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Trellis- and network-coded modulation for decode-and-forward two-way relaying over time-varying channels

机译:用于在时变信道上进行解码和转发双向中继的网格和网络编码调制

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摘要

We present a bandwidth-efficient joint channel coding-modulation scheme conceived for the broadcast channel (BC) of Decode-and-forward Two-way Relaying (DF-TWR), where Trellis-coded modulation (TCM) is intrinsically amalgamated with network-coded modulation (NCM) for achieving both a channel coding gain and a high throughput. We conceive a low-complexity receiver algorithm for our joint Trellis- and Network-coded modulation (TC-NCM) scheme, which applies decoding and demodulation simultaneously, without the need to first demodulate the signal before decoding, as in the traditional solutions. As a further contribution, the TC-NCM scheme is intrinsically amalgamated with adaptive transceiver techniques. We then further investigate the performance of our near-instantaneously adaptive discrete-rate TC-NC-QAM/PSK scheme. Both simulation results and numerical analysis are presented, which are compared to the performance of traditional NCM schemes. The results show that our scheme not only increases the achievable transmission rate, but also improves the reliability, yet it is of modest complexity.
机译:我们提出了一种带宽有效的联合信道编码调制方案,该方案是针对解码和转发双向中继(DF-TWR)的广播信道(BC)构想的,其中网格编码调制(TCM)本质上与网络融合在一起,编码调制(NCM),用于实现信道编码增益和高吞吐量。我们为联合的网格和网络编码调制(TC-NCM)方案设想了一种低复杂度的接收器算法,该方案同时应用解码和解调,而无需像传统解决方案那样先在解码之前对信号进行解调。作为进一步的贡献,TC-NCM方案在本质上与自适应收发器技术合并在一起。然后,我们进一步研究了我们的即时自适应离散速率TC-NC-QAM / PSK方案的性能。给出了仿真结果和数值分析,并与传统NCM方案的性能进行了比较。结果表明,该方案不仅提高了可达到的传输速率,而且提高了可靠性,但复杂度不高。

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