1’) 변화 성능보다 우수한 결과를 나타냈다.타냈다.

Keywords

References

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