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Dynamic Selective Decode and Forward in wireless relay networks

机译:无线中继网络中的动态选择性解码和转发

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In this paper, we propose a practical code design for a new relaying protocol, coined Dynamic Selective Decode-and-Forward (D-SDF), in half-duplex slow fading Multiple Access Multiple Relay Channel (MAMRC), defined as follows: (1) Multiple statistically independent sources communicate with a single destination with the help of multiple half-duplex relays; (2) The links between the different nodes are independent, and subject to slow fading and additive white Gaussian noise; (3) Sources and cooperating relays interfere (non-orthogonal transmission); (4) No channel state information at transmitter is available and no feedback is allowed. In D-SDF, each relay individually decides the end of its listening phase and the beginning of its cooperation phase, based on different source selection rules. Practical Joint Network Channel Coding (JNCC) schemes at the relays are proposed, as well as the corresponding Joint Network Channel Decoding (JNCD) algorithms at the relays and destination. The relays' and destination's receivers are designed to benefit from the signals of the previously activated relays to better decode the sources.
机译:在本文中,我们提出了一种新的中继协议的实用代码设计,该协议是在半双工慢衰落多址多址多中继信道(MAMRC)中创造的动态选择性解码和转发(D-SDF),定义如下: 1)在多个半双工中继的帮助下,多个统计独立的源与单个目标进行通信; (2)不同节点之间的链路是独立的,并且受到缓慢衰落和加性高斯白噪声的影响; (3)信号源和中继继电器产生干扰(非正交传输); (4)发送器上没有可用的信道状态信息,并且不允许反馈。在D-SDF中,每个中继根据不同的源选择规则分别决定其侦听阶段的结束和其协作阶段的开始。提出了在中继站的实用联合网络信道编码(JNCC)方案,以及在中继站和目的地的相应联合网络信道解码(JNCD)算法。中继站和目标站的接收器旨在受益于先前激活的中继站的信号,以更好地解码源。

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