• Title/Summary/Keyword: MIMO Detection

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Layered Receivers for System Combined Layered Space-Time Processing and Space-Time Trellis Codes (계층화 시공간 구조와 시공간 트렐리스 부호를 결합한 시스템에 적합한 계층화 수신기)

  • 임은정;김동구
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.41 no.3
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    • pp.9-14
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    • 2004
  • The system combined layered space-time processing and space-time trellis codes (STTC) provide high transmission rate as well as diversity and coding gain without bandwidth expansion. In this paper, two layered receiver structures are proposed. One is the LSTT-MMSE in which received bit streams are decoupled by interference nulling and then decoded by separate STTC decoders. The decoded outputs are cancelled from the received signal before advancing to the next layer detection. The other is LSTT-Whitening employing whitening rather than nulling. The receiver employing whitening process shows several advantages on diversity gain and the required number of receive antennas compare to the convolutional coded space-time processing. The proposed receivers use different decoding order scheme according to each interference suwression. The (4, 3) LSTT-Whitening receiver still achieves 1㏈ gain over the (4, 4) LSTT-MMSE and the (4, 4) coded layered space-time processing.

Design of New Differential Space-Time Modulation Using Real Precoder (실수 선부호기를 이용한 새로운 차등 시공간 변조 설계)

  • Kim, Hong-Jung;Kim, Jun-Ho;Kim, Cheol-Sung;Jung, Tae-Jin
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.37 no.1A
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    • pp.1-7
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    • 2012
  • The conventional Zhu's differential space-time modulation(DSTM) based on quasi-orthogonal design adopted a complex precoder in order to allow an independent joint detection of two complex symbols without any channel informations at a receiver. In this paper, by simply replacing the complex precoder used in Zhu's DSTM with a real precoder, a new DSTM is presented for four transmit antennas. The real precoder enables the receiver to decode two real symbols pair separately, and thus the new DSTM has greatly reduced decoding complexity compared to the Zhu's DSTM. By computer simulation results, the proposed scheme is shown to exhibit almost identical or improved error performance compared to the existing DSTMs.