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Proactive Power Allocation and Caching Node Selection for Regular Service Guarantees

机译:主动功率分配和缓存节点选择,以保证正常服务

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This paper studies the potential of proactive resource allocation to prolong the communication sessions in networks with limited energy budgets and stringent quality-of-service (QoS) requirement, particularly a regular service guarantee. A threshold-based proactive communication policy is proposed to minimize the consumed transmission energy and maximize the network lifetime based on the different link states and the buffer state at the destination node. A closed-form expression is presented for the proactive gain in terms of the channel gain threshold, the amount of the proactively- transmitted data, the QoS requirement, and the channel statistics. The optimal amount of proactively-transmitted data is also provided in closed-form. Finally, corroborated by numerical simulations, the performance of the proposed proactive policy is compared to simple non-proactive communication, as well as non-causal transmission with perfect genie-aided channel knowledge. The presented results show the promising proactivity gains that can be reaped when channel statistics are further taken into account, as compared to legacy myopic approaches which allocate power based solely on instantaneous channel conditions.
机译:本文研究了在资源预算有限且服务质量(QoS)要求严格(尤其是定期服务保证)的情况下,主动分配资源以延长通信会话的潜力。提出了基于阈值的主动通信策略,以基于目标节点上的不同链路状态和缓冲区状态,最小化消耗的传输能量并最大化网络寿命。根据信道增益阈值,主动传输的数据量,QoS要求和信道统计信息,为主动增益提供了一个封闭形式的表达式。主动传输的数据的最佳数量也以封闭形式提供。最后,通过数值模拟得到了证实,将所提出的主动策略的性能与简单的非主动通信以及具有完善的遗传辅助信道知识的非因果传输进行了比较。与仅基于瞬时信道条件分配功率的传统近视方法相比,所呈现的结果表明,当进一步考虑信道统计信息时,可以收获有希望的主动性收益。

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