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首页> 外文期刊>IEEE Transactions on Communications >Energy Minimization for the Half-Duplex Relay Channel with Decode-Forward Relaying
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Energy Minimization for the Half-Duplex Relay Channel with Decode-Forward Relaying

机译:具有解码转发中继的半双工中继信道的能量最小化

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摘要

We analyze coding for energy efficiency in relay channels at a fixed source rate. We first propose a half-duplex decode-forward coding scheme for the Gaussian relay channel. We then derive three optimal sets of power allocation, which respectively minimize the network, the relay and the source energy consumption. These optimal power allocations are given in closed-form, which have so far remained implicit for maximum-rate schemes. Moreover, analysis shows that minimizing the network energy consumption at a given rate is not equivalent to maximizing the rate given energy, since it only covers part of all rates achievable by decode-forward. We thus combine the optimized schemes for network and relay energy consumptions into a generalized one, which then covers all achievable rates. This generalized scheme is not only energy-optimal for the desired source rate but also rate-optimal for the consumed energy. The results also give a detailed understanding of the power consumption regimes and allow a comprehensive description of the optimal message coding and resource allocation for each desired source rate and channel realization. Finally, we simulate the proposed schemes in a realistic environment, considering path-loss and shadowing as modelled in the 3GPP standard. Significant energy gain can be obtained over both direct and two-hop transmissions, particularly when the source is far from relay and destination.
机译:我们以固定的源速率分析中继信道中的能效编码。我们首先提出一种用于高斯中继信道的半双工解码正向编码方案。然后,我们得出三个最佳的功率分配集,分别使网络,中继和源能耗最小。这些最佳功率分配以封闭形式给出,到目前为止,对于最大速率方案而言,这些功率分配仍然是隐式的。而且,分析表明,以给定速率最小化网络能耗并不等同于最大化给定速率能量,因为它仅覆盖了可通过解码转发实现的所有速率的一部分。因此,我们将网络和中继能耗的优化方案组合为一种通用方案,然后涵盖了所有可实现的速率。该通用方案不仅对于期望的源速率是能量最优的,而且对于消耗的能量也是速率最优的。结果还提供了对功耗机制的详细了解,并允许对每种所需的源速率和信道实现的最佳消息编码和资源分配进行全面描述。最后,我们考虑3GPP标准中建模的路径损耗和阴影,在现实环境中模拟提出的方案。在直接传输和两跳传输中都可以获得明显的能量增益,尤其是当源远离中继站和目的地时。

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