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A Novel Energy-Saving Resource Allocation Scheme in LTE-A Relay Networks

机译:LTE-A继电器网络中的新型节能资源分配方案

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摘要

The relay node (RN) in Long-Term Evolution-Advanced (LTE-A) networks is used to enhance the coverage of high data rate and solve the coverage hole problem. Considering the limited energy nature of User Equipment (UE), connecting to the RN instead of Evolved Node B (eNB) is a better choice for cell-edge UE items. In this paper, on the premise of compatibility to the LTE-A resource allocation specification, we discuss an uplink radio resource, uplink path, modulation and coding scheme (MCS), and transmit power allocation problem for energy conservation in LTE-A relay networks. The objective is to minimize the total energy consumption of UE items while guaranteeing the constraints of UE items’ quality of service (QoS), bit-error-rate (BER), total system resource, and maximum transmit power. Since the problem is NP-complete and the scheduling period in LTE-A is short (the subframe length is only 1 ms), we propose an efficient method to solve the problem. The complexity analysis shows the time complexity of the proposed heuristics is O(n2). Simulation results demonstrate that our algorithm can effectively reduce the energy consumption of UE items and guarantee users’ service quality.
机译:长期演进 - 高级(LTE-A)网络中的中继节点(RN)用于增强高数据速率的覆盖率并解决覆盖孔问题。考虑到用户设备(UE)的有限能量性质(UE),连接到RN而不是进化节点B(eNB)是小区边缘UE项目的更好选择。在本文中,关于LTE-A资源分配规范的兼容性的前提,我们讨论上行链路无线电资源,上行链路路径,调制和编码方案(MCS),以及LTE-A中继网络中节能的发射功率分配问题。目的是最小化UE项目的总能耗,同时保证UE项目的服务质量(QoS),误码率(BER),总系统资源和最大发射功率的限制。由于问题是NP完成,并且LTE-A中的调度周期短(子帧长只为1毫秒),我们提出了一种解决问题的有效方法。复杂性分析显示了拟议启发式的时间复杂性是O(n2)。仿真结果表明,我们的算法可以有效地降低UE项目的能耗并保证用户的服务质量。

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