• Title/Summary/Keyword: 연쇄부호

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Performance of Wireless ATM Cell Transmission with Concatenated Turbo and BCH Coding (터보코드와 BCH코드의 연쇄부호화를 이용한 무선 ATM셀 전송의 성능 분석)

  • 문병현;권광영
    • Journal of Korea Society of Industrial Information Systems
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    • v.7 no.2
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    • pp.1-5
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    • 2002
  • In this paper, a concatenated turbo and BCH coding is proposed for the wireless ATM cell transmission and the bit error rate(BER) and the cell loss ratio(CLR) for the Nosed system is obtained. Turbo code with code rate of 1/2 and BCH code with error correction capability of 5 and 15 bits are used in the simulations. It is shown that the proposed system obtained about 0.2 and 0.4 ㏈ gain over the conventional Turbo code at bit error rate of 0.001. Also the proposed system obtained about 0.1 and 0.2 ㏈ gain over the conventional Turbo code at cell loss rate of 0.01.

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On the chain condition for preparata codes over $Z_{4}$ ($Z_4$위의 Preparata 부호의 연쇄조건)

  • 임두루;양경철
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.22 no.5
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    • pp.1058-1063
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    • 1997
  • Though the Preparata code of length 8 over $Z_{4}$ satisfies the chain condition, the Preparata code of length 16 or 32 over $Z_{4}$ does not satisfy the chain condition. In this paper we show that the Preparata code of length $2^{m}$ over $Z_{4}$ does not satisfy the chain condition for m=4, 5, 6 and 8 by investigating relations between weight hierarchy and chain condition.

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Performance Analysis of Reed Solomon/Convolutional Concatenated Codes and Turbo code using Semi Random Interleaver over the Radio Communication Channel (무선통신 채널에서 RS/길쌈 연쇄부호와 세미 랜덤 인터리버를 이용한 터보코드의 성능 분석)

  • 홍성원
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.5 no.5
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    • pp.861-868
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    • 2001
  • In this paper, the performance of Reed Solomon(RS)/convolution리 concatenated codes and turbo code using semi random interleaver over the radio communication channel was analyzed. In the result, we proved that the performance of decoder was excellent as increase the interleaver size, constraint length, and iteration number. When turbo code using semi random interleaver and Hsiconvolutional concatenated codes was constant constraint length L=5, BER=10-4 , each value of $E_b/N_o$ was 4.5〔dB〕 and 2.95〔dB〕. Therefore, when the constraint length was constant, we proved that the performance of turbo code is superior to RS/Convolutional concatenated codes about 1.55〔dB〕 in the case of BER=10-4.

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Serially Concatenated Space-Time Code using Iterative Decoding of High Data Rate Wireless Communication (고속 무선 통신을 위한 반복 복호 직렬 연쇄 시.공간 부호)

  • 김웅곤;구본진;양하영;강창언;홍대식
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.25 no.4A
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    • pp.519-527
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    • 2000
  • This paper suggests and analyzes the Serially Concatenated Space-Time Code(SCSTC) with the possibility of a efficient high-speed transmission in a band limited channel. The suggested code has a structure that uses the interleaver to connect the space-time code as an inner code and the convolutional code as a outer code serially. This code keeps the advantage of high-speed transmission and also has the high BER performance. The performance of the suggested system is compared with the conventional bandwidth efficient trellis coded modulation, such as a Serially Concatenated Trellis Coded Modulation (SCTCM) and a Turbo-Trellis Coded Modulation(Turbo-TCM). The results show that the suggested system has a 2.8dB and 3dB better BER performance than SCTCM and Turbo-TCM respectively in case of the transmission rate 2b/s/Hz in fading channel.

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Performances of wireless ATM cell transmission with partial concatenated coding (무선 ATM셀 전송을 위한 부분 연쇄 부호화 기법의 성능분석)

  • 이진호;김태중;이동도;안재영;황금찬
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.22 no.9
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    • pp.2014-2026
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    • 1997
  • In this paper, the performances of wireless asynchronous transfer mode (ATM) cell transmission in mobile work are analyzed. We adopt 16Star QAM as amodulation technique in wireless channel and considered Reed-Solomon, convolutional, and concatenated coding to improve the error rate performances, and also proposed the Partial Concatenated Coding (PCC) technique as UEP(unequal error protection) code for efficient transmission of ATM cell in the air interface. We consider Doppler's effect, Rician fading, and diversity technique of maximal-ratio combining (MRC) for mobile channel model. For performance measure, we analyze bit error rate, ATM cell loss probability, ATM cell error probability, and network performances of ATM cell transmission delay and throughput. The numerical results show that the adoption of PCC is a prospective way for the evolution of future wireless ATM network on mobile environment.

