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首页> 外文期刊>International Journal of Distributed Sensor Networks >Network-coding-based two-way relay cooperation with energy harvesting
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Network-coding-based two-way relay cooperation with energy harvesting

机译:基于网络编码的双向中继与能量收集协作

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For the relay cooperation systems or networks, in some scenarios, the relay is deployed in the hard-to-reach areas, such as on the remote mountains or in the sea. It is impractical for the relay to be powered by grid energy. And if the relay is powered by battery, it is difficult and high cost to replace the depleted battery. To overcome the power dependence of the relay, this article proposes the network-coding-based two-way relay cooperation with energy harvesting, where the relay is equipped with multiple antennas for information decoding and energy harvesting. Network coding is adopted at the relay to reduce the time slots, and low-density parity check codes are employed at the sources to improve the reliability. We introduce a maximal ratio combining–based decoding algorithm for the proposed system to achieve coding gain and diversity gain. Furthermore, we analyze the outage probability and bit error rate of the system when the optimal antenna selection algorithm is adopted at the relay to transmit data. Theoretical analysis and numerical simulation results show that the proposed system outperforms the corresponding point-to-point system under the same condition. The result also demonstrates that the relay should be deployed closer to the user whose outage probability is required to be lower.
机译:对于中继协作系统或网络,在某些情况下,中继部署在难以到达的区域,例如偏远的山脉或海洋中。继电器由电网能量供电是不切实际的。并且如果继电器由电池供电,则更换耗尽的电池是困难且高成本的。为了克服中继器的功率依赖性,本文提出了基于网络编码的双向中继与能量收集的协作,其中中继配备有多个天线用于信息解码和能量收集。中继采用网络编码以减少时隙,并且在源处采用低密度奇偶校验码以提高可靠性。我们为提出的系统引入了基于最大比率组合的解码算法,以实现编码增益和分集增益。此外,我们分析了在中继器上采用最佳天线选择算法传输数据时系统的中断概率和误码率。理论分析和数值模拟结果表明,该系统在相同条件下的性能优于相应的点对点系统。该结果还表明,应该将继电器部署在距离用户更近的地方,该用户需要降低中断概率。

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