Relaying over multiple slots with causal CSI: Optimal power allocation for energy minimization

Chin Keong Ho, P. Tan, Sumei Sun
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Abstract

In this paper, we employ a relay to assist in transmission from a source to a destination over a fixed number of time slots. We seek to minimize the expected sum transmission energy used by the source and relay, by choosing the transmission power of each node dynamically slot by slot. We assume that both receivers, namely the relay and the destination, can accumulate mutual information across previous and present slots by using earlier received packets for joint decoding. Assuming availability of causal channel state information (CSI) at all transmitters, we obtain the structure of the optimal solutions by dynamic programming. A key insight is that relaying is necessary for the expected sum energy to be bounded in Rayleigh fading channels. Numerical results show that the reduction in the expected sum energy is significant.
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具有因果CSI的多个插槽中继:能量最小化的最佳功率分配
在本文中,我们使用中继来协助在固定的时隙中从源到目的的传输。我们通过逐槽动态选择每个节点的传输功率,寻求源和中继使用的传输能量的期望总和最小。我们假设两个接收方,即中继和目的地,可以通过使用先前接收到的数据包进行联合解码来积累之前和当前插槽的相互信息。假设所有发射机的因果信道状态信息(CSI)都是可用的,我们通过动态规划得到了最优解的结构。一个关键的观点是,在瑞利衰落信道中,为了使期望的总能量有界,中继是必要的。数值结果表明,期望和能量的降低是显著的。
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