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Concatenated Convolutional and Differential Codes with Interfarence Suppression for DS-CDMA Systems (간섭 억제된 차등 연쇄 부호 기법을 적용한 DS-CDMA 시스템)

  • 양하영;유흥렬;홍대식;강창언
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.26 no.5B
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    • pp.545-553
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    • 2001
  • 다중 사용자 DS-CDMA 시스템에서 더 나은 성능을 얻고자 컨볼루션 코드와 차등 코드의 직렬 연쇄 구조를 제안한다. 시스템은 접속 간섭 (MAI: Multiple-access Interference)를 억제하기 위해 다른 사용자의 확산 코드, 동기, 그리고 전력 정보 등을 필요로 하지 않는 단일 사용자 검파기(SUD: Single User Detection)로 이루어진다. 채널 부호로 사용된 부호화율 1과 메모리 수 1을 가지는 차등 부호는 부호화로 인한 효율 저하를 가져오지 않으며 최소 상태수를 가지게 된다. 이러한 차등 부호와 컨볼루션 부호를 복호함에 있어서 서로간의 정보를 교환하는 반복 복호 처리를 이용한다. AWGN 채널에서의 분석 결과로부터 본 연쇄 부호 기법이 DS-CDMA 시스템에서 기존의 컨볼루션 코드보다 유사한 복잡도에서 더 나은 성능과 유연성을 제공함을 알 수 있다. 또한 제안한 기법이 SUD를 하는 DS-CDMA 시스템에 적용될 때, 처리 이득(Processing Gain)이나 간섭 억제 여파기의 탭 개수를 증가시킴으로써 성능 향상이 일어나며, 원근 간섭 전력 문제가 심한 경우에 성능 저하가 일어남을 알 수 있다.

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Erasure Decoding Method of RS-Convolutional Concatenated Code in Frequency-Hopping Spread Spectrum of Partial Band Jamming Environment. (부분대역 간섭 환경의 주파수도약 대역확산 시스템에서 RS-콘볼루션 연쇄부호의 Erasure 복호방식)

  • 강병무;유흥균
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.24 no.12A
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    • pp.1960-1965
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    • 1999
  • In this paper, we propose a new method of erased concatenated code with RS-convolutional code. In the method, we make use of erasure for undecoded information when we have some errors in RS decoding. For decoding with erasure, the method is processed inner decoding and outer decoding again. After the erasure decoding, if the decoding result is better than the previous one, then we use this result. If not, use the previous one. In this paper, we use concatenated RS(63,31)-convolutional(4.1/2) code. Simulation result is compared with calculation result for performance analysis. According to the result, the proposed method has better performance than the others without erasure such that 2dB when 0.5$\leq\rho\leq$1 and 4dB when $\rho\leq$0.3.

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Space-Time Concatenated Convolutional and Differential Codes with Interference Suppression for DS-CDMA Systems (간섭 억제된 DS-CDMA 시스템에서의 시공간 직렬 연쇄 컨볼루션 차등 부호 기법)

  • Yang, Ha-Yeong;Sin, Min-Ho;Song, Hong-Yeop;Hong, Dae-Sik;Gang, Chang-Eon
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.39 no.1
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    • pp.1-10
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    • 2002
  • A space-time concatenated convolutional and differential coding scheme is employed in a multiuser direct-sequence code-division multiple-access(DS-CDMA) system. The system consists of single-user detectors (SUD), which are used to suppress multiple-access interference(MAI) with no requirement of other users' spreading codes, timing, or phase information. The space-time differential code, treated as a convolutional code of code rate 1 and memory 1, does not sacrifice the coding efficiency and has the least number of states. In addition, it brings a diversity gain through the space-time processing with a simple decoding process. The iterative process exchanges information between the differential decoder and the convolutional decoder. Numerical results show that this space-time concatenated coding scheme provides better performance and more flexibility than conventional convolutional codes in DS-CDMA systems, even in the sense of similar complexity Further study shows that the performance of this coding scheme applying to DS-CDMA systems with SUDs improves by increasing the processing gain or the number of taps of the interference suppression filter, and degrades for higher near-far interfering power or additional near-far interfering users.

Performance Analysis of Hybrid Concatenated Convolutional Codes over AWGN and Rayleigh/Rician Fading Channels (가산성 백색 가우시안 잡음과 레일레이/라이시안 페이딩 채널에서 하이브리드 연쇄 길쌈부호의 성능 분석)

  • 김세훈;윤원식
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.25 no.1A
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    • pp.43-47
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    • 2000
  • In regions of low signal-to-noise ratio (SNR), performance analysis uses simulations of hybrid concatenated coding systems. However, for higher SNR regions beyond simulation capabilities, average upper bounds to bit error rate (BER) and word error rate (WER) are used. In [1], all weight enumerating functions are needed to obtain average bounds. In this paper, we use RSC as constituent codes, by using effective free distances instead of WEF, we derive average BER and WER bounds of hybrid concatenated convolutional codes (HCCC) and analyze the BER and WER over AWGN and Rayleigh/Rician fading channels.

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An Algorithm for Computing the Weight Enumerating Function of Concatenated Convolutional Codes (연쇄 컨볼루션 부호의 가중치 열거함수 계산 알고리듬)

  • 강성진;권성락;이영조;강창언
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.24 no.7A
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    • pp.1080-1089
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    • 1999
  • The union upper bounds to the bit error probability of maximum likelihood(ML) soft-decoding of parallel concatenated convolutional codes(PCCC) and serially concatenated convolutional codes(SCCC) can be evaluated through the weight enumerating function(WEF). This union upper bounds become the lower bounds of the BER achievable when iterative decoding is used. In this paper, to compute the WEF, an efficient error event search algorithm which is a combination of stack algorithm and bidirectional search algorithm is proposed. By computor simulation, it is shown that the union boounds obtained by using the proposed algorithm become the lower bounds to BER of concatenated convolutional codes with iterative decoding.

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