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Jointly Optimised Iterative Source-coding, Channel-coding and Modulation for Transmission over Wireless Channels

机译:通过无线信道传输的联合优化迭代源编码,信道编码和调制

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摘要

Joint source-coding, channel-coding and modulation schemes based on Variable Length Codes (VLCs), Trellis Coded Modulation (TCM), Turbo TCM (TTCM), Bit-Interleaved Coded Modulation (BICM) and iteratively decoded BICM (BICM-ID) schemes are proposed. A significant coding gain is achieved without bandwidth expansion, when exchanging information between the VLC and the coded modulation decoders with the advent of iterative decoding. With the aid of using independent interleavers for the In-phase and Quadrature phase components of the complex-valued constellation, further diversity gain may be achieved. The performance of the proposed schemes is evaluated over both AWGN and Rayleigh fading channels. Explicitly, at BER=$10^{-5}$ most of the proposed schemes have BER curves less than one~dB away from the channel capacity limit.
机译:基于可变长度码(VLC),网格编码调制(TCM),Turbo TCM(TTCM),比特交织编码调制(BICM)和迭代解码BICM(BICM-ID)的联合源编码,信道编码和调制方案建议方案。当在VLC和编码的调制解码器之间交换迭代解码的信息时,无需带宽扩展即可获得可观的编码增益。借助于将独立的交织器用于复值星座图的同相和正交相位分量,可以实现进一步的分集增益。在AWGN和瑞利衰落信道上评估了所提出方案的性能。明确地说,在BER = $ 10 ^ {-5} $的情况下,大多数提议的方案的BER曲线距离信道容量限制小于一dB。

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