• Title/Summary/Keyword: 시공간블록코드

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On the Performance of STBC/Beamforming Systems for High Speed Trains (고속 열차를 위한 다중안테나 시스템 성능 분석)

  • 이철진;신승훈;최규형;황현철;곽경섭
    • Journal of the Korean Society for Railway
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    • v.7 no.4
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    • pp.400-405
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    • 2004
  • Recently, MIMO communications are regarded as one of the most promising emerging wireless technologies. This paper investigates MIMO wireless systems and their applications in a railway communication system. We firstly discuss railway communication environments including propagation characteristics and radio channel modeling. Next, we consider channel estimate methods, which is a crucial issue under rapidly varying channel condition due to the movement of trains. Channel estimation methods for MIMO systems are addressed and the effect of estimation error is studied. We also have performed simulations for transmit beamforming system and STBC(Space-time block coding) to investigate the performance of MIMO schemes in railway systems.

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.

A Comparative Performance Analysis of Space-Time Block Codes for OFDM Systems Under Rayleigh Fading Environments (레일라이 페이딩 환경에서 OFDM 시스템을 위한 시공간 블록 코드의 성능 비교, 분석)

  • Kim Young Sun;Jung Ho Chul;Lee Sang Ho;Kim Chang ju;Park Hyung Rae
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.10A
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    • pp.1147-1158
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    • 2004
  • In this paper we design STBC-OFDM systems by applying several STBC schemes to the OFEM system and show their comparative analysis results obtained through computer simulations under Rayleigh fading environments, considering the effect of channel estimation error. We first consider the space-time coding algorithms of major STBC schemes, together with their demodulation algorithms. We then select the OFDMparameters considering mobile environments and design the STBC-OFDM systems by choosing one of digital modulation schemes such as QPSK, BPSK, 16QAM, 64QAM, and 256QAM according to the transmission rate, and describe the block diagrams of the demodulator and channel estimator. We finally compare and analyze the BER performances of the STBC-OFDM systems according to the transmission rate and the number of receive antennas.

Performance Enhancement Technique using Iterative Decoding and Maximal Ratio Receive Combining Technique for Multiplexed STBC OFDM Systems (복호 및 최대수신결합을 반복적으로 이용한 Multiplexed STBC OFDM 성능향상 기법)

  • Jung Hyeok-Koo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.5C
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    • pp.391-397
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    • 2005
  • Since space time block code (STBC) technique of a transmission diversity technique was introduced, multiple input multiple output techniques using transmission diversity at the basestation for improving transmission data rate, have been studied extensively. Multiplexed STBC OFDM technique uses multiple groups of two transmit antennas and suppresses the interference signals of other STBC OFDM groups at the receivers. In this paper, I propose a new method of iterative decoding and maximal ratio receive combining technique for multiplexed STBC OFDM systems, and simulated and showed the results in comparison with the conventional methods.

IEEE 802.22 시스템을 위한 다중 안테나 기법의 성능 비교, 분석

  • Jeong Ho-Cheol;Park Hyeong-Rae;Song Myeong-Seon;Kim Chang-Ju
    • The Proceeding of the Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.2 s.58
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    • pp.61-70
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    • 2006
  • In this paper, we compare the performance of representative MIMO techniques such as space-time block code, closed-loop transmit diversity, and V-BLAST, etc., in IEEE 802.22 environments. We first develope deco-ding algorithms of the representative MIMO techniques and design a MIMO-OFDM system employing QPSK, 16 QAM, 64 QAM to cover several transmission rates. Since the frequency band used for IEEE 802.22 systems belongs mostly to V/UHF band and the angular spread of the received signal at the base station is very small, there Is a significant correlation between the signals from transmit antennas. Thus, in this paper, we compare the performance of MIMO-OFDM systems employing only two Tx antennas in correlated fading environments.

A Study on D-MSSTC-SM (D-MSSTC-SM 기법에 관한 연구)

  • Jeon, Chanyong;Lee, Jeong Woo
    • Journal of IKEEE
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    • v.21 no.1
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    • pp.89-91
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    • 2017
  • We proposed a spatial modulation (SM) scheme to improve spectral efficiency of multi-input multi output (MIMO) systems by using double multi-strata space-time codes (D-MSSTC). For improving the performance of proposed scheme, we allocate transmit power and phase to layers in each MSSTC, and assign rotation angle to SM codebooks. Additionally, we jointly optimize power, phase and rotation angle to maximize the minimum coding gain distance of D-MSSTC-SM. It is observed that the proposed scheme shows better error performance with high spectral efficiency than conventional schemes in simulation results.

Performance Analysis for The Coordinate Interleaved Orthogonal Design of Space Time Block Code in The Time Selective Fading Channel (시간 선택적 페이딩 환경에서 CIOD 시공간 블록 부호의 성능 분석)

  • Moon, Seung-Hyun;Lee, Ho-Kyoung
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.6
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    • pp.43-49
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    • 2014
  • In this paper, we consider the performance evaluation of space time block code (STBC)) with coordinate interleaved orthogonal design (CIOD) over time selective channel. In case of quasi static channel, STBC-CIOD satisfies full rate and full diversity (FRFD) property with the single symbol decoding. However in the time selective channel, the symbol interference degrades the system performance when we employ the single symbol decoding. We derive the union bound of the symbol error probability by evaluating the pairwise error probability in the first order Markov channel. We also present simulation results of STBC-CIOD with QPSK.

Performance Analysis of MIMO-OFDM System over Nakagami Fading Channel (나카가미 페이딩 채널하에서 MIMO-OFDM 시스템의 성능분석)

  • Kang, Kyung-Sik;Kim, Won-Sub;Park, Chun-Ho
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.15 no.8
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    • pp.1797-1804
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    • 2011
  • In this paper, I analyzed array organization of MIMO channel antenna and effect of operation environment by evaluating average BER from linear Space-Time Block Code orthogonal design and suggests designing condition of MT antenna for improved BER and the fading index m. To analyze system performance, I used M-PSK and M-QAM modulation, and to use analysis equations I used integrated by Nakagami fading variable, non-integrated Nakagami fading variable. We can get the organization of channel array by using mathematical calculation on matrix. STBE BER performance will decrease as AOA spreading decrease and such loss can be compensated from extending antenna spacing, and changing array organization.

Antenna Selection and Shuffling for DSTTD Systems with Correlated Transmit-Antenna (송신 안테나 사이에 상관관계가 있는 DSTTD 시스템에서 안테나 선택과 뒤섞는 기법)

  • Joung, Jin-Gon;Jeong, Eui-Rim;Lee, Yong-Hoon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.8C
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    • pp.767-774
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    • 2007
  • A new transmit antenna selection and shuffling($AS^2$) method for spatially correlated double space time transmit diversity(DSTTD) systems is proposed. The proposed method allows dumb antennas and the superposition of multiple signals at the same transmit antenna, whereas the conventional methods consider the antenna shuffling(AS) only. According to the simulation result, the proposed method provides a 1.8 dB signal-to-noise ratio(SNR) gain over the conventional methods for spatially correlated transmit antennas. Although the number of candidates for $AS^2$ is much higher than that of AS, it is found that the number of candidates for $AS^2$ can be reduced to 36 by using the characteristics and properties of preprocessing matrices, and among them, only 6 candidates are almost always chosen. Next, we empirically compare the bit-error-rate (BER) performance of the proposed method with the conventional spatial multiplexing(SM) technique with antenna selection. Simulation results show that the proposed method outperforms the SM technique.

Multi-Cell Transmit Diversity Scheme for OFDMA Systems (OFDMA 시스템을 위한 다중 셀 전송 다양성 기법)

  • Seo, Bangwon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.37A no.9
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    • pp.721-727
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    • 2012
  • Since a conventional multi-cell transmit diversity scheme depends on the feedback from the user for the channel gain information, its performance gets to severely degrade when the channel varies fast due to the high mobility of the user. Also, transmit power of the base station cannot be fully used in the conventional scheme because only one transmit antenna is used for data transmission. In this paper, we propose a multi-cell transmit diversity scheme appropriate for fast fading channel. In the proposed scheme, channel-independent precoding vector is applied over all transmit antennas and different precoding vectors are applied for neighboring subcarriers so that the received signal is avoided to experience deep fading over multiple neighboring subcarriers. Simulation results show that the proposed scheme has better detector output signal-to-noise ratio (SNR) and bit error rate (BER) performances than the conventional scheme